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17318 81st Dr Ne_BLD6975_2026
CITY OF ARLINGTON 18204 59th Avenue NE,Arlington,WA 98223 INSPECTIONS:360-403-3417-Permit Center:360-403-3551 BUILDING PERMIT 17318 81ST DR NE Permit#: 6975 Parcel#:01040900000900 PERMIT EXPIRES 180 DAYS AFTER DATE OF ISSUANCE. Scope of Work:Replacement of fizrmce and heat pump Valuation: 16232.00 OWNER APPLICANT CONTRACTOR BRUNNER JACK D&BETTY L Fast Home services Fast Water Heater 17318 81 ST DR NE 16120 Redmond-Woodinville Rd N 16120 Woodinville Redmond Rd Ne Ste 15 ARLINGTON,WA 98223 Woodinville Woodinville,Wa 98072 4258184090 (425)336-3617 LIC:FASTWWH750P7 EXP:11/20/2027 LIC:602 564 544 EXP:05/31/2027 MECHANICAL CONTRACTOR PLUMBING CONTRACTOR LIC#: EXP LIC#: EXP: JOB DESCRIPTION PERMIT TYPE: RESIDENTIAL MECHANICAL CODE YEAR: 2021 STORIES: 0 CONST. TYPE: VB DWELLING UNITS: OCC GROUP: R-3;Residential BUILDINGS: OCC LOAD: PERMIT APPROVAL The issuance or granting of this permit shall not be construed to be a permit for,or approval of,any violation of this Code or any other ordinance or order of the City,of any state or federal law,or of any order,proclamation,guidance advice or decision of the Governor of this State. To the extent the issuance or granting of this permit is interpreted to allow construction activity during any period of time when such construction is prohibited or restricted by any state or federal law,or order,proclamation,guidance advice or decision of the Governor of this State,this permit shall not authorize such work and shall not be valid.The building official is authorized to prevent occupancy or use of a structure where in violation of this Code,any other City ordinances of this jurisdiction or any other ordinance or executive order of the City,or of any state or federal law,or of any order,proclamation,guidance advice or decision of the Governor.The building official is authorized to suspend or revoke this permit if it is determined to be issued in error or on the basis of incorrect,inaccurate or incomplete information,or in violation of any City ordinance,regulation or order,state or federal law,or any order,proclamation,guidance or decision of the Governor. I AGREE TO COMPLY WITH CITY AND STATE LAWS REGULATING CONSTRUCTION AND IN DOING THE WORK AUTHORIZED THEREBY;NO PERSON WILL BE EMPLOYED IN VIOLATION OF THE LABOR CODE OF THE STATE OF WASHINGTON RELATING TO WORKMEN'S COMPENSATION INSURANCE AND RCW 18.27. THIS APPLICATION IS NOT A PERMIT UNTIL SIGNED BY THE BUILDING OFFICIAL OR HIS/HER DEPUTY AND ALL FEES ARE PAID. IT IS UNLAWFUL TO USE OR OCCUPY A BUILDING OR STRUCTURE UNTIL A FINAL INSPECTION HAS BEEN MADE AND APPROVAL OR A CERTIFICATE OF OCCUPANCY HAS BEEN GRANTED. IBC110/IRC110. SALES TAX NOTICE: Sales tax relating to construction and construction materials in the City of Arlington must be reported on your sales tax return form and coded City of Arlington#3101. 07/22/2026 Applicaht,Signature_ �I Date Building Official Date I CONDITIONS Adhere to approved mechanical equipment Permit shall be onsite for inspections Call for inspections The property owner shall ensure that the construction project complies with all applicable zoning codes and regulations.The property owner shall also ensure that the construction project does not cause any adverse impact on the surrounding environment or community. The property owner shall be responsible for obtaining all necessary permits and approvals from the relevant authorities before commencing construction.The property owner shall ensure that the construction project complies with all applicable design review requirements. THIS PERMIT AUTHORIZES ONLY THE WORK NOTED. THIS PERMIT COVERS WORK TO BE DONE ON PRIVATE PROPERTY ONLY.ANY CONSTRUCTION ON THE PUBLIC DOMAIN(CURBS,SIDEWALKS,DRIVEWAYS, MARQUEES,ETC.)WILL REQUIRE SEPARATE PERMISSION. PERMIT FEES Date Description Fee Amount 07/22/2026 Processingrfechnology $25.00 07/22/2026 Inspection $75.00 07/22/2026 Air Cond.Unit 5100 BTU/h $15.00 07/22/2026 Forced Air Heat 5100 BTU/h $15.00 07/22/2026 Mechanical Base $25.00 Total Due: $155.00 Total Payment: $155.00 Balance Due: $0.00 CALL FOR INSPECTIONS Call by 3:30 pm for next day inspection,allow 48 hours for Fire Inspections When calling for an inspection please leave the following information: Permit Number,Type of Inspection being requested,and whether you prefer morning or afternoon INSPECTION INFORMATION Pass/Fail Existing Furnace Info: Heat Strip KW-7e5 Existing Outdoor Unit Info: Picture of Nameplate P #Tstat Wires � Picture of Nameplate 0 YES Shows Serial+Model# YES Venting Size Shows Serial+M d 1# Furnace Location �u _ One Pipe/Two Pipes Total Supplies lineset Longer Access/Door Opening Hw_ Picture of Breakers Total Returns _L than so'? I Attic/Crawlspace Depth AT FURNACE El YES L From top of Plenum to top of Takeoff H H Ir (�Plenum Takeoff Rect/Girt _ �� D 2� Takeoff Rect/Girt FL H W D Transition H W D From bottom of Takeoff H to bottom of Plenum H W D H Filter/Coil(CIRCLE ONE) Distance to wall Distance to wall from Fiher/Coil ``,,,, from Filter/Coil «: w ~ ► ' W—V D IN t ` M Transition (�.Il C Distance from floor to ceiling r\ \n ,�J H V J a°, Furnance Distance to wall Distance to wall from Furnace from Furnace �} ( W W ♦♦ H J W ' D (� Transition Distance to wall H W D Distance to wall from Filter/Coil 4=* from FdteriCoil �► W Filter/ o' CIRCLE ONE) w From top of Takeoff I � to top of Plenum HW \ D �� H H Transition H W D TakeoffERect/CircTakeoff Rect/CircBasecan HW D H� W�� U Ze H W From bottom of Takeoff H to bottom of Plenum H Distance to floor H 4:39PM Wed Jul 15 .1 5G @ 60% W-�, O AHRI Certifica I w Assessor I Snc House footprii O Premier Progr JD Building U X + C ++ wa-snohomish.publicaccessnow.com 192 U 0 Building 62 7.5 50 F6791 50 2. onC 6 6sq.ft36 SI<ped QAP 2.8 72sq.ft 6 14.5 14.5 46 1 sFriC 35 34 r , 73 17.5 Conc 17 5 17.5 `""" 228sq.ft 23-5 Fr G 775sq.ft 13 2.5 2.5 2.8 6 2.8 2 22 I Q/ZP el � SM_ODU_R454B_3D INV_US1_NC_2504 OUTDOOR UNIT INVERTER SERIES SERVICE MANUAL ® oO CL O � O O 0 p p ppp � p 0 0000 0 -0 0 000 r0 ♦ 0 000 O A2L Table of Contents §. Safety Precautions 1 . Precautions 2. Information servicing §. Model Reference & External Appearance 1 . Model Reference 2. External Appearance §. Outdoor Unit 1 . Dimensional Drawings 2. Service Space 3. Capacity Correction Factor for Height Difference 4. Noise Criterion Curves 5. Refrigerant Cycle Diagrams 6. Electrical Wiring Diagrams §. Installation §. Basic functions §. Troubleshooting 1 . Safety Caution 2. General Troubleshooting 3. Outdoor Unit Point Check Function 4. Quick Maintenance by Error Code 5. Troubleshooting by Error Code 6. Check Procedures Appendix i) Temperature Sensor Resistance Value Table for TP (°C — K) ii) Other Temperature Sensor Resistance Value Table (°C — K) iii) Pressure On Service Port Safety Precautions Contents 1. Precautions.............................................................................................................2 2. Information servicing(For flammable materials).................................................4 1. Precautions , To prevent personal injury, or property or unit damage, While unpacking be careful of sharp edges around adhere to all precautionary measures and instructions the unit as well as the edges of the fins on the con- outlined in this manual. Before servicing a unit, refer to this denser and evaporator. service manual and its relevant sections. Failure to adhere to all precautionary measures listed in this 1.3 Operation and Maintenance section may result in personal injury, damage to the unit or to property, or in extreme cases, death. • Do not use defective or under-rated circuit breakers. OWARNING indicates a potentially hazardous Ensure the unit is properly grounded and that a situation which if not avoided could result in serious dedicated circuit and breaker are installed. 7personal injury, or death. Do not modify or extend the power cable. Ensure the power cable is secure and not damaged during DI CAUTION indicates a potentially hazardous situation operation. which if not avoided could result in minor or Do not unplug the power supply plug during moderate personal injury, or unit damage. operation. • Do not store or use flammable materials near the 1.1 In case of Accidents or Emergency unit. • Do not open the inlet grill of the unit during operation. • Do not touch the electrostatic filter if the unit is 71f as leak is suspected, immediately turn off the equipped with one. nd ventilate the area if a gas leak is suspected Do not block the inlet or outlet of air flow to the unit. e turning the unit on. Do not use harsh detergents,solvents,or similar items nge sounds or smoke is detected from the unit, to clean the unit. Use a soft cloth for cleaning. turn the breaker off and disconnect the power supply Do not touch the metal parts of the unit when cable. removing the air filter as they are very sharp. • If the unit comes into contact with liquid, contact an Do not step on or place anything on the unit or authorized service center. outdoor units. • If liquid from the batteries makes contact with skin or Do not drink water drained from the unit clothing, immediately rinse or wash the area well with Avoid direct skin contact with water drained from the clean water. unit. • Do not insert hands or other objects into the air inlet Use a firm stool or step ladder according to or outlet while the unit is plugged in. manufacturer procedures when cleaning or • Do not operate the unit with wet hands. maintaining the unit. • Do not use a remote controller that has previously been exposed to battery damage or battery leakage. 7environment • ot install or operate the unit for an extended d of time in areas of high humidity or in an • Clean and ventilate the unit at regular intervals when directly exposing it to sea wind or salt operating it near a stove or near similar devices. spray. • Do not use the unit during severe weather conditions. Do not install the unit on a defective or damaged If possible, remove the product from the window installation stand, or in an unsecure location. before such occurrences. Ensure the unit is installed at a level position • Do not install the unit where noise or air discharge 1.2 Pre-Installation and Installation created by the outdoor unit will negatively impact the environment or nearby residences. • Do not expose skin directly to the air discharged by the unit for prolonged periods of time. • Use this unit only on a dedicated circuit. 6Ensure the unit do not operate in areas water or • Damage to the installation area could cause the unit other liquids. to fall, potentially resulting in personal injury, prop- 6Ensure the drain hose is installed correctly to ensure erty damage,or product failure. proper water drainage. • Only qualified personnel should disassemble, install, When lifting or transporting the unit, it is remove,or repair the unit. recommended that two or more people are used for • Only a qualified electrician should perform electri- this task. cal work. For more information,contact your dealer, When the unit is not to be used for an extended time, seller, or an authorized service center. disconnect the power supply or turn off the breaker. 4 Safety Precautions 2 ► WARNING For Using Flammable Refrigerant tested prior to refrigerant charging, according to the following requirements: 1. Installation(where refrigerant pipes are allowed) a.The minimum test pressure for the low side of the system shall -Any person who is involved with working on or breaking into a be the low side design pressure and the minimum test pressure refrigerant circuit should hold a current valid certificate from an for the high side of the system shall be the high side design pres- industry-accredited assessment authority,which authorises their sure, unless the high side of the system can not be isolated from competence to handle refrigerants safely in accordance with an the low side of the system in which case the entire system shall industry recognised assessment specification. be pressure tested to the low side design pressure. - Maintenance and repair requiring the assistance of other skilled b.The test pressure after removal of pressure source shall be personnel shall be carried out under the supervision of the person maintained for at least 1 h with no decrease of pressure indicated competent in the use of flammable refrigerants. by the test gauge,with test gauge resolution not exceeding 5% -That the installation of pipe-work shall be kept to a minimum. of the test pressure. -That pipe-work shall be protected from physical damage. c. During the evacuation test, after achieving a vacuum level -Where refrigerant pipes shall be compliance with national gas specified in the manual or less,the refrigeration system shall be regulations. isolated from the vacuum pump and the pressure shall not rise -That mechanical connections shall be accessible for mainte- above 1500 microns within 10 min.The vacuum pressure level nance purposes. shall be specified in the manual,and shall be the lessor of 500 -Be more careful that foreign matter(oil,water,etc)does not microns or the value required for compliance with national and enter the piping. local codes and standards,which may vary between residential, Also,when storing the piping,securely seal the opening by commercial,and industrial buildings. pinching,taping,etc. --field-made refrigerant joints indoors shall be tightness tested -Appliance shall be stored in a well ventilated area where the according to the following requirements:The test method shall room size corresponds to the room area as specifiec for opera- have a sensitivity of 5 grams per year of refrigerant or better tion. under a pressure of at least 0,25 times the maximum allowable -Appliance shall be stored in a well ventilated area where the pressure. No leak shall be detected. room size corresponds to the room area as specifiec for opera- --Any servicing shall be performed only as recommended by the tion. manufacturer. -Joints shall be tested with detection equipment with a capability 3. Qualification of workers of 5 g/year of refrigerant or better,with the equipment in stand- Any maintenance,service and repair operations must be required still and under operation or under a pressure of at least these qualification of the working personnel. Every working procedure standstill or operation conditions after installation. Detachable that afects safety means shall only be carried out by competent joints shall NOT be used in the indoor side of the unit(brazed, persons that joined the training and achieved competence should welded joint could be used). be documented by a certificate.The training of these procedures - In cases that require mechanical ventilation,ventilation open- is carried out by national training organizations or manufacturers ings shall be kept clear of obstruction. that are accredited to teach the relevant national competency 2. When a FLAMMABLE REFRIGERANT is used,the requirements standards that may be set in legislation.All training shall follow for installation space of appliance and/or ventilation require- the ANNEX HH requirements of UL 60335-2-40 4th Edition. ments are determined according to Examples for such working procedures are: -the mass charge amount(M) used in the appliance, • breaking into the refrigerating circuit; -the installation location, • opening of sealed components; -the type of ventilation of the location or of the appliance. • opening of ventilated enclosures. -piping material, pipe routing, and installation shall include pro- tection from physical damage in operation and service,and be in compliance with national and local codes and standards,such as ASHRAE 15, IAPMO Uniform Mechanical Code, ICC International Mechanical Code, or CSA B52.All field joints shall be acces- sible for inspection prior to being covered or enclosed. -that protection devices, piping, and fittings shall be protected as far as possible against adverse environmental efects,for example, the danger of water collecting and freezing in relief pipes or the accumulation of dirt and debris; -that piping in refrigeration systems shall be so designed and installed to minimize the likelihood of hydraulic shock damaging the system; -that steel pipes and components shall be protected against cor- rosion with a rustproof coating before applying any insulation; -that precautions shall be taken to avoid excessive vibration or pulsation; -the minimum floor area of the room shall be mentioned in the form of a table or a single figure without reference to a formula; -after completion of field piping for split systems,the field pipe- work shall be pressure tested with an inert gas and then vacuum A Safety Precautions 3 2. Information servicing(For hot work.A degree of ventilation shall continue during the period that the work is carried out.The ventilation should flammable materials) safely disperse any released refrigerant and preferably expel it externally into the atmosphere. 2.1 Checks to the area 2.8 Checks to the refrigeration equipment • Prior to beginning work on systems containing flammable refrigerants, safety checks are necessary to ensure that the Where electrical components are being changed,they shall risk of ignition is minimized. For repair to the refrigerating be fit for the purpose and to the correct specification. At all system,the following precautions shall be complied with times the manufacturer's maintenance and service guidelines prior to conducting work on the system. shall be followed. If in doubt consult the manufacturer's technical department for assistance.The following 2.2 Work procedure checks shall be applied to installations using FLAMMABLE p REFRIGERANTS: • Work shall be undertaken under a controlled procedure so • the actual refrigerant charge is in accordance with the as to minimise the risk of a flammable gas or vapour being room size within which the refrigerant containing parts present while the work is being performed. are installed; • the ventilation machinery and outlets are operating 2.3 General work area adequately and are not obstructed; • if an indirect refrigerating circuit is being used,the • All maintenance staff and others working in the local area secondary circuits shall be checked for the presence of shall be instructed on the nature of work being carried out. refrigerant; Work in confined spaces shall be avoided. • marking to the equipment continues to be visible and legible, marking and signs that are illegible shall be 2.4 Checking for presence of refrigerant corrected; • The area shall be checked with an appropriate refrigerant • refrigeration pipe or components are installed in a detector prior to and during work,to ensure the technician position where they are unlikely to be exposed to any is aware of potentially flammable atmospheres. substance which may corrode refrigerant containing components, unless the components are constructed of • Ensure that the leak detection equipment being used is materials which are inherently resistant to being corroded suitable for use with flammable refrigerants, i.e. no sparking, or are suitably protected against being so corroded. adequately sealed or intrinsically safe. 2.5 Presence of fire extinguisher 2.9 Checks to electrical devices • Repair and maintenance to electrical components shall • If any hot work is to be conducted on the refrigeration include initial safety checks and component inspection equipment or any associated parts,appropriate fire procedures. If a fault exists that could compromise safety, extinguishing equipment shall be available to hand. Have then no electrical supply shall be connected to the circuit a dry powder or CO2 fire extinguisher adjacent to the until it is satisfactorily dealt with. If the fault cannot be charging area. corrected immediately but it is necessary to continue operation, an adequate temporary solution shall be used. 2.6 No ignition sources This shall be reported to the owner of the equipment so all parties are advised. • No person carrying out work in relation to a REFRIGERATING Initial safety checks shall include: SYSTEM which involves exposing any pipe work shall use any sources of ignition in such a manner that it may lead • that capacitors are discharged: this shall be done in a safe to the risk of fire or explosion. All possible ignition sources, manner to avoid possibility of sparking; including cigarette smoking,should be kept sufciently far • that there no live electrical components and wiring away from the site of installation, repairing, removing and are exposed while charging, recovering or purging the disposal, during which refrigerant can possibly be released to system; the surrounding space. Prior to work taking place,the area around the equipment is to be surveyed to make sure that • that there is continuity of earth bonding. there are no flammable hazards or ignition risks. • "No Smoking" signs shall be displayed. 2.10 Sealed electrical components shall be replaced 2.7 Ventilated area • Ensure that the area is in the open or that it is adequately 2.11 Intrinsically safe components must be ventilated before breaking into the system or conducting any replaced 4 Safety Precautions 4 ► 2.12 Cabling national codes. For appliances containing flammable refrigerants,the system shall be purged with oxygen- • Check that cabling will not be subject to wear, corrosion, free nitrogen to render the appliance safe for flammable excessive pressure,vibration,sharp edges or any other refrigerants.This process might need to be repeated several adverse environmental effects.The check shall also take times. Compressed air or oxygen shall not be used for into account the effects of aging or continual vibration from purging refrigerant systems. sources such as compressors or fans. For appliances containing flammable refrigerants, refrigerants purging shall be achieved by breaking the 2.13 Detection of flammable refrigerants vacuum in the system with oxygen-free nitrogen and continuing to fill until the working pressure is achieved,then • Under no circumstances shall potential sources of ignition be venting to atmosphere, and finally pulling down to a vacuum used in the searching for or detection of refrigerant leaks.A (optional for A2L).This process shall be repeated until no halide torch(or any other detector using a naked flame)shall refrigerant is within the system(optional for A2L).When the not be used. final oxygen-free nitrogen charge is used,the system shall • The following leak detection methods are deemed be vented down to atmospheric pressure to enable work to acceptable for refrigerant systems. Electronic leak detectors take place. may be used to detect refrigerant leaks but, in the case • The outlet for the vacuum pump shall not be close to any of FLAMMABLE REFRIGERANTS,the sensitivity may not be potential ignition sources, and ventilation shall be available. adequate, or may need re-calibration. (Detection equipment shall be calibrated in a refrigerant-free area.)Ensure that 2.15 Charging procedures the detector is not a potential source of ignition and is suitable for the refrigerant used. Leak detection equipment • In addition to conventional charging procedures,the shall be set at a percentage of the LFL of the refrigerant following requirements shall be followed: and shall be calibrated to the refrigerant employed, and the appropriate percentage of gas(25 % maximum) is the shall be undertaken with appropriate tools only(In confirmed. Leak detection fluids are also suitable for use case of uncertainty, please consult the manufacturer of with most refrigerants but the use of detergents containing the tools for use with flammable refrigerants) chlorine shall be avoided as the chlorine may react with the • Ensure that contamination of different refrigerants does refrigerant and corrode the copper pipe-work. not occur when using charging equipment. Hoses or lines NOTE Examples of leak detection fluids are shall be as short as possible to minimize the amount of refrigerant contained in them. -bubble method, • Cylinders shall be kept upright. -fluorescent method agents. • Ensure that the refrigeration system is earthed prior to • If a leak is suspected, all naked flames shall be removed/ charging the system with refrigerant. extinguished. • Label the system when charging is complete(if not • If a leakage of refrigerant is found which requires brazing, already). all of the refrigerant shall be recovered from the system,or • Extreme care shall be taken not to overfill the isolated(by means of shut of valves) in a part of the system refrigeration system. remote from the leak. See the following instructions of • Prior to recharging the system it shall be pressure tested removal of refrigerant. with OFN.The system shall be leak tested on completion of charging but prior to commissioning. A follow up 2.14 Removal and evacuation leak test shall be carried out prior to leaving the site. • When breaking into the refrigerant circuit to make repairs 2.16 Decommissioning or for any other purpose, conventional procedures shall be used. However, it is important that best practice is followed Before carrying out this procedure, it is essential that the since flammability is a consideration. technician is completely familiar with the equipment and all its • The following procedure shall be adhered to: detail. It is recommended good practice that all refrigerants are recovered safely. Prior to the task being carried out, an oil and • safely remove refrigerant following local and national refrigerant sample shall be taken in case analysis is required prior regulations; to re-use of recovered refrigerant. It is essential that electrical • evacuate; power is available before the task is commenced. • purge the circuit with inert gas(optional for A2L); • Become familiar with the equipment and its operation. • evacuate(optional for A2L); • Isolate system electrically. • continuously flush or purge with inert gas when using • Before attempting the procedure ensure that: flame to open circuit;and open the circuit; • mechanical handling equipment is available, if required, • The refrigerant charge shall be recovered into the correct for handling refrigerant cylinders; recovery cylinders if venting is not allowed by local and • all personal protective equipment is available and being A Safety Precautions 5 ► used correctly; • The recovered refrigerant shall be processed according • the recovery process is supervised at all times by a to local legislation in the correct recovery cylinder, and competent person; the relevant waste transfer note arranged. Do not mix • recovery equipment and cylinders conform to the refrigerants in recovery units and especially not in cylinders. appropriate standards. • If compressors or compressor oils are to be removed, ensure that they have been evacuated to an acceptable • Pump down refrigerant system, if possible. level to make certain that flammable refrigerant does not • If a vacuum is not possible, make a manifold so that remain within the lubricant.The compressor body shall not refrigerant can be removed from various parts of the system. be heated by an open flame or other ignition sources to • Make sure that cylinder is situated on the scales before accelerate this process.When oil is drained from a system, it recovery takes place. shall be carried out safely. • Start the recovery machine and operate in accordance with 2.19 Transportation, marking and storage manufacturer's instructions. • Do not overfill cylinders. (No more than 80 % volume liquid for units charge). 1. Transport of equipment containing flammable refrigerants • Do not exceed the maximum working pressure of the cylinder, even temporarily. Compliance with the transport regulations • When the cylinders have been filled correctly and the process 2. Marking of equipment using signs completed, make sure that the cylinders and the equipment are removed from site promptly and all isolation valves on Compliance with local regulations the equipment are closed off. 3. Disposal of equipment using flammable refrigerants • Recovered refrigerant shall not be charged into another Compliance with national regulations refrigeration system unless it has been cleaned and checked. 4. Storage of equipment/appliances 2.17 Labelling The storage of equipment should be in accordance with the • Equipment shall be labelled stating that it has been de- manufacturer's instructions. commissioned and emptied of refrigerant.The label shall be 5. Storage of packed(unsold)equipment dated and signed. For appliances containing FLAMMABLE REFRIGERANTS, ensure that there are labels on the Storage package protection should be constructed such that equipment stating the equipment contains FLAMMABLE mechanical damage to the equipment inside the package will REFRIGERANT. not cause a leak of the refrigerant charge.The maximum number of pieces of equipment permitted to be stored together will be 2.18 Recovery determined by local regulations. • When removing refrigerant from a system, either for servicing or decommissioning, • it is recommended good practice that all refrigerants are removed safely. • When transferring refrigerant into cylinders,ensure that only appropriate refrigerant recovery cylinders are employed. Ensure that the correct number of cylinders for holding the total system charge is available.All cylinders to be used are designated for the recovered refrigerant and labelled for that refrigerant(i. e. special cylinders for the recovery of refrigerant). Cylinders shall be complete with pressure- relief valve and associated shut-of valves in good working order. Empty recovery cylinders are evacuated and, if possible,cooled before recovery occurs. • The recovery equipment shall be in good working order with a set of instructions concerning the equipment that is at hand and shall be suitable for the recovery of the flammable refrigerant. If in doubt the manufacturer should be consulted. In addition, a set of calibrated weighing scales shall be available and in good working order. Hoses shall be complete with leak-free disconnect couplings and in good condition. 4 Safety Precautions 6 ► Model Reference Contents 1. Model Reference....................................................................................................2 2 External Appearance.............................................................................................3 1. Model Reference Outdoor Unit Model Capacity(Btu/h) Power Supply MOX330U-18CFN 10-M 18k MOX430-24C FN 10-M3 24k MOX430-30C FN 10-M3 30k 1 Ph, 208/230V-, 60Hz MOD30- 36CFN10-M3 36k MOX630-48CFN10-M3 48k MOE30U-60CFN10-M3X 60k 4 Model Reference 2 ► 2. External Appearance Outdoor Unit 18k 24k/30k 36k Model Reference 3 48k 60k Model Reference 4 Outdoor Contents 1. Dimensional Drawings..........................................................................................2 2. Installation location...............................................................................................9 3. Capacity Correction Factor for Height Difference.............................................10 4. Noise Criterion Curves.........................................................................................16 5. Refrigerant Cycle Diagrams ................................................................................20 1. Dimensional Drawings Please check the corresponding dimensional drawing according to the panel plate. Outdoor MOX33OU-18C FN 10-M X330 MOX430-24CFN 10-M3 X430 MOX430-30CFN 10-M3 X430 MOD30- 36CFN10-M3 D30 MOX630-48CFN 10-M3 X630 M0E30U-60CFN 10-M3X E30 4 Outdoor Unit 2 ► X230 Platform 30.87(784)W3 In 30.12(765) W 11.9(303(� 32.87(835) W1 17.8(452) A 0.7108) u m s® a 0 m m N N - �® B In o=m N 26(32) DETAIL A N�H SCALE 1:2 o m V F2 0 0 10w Outdoor Unit 3 X330 Platform Bolt pitch for O installation v m o 00 u loo cn o000oir m [13.9] 353 Drain u Handle [31.9] 811 [3.6] 90 L q u d [1 1.8] 300 refrigerant pipe joint o Ln co o� e L0.6] 16 m e ujj" u o Bolt pitch for N nstallation w 0 u [6.9] 176 Gas refrigerant �20.1� 511 pipe joint [31.7] 805 [2.7] 68 Service panel 11 �0.4] 10 DETAIL A 1 0 54r�L2.3] �0.2] SCALE LC)� 58 m O N LJ Q DETAIL B SCALE 1 = 5 B L12.7] 323 [34.7] 881 [6.8] 20 u Outdoor Unit 4 ► X430 Platform Bolt pitch for installation 9 o o m u B B o e BB AB N �12.7] 323 Drain hole u [4.4] 112 Liquid Handle [35.3] 897 refrigerant pipe joint [14] 356 Ld [0.7] 17 0 0 Q o LJ LJ _ Bolt pitch for m installation r> [10.4] 263 Gas refrigerant pipe joint L26.1] 663 Service panel L35] 890 L2.6] 66 DETAIL A [0.5] 12 SCALEIRft I =5 A R 0.2 6 �2.9] 74 N N e DETAIL 8 u SCALE 15 B �13.5� 342 [38.1] 969 [0.5] 12 0.9] 24 Outdoor Unit 5 D30 Platform ® 8olt pitch for in o� cn instal lotion o rn m o> u u u L18.3] 465 r1 Drain hole u L37.7] 957 L6] 153 Handle [14.2] 362 Liquid refrigerant pipe Loint ® Bolt pitch for LQ8] 21 installation m in o m o v 00 u u r1 N LJ L12.8] 325 ® Gas refrigerant pipe joint L26.5] 673 Service panel DETAIL A [37.4] 950 L3.4] 87 SCALE I =S e 0.2 6 0 m u _ 00 �09] 24 u [16.3] 414 [41.4] 1051 Outdoor Unit 6 X630 Platform Service 15-1/2(393) pane .-I [ Liquid 0 Handle Liqui ernnt 00 ppe on N � 0 r m � � 8 I o � M e W \ M W Gas refrigerant Bolt ch for J01nt ter' 38-9/16(980) 14-3/4(374) Instnllntio 16-5/16(415) 4-1/4(616) 42-1/4(1073) v 16-15/16(430) 0 M � � I n DETAIL B DETAIL A SCALE 1:2 SCALE 1:2 01/2(0 12) B 0 0 Bolt tda o v0 "0_ °0. In r stallation e o 1/2(1 ) • o� in o _ °J R1/4(R6) A 15-7/8(403) \ 3(76) M Outdoor Unit 7 ► E30 Platform bolt pitch for v installation v o 0 a m v m m r� u O u Liquid refrl erant 9 14.2 361 Drain hole pipe Loint u [37.2] 945 Gas refrigerant [14] 357 pipe joint Handle u v [9.6] 245 [2.1] 53 Service panel N ® Bolt pitch for '—' stallation 7 in m N V ro DETAIL A [25] 634 SCALE 1 =5 [37.2] 946 [3.3] 85 u [1] 24 R 0.2 6 A tth R0.5 12 �15.9� 403 [41.1] 1044 Outdoor Unit 8 ► 2. Installation location o�h�j 20in(500mm)or more when front r 00 and sides of the unit are clear gore �. 20in(500mm)or more when front or (7O and sides of the unit are clear �pre0/�j =�010�, p��NO e 01 of o 0 20in(500mm) 20in(500mm) Or more 14�n or more kin�3 when any 2 0r�(3S0� when any 2 n)pre OiN� sides of left,right sides of left,right and rear of the unit and rear of the unit are clear are clear Outdoor Unit 9 ► I Capacity Correction Factor for Height Difference Capacity 18k Pipe Length (m) Indoor Upper than Outdoor 24.6/7.5 32.8/10 65.6/20 98.4/30 65.6/20 0.941 0.919 Height difference 32.8/10 0.974 0.951 0.928 H (m) Cooling 16.4/5 0.995 0.983 0.960 0.937 0 1.000 0.988 0.965 0.942 Outdoor Upper than Indoor 24.6/7.5 32.8/10 65.6/20 98.4/30 0 1.000 0.988 0.965 0.942 Height difference 16.4/5 1.000 0.988 0.965 0.942 H (m) Cooling 32.8/10 0.988 0.965 0.942 65.6/20 0.965 0.942 4 Outdoor Unit 10 ► Capacity 24k Pipe Length (m) Indoor Upper than Outdoor 24.6/7.5 32.8/10 65.6/20 98.4/30 131.2/40 164/50 82.0/25 0.917 0.898 0.879 Height 65.6/20 0.946 0.926 0.907 0.887 difference Cooling 32.8/10 0.975 0.955 0.936 0.916 0.896 H (m) 16.4/5 1 0.995 1 0.985 1 0.965 1 0.945 1 0.925 1 0.905 0 1.000 0.990 0.970 0.950 0.930 0.910 Outdoor Upper than Indoor 24.6/7.5 32.8/10 65.6/20 98.4/30 131.2/40 164/50 0 1.000 0.990 0.970 0.950 0.930 0.910 Height 16.4/5 1.000 0.990 0.970 0.950 0.930 0.910 difference Cooling 32.8/10 0.990 0.970 0.950 0.930 0.910 H (m) 65.6/20 0.970 0.950 0.930 0.910 82.0/25 0.950 0.930 0.910 -4 Outdoor Unit 11 ► LCapacity 30k Pipe Length (m) Indoor Upper than Outdoor 24.6/7.5 32.8/10 65.6/20 98.4/30 131.2/40 164/50 82.0/25 0.891 0.862 0.832 Height 65.6/20 0.930 0.900 0.871 0.841 difference Cooling 32.8/10 0.970 0.940 0.910 0.879 0.849 H (m) 16.4/5 1 0.995 1 0.980 1 0.949 1 0.919 1 0.888 1 0.858 0 1.000 0.985 0.954 0.923 0.893 0.862 Outdoor Upper than Indoor 24.6/7.5 32.8/10 65.6/20 98.4/30 131.2/40 164/50 0 1.000 0.985 0.954 0.923 0.893 0.862 Height 16.4/5 1.000 0.985 0.954 0.923 0.893 0.862 difference Cooling 32.8/10 0.985 0.954 0.923 0.893 0.862 H (m) 65.6/20 0.954 0.923 0.893 0.862 82.0/25 0.923 0.893 0.862 4 Outdoor Unit U ► Capacity 36k Pipe Length (m) Indoor Upper than Outdoor W0.9951 82.0/25 1 14.8/35 164/50 213.3/65 246/75 98.4/300.889 0.851 0.812 0.787 Height 65.6/200.924 0.898 0.859 0.821 0.795 difference Cooling 32.8/10 0.933 0.907 0.868 0.829 0.803 H (m) 16.4/5 1 0.942 1 0.916 1 0.877 1 0.837 1 0.811 0 1.000 1 0.974 1 0.947 0.921 0.881 0.841 0.815 Outdoor Upper than Indoor 24.6/7.5 49.2/15 82.0/25 1 14.8/35 164/50 213.3/65 246/75 0 1.000 0.974 0.947 0.921 0.881 0.841 0.815 Height 16.4/5 1.000 0.974 0.947 0.921 0.881 0.841 0.815 difference Cooling 32.8/10 0.974 0.947 0.921 0.881 0.841 0.815 H (m) 65.6/20 0.947 0.921 0.881 0.841 0.815 98.4/30 0.921 0.881 0.841 0.815 Outdoor Unit 13 ► Capacity 48k Pipe Length (m) Indoor Upper than Outdoor R24.6/7.549.2/15 82.0/25 114.8/35 164/50 213.3/65 246/75 98.4/30 0.884 0.843 0.802 0.775 Height 65.6/20 0.920 0.893 0.852 0.811 0.783 difference Cooling 32.8/100.957 0.930 0.902 0.860 0.819 0.791 H (m) 16.4/5 0.995 1 0.967 1 0.939 1 0.911 1 0.869 1 0.827 1 0.799 0 1.000 1 0.972 1 0.944 0.916 0.873 0.831 0.803 Outdoor Upper than Indoor 24.6/7.5 49.2/15 82.0/25 1 14.8/35 164/50 213.3/65 246/75 0 1.000 0.972 0.944 0.916 0.873 0.831 0.803 Height 16.4/5 1.000 0.972 0.944 0.916 0.873 0.831 0.803 difference Cooling 32.8/10 0.972 0.944 0.916 0.873 0.831 0.803 H (m) 65.6/20 0.944 0.916 0.873 0.831 0.803 98.4/30 0.916 0.873 0.831 0.803 4 Outdoor Unit 14 ► Capacity 60k Pipe Length (m) Indoor Upper than Outdoor R24.6/7.549.2/15 82.0/25 114.8/35 164/50 213.3/65 246/75 98.4/30 0.870 0.823 0.775 0.743 Height 65.6/20 0.911 0.879 0.831 0.783 0.751 difference Cooling 32.8/100.953 0.920 0.888 0.839 0.791 0.758 H (m) 16.4/5 0.995 1 0.962 1 0.930 1 0.897 1 0.848 1 0.799 1 0.766 0 1.000 1 0.967 1 0.934 0.901 0.852 0.803 0.770 Outdoor Upper than Indoor 24.6/7.5 49.2/15 82.0/25 1 14.8/35 164/50 213.3/65 246/75 0 1.000 0.967 0.934 0.901 0.852 0.803 0.770 Height 16.4/5 1.000 0.967 0.934 0.901 0.852 0.803 0.770 difference Cooling 32.8/10 0.967 0.934 0.901 0.852 0.803 0.770 H (m) 65.6/20 0.934 0.901 0.852 0.803 0.770 98.4/30 0.901 0.852 0.803 0.770 Outdoor Unit 15 ► 4. Noise Criterion Curves Outdoor Unit Microphone H 1.0m/3.28ft Note: H= 0.5 x height of outdoor unit Notes: -Sound measured at 1.0m/3.25ft away from the center of the unit. -Data is valid at free field condition -Data is valid at nominal operation condition -Reference acoustic pressure OdB=20pPa -Sound level will vary depending on arrange off actors such as the construction (acoustic absorption coefficient)of particular room in which the equipment is installed. -The operating conditions are assumed to be standard. Outdoor Unit 16 MOX33OU-18CFN10-M MOX430-24CFN10-M3 80 80 f Cooling —Ar Cooling 170 NC-70 70 /6� NC-70 U 60 8 60 00 NC-60 0 Elm] 5p 50 NC-50 NC-50 r 40 40 NC-40 u NC-40 yd 30 d 30 5 NC-30 NC-30 20 �20 10 10 0 p F- 63 125 250 500 1000 2000 4000 8000 63 125 250 500 1000 2000 4000 8000 Band Center Frequency/Hz Band Center Frequency/Hz MOX430-30CFN10-M3 MOD30- 36CFN10-M3 80 80 — Cooling f Cooling 70 1 NC-70 (�70 NC-70 60 S 60 BH0 NC-60 0 Elm] Y 50 50 1pg NC-50 NC-50 40 40 NC-40 � NC-40 d 30in 130 NC-30 NC-30 a20 3 LID 10 10 0 0 63 125 250 500 1000 2000 4000 8000 63 125 250 500 1000 2000 4000 8000 Band Center Frequency/Hz Band Center Frequency/Hz Outdoor Unit 17 MOX630-48CFN10-M3 MOE30U-60CFN10-M3X 80 80 —*—Cooling —Cool ing 7 NC-70 70 NC-70 r160 �60 OOOp NC-60 0 NC-60 50 50 NC-50 NC-50 r40 140 NC-40 NC-40 30 y� In30 5 NC-30 � NC-30 20 �20 10 10 0 0 63 125 250 500 1000 2000 4000 8000 63 125 250 500 1000 2000 4000 8000 Band Center Frequency/Hz Band Center Frequency/Hz Outdoor Unit 18 5. Refrigerant Cycle Diagrams T4-Sensor(Outdoor) T3-Sensor (Outdoor) Liquid side Cooling T5-Sensor(Discharge) >< 3- ay Valve Outdoor Heat Exchanger TXV Pressure Switch Pressure Switch Cold Plate- Sensor T11-1 Cold Plate Sensor Suction-Sen (Insor (Indoor)(Optional) T2-Sensor Pressure sensor (Evaporator)(Optional) 0-4.6MPa Compressor Gas side F 3- ay Valve Pipe Size (Diameter-o) Piping length (ft/m) Elevation (ft/m) Model No. inch(mm) Additional Refrigerant Gas Liquid Rated Max. Rated Max. MOX33OU-18CFN10-M 19(3/4) 3/8(9.52) 24.6/7.5 98.4/30 0 65.6/20 0.7oz/ft(65g/m) MOX430-24CFN10-M3 19(3/4) 3/8(9.52) 24.6/7.5 164/50 0 82/25 0.7oz/ft(65g/m) MOX430-30CFN10-M3 19(3/4) 3/8(9.52) 24.6/7.5 164/50 0 82/25 0.7oz/ft(65g/m) Outdoor Unit 19 T4-Sensor(Outdoor) T3-Sensor (Outdoor) Liquid side Cooling T5-Sensor(D ischa rge) 3 ay Valve Outdoor Heat Exchanger Pressure Switch Pressure Switch Cold Plate- Sensor Cold Plate Suction-Sensor Pressure sensor 0-4.6 M Pa Compressor Accumulator Gas side 3 ay Valve Pipe Size (Diameter:o) Piping length (ft/m) Elevation (ft/m) Model No. inch(mm) Additional Refrigerant Gas Liquid Rated Max. Rated Max. MOD30- 36CFN10-M3 19(3/4) 3/8(9.52) 24.6/7.5 246/75 0 98.4/30 0.7oz/ft(65g/m) MOX630-48CFN10-M3 19(3/4) 3/8(9.52) 24.6/7.5 246/75 0 98.4/30 0.7oz/ft(65g/m) MOE30U-60CFN10-M3X 19(3/4) 3/8(9.52) 24.6/7.5 246/75 0 98.4/30 0.7oz/ft(65g/m) 4 Outdoor Unit 20 ► Outdoor unit wiring diagram MOX33OU-18CFN10-M -------------------------------------------------------------------------------------------------------------------------------------------------------------------- WIRING DIAGRAM HIGH PRESSURE 16022000043673 SWITCH PRESSURE Y/G Y/G BLACK(YELLOW) SENSOR 3 SUCTION CN18 1 CN8 TEMP. SENSOR; H PRO H_YL CN19 HQ CN14 FUN 4 4'SUB-1G S 24V BOARD CN6 ; CELLULAR;; EARTH N-I N L-I N S BLUE '------------- CN15 ON 'I CN1 A L2/N SW1 1 234 BROWN(RED) ON-OFF MAIN CONTROL BOARD CN17 CN2 SW3SW4 ❑o ❑o L1 L2 CN5 CRANKCASE CN16 R C Y HEATER y .... .............. ................... POWER SUPPLY:CN2 485 COMMUNICATION CN5 BLUE BLUE S2 S1 n RED C) Re ® ee IQ 7REDBLACK o TO INDOOR UNIT : ............................................................:................................................. CN7 MAIN CONTROL BOARD 24V COMMUNICATION Co m o CN2CN5 CN1A INPUT 230V AC DC-FAN e ® : Z N MOTOR CN17 OUTPUT 230V AC R C Y1 Y2 L y T3 �o TP C a CN50/CN7 OUTPUT 0-310V AC Z M = CN21 JOUTPUT 0-5V DC Cn o o r" TO 24V THERMOSTAT CDSW1OFF ON ................................................. Z n 1 NONE NONE CN16BOARD INPUT 230V AC o W 24V COMMUNICATION/ 24V Notes: 2 485 COMMUNICATION COMMUNICATION ONLY CN2 INPUT 0-24V AC STRONGER CAPACITY CN17/CN15/CN14 OUTPUT 230V AC This symbol indicates 3 NONE OUPUT (ONLor 24V CN18/CN19/CN5 OUTPUT 0-5V DC the element is optional, COMMUNICATION) CN4/CN6/CN8 OUTPUT 6 DC the actual shape shall 4 NONE NONE prevail. Outdoor unit wiring diagram MOX430-24CFN10-M3 MOX430-30CFN10-M3 --------------------------------------------------------------------------------------------------------------------------------------------------------------------- WIRING DIAGRAM 16022000043674 BLACK -------------------------------- SUB ----- ........... BLUE -11G BROWN :1 Notes:: ELLULAR ........... :This symbol indicates y Y/G 4 4 :the element is F optional, 4) 7CN14 [CN4 nCN6] :the actual shape SUCTION :shall prevail. TEMP. SENSOR BLACK Ll/L 1-2/N S HO CN12 LMG 24V BOARD ON Swi CN6 CN7 CN8 CN2 REFRIGERANT WHITE 1 2 34 TEMP. SENSOR ON-OFF SW3 SW4 CRANKCASE �—Fol PRESSURE 3 EERED --JM�H YL HEATER - CN2 —1-010, KSEMNSOOR � HIGH PRESSUREktH_PRO 0 CR) CN5-] F(DF MAIN CONTROL BOARD _+ (D SWITCH R C YJ 1-111-2 e S2S1 CN16 6ER _ (_D e BLUE BLUE CN27 RED CN28 RED —B—LA—C—K=CN29 BLACK CN17 CN414 0 0 0 00 0001 POWER SUPPLY BLACK -M-1 2'::' --1 C" C) M CD -------------------------------------- -I---------------------------- V W o DC-FAN 485 COMMUNICATION 24V COMMUNICATION COMPRESSOR M Cn x Cn CN2 : CN2 M M M M Cn T3 7 T4 W �M> T P CN5 4Y/G Cn n CN5 C� co C) FS—2 FS-11 Cn — 70 S2S1 M M M ff) ff) a) M: Cn --I M CD TO INDOOR UNIT: : 24V THERMOSTAT ---------------------I- ------------------------------ MAIN CONTROL BOARD 24V BOARD SW10FF ON CN2/CN7/CN8 INPUT 230V AC CN16 INPUT 230V AC 1 NONE NONE 24V CN16 OUTPUT 230V AC CN18/CN12/CN5 OUTPUT 0-5V DC COMMUNICATION 24V 2 COMMUNICATION CN17 OUTPUT 0 5V DC CN4/CN6/CN8 OUTPUT 0-5V DC /485 ONLY CN414 OUTPUT 0-310V AC COMMUNICATION CN27/CN28/CN291 OUTPUT 0-31 OV AC CN1 4/CN1 5/ STRONGER CAPACITY OUTPUT 230VAC 3 NONE OUTPUT (ONLY 24V CN17 COMMUNICATION) iJCN2 INPUT 0-24VAC 4 NONE NONE ---------------------------------------------------------------------------------------------------------------------------------------------------------------------- Outdoor unit wiring diagram MOD30- 36CFN10-M3 DC FAN H-PRO L-PRO T3 T4TP W BLACK MOTOR COMPRESSORV RED U BLUE 3 JY/G YELLOW RED YELLOW RED 3 6 BLACK CN29 RED w CN32 HIGH/LOW CN26 BLUE U DC FAN MOTOR PRESSURE SWITCH TEMP_SENSOR U/V/W OUTPUT:0-31OV AC OUTPUT:O-310V AC OUTPUT:0-5V DC OUTPUT:0-5V DC MAIN BOARD CRANKCASE HEATER RED CN4/CN11/CN12 C N 38 OUTPUT:230V AC INPUT:230V AC CN12 CN11 ICN4 L1 IN L2 IN S WHITE SUCTION BLACK TEMR SENSOR C N12 OUTPUT: ON-- BLUE REFRIGERANT WHITE SUCTION/REFRIGERANT 0-5V DC SW11234 TEMP.SENSOR TEMP.SENSOR (BLACK) ON-OFF PRESSURE 3 C N 8 OUTPUT: CN15/CN17/CN14 BROWN(RED) SENSOR PRESSURE SENSOR 0-5V DC INPUT:230V AC CN14 WHITE SUB_1G 4 CN4 OUTPT 5VUDC 24V BOARD CN15 BLUE(BLACK) vc CELLULAR 4 CN6 OUTPUT:0-5V DC C-N-1 7-1 BROWN(RED) Notes: L1 IN The symbol =_= indicates SW3SW4 0 0 the element I s opt i ona I,the „>L,(z)Lz o actual shape shall prevail. INPUT: ® ® ® ® ® OUTPUT: O 0 j T3 OUTDOOR COIL TEMP.SENSOR 0-24V AC 0-5V DC j T4 I OUTDOOR AMBIENT TEMP.SENSOR R C Y 1 Y2 L S2lS11 POWER SUPPLY TP COMP.DISCHARGE TEMP.SENSOR CN2 ® ® ® ® ® CN5®® 16022000043676 SW1 OFF ON CN2 -------485-------- 'CN2----------24V-------- 1 NONE NONE COMMUNICATION ;; COMMUNICATION, 24V COMMUNICATION/ ® ® ® ® ® C N 5 2 24V COMMUNICATION 24V COMMUNICATION ONLY �C�I S2rn�S1 STRONGER CAPACITY OUTPUT R C Y1 Y2 L V I R C Y1 Y2 L CN5 3 NONE (ONLY 24V COMMUNICATION) 4 NONE NONE ______ TO I NDOOR UNIT; TO 24V THERMOSTAT __ ______ Outdoor unit wiring diagram MOX630-48CFN10-M3 -------------------------------------------------------------------------------------------------------------------------------------------------------------------- Notes: T3 T4TP - DC FAN H-PRO L-PRO COMP TOP j 1.COMP. TOP OLP TEMP. SENSOR and EEV2 are MOTOR only for 36K hyper heat model. 3 2.The symbol indicates the element is optional,the actual shape shall prevail. YELLOW RED 3 YELLOW RED 6 , 2 ' I CN32 CN29 CN26 FCN30HIGH/LOWW BLACK w OU310V AC PRESSURE SWITCH TEMP_SENSOR i P TOP RED OUTPUT:O-5V DC OUTPUT:0-5V DC OUTPUT: OMPRESSORV BLUE V 0-5V DC U U JY(/G U/V/W OUTPUT:0-310V AC MAIN BOARD CN11/CN12 RED CN19/CN21/CN4 INPUT:230V AC C N 38 OUTPUT:230V AC OUTPUT:230V AC L1_IN L2-IN CRANKCASE HEATER CN19 CN21 TN4 CN12 CN11 L1 L2 BROWN(RED) BLUE(BLACK) WHITE BROWN BLUE CN15/CN17/CN14 C N17 (RED) (BLACK) SUCTION BLACK INPUT:230V AC L1_IN TEMP.SENSOR CN12 REFRIGERANT WHITE SUCTION/REFRIGERANT OUTPUT:O-5V DC C N15 TEMP.SENSOR TEMP.SENSOR L2 I N 24V BOARD CS14 PRESSURE SEN§dk 3 C N 8 PRESSURE SENSOR OUTPUT:O-5V DC �000 SUB-1G 4 CN4 OUTPUT:0-5V DC SW11234 Y/G _____----- ON-OFF CELLULAR 4 C N 6 OUTPUT:O-5V DC L__________' SW3SW4 ❑O ❑O O O L1 L2 O T3 OUTDOOR COIL TEMP.SENSOR INPUT: MY1 0000 OU5VUDC O O T4 OUTDOOR AMBIENT TEMR SENSOR 0-24V AC TP COMP.D I SCHARGE TEMP.SENSOR S2 S1 COMP m POWER SUPPLY TOP COMP.TOP OLP TEMP.SENSOR CN2 CN5 16022000043672 S1 NONE NONE OFF ON ®N® ® ® ® COMMUNICATION ® ® ® ® ® COMMUNICATION 24V COMMUNICATION/ C[N�5 S2mS1 2 485 COMMUNICATION 24V COMMUNICATION ONLY R C Y 1 Y2 L U I w R C Y 1 Y2 L C N 5 3 NONE STRONGER CAPACITY OUTPUT 4 NONE NONEY 24V COMMUNICATION) L- - -- - TO INDOOR ""' 'TO-24V-THERMOSTAT - - -- - Outdoor unit wiring diagram MOE30U-60CFN10-M3X ---------------------------------------------------------------------------------------------------------------------------------------------------------------------- WIRING DIAGRAM(OUTDOOR UNIT) PRESSURE SE 16022000043675 Y/G XT1 >- 3 OR 0 0 CN8 ' BLACK/(BLUE U) H_YL ' CN11 �_ w 24V BOARD 41---- CN12 RED/(BROWN)O J D a SW1 0 0 3 4 CN COMP TOP CN30 CN15 L2/N� ---� 2 WHITE/YELLOW ON-OFF CN 4iCELLULAR, CN4 CN17 L1/L CN21 BLUE/BLACK CN2 SW3 SW4 T4 CN26 BROWN/(RED) CN12 ® ®® ® ® ®5 T3 CN19 R Y1 2 S2S1 RED BLACK WHITE H-PRO CN29 SUCTION REFRIGERANT YELLOW MAIN CONTROL BOARD TEMP.SENSOR TEMP.SENSOR HQ LMG l ............................................ CN2 485 COMMUNICATION ® ® ® ® ® CN5 CN38 HEAT_Y ® ® ® ® ® TO INDOOR UNIT : Notes: i.......... ..............:::::..:::::::::..::::..:::. This symbol indicates the element :CN2 24V COMMUNICATION is optional,the actual shape shall U W prevail. CN10 CN5 V Y CN32 ® � ® ® ® wLu o g R Y1 Y2 CODE PART NAME ° m 3 3 :TO 24V THERMOSTAT COMP COMPRESSOR V ........................................... U W DCFAN1 OUTDOOR DC FAN DCFAN2 COMP DCFAN1 W1 OFF ON DCFAN2 - Y/G q1 HEAT_Y CRANKCASE HEATER 1 NONE NONE HIGH PRESSURE MAIN CONTROL BOARD 24V BOARD H-PRO 24V SWITCH CN11/CN12 INPUT230VAC CN17/CN15 INPUT230VAC COMMUNICATION/ COMMUNICATION LOW PRESSURE 2 485 L-PRO SWITCH CN19/CN21 OUTPUT 230V AC CN12/CN8/CN5 OUTPUT 0-5V DC COMMUNICATION ONLY TP COMP.DISCHARGE STRONGER CAPACITY TEMP.SENSOR CN4 INPUT 230V AC CN4/CN6 OUTPUT 0-5V DC 3 NONE OUTPUT(ONLY 24V T3 OUTDOOR COIL COMMUNICATION) TEMP.SENSOR CN38 OUTPUT 230VAC CN14 OUTPUT 230VAC T4 OUTDOOR AMBIENT CN26/CN29 JOUTPUT 0-5V DC CN2 INPUT 0-24V AC 4 NONE NONE TEMP.SENSOR /CN30 rMP TOP COMP.TOP OLP CN32/CN10 OUTPUT 0-31OV AC TEMP.SENSOR /UN/W Outdoor unit printed circuit board diagram: MOX33OU-1 8CFN 1 0-M CN50 CN6 CN31 CN7 CN21 CN17 CN60 O 70... CN7 ,.pry t. - CN17 CNwO CN15O DC-FANCN15 .iiniiniiniin 0 0 0 00 0 5 + < z z CN1A z z U + E1 L) cxt T401 I r L601 L1 i U O RY7 Description CN50 Port for compressor 0-310V/AC CN6 Port for test board 5V/DC CN31 Power output for electric expansion valve 12WDC CN7 Power output for DC fan 0-310V/AC CN21 Power output for condenser(T3), ambient 5V/DC (T4)and discharge (Tp)temperature sensors CN 17 Power output for compressor heater 230V/AC CN60 Power output for 4-way valve 230V/AC CN 15 Power output for chassis heater 230V/AC CN16 Port for communication cable S CN1A CN2 Port for live wire 230V/AC CN1 Port for neutral wire 230V/AC CN3 I Port for earth wire Note: This section is for reference only. Please take practicality as standard. Outdoor unit printed circuit board diagram: MOX430-24CFN 1 0-M3, MOX430-30CFN10-M3 CN23 CN414 CN18 CN17 CN16 CN19 CN5 CN60 O CM71 ®CN19 - CN5 �60 s WN N-IN Earth CN414 CN18 _ r o o DCrL—Z:� Iy All o + 0 u o CN23 0 cl _� �6 6 0 0 000eoa00000 ooeoao 0 Ti E1 +cN1a } E2 GD ® RV1 CN15 ID �+ L601 r_ L1 u DR22 DR21 C72 0 O O CN21 CN21 osot 5 0 O O O O D601 a 000 O O O o 9c E 1 O O O O -§ O O ooaooa0000 0 0 o Description Parameter CN23 Port for test board 5V/DC CN414 Port for DC fan 0-310V/AC CN18 Power output for electric expansion valve 12WDC CN17 Power output for condenser(T3), ambient(T4) and 5V/DC discharge(Tp)temperature sensors CN16 Power output for compressor heater 230V/AC CN 19 Power output for chassis heater 230V/AC CN5 Power output for AC fan 230V/AC CN60 Power output for 4-way valve 230V/AC CN21 Port for compressor 0-310V/AC Note:This section is for reference only. Please take practicality as standard. Outdoor unit printed circuit board diagram: MOD30- 36CFN10-M3, MOX630-48CFN10-M3, MOE30U-60CFN10-M3X CN7 CN14 CN74 CN3 CN53 CN29 CN20 CN31 CN• C73 CN22 CN17 CN44 CN2• CN49 CN9 CN27 CN45 C 43 CN11 CN12 ° La LaL)CaCaCaCaCaCa o .,�.. c. I-V — 12 cree� CN10 CN24 CN37 ����0000 E5 W L602 L603 CN25 I�p n CN38 Ga I I CN42 0 V L7 w v u w 101 101 101 CN32 W x ° ° CN1, CN13, CN141 CN22, Communication CN16, CN17, Power output for electric expansion 12V/DC CN43 ports to indoor CN3, CN44, valve unit(S for A-F) CN53 Port for Hi-pressure and low- Power input for CN29 pressure switches CN11,12 this PCB 240WAC Power output for condenser, Power output for CN26 ambient(T4) and discharge 5WDC CN24 chassis heater 240WAC temperature sensors CN28 Power output for evaporator(T2B) 5WDC CN37 Power output for 240V/AC temperature sensor of IDU A 4-way valve 1 CN30 Port for compressor top high CN25 Power output for 240WAC temperature protector 4-way valve 2 CN49/CN6 Port for Hi-pressure and low- 5WDC CN38 Power output for 240WAC pressure sensors compressor heater Power output for EVI temperature Power output for CN9 sensors (T5-T8) 5WDC CN42 4-way valve 3 240WAC CN27 Communication port with key UVW Output for 0-310V/AC board compressor CN45 Port for DR module (Test port) 5WDC CN32/CN10 Output for DC fan 0-200V/AC Note:This section is for reference only. Please take practicality as standard. Outdoor unit printed circuit board diagram: MOX330U-18CFN10-M, MOX430-24CFN10-M3, MOX430-30CFN10-M3, MOD30- 36CFN10-M3 MOX630-48CFN10-M3, MOE30U-60CFN10-M3X CN7 CN8 CN9 CN12 CN CN14 CN4 CN3 CN6 CN17 ® n CN15 O El s ® ® ® ® [��---_CN5 m m IrPort Description CN15 Power input of L2/N-IN 230V/AC CN17 Power input of L1-IN 230V/AC CN3 Power output for one-way solenoid valve 230V/AC CN14 Power input of communication cable S 230V/AC CN7 Port for test board 5V/DC CN8 Power output for pressure sensor 5V/DC CN9 Power output for EEV I 12WDC CN12 Power output for suction temp. sensor, 5V/DC refrigerant temp. sensor CN4 Power output for SUB-1 G 5V/DC CN6 Power output for CELLULAR 5V/DC CN5(S1+S2) Port for indoor unit communication 5V/DC Note:This section is for reference only. Please take practicality as standard. Installation Contents 1. Accessories 2. Location Selection 3. Outdoor Unit Installation 4. Refrigerant Pipe Installation 5. Vacuum Drying and Leakage Checking 6. Additional Refrigerant Charge 7. Engineering of Insulation 8. Engineering of Electrical Wiring 9. Test Operation 1. Accessories Name Shape Quantity Drain joint 1 L Seal 1 O � P 2. Location selection 2.1 Unit location selection can refer to 98 installation manual. �°�`' 2.2 DO NOT install the unit in the following NOTE locations: H: Unit height • Near an obstacle that will block air inlets and out- L: Height of the wall behind the unit lets. A: Distance between unit and wall • Near a public street, crowded areas, or where noise 2.5 If the unit is exposed to heavy wind: from the unit will disturb others.. • Near animals or plants that will be harmed by hot Install unit so that air outlet fan is at a 900 angle to air discharge. the direction of the wind. If needed, build a barrier • Near any source of combustible gas. in front of the unit to protect it from extremely heavy • In a location that is exposed to large amounts of winds. dust Strong wind • In a location exposed to a excessive amounts of salty air. 2.3 Meets all spatial requirements shown in Strong Installation Clearance Requirements below. wind 4(Wind Baffle g� 20in(500mm)or more when front or rjo and sides of the unit are clear �ore0��j Strong wind 0 2.6 If the unit is frequently exposed to heavy rain or snow: or more (5OOmm� when any 2 r4il?o3S07 �'� Build a shelter above the unit to protect it from the rain or sides of left,right �e snow. Be careful not to obstruct air flow around the unit. and rear of the unit are clear Shelter 2.4 Rows of series installation The relations between H, A and L are as follows. L A L< H L < 1/2H 9.8in (25cm) or more 2.7 If the unit is frequently exposed to salty 1/2H < L < H 1 1.8in (30cm) or more air (seaside): L > H Can not be installed Use outdoor unit that is specially designed to resist corrosion. 1. Accessories ► 3. Outdoor unit installation 3.1 Install drain joint(Heat pump unit only) Before bolting the outdoor unit in place, you must install the drain joint at the bottom of the unit. Note that there are two different types of drain joints depending on the type of outdoor unit. If the drain joint comes with a rubber seal(see Fig. A), do Platform unit D e the following: X3 inch 12.99 20.12 12.48 13.62 mm 330 511 317 346 1. Fit the rubber seal on the end of the drain joint that will inch 13.46 26.1 13.94 15.5 connect to the outdoor unit. x4 mm 342 663 1354 394 2. Insert the drain joint into the hole in the base pan of the inch 14.76 24.2 15.6 17.3 unit. x6 mm 375 615 397 440 3. Rotate the drain joint 90' until it clicks in place facing D30 inch 16.14 26.50 15.87 17.9 the front of the unit. For some panel plates,you need mm 410 673 403 455 to use tool. E30 inch 16.34 1 24.96 1 15.9 1 17.99 4. Connect a drain hose extension (not included)to the mm 415 634 404 457 drain joint to redirect water from the unit during heating mode. If the drain joint doesn't come with a rubber seal (see Fig. B ), do the following: 1. Insert the drain joint into the hole in the base pan of the unit. The drain joint will click in place. 2. Connect a drain hose extension (not included)to the drain joint to redirect water from the unit during heating mode. Base pan hole of outdoor unit Q-Seal l 17'. T--::m Seal _* ADrain joint (A) (B) 3.3 Anchor Outdoor Unit The outdoor unit can be anchored to the ground or to a wall-mounted bracket with bolt(M10). Prepare the installation base of the unit according to the dimensions below. The following is a list of diferent outdoor unit sizes and the distance between their mounting feet. 4. Outdoor unit installation 4. Refrigerant Pipe Installation 3.Measure the necessary pipe length. 4.Cut the selected pipe with pipe cutter 4.1 Maximum length and drop height . Make the section flat and smooth. Ensure that the length of the refrigerant pipe, the number VX X X of bends, and the drop height between the indoor and 90 : outdoor units meets the requirements shown in the Oblique Rough Warped following table. Max. Length Max. Elevation Capacity(Btu/h) 18k 98.4/30 65.6/20 24k/30k 164/50 82/25 36k/48k/60k 246/75 98.4/30 Caution: 5. Insulate the copper pipe • Before test operation, the joint parts should not be 1. The capacity test is based on the standard length and heat insulated. the maximum permissive length is based on the system 6. Flare the pipe reliability. . Insert a flare nut into the pipe before flaring the 2. Oil traps pipe -If oil flows back into the outdoor unit's compressor, this • According to the following table to flare the pipe. might cause liquid compression or deterioration of oil Pipe diameter Flare dimension A return. Oil traps in the rising gas piping can prevent this. Flare shape -An oil trap should be installed every 20ft(6m)of vertical (inch(mm)) Min Max suction line riser(<36kBtu/h unit). 03/8 (09.52) 0.52/13.2 0.53/13.5 904 4S� -An oil trap should be installed every 32.8ft(10m)of 05/8 (015.9) 0.76/19.2 0.78/19.7 r-'1 vertical suction line riser(>_36kBtu/h unit). Ro.a-o.8 03/4 (019) 0.91/23.2 0.93/23.7 • After flared the pipe, the opening part must be Indoorunit/ seal b end cover or adhesive tape to avoid duct or Outdoor unit y p Gas piping exogenous impurity come into the pipe. Oil trap 7. Drill holes if the pipes need to pass the wall. 8. According to the field condition to bend the pipes so that it can pass the wall smoothly. 9. Bind and wrap the wire together with the insulated pipe if necessary. 6m/20ft(<36000Btu/hunit) 10. Set the wall conduit 10m/32.8ft(>_360006tu/h unit) Indoorunit/ Liquid piping 11. Set the supporter for the pipe. Outdoor unit 12. Locate the pipe and fix it by supporter 6m/20ft(<36000Btu/hunit) • For horizontal refrigerant pipe, the distance be- 10m/32.8ft(>_360006tu/h unit) tween supporters should not be exceed 1 m. 4.2 The procedure of connecting pipes 1.Choose the pipe size according to the specification table. 2.Confirm the cross way of the pipes. 4 4. Refrigerant Pipe Installation ► • For vertical refrigerant pipe, the distance between 5. Vacuum Drying and Leakage supporters should not be exceed 1.5m. 13. Connect the pipe to indoor unit and outdoor unit by Checking using two spanners. 5.1 Purpose of vacuum drying • Be sure to use two spanners and proper torque to Eliminating moisture in system to prevent the phe- fasten the nut, too large torque will damage the bell nomena of ice-blockage and copper oxidation. mouthing, and too small torque may cause leakage. Refer the following table for different pipe connec- Ice-blockage shall cause abnormal operation of tion. system, while copper oxide shall damage Pipe diameter Torque compressor. Sketch map Eliminating the non-condensable gas(air) in system (inch(mm)) N.m(Ib.ft) to prevent the components oxidizing, pressure fluc- 03/8 (09.52) 32-39 tuation and bad heat exchange during the operation 23.6-28.8 r of system. 05/8 (015.9) 57-71 5.2 Selection of vacuum um 42-52.4 pump 67-101 The ultimate vacuum degree of vacuum pump shall fZ13/4(Q119) (49.4-74.5) be -756mmHg or above. • Precision of vacuum pump shall reach 0.02mmHg or above. 5.3 Operation procedure for vacuum drying Due to different construction environment, two kinds of vacuum drying ways could be chosen, namely ordinary vacuum drying and special vacuum drying. 5.3.1 Ordinary vacuum drying 1. When conduct first vacuum drying, connect pressure gauge to the infusing mouth of gas pipe and liquid pipe, and keep vacuum pump running for 1 hour(vacuum degree of vacuum pump shall be reached -755mmHg). 2. If the vacuum degree of vacuum pump could not reach -755mmHg after 1 hour of drying, it indicates that there is moisture or leakage in pipeline system and need to go on with drying for half an hour. 3. If the vacuum degree of vacuum pump still could not reach -755mmHg after 1.5 hours of drying, check whether there is leakage source. 4 . Leakage test: After the vacuum degree reaches -755mmHg, stop vacuum drying and keep the pressure for 1 hour. If the indicator of vacuum gauge does not go up, it is qualified. If going up, it indicates that there is moisture or leak source. 5.3.2 Special vacuum drying The special vacuum drying method shall be adopted when: 1. Finding moisture during flushing refrigerant pipe. 2. Conducting construction on rainy day, because rain water might penetrated into pipeline. 3. Construction period is long, and rain water might penetrated into pipeline. 4 4. Refrigerant Pipe Installation ► 4. Rain water might penetrate into pipeline during 6. Additional Refrigerant Charge construction. • After the vacuum drying process is carried out, the additional refrigerant charge process need to be Procedures of special vacuum drying are as follows: performed. • The outdoor unit is factory charged with refrigerant. 1. Vacuum drying for 1 hour. The additional refrigerant charge volume is decided 2. Vacuum damage, filling nitrogen to reach 0.5Kgf/cm2 . by the diameter and length of the liquid pipe be- tween indoor and outdoor unit. Refer the following Because nitrogen is dry gas, vacuum damage could formula to calculate the charge volume. achieve the effect of vacuum drying, but this method Diameter of could not achieve drying thoroughly when there is too liquid pipe Formula much moisture. Therefore, special attention shall be drawn to prevent the entering of water and the formation of 01/4(06.35) V=standard lg/m)x(L- condensate water. R454B standard pipe length) 03/8 (09.52) V=0.7(65)oz/ft(g/m)x(L- 3. Vacuum drying again for half an hour. standard pipe length) If the pressure reached -755mmHg, start to pressure V: Additional refrigerant charge volume. leakage test. If it cannot reached the value, repeat vacuum L: The length of the liquid pipe. damage and vacuum drying again for 1 hour. Note: 4. Leakage test: After the vacuum degree reaches Refrigerant may only be charged after performed -755mmHg, stop vacuum drying and keep the pressure for the vacuum drying process. 1 hour. If the indicator of vacuum gauge does not go up, . Always use gloves and glasses to protect your hands it is qualified. If going up, it indicates that there is moisture and eyes during the charge work. or leak source. • Use electronic scale or fluid infusion apparatus to weight refrigerant to be recharged. Be sure to avoid extra refrigerant charged, it may cause liquid ham- mer of the compressor or protections. • Use supplementing flexible pipe to connect refriger- ant cylinder, pressure gauge and outdoor unit. And The refrigerant should be charged in liquid state. Before recharging, The air in the flexible pipe and manifold gauge should be exhausted. • After finished refrigerant recharge process, check whether there is refrigerant leakage at the connec- tion joint part.(Using gas leakage detector or soap water to detect). A 5.Vacuum Drying and Leakage Checking ► 7 . Engineering of Insulation 8. Engineering of Electrical Wring 7.1 Insulation of refrigerant pipe 1. Highlights of electrical wiring installation 1. Operational procedure of refrigerant pipe • All wiring must comply with local and national insulation electrical codes, regulations and must be installed by a Cut the suitable pipe — insulation (except joint section) licensed electrician. flare the pipe — piping layout and connection vacuum • All electrical connections must be made according drying insulate the joint parts to the Electrical Connection Diagramlocated on the 2. Purpose of refrigerant pipe insulation panels of the indoor and outdoor units. • During operation, temperature of gas pipe and • If there is a serious safety issue with the power supply, liquid pipe shall be over-heating or over-cooling stop work immediately. Explain your reasoning to the extremely. Therefore, it is necessary to carry out in- client, and refuse to install the unit until the safety sulation; otherwise it shall debase the performance issue is properly resolved. of unit and burn compressor. • Power voltage should be within 90-110% of • Gas pipe temperature is very low during cooling. rated voltage. Insufcient power supply can cause If insulation is not enough, it shall form dew and malfunction, electrical shock, or fire. cause leakage. • Installation of an external surge suppressor at the • Temperature of gas pipe is very high (generally outdoor disconnect is recommended. 50-1 00 C) during heating. Insulation work must be carried out to prevent hurt by carelessness touching. • If connecting power to fixed wiring, a switch or circuit breaker that disconnects all poles and has 3. Insulation material selection for refrigerant pipe a contact separation of at least 1/8in (3mm) must • The burning performance should over 1201C be incorporated in the fixed wiring. The qualified • According to the local law to choose insulation technician must use an approved circuit breaker or materials switch. • The thickness of insulation layer shall be above • Only connect the unit to an individual branch circuit. 10mm.lf in hot or wet environment place, the layer Do not connect another appliance to that outlet. of insulation should be thicker accordingly. • Make sure to properly ground the air conditioner. 4. Installation highlights of insulation construction • Every wire must be firmly connected. Loose wiring can • Gas pipe and liquid pipe shall be insulated sepa- cause the terminal to overheat, resulting in product rately, if the gas pipe and liquid pipe were insulated malfunction and possible fire. together; it will decrease the performance of air conditioner. • Do not let wires touch or rest against refrigerant Liquid pipe Insulation material Gas pipe tubing, the compressor, or any moving parts within the unit. • If the unit has an auxiliary electric heater, it must be installed at least 40in (1 m)away from any combustible materials. • To avoid getting an electric shock, never touch the electrical components soon after the power supply has been turned off. After turning of the power, always wait 10 minutes or more before you touch the • The insulation material at the joint pipe shall be electrical components. 5-10cm longer than the gap of the insulation mate- . Make sure that you do not cross your electrical wiring rial. with your signal wiring. • The insulation material at the joint pipe shall be inserted into the gap of the insulation material. • This may cause distortion, interference or possibly • The insulation material at the joint pipe shall be damage to circuit boards. banded to the gap pipe and liquid pipe tightly. • No other equipment should be connected to the same • The linking part should be use glue to paste to- power circuit. gether • Connect the outdoor wires before connecting the • Be sure not bind the insulation material over-tight, it indoor wires. may extrude out the air in the material to cause bad insulation and cause easy aging of the material. A 8. Engineering of Electrical Wring ► Table: Minimum Cross-Sectional Area able of Power and Signal Cables 9. Test Operation Rated Current of 1. The test operation must be carried Appliance (A) AWE out after the entire installation has been <_ 6 18 completed. 6 - 10 16 2. Please confirm the following points 10 - 16 14 before the test operation. 16 - 25 12 • The indoor unit and outdoor unit are installed prop- 25 - 32 10 erly. • Piping and wiring are properly connected. 2. Outdoor Unit Wiring 0 Ensure that there are no obstacles near the inlet and WARNING: outlet of the unit that might cause poor perfor- mance or product malfunction. Before performing any electrical or wiring work, turn off 0 The refrigeration system does not leak. the main power to the system. • The drainage system is unimpeded and draining to a safe location. 1. Prepare the cable for connection • The heating insulation is properly installed. a. You must first choose the right cable size. • The grounding wires are properly connected • The length of the piping and the added refrigerant Choose the cable type according to the local electrical stow capacity have been recorded. codes and regulations. 0 Power voltage is the correct voltage for the air con- b. The size of the power supply cable, signal cable, fuse, ditioner. and switch needed is determined by the Minimum Circuit CAUTION: Failure to perform the test run may result in unit Ampacity of the unit. The Minimum Circuit Ampacity is damage, property damage or personal injury. indicated on the nameplate located on the side panel of the unit. Refer to this nameplate to choose the right cable, 3. Test Run Instructions fuse,or switch. 1. Open both the liquid and gas stop valves. c. Using wire strippers, strip the rubber jacketfrom both 2. Turn on the main power switch and allow the unit to ends of the signal cable to reveal approximately 5.9in (150mm)of wire. warm up. d.Strip the insulation from the ends. 3. Set the air conditioner to COOL mode, and check the following points. e. Using a wire crimper, crimp u-lugs on the ends. Indoor unit NOTE: When connecting the wires, strictly follow the 0 Double check to see if the room temperature is be- wiring diagram found inside the electrical box cover. ing registered correctly. 2. Remove the 2 screws fixed the front right panel, then Ensure the manual buttons on the indoor unit works take it down to perform wire connection. (for double fan properly. • Check to see that the drainage system is unimpeded outdoor units) and draining smoothly. Unscrew the big handle and remove it.(for single fan 0 Ensure there is no vibration or abnormal noise dur- outdoor units) ing operation. 3.Connect the u-lugs to the terminals Match the wire Outdoor unit colors/labels with the labels on the terminal block. Firmly 0 Check to see if the refrigeration system is leaking. screw the u-lug of each wire to its corresponding terminal. 0 Make sure there is no vibration or abnormal noise 4.Clamp down the cable with the cable clamp. during operation. Ensure the wind, noise, and water generated by the 5.lnsulate unused wires with electrical tape. unit do not disturb your neighbors or pose a safety hazard. Keep them away from any electrical or metal parts. 6.Reinstall the cover of the electric control box. 4 8. Engineering of Electrical Wring ► 4. Drainage Test a. Ensure the drainpipe flows smoothly. New buildings should perform this test before finishing the ceiling. b. Turn on the main power switch and run the air conditioner in COOL mode. c. Check to see that the water is discharged. It may take up to one minute before the unit begins to drain depending on the drainpipe. d. Make sure that there are no leaks in any of the piping. e. Stop the air conditioner. Turn off the main power switch and reinstall the test cover. 4 9. Test Operation ► Basic Functions Contents 1. Basic Functions.............................................................................................. 2 1 .1 Abbreviation ............................................................................................................. 2 1 .2 Fan Mode ................................................................................................................. 2 1 .3 Cooling Mode........................................................................................................... 2 1 .4 Heating Mode(Heat Pump Units)............................................................................... 2 1. Basic Functions frequency. • When compressor running frequency is equal to 1.1 Abbreviation test frequency, outdoor ambient temperature(T4) is more than 15°C/59 OF or outdoor ambient Unit element abbreviations sensor(T4)fault. • Change setting temperature. Ab Element • Turning on/off turbo or sleep function T1 Indoor room temperature • Various frequency limit shutdown occurs. T2 Coil temperature of evaporator 1.3.2 Outdoor Fan Control T3 Coil temperature of condenser • The outdoor unit will be run at different fan speed T4 Outdoor ambient temperature according to outdoor ambient temperature(T4) and TP Compressor discharge temperature compressor frequency. • For different outdoor units, the fan speeds are Tsc Adjusted setting temperature different. TCDE1 Exit defrost temperature1 1.3.3 Condenser Temperature Protection TCDE2 Exit defrost temperature2 (maintain T3 for a period of time Off TIMING_ TP4 Decrease DEFROST—TIME— Enter defrost time TP3 ADD TP3-1 — — — � (T4<53) E E_TI M E_ DEFROST7_ Enter enhanced defrost time TP3 2 — — — (53<T4<54) STRONG TP3-3 — — — — -(54<T4<55) TCDE1 ADD TP3-4_ Exit enhanced defrost temperature1 TP2 Hold _ — -(55<T4) STRONG TP2-1 Increase TCDE2_ADD_ Exit enhanced defrost temperature2 TP1 STRONG (maintain for a period of time) TP1-1 Resume In this manual, such as TCDE1, TCDE2, TIMING—DEFROST— TIME—ADD...etc., they are well-setting parameter of When the condenser temperature exceeds a configured EEPROM. value, the compressor ceases operation. 1.2 Fan Mode 1.4 Heating Mode(Heat Pump Units) When fan mode is activated: 1.4.1 Compressor Control • The outdoor fan and compressor are stopped. 1) Reach the configured temperature 1.3 Cooling Mode • If the following conditions are satisfied, the compressor ceases operation. 1.3.1 Compressor Control • Calculated frequency(fb) is less than OHz. 1) Reach the configured temperature: • Reach temperature stop protective time is more • If the following conditions are satisfied, the than 10 minutes. compressor ceases operation. • T1 is higher than or equal to Tsc+ 0.50C/1 OF. • Calculated frequency(fb) is less than OHz. • If one of the following conditions is satisfied, not • Reach temperature stop protective time is more judge protective time. than 10 minutes. • Compressor running frequency is more than test • Indoor room temperature(T1) is lower than or equal frequency. to(Tsc-0.5°C/1 OF) • Compressor running frequency is equal to test 2) If one of the following conditions is satisfied, not judge frequency, outdoor ambient temperature(T4) is more than 15 C(59 F) or Outdoor ambient protective time. sensor(T4)fault. • Compressor running frequency is more than test . Change setting temperature. ♦ Product Features 2 ► • Turning on/off turbo or sleep function TCDE2+4°C/7°F for 80 seconds. 2) When the current is higher than the predefined safe • Unit runs for 15 minutes consecutively in defrosting value, surge protection is activated, causing the mode. compressor to cease operations. 1.4.2 Outdoor Fan Control: Enhanced defrosting parameter selection entrance: • The outdoor unit will be run at different fan speed 1. 24V ODU: Determined by the SW1-4 DIP on the 24V according to outdoor ambient temperature(T4)and transfer board, the DIP code selection OFF uses the compressor frequency. default defrosting parameter, and the DIP code selects • For different outdoor units, the fan speeds are ON to adjust the following defrosting parameter different. values. 1.4.3 Defrosting mode 2. AHU: Enter the engineering mode, select the 27th channel, and set the enhanced defrost. • The unit enters defrosting mode according to the temperature value of condenser temperature(T3) Once you choose enhanced defrosting: and outdoor ambient temperature(T4) as well as the Defrost exit temperature 1: Replace TCDE1 with TCDE1_ compressor running time. ADD—STRONG • In defrosting mode, the compressor continues to run, the indoor and outdoor motor will cease operation, Defrost exit temperature 2: Replace TCDE2 with TCDE2_ the defrost light of the indoor unit will turn on, and ADD—STRONG the " I1_" symbol is displayed. do Defrosting enter condition 7: Compressor Cumulative • If any one of the following conditions is satisfied, Running Time: Replace EE_TIME_DEFROST7_ADD with defrosting ends and the machine switches to normal EE—TIME DEFROST? STRONG. heating mode: — — • Condenser temperature(T3) rises above TCDE1. • Condenser temperature(T3) maintained above TCDE2 for 80 seconds. • Unit runs for 15 minutes consecutively in defrosting mode. • If Outdoor ambient temperature(T4) is lower than or equal to-220C/-8 OF and compressor running time is more than TIMING—DEFROST—TIME, if any one of the following conditions is satisfied, defrosting ends and the machine switches to normal heating mode: • Unit runs for 10 minutes consecutively in defrosting mode. • Condenser temperature(T3) rises above 10°C/50°F. • If any one of the following conditions is satisfied, the unit enters defrosting mode • If condenser temperature(T3) or outdoor ambient temperature(T4) is lower than -3'C/-27°F for 30 seconds,Ts-T1 is lower than 50C/90F and compressor running time is more than EE_TIME_DEFROST7_ ADD. • If condenser temperature(T3) or outdoor ambient temperature(T4) is lower than -3°C/-27°F for 30 seconds and compressor running time is more than EE TIME DEFROST? ADD+30 minutes. • If any one of the following conditions is satisfied, defrosting ends and the machine switches to normal heating mode: • Condenser temperature(T3) rises above TC D E 1+40C/7°F. • Condenser temperature(T3) maintained above 4 Product Features 3 Troubleshooting Contents 1. Safety Caution ............................................................................................. 3 2. General Troubleshooting.............................................................................. 4 2.1 Error Display(For models with auxiliary boards) .......................................................... 4 3. Outdoor Unit Point Check Function ........................................................... 6 4. Quick Maintenance by Error Code............................................................... 8 5. Troubleshooting by Error Code.................................................................... 10 5.1 EC51 (ODU EEPROM parameter error diagnosis and solution) .................................. 10 5.2 EL01(IDU & ODU communication error diagnosis and solution) ................................. 11 5.3 EC07 (ODU fan speed out of control) Diagnosis and Solution.................................... 12 5.4 EC52/EC53/EC54/EC57 (Open circuit or short circuit of temperature sensor diagnosis and solution) .................................................................................................................. 14 5.5 PC08(Current overload protection)/PC42(Compressor start failure of outdoor unit)/ PC44(ODU zero speed protection)/PC46(Compressor speed has been out of control)/ PC49(Compressor overcurrent failure)....................................................................... 15 5.6 PC00(IPM malfunction diagnosis and solution).......................................................... 17 5.7 PC 10(ODU low AC voltage protection)/PC 11(ODU main control board DC bus high voltage protection)/PC 12(ODU main control board DC bus low voltage protection /341 MCE error) Diagnosis and Solution........................................................................... 19 5.8 PC40(Communication error between ODU main chip and compressor driven chip diagnosis and solution) ............................................................................................ 21 5.9 PCOF(PFC module protection diagnosis and solution) ............................................... 22 5.10 PC06(Discharge temperature protection of compressor diagnosis and solution) ........ 23 5.11 PCOA(High temperature protection of condenser diagnosis and solution) ................. 24 Troubleshooting Contents 5.12 PCO2/LC06 (Compressor top(or IPM) temp. protection/Refrigerant sensor error diagnosis and solution) ................................................................................................................... 25 5.13 PC30 (System high pressure protection diagnosis and solution) ................................. 27 5.14 PC31 (System low pressure protection diagnosis and solution) .................................. 29 5.15 PC43 (ODU compressor lack phase protection diagnosis and solution)....................... 31 5.16 PC45 (ODU IR chip drive failure diagnosis and solution)............................................. 32 5.17 PC41(Outdoor compressor current sampling circuit failure diagnosis and solution) .... 32 5.18 EC55(ODU IPM module temperature sensor malfunction diagnosis and solution) ...... 33 5.19 PH90(High temperature protection of evaporator diagnosis and solution).................. 34 5.20 PH91(Low temperature protection of evaporator diagnosis and solution) .................. 35 5.21 ECSC(High pressure sensor is in open circuit or has short circuited) diagnosis and solution 35 5.22 EL16(Communication malfunction between adapter board and outdoor main board diagnosis andsolution)............................................................................................................. 36 6. Check Procedures 1. Safety Caution Isure to turn off all power supplies or disconnect all wires to avoid electric shock. hile checking indoor/outdoor PCB, please equip oneself with antistatic gloves or wrist strap to avoid damage to the board. WARNING �iliiiiiiiiiiiM Electricity remains in capacitors even when the power supply is off. Ensure the capacitors are fully discharged before troubleshooting. NOTE: If using the inverter test tool maintenance, remove the big handle and connect the inverter test tool to TESTPORT(CN7). N] O L—j00 o °00 �,_, 000o ❑0 00 Do °o°o 0 0 Note: This picture is for reference only. Actual appearance may vary. 4 Troubleshooting 3 ► 2. General Troubleshooting 2.1 Error Display(For models with auxiliary boards) Display Malfunction or Protection Solution dF Defrosting Normal Display, not Fit- Forced cooling error code ECOI ODU fan speed out of control TS12 ECS; ODU EEPROM parameter error TS10 Ek-S2 ODU coil temp. sensor(T3) error TS14 EC53 ODU ambient temp. sensor(T4) error TS14 ECS4 COMP. discharge temp. sensor(TP) error TS14 ECSS ODU IPM module temperature sensor malfunction TS33 EIS; Refrigerant temperature sensor error TS14 ECSFL Pressure sensor failure TS35 ELui IDU & ODU communication error TS1 1 EL16 Communication malfunction between adapter board and ODU main board TS36 P�00 IPM module protection TS17 P IL-02 Compressor top(or IPM)temp. protection/Refrigerant sensor error TS25 PC06 Discharge temperature protection of compressor TS23 PCOR Outdoor overcurrent protection TS15 POOR High temperature protection of condenser TS24 PCOF PFC module protection TS22 PI- -0 ODU low AC voltage protection TS19 PC.. ODU main control board DC bus high voltage protection TS19 P102 ODU main control board DC bus low voltage protection/341 MCE error TS19 PC30 System high pressure protection TS27 P IL-3; System low pressure protection TS29 P- U Communication error between ODU main chip and compressor driven chip TS21 PC4: Compressor current sampling failure TS32 P.1--42 Compressor start failure of outdoor unit TS15 P-43 ODU compressor lack phase protection TS31 A Troubleshooting 4 ► p U.-, ODU zero speed protection TS15 r S ODU IR chip drive failure TS32 r,=-r Compressor speed has been out of control TS15 ?,_-,9 Compressor overcurrent failure TS15 ' �_�C0o High temperature protection of Inverter module (IPM) TS26 ,j,_ PH9-,3 High temperature protection of evaporator TS34 PH^i Low temperature protection of evaporator TS35 4 Troubleshooting 5 ► 3. Outdoor Unit Point Check Function •A check switch is included on the adapter board. • Push SW4 to check the unit's status while running. The digital display shows the following codes each time the SW4 is pushed. Number of Display Remark Presses AMMMMJ Displays running frequency, running state, or malfunction code Defrosting mode: "dF" or alternative displays between running 00 Normal display frequency and 'W" (ach appears for 0.5s.) Forced cooling mode: the LED displays "FC" or alternative displays between running frequency and "FC" each appears for 0.5s . Actual data*HP*10 If capacity demand code is higher than 99, light the decimal point Indoor unit capacity demand of the high digit tube. (For example, the digital display tube show 01 code "5.0",so 5.0 multipled by 10 to become 50, then added to 100 to become 150, so actual capacity demand=1 50/1 0=1 5. the digital display tube show "60",so actual capacity demand=60/10=6.0) GA al orithm models display "-- 02 The frequency after the If the value is higher than 99, light the decimal point of the high digit capacity requirement adapter tube. If the temp. is lower than 0°C, the digital display tube will show "0". 03 Room temperature(T1) If the temp. is higher than 70°C, the digital display tube will show "70„ 04 Indoor unit evaporator If the temp. is lower than -9°C, the digital display tube will show tem erature T2 "-9".If the temp. is higher than 70°C, the digital display tube will 05 Condenser pipe tem . T3 show "70". If the indoor unit is not connected, the digital display 06 Outdoor ambient tem .(T4) tube will show: "--" The display value is between 0-1990C. If the temp. is lower than Compressor discharge temp. 0°C, the digital display tube will show "O".If the temp. is higher than 07 (TP) 990C,light the decimal point of the high digit tube. (For example, the digital display tube show "0.5",so 0.5 multipled by 10 to become 5, then added to 100 to become 105°C. 08 AD value of current The display value is a hex number. 09 AD value of voltage For example, the digital display tube shows "Cd", so C 16 +d 16o=12 16+13=205 it means AD value is 205. 10 Indoor unit running mode code Standb :O,Coolin9:1, Heatin9:2, Fan only 3, Dr ing:4, Forced 11 Outdoor unit running mode cooling:6, Defrost:7; ECO:9; Forced defrosting:A; Self clean:B code Actual data/4. If the value is higher than 99, light the decimal point of the high 12 EXV open angle digit tube. For example, the digital display tube show "2.0",so 2.0 multipled by 10 to become 20, then added to 100 to become 120,it means the EXV open angle is 120x4=480 . 4 Troubleshooting 6 ► Bit7 Frequency limit caused by The display value is a hex IGBT radiator number. For example, the Bit6 Reserved digital display show 2A, Bits Reserved the corresponding binary is Bit4 Frequency limit caused by low 101010, so Bit5=1, Bit3=1, temperature of T2. LH00 and Bit1=1. 13 Frequency limit symbol Bit3 Frequency limit caused by This means that a frequency T3. LC01 limit may be caused by T3 or Bit2 Frequency limit caused by the current. TP. LCO2 Bit1 Frequency limit caused by current LC03 BitO Frequency limit caused by voltage LC05 If it is higher than 99, light the decimal point of the high digit tube. 14 Outdoor unit fan speed (For example, the digital display tube show "2.0", so 2.0 multipled by 10 to become 20, then added to 100 to become 120. This value is multiplied by 8 and it is the current fanspeed: 120*8=960 The average value of the temperature values detected The displayed value is the actual value plus 60 (that is, when the 15 by the high and low pressure displayed value is 10, the actual value is-50). When the displayed sensors in the last 10 seconds value is higher than 99, light the decimal point of the high digit tube. of the compressor frequency (if it displays 2.0, so 2.0 multipled by 10 to become 20, then added calculation period to 100 to become 120,the actual value is 60) The temperature value 16 detected by the high and low When there is no pressure sensor, it is displayed as-- pressure sensor The display value is a hex number. 17 AD value detected by the high For example, the digital display tube shows "Cd", so and low pressure sensor C*16'+d*160=12*16+13=205, it means AD value is 205.When there is no pressure sensor, it is displayed as The currently running 18 communication protocol 00-99 version 4 Troubleshooting 7 ► 4. Quick Maintenance by Error Code If you do not have the time to test which specific parts are faulty, you can directly change the required parts according the error code. You can find the parts to replace by error code in the following table. Error ..- art requiring replacement F- 11,11imir Indoor PCB �/ x x x x x x x Outdoor PCB f f f f f ODU coil temp.sensor x x �/ x x x x x ODU ambient temp.sensor x x x �/ x x x x COMP discharge temp.sensor x x x x V x x x IPM module temperature sensor x x x x x f x x Pressure sensor x x x =X x x V x Refrigerant temperature sensor x x x x x x x f Condenser temperature sensor x x x x x x x x Reactor �/ x x x x x x x IPM module board �/ x x x x x x x Outdoor PCB f f �/ f �/ I �/ I �/ x x Outdoor fan motor �/ �/ x x �/ x x x x Reactor or inductance x f f x f f x x x Compressor x f x x x x x x x IPM module board x �/ f x x x x x Bridge rectifier x �/ �/ x f ]-x x x x Evaporator coil temperature f f sensor x x x x x x x PFC module x x x x x �/ x x x Additional refrigerant x x x x x x x x x Overload protector x x x f x x x x x ODU ambient temp.sensor x x x x x x x x x Refrigerant temperature sensor x x x x x x x x x Indoor fan x x x x x x x f x Indoor PCB x x x x x x f f 4 Troubleshooting 8 ► Part requiring replacement Error Code --A Mir 1111WEN Outdoor PCB �/ �/. I x / I v, Outdoor fan motor x x x x /- f f x ODU coil temp.sensor x x x x x x x COMP.discharge temp.sensor x x x �/ x x x x Compressor x f x x x x x x IPM module board x x "/- x x x x x Additional refrigerant x x x f f x f x Electric control box f x x x x x x x High pressure switch x x x x x f x x Low pressure switch x x x x x x f x Adapter board x x x x x x x f 4 Troubleshooting 9 ► 5. Troubleshooting by Error Code 5.1 EC51 (ODU EEPROM parameter error diagnosis and solution) Description: Indoor or outdoor PCB main chip does not receive feedback from EEPROM chip. Recommended parts to prepare: • Indoor PCB • Outdoor PCB Troubleshooting and repair: Shut off the power supply and turn it on 2 minutes later. /Is it still displaying'-- the error code? NOThe unit is operating normally. i YES place the outdoor main\ PCB. Remarks: EEPROM: A read-only memory whose contents can be erased and reprogrammed using a pulsed voltage. The location of the EEPROM chip on the outdoor PCB is shown in the following image: 0 00" "q U �- 1 1 EEPROM Chip This pictures are only for reference, actual appearance may vary. A Troubleshooting 10 ► 5.2 EL010DU & ODU communication error diagnosis and solution) Recommended parts to prepare: • Signal wires • Magnet ring • Indoor PCB • Outdoor PCB Troubleshooting and repair: Power off, then restart the unit 2 minutes later Check whether there's any interference. Remove interference or Such as too many lamps, power Yeses add magnet ring on power transformers? Or the signal wire wire is too long? No Check whether the signal wire is Adopt shield cable/Shield cable shield cable or whether the No-► earthing. shield cable is earthing? Yes Check whether the signal wire is Yes--* Replace the signal wire. broken? No Check whether the signal wires No Pull out and insert back. insert on PCB well? Yes Ir Replace indoor main PCB, is the error distinguished? No Replace the outdoor main PCB. A Troubleshooting 11 ► 5.3 EC07 (ODU fan speed out of control) Diagnosis and Solution Description: When indoor/outdoor fan speed keeps too low or too high for a certain time, the LED displays the failure code and the AC turns off. Recommended parts to prepare: • Connection wires • Fan assembly • Fan motor • PCB Troubleshooting and repair: Power off,then restart the unit after 2 minutes. Does a problem remain? NO The unit is operating normally YES Shut off the power supply, Rotate the fan by hand. Does it turn easily? NO Find the cause of the problem and resolve it YES Check the wiring of fan motor. Is it improperly wired? Ensure proper connections YES Measure the voltage for the fan motor from the PCB. s it within normal parameters? NO Replace the manr PCB YES Replace the fan motor 4 Troubleshooting 12 ► Index: 1. Outdoor DC Fan Motor(control chip is in fan motor) Power on and when the unit is in standby, measure the voltage of pin 1-pin3, pin4-pin3 in fan motor connector. If the value of the voltage is not in the range showing in below table, the PCB must has problems and need to be replaced. • DC motor voltage input and output (voltage: 220-240V-): Color 1 Red VsNm 192V-380V 2 --- --- --- 3 Black GND OV 4 White Vcc 13.5-16.5V 5 Yellow Vsp 0-6.5V 6 Blue FG 13.5-16.5V 1 3 4 5 6 Red Glad( White Yellow Blue 2. Outdoor DC Fan Motor(control chip is in outdoor PCB) Release the UVW connector. Measure the resistance of U-V, U-W, V-W. If the resistance is not equal to each other, the fan motor must has problems and need to be replaced. otherwise the PCB must has problems and need to be replaced. 1 U0 A Troubleshooting 13 ► 5.4 EC52/EC53/EC54/EC57 (Open circuit or short circuit of temperature sensor diagnosis and solution) Description: If the sampling voltage is lower than 0.06V or higher than 4.94V, the LED displays the failure code. Recommended parts to prepare: • Connection wires • Sensors • Outdoor PCB Troubleshooting and repair: Shut off the power supply and turn it on 2 minutes later. Is it still displaying NO �eunit�isoperating ormall� the error code? /// YES Replace the outdoor main PCB. I CD El E)ED O (D 00 This picture and the value are only for reference, actual appearance and value may vary. A Troubleshooting 14 ► 5.5 PC08(Current overload protection)/PC42(Compressor start failure of outdoor unit)/ PC44(ODU zero speed protection) /PC46(Compressor speed has been out of control)/ PC49(Compressor overcurrent failure) Description: An abnormal current rise is detected by checking the specified current detection circuit. Recommended parts to prepare: • Outdoor PCB • Connection wires • Bridge rectifier • PFC circuit or reactor • Refrigeration piping system • Pressure switch • Outdoor fan • IPM module board Troubleshooting and repair: A Troubleshooting 15 ► Was the protection activated in standby? No Yes Is the power voltage is Restart the unit when the power normal? N�—� supply returns to normal Yes IV Is outdoor terminal voltage Is the power wiring Reconnect the normal? N wired correctly? power wiring Yes Is the voltage between L and N Are L and N wired Reconnect L and N N is normal? properly? Yes Is the input voltage of the Is the bridge Reconnect the bridge rectifier is normal? N rectifier wired bridge rectifier properly? Yes Is the current normal? Yes Replace the outdoor main PCB No Is the voltage between P and N normal refer according to No s the bridge rectifie N Replace the bridge Index? nctioning normally? rectifier Yes Yes Is the outdoor ambient r Replace the PFC module(if this has not temperature is higher than Yes-► Stop the unit been done already) 50°C? r No No s the wiring of the Reconnect the Is the outdoor unit reactor or inductance No—► wiring ventilation functioning No- Ensure that the outdoor unit properly wired? properly? ventilate is working properly Yes Yes Refer to the solution to the Is the outdoor fan running malfunction of fan speed being out N re the reactor an properly? of control.Find the cause and Replace reactor or resolve the issue inductance functioning No—► inductance normally Yes (is the heat exchanger dirty? Yes Clean the heat exchanger No CReplace outdoor main board.Does a problem still Yes exist? No Cl�ss�yst.m pressure too high? Yes Recycle the overcharged refrigerant No Check whether the refrigerant system is running normally Troubleshooting 16 ► 5.6 PCOOOPM malfunction diagnosis and solution) Description: When the voltage signal the IPM sends to the compressor drive chip is abnormal, the LED displays the failure code and the AC turns off. Recommended parts to prepare: • Connection wires • IPM module board • Outdoor fan assembly • Compressor • Outdoor PCB • Reactor or inductance • Bridge rectifier Troubleshooting and repair: At first test the resistance between every two ports of U, V, W of IPM and P, N. If any result of them is 0 or close to 0, the IPM is defective. Otherwise, please follow the procedure below: A Troubleshooting 17 ► Is the power voltage normal? No Restart the unit when the power supply returns to normal Yes Is the outdoor terminal voltage Are the power w res i Reconnect the power normal? Nod connected properly? wires Yes Is the voltage between L and N Are L and N wired No normal? ► correctly? Reconnect L and N Yes Is the input voltage of bridge >—Ncl— ► Is the bridge rectifier Reconnect the bridge rectifier normal? properly wired? rectifier Yes Is the voltage between P and N properly wired according to N Is the bridge rectifier N Replace the bridge rectifier Appendix3? operating normally? Yes Yes CV4�>— etween Reconnect the main board and rReplace the PFC module(If This has not been e IPM NO—► IPM board done alread htly? Y�_ Yes No Is the connecting wire of the Reconnect he connecting wire compressor is connected correctly No—► or tightly of the compressor Are the reactor or ductance wired properly No—► Reconnect the wiring Yes Is the outdoor unit ventilation Make sure that the outdoor unit is in working order? Now ventilating properly Yes Yes Are the reactor or Replace reactor or Is the outdoor fan running Refer to the solution for themalfunction Are normal? NO—� inductance properly? No—► of the fan speed being out of control. Find the cause and resolve the problem Yes It Replace IPM Board.Is the problem14 Yes resolved? No Replace the outdoor main PCB.Is the problem resolved? No s the compress is runnin No—► Replace the compressor normally? Yes Check whether the refrigerant system is in working order Troubleshooting 18 5.7 PC10(ODU low AC voltage protection)/PC11(ODU main control board DC bus high voltage protection)/PC12(ODU main control board DC bus low voltage protection /341 MCE error) Diagnosis and Solution Description: Abnormal increases or decreases in voltage are detected by checking the specified voltage detection circuit. Recommended parts to prepare: • Power supply wires • IPM module board • Outdoor PCB • Bridge rectifier • PFC circuit or reactor Troubleshooting and repair: A Troubleshooting 19 ► Check whether the power Restart the unit when the power voltage is normal. No supply gets normal Yes Measure whether power wires outdoor Check the wiring of 'or p terminal voltage is normal? —No—),< e well 0 r Reconnect it well correctly Yes V Measure whether the voltage Check the wiring of between L and IN is normal? —No L and N well or Reconnect it well correctly I Yes Measure whether input voltage Check the wiring of Reconnect it well No---*.<,' bridge rectifier well of bridge rectifier is normaI9 or correctly I Yes Measure whether the voltage heck whether 1`1 r Replace the bridge IN between P and is normal —No 0<' bridge rectifier ierr is No-11. rectifier refer to the Appendix 3? normal Yes ---------- Replace the PFC module(If has) No Yes ---"Check the wiring of"--- No-0 Reconnect the reactor or inductance ,�— wiring Yes Replace the IPM board, If the IPM board -Check whether reactor---,,— Replace reactor or and main board is in a board, replace the Yes nor inductance is normal,---' No 0 inductance outdoor main PCB A Troubleshooting 20 lo- 5.8 PC40(Communication error between ODU main chip and compressor driven chip diagnosis and solution) Description: The main PCB cannot detect the IPM board. Recommended parts to prepare: • Connection wires • Outdoor PCB • IPM module board • Electric control box Troubleshooting and repair: Is there at least one LED in the IPM board light? No Check the signal wire between the IPM board and the main Yes board, is it connected properly? No Yes Reconnect and retry. Is the error still displayed? No No Replace IPM board. Is the Yes system running normally? No Replace outdoor main board. Is the system running Yes normally? No Replace the electric control Trouble is resolved box 4 Troubleshooting 21 ► 5.9 PCOF(PFC module protection diagnosis and solution) Description: Outdoor PCB detects PFC signal is low voltage or DC voltage is lower than 340V for 6s when quick check. Recommended parts to prepare: • Connection wires • Outdoor PCB • Inductance • PFC circuit or IPM module board Troubleshooting and repair: Check whether the connecting line between Connect it tightly, check main board and the PFC NO normal or not module is connected tightly Yes No Measure whether the voltage between P and N is normal Yeses Replace th�outdo�®rmain�board refer to the Index? Yes 11 No 1 L k whether the e of PFC module is the inductance is No—* Replace the inductance e resistance of the o ports is 0 Yes Replace the PFC module Trouble is solved 4 Troubleshooting 22 ► 5.10 PCO6(Discharge temperature protection of compressor diagnosis and solution) Description: When the compressor discharge temperature (TP) is more than 1 150C for 10 seconds, the compressor ceases operation and does not restart until TP is less than 900C Recommended parts to prepare: • Connection wires • Outdoor PCB • Discharge temperature sensor • Refrigerant Troubleshooting and repair: Is the compressor discharge temperature more than Yes*- Is refrigerant leaking —Yes Stop:th:e:l:e:a:k and add refrigerant \ 115°C? No 4 No Are the compressor discharge temperature sensor and PCB connected properly Now Correct the wiring connection according to the wiring j. diagrams? Yes Measure the resistance value of compressor discharge temp. sensor. If the value is not NO Replace the compressor discharge temp. sensor normal, refer to the Appendix. Does a problem stil exist? Yes Replace outdoor main PCB. Does a problem still exist? No Replace high pressure valve assy A Troubleshooting 23 ► 5.11 PCOA(High temperature protection of condenser diagnosis and solution) Description: The unit will stop when condenser temperature is higher than 65°C, and runs again when it is less than 52°C Recommended parts to prepare: • Connection wires • Condenser temperature sensor • Outdoor fan • Outdoor main PCB • Refrigerant Troubleshooting and repair: Is the condenser temperature the connection betwe s higher than 65°C? No temperature sensor and No-4 Correct the connection PCB in working order? Yes Yes Is the outdoor ambient temperature higher than Yesi Stop the unit 50°C? Is the resistance of condenser temp.sensor No► Replace the temperature sensor Normal? No Is the outdoor unit Ensure that the outdoor unit ventilate ventilation functioning No—► is functioning properly properly? Yes Is the outdoor fan running Please refer to the solution of the properly? N "fan speed is operating outside of the normal range" malfunction. Yes Is the heat exchanger dirty? Yes Clean the heat exchanger No Replace outdoor main Yes board.Has the problem been resolved? No If the level of refrigerant is not sufficient,does the system work after refrigerant is added? No CCh :> eck whether the re:normally gnt system is functioning Troubleshooting 24 ► 5.12 PCO2/LC06 (Compressor top(or IPM) temp. protection/Refrigerant sensor error diagnosis and solution) Description: For some models with overload protector, If the sampling voltage is not 5V, the LED will display the failure. If the temperature of IPM module is higher than a certain value, the LED displays the failure code. Models without overload protector should be diagnosed according to the second flowchart. Recommended parts to prepare: • Connection wires • Outdoor PCB • IPM module board • High pressure protector • System blockages Troubleshooting and repair: V ir flow system Clear up the air inlet and outlet or the heat outdoor units Yesructed? exchanger of indoor and outdoor units. No Turn off the power supply and turn it on 10 minutes later. Yes C7compressor if the temperature of Check if all the connection,especially Top No the connection of OLP(Over Load No— Correct the connection. more than 90°C? Protector)sensor is good. Yes Yes Measure the resistance C77stem the refrigerant between the two ports of Now Replace the OLP. the OLP. Is it zero? ormal? No Yes Yes RcpiaC^c thcvuid^vvr%viiir^vi r°C°u. Replace the outdoor control PCB. Repair the refrigerant system . 4 Troubleshooting 25 ► or Check the fastening screws on the PCB and IPM radiator. Are they YES ► Replace the outdoor fixed tightly? control PCB. NO Tighten the screws and apply silicon grease. or Check the connection between refrigerant sensor and PCB. Is it properly wired? N0� Ensure proper connections. YES Replace the sensor. If the fault still exists, replace the indoor main PCB 4 Troubleshooting 26 ► 5.13 PC30 (System high pressure protection diagnosis and solution) Description: Outdoor pressure switch cut off the system because high pressure is higher than 4.4 MPa Recommended parts to prepare: • Connection wires • Pressure switch • Outdoor fan • Outdoor main PCB Troubleshooting and repair: A Troubleshooting 27 ► High pressure protection Are the high pressure switch Connect high pressure switch and main control boar wired No-► and mian control board correctly? Yes Is the high pressure protector broken? o Disconnecte plu eg. Measure the resistance of the high pressure Now Replace high pressure protector protector, if the protector is normal the value is o, Does a roblem still exist? Yes Is the outdoor ambient temperature is higher than Yeses Stop the unit 50°C? No Check if the outdoor unit Ensure that the outdoor unit ventilation is good No ventilation is functioning properly Yes please refer to the solution of fan Is the outdoor fan running speed has been out of control properly? NO malfunction . Find out the cause and have it solved. Yes Is the heat exchanger dirty? Yes—* Clean the heat exchanger No Replace outdoor main Check whether the refrigerant board. Is the problem No system is functioning properly resolved? 4 Troubleshooting 28 ► 5.14 PC31 (System low pressure protection diagnosis and solution) Description: Outdoor pressure switch cut off the system because low pressure is lower than 0.13 MPa, the LED displays the failure code. Recommended parts to prepare: • Connection wires • Outdoor PCB • Low pressure protector • Refrigerant Troubleshooting and repair: A Troubleshooting 29 ► Low pressure protection Are the low pressure Reconnect the low pressure protector and main control No board wired properly? protector and main control board Yes ---Z1 Is the low pressure protector broken? Method: Disconnect the plug. Measure the resistance of the low pressure No Replace low pressure protector protector. If the protector is normal the value is o. Does a roblem still exist? Yes Is the outdoor ambient Yes Stop the unit temperature too low? No Is the valve core of the high NO Open the valve core of the pressure valve fully opened? high pressure valve Yes Refer to the solution to the Is the indoor fan running malfunction of fan speed being out properly in cooling mode? NO of control. Find the cause and Cresolve the problem. Yes Replace outdoor main board. Does a problem still exist? No When the level of refrigerant is not Check whether the sufficient, doe the system function No refrigerant system is properly after more refrigerant is functioning properly. added? 4 Troubleshooting 30 ► 5.15 PC43 (ODU compressor lack phase protection diagnosis and solution) Description: When the three-phase sampling current of the compressor is abnormal, especially when the current of one or more phases is always small and almost 0, the LED displays the failure code Recommended parts to prepare: • Connection wire • Compressor • Outdoor PCB Troubleshooting and repair: Power off,then restart the unit The unit operates 2 minutes later.ls it still No normally displaying the error code Yes Check both ends of compressor connecting No Correct the connections line .Are all the connections good? Yes Check whether the three- phase resistance of the Now Replace the compressor compressor is symmetrical Yes Check the compressor three- phase output for obvious open Now Replace the main PCB circuit Yes Trobule is solved A Troubleshooting 31 ► 5.16 PC45 (ODU IR chip drive failure diagnosis and solution) Description: When the IR chip detects its own parameter error, the LED displays the failure code when power on. Recommended parts to prepare: • Inverter module PCB. Troubleshooting and repair: Power off,then restart the unit 2 minutes later. Yes Replace the inverter module PCB. 5.17 PC41(Outdoor compressor current sampling circuit failure diagnosis and solution) Description: Three-phase sampling offset voltage error, the static bias voltage is normally 2.5V Recommended parts to prepare: • Outdoor main PCB Troubleshooting and repair: Shut off the power supply and turn it on 2 minutes later. Is it still displaying NO The unit is operating normally. the error code? YES Replace the outdoor main PCB. A Troubleshooting 32 ► 5.18 EC55(ODU IPM module temperature sensor malfunction diagnosis and solution) Description: If the sampling voltage is OV or 5V, the LED displays the failure code. Recommended parts to prepare: • IPM module PCB • Connection wires • Sensors • Outdoor main PCB Troubleshooting and repair: If the radiator has no sensor, follow the steps below to resolve, Power off,then restart the unit after 2 minutes. Does a problem remain? NOS The unit is operating normally YES A ck whether tng screws on the NO—► ig ten t e screws an app yd IPM radiator aresilicon reaseixed tightly YES Replace the IPM module PCB If the radiator has a sensor(TH), follow the steps below to resolve, Check the connection between temperature sensor and PCB. Is it properly wired? N0� Ensure proper connections. YES Measure the resistance value of the sensor. s it within acceptable N0� Replace the sensor. parameters? YES Replace the outdoor main PCB 4 Troubleshooting 33 ► 5.19 PH90(High temperature protection of evaporator diagnosis and solution) Description: When evaporator coil temperature is more than 60°C in heating mode, the unit stops. It starts again only when the evaporator coil temperature is less than 52°C. Recommended parts to prepare: • Connection wires • Evaporator coil temperature sensor(T2) • Indoor fan • Indoor main PCB Troubleshooting and repair: Is the connection Is the compressor operating? No__ between T2 and the PCB No—► Correct the connection is in working order? Yes Yes Is the outdoor ambient temperature is higher than Yes* Stop the unit 30°C? No Is the resistance of T2 No-► Replace the temperature sensor normal? Is the air-outlet blocked? Ye Clean the air outlet No Please refer to the solution of the s the indoor fan running "Indoor fan speed is operating normally? NO outside of the normal range" CI " malfunction. Yes Are the heat exchanger and Clean the heat exchanger and filter dirty? Yeses filter No y Replace the indoor main PCB ' Yes Troubleshooting 34 ► 5.20 PH91(Low temperature protection of evaporator diagnosis and solution) Description: When evaporator coil temperature is lower than 0°C in cooling mode or drying mode, the unit stops. It starts again only when the evaporator coil temperature is more than 5°C. Recommended parts to prepare: • Connection wires • Evaporator coil temperature sensor(T2) • Indoor main PCB Check whether there is a large deviation between the T2 temperature detected by point check function and Check the connection the actual temperature at the T2 sensor Ye between T2 sensor and Yes s it properly wired? N0� Ensure proper connections. position(measured with a PCB thermometer). YES Measure the resistance value of the sensor. Replace indoor PCB Ye it within accepts N0� Replace the sensor. parameters. YES Is the room temperature is too low or 5Yes* evaporator temperature lower than Stop the unit 0°C? 5.21 ECK(High pressure sensor is in open circuit or has short circuited) diagnosis and solution Description: If the sampling voltage is lower than 2V or higher than 254V, the LED displays the failure code. Recommended parts to prepare: • Connection wires • Sensor • Outdoor PCB Troubleshooting and repair: Check the connection between temperature sensor and PCB. Is it properly wired? N0� Ensure proper connections. YES Measure the voltage between in1 and in2. Is it lower than 0.5V? Yeses Replace the sensor. No CReplace outdoor PCB 4 Troubleshooting 35 ► 5.22 EL16(Communication malfunction between adapter board and outdoor main board diagnosis and solution) Description: The adapter PCB cannot detect the main control board. Recommended parts to prepare: • Connection wires • Adapter board • Outdoor main PCB Troubleshooting and repair: Power off,then restart the unit after 3 minutes. Does a problem remain? NO—► The unit is operating normally YES Check the wirings and connections Are all the NO—► Ensure proper connections nections go YES Replace the adapter main PCB oes the error still exist? NO—► The problem is solved YES CReplace the outdoor main control board 4 Troubleshooting 36 ► 6. Check Procedures 6.1 Temperature Sensor Check 1 Be sure to turn off all power supplies or disconnect all wires to avoid electric shock. Operate after compressor and coil have returned to normal temperature in case of injury. 1. Disconnect the temperature sensor from PCB (Refer to Chapter 5&6. Indoor&Outdoor Unit Disassembly). 2. Measure the resistance value of the sensor using a multi-meter. 3. Check corresponding temperature sensor resistance value table (Refer to Chapter Appendix). ❑ ❑ (..I�91 ru.' n ®®El M O Note:The picture and the value are only for reference, actual condition and specific value may vary. 6.2 Compressor Check 1. Disconnect the compressor power cord from outdoor PCB (Refer to Chapter 6. Outdoor Unit Disassembly)). 2. Measure the resistance value of each winding using a multi-meter. 3. Check the resistance value of each winding in the following table. Input Terminal Blue Blue Red 2 Black Black 3 Red 4 Troubleshooting ► 111111 11111110 111 Resistance Value KSK103D33UEZ3 KSN140D58UFZ KTF25OD22UMT KTN11OD42UFZ KTF420D62UNT 2.130 1.860 0.750 ETPQ420Dl UMUA Q440D1 UMUB Resistance Value KTN150D30UFZA KTM240D46UKT2 KTF31OD43UMT ETP TPQ420D1UMU TH356UKRC8FQL J� 3` EKPQ440DlUMU Resistance Value MTH550UKPC8FU 1► • CJ 00 „ 6.3 IPM Continuity Check Electricity remains in capacitors even when the power supply is off. Ensure the capacitors are fully discharged before troubleshooting. 1. Turn off outdoor unit and disconnect power supply. 2. Discharge electrolytic capacitors and ensure all energy-storage unit has been discharged. 3. Disassemble outdoor PCB or disassemble IPM board. 4. Measure the resistance value between P and UN, W, N); U(V, W) and N. mtviw__ (+)Red (-)Black (+)Red (-)Black N 0 U 00 U V P N V (Several MQ) W (Several MQ) W - Or test the conductivity of IPM with diode mode. Needle-type Tester Needle-type Tester Normal Value Normal Value Red Black Red Black U U P V Open-circuit N V 0.3-0.5V W W Needle-type Tester Needle-type Tester Normal Value Normal Value Black Red Black Red U U P V 0.3-0.5V N V Open-circuit W W 4 Troubleshooting ► — — — — — — — — — - I I I I I o w o v P N I U I I I I I I I I I I I I I I I I I Note: The picture and the value are only for reference, actual condition and specific value may vary. 6.4 Normal voltage of P and N 208-230V(1-phase) In standby around 310VDC In operation With passive PFC module With partial active PFC With fully active PFC module module >200VDC >310VDC >370VDC 6.5 Reactor Check Measure the resistance and voltage(to ground)of the reactor.The normal resistance should be around 0.1 ohm. Otherwise, the reactor must have malfunction. ° nnnn ' _ uuuu 0 Troubleshooting ► 6.6 4-way valve Check 1.Power on, use a digital tester to measure the voltage, when the unit operates in cooling, it is OV When the unit operates in heating, it is about equal to power supply voltage. If the value of the voltage is not in the range, the PCB must have problems and need to be replaced. 2 Turn off the power, use a digital tester to measure the resistance. The value should be 1.8-2.5 KO. 6.7 EXV Check 1 white 2 Yellow 3 Orange 4 Blue 5 Brown 6 Red 1. Turn off outdoor unit and disconnect power supply. 2. Disconnect the connectors of EXV. 3. Measure the resistance value between Red and Blue(Yellow); Brown and Orange(White). Resistance to EXV coil Color of lead wire Normal Value Red- Blue Red - Yellow About 500 Brown-Orange Brown-White 4 Troubleshooting ► Troubleshooting ► Contents i) Temperature Sensor Resistance Value Table for TP (°C --K)................................2 ii) Other Temperature Sensors Resistance Value Table (°C — K)..............................3 iii) Pressure On Service Port.......................................................................................4 iV) System Pressure Table ...........................................................................................6 i) Temperature Sensor Resistance Value Table for TP (°C --K) °C °F K Ohm °C °F K Ohm °C °F K Ohm °C °F K Ohm -20 -4 542.7 20 68 68.66 60 140 13.59 100 212 3.702 -19 -2 511.9 21 70 65.62 61 142 13.11 101 214 3.595 -18 0 483 22 72 62.73 62 144 12.65 102 216 3.492 -17 1 455.9 23 73 59.98 63 145 12.21 103 217 3.392 -16 3 430.5 24 75 57.37 64 147 11.79 104 219 3.296 -15 5 406.7 25 77 54.89 65 149 11.38 105 221 3.203 -14 7 384.3 26 79 52.53 66 151 10.99 106 223 3.113 -13 9 363.3 27 81 50.28 67 153 10.61 107 225 3.025 -12 10 343.6 28 82 48.14 68 154 10.25 108 226 2.941 -11 12 325.1 29 84 46.11 69 156 9.902 109 228 2.86 -10 14 307.7 30 86 44.17 70 158 9.569 110 230 2.781 -9 16 291.3 31 88 42.33 71 160 9.248 111 232 2.704 -8 18 275.9 32 90 40.57 72 162 8.94 112 234 2.63 -7 19 261.4 33 91 38.89 73 163 8.643 113 235 2.559 -6 21 247.8 34 93 37.3 74 165 8.358 114 237 2.489 -5 23 234.9 35 95 35.78 75 167 8.084 115 239 2.422 -4 25 222.8 36 97 34.32 76 169 7.82 116 241 2.357 -3 27 211.4 37 99 32.94 77 171 7.566 117 243 2.294 -2 28 200.7 38 100 31.62 78 172 7.321 118 244 2.233 -1 30 190.5 39 102 30.36 79 174 7.086 119 246 2.174 0 32 180.9 40 104 29.15 80 176 6.859 120 248 2.117 1 34 171.9 41 106 28 81 178 6.641 121 250 2.061 2 36 163.3 42 108 26.9 82 180 6.43 122 252 2.007 3 37 155.2 43 109 25.86 83 181 6.228 123 253 1.955 4 39 147.6 44 111 24.85 84 183 6.033 124 255 1.905 5 41 140.4 45 113 23.89 85 185 5.844 125 257 1.856 6 43 133.5 46 115 22.89 86 187 5.663 126 259 1.808 7 45 127.1 47 117 22.1 87 189 5.488 127 261 1.762 8 46 121 48 118 21.26 88 190 5.32 128 262 1.717 9 48 115.2 49 120 20.46 89 192 5.157 129 264 1.674 10 50 109.8 50 122 19.69 90 194 5 130 266 1.632 11 52 104.6 51 124 18.96 91 196 4.849 12 54 99.69 52 126 18.26 92 198 4.703 13 55 95.05 53 127 17.58 93 199 4.562 14 57 90.66 54 129 16.94 94 201 4.426 15 59 86.49 55 131 16.32 95 203 4.294 16 61 82.54 56 133 15.73 96 205 4.167 17 63 78.79 57 135 15.16 97 207 4.045 18 64 75.24 58 136 14.62 98 208 3.927 19 66 71.86 59 1 138 14.09 99 210 3.812 4 Appendix 2 ► ii) Other Temperature Sensors Resistance Value Table (IC - K) -20 -4 115.266 20 68 12.6431 60 140 2.35774 100 212 0.62973 -19 -2 108.146 21 70 12.0561 61 142 2.27249 101 214 0.61148 -18 0 101.517 22 72 11.5 62 144 2.19073 102 216 0.59386 -17 1 96.3423 23 73 10.9731 63 145 2.11241 103 217 0.57683 -16 3 89.5865 24 75 10.4736 64 147 2.03732 104 219 0.56038 -15 5 84.219 25 77 10 65 149 1.96532 105 221 0.54448 -14 7 79.311 26 79 9.55074 66 151 1.89627 106 223 0.52912 -13 9 74.536 27 81 9.12445 67 153 1.83003 107 225 0.51426 -12 10 70.1698 28 82 8.71983 68 154 1.76647 108 226 0.49989 -11 12 66.0898 29 84 8.33566 69 156 1.70547 109 228 0.486 -10 14 62.2756 30 86 7.97078 70 158 1.64691 110 230 0.47256 -9 16 58.7079 31 88 7.62411 71 160 1.59068 111 232 0.45957 -8 18 56.3694 32 90 7.29464 72 162 1.53668 112 234 0.44699 -7 19 52.2438 33 91 6.98142 73 163 1.48481 113 235 0.43482 -6 21 49.3161 34 93 6.68355 74 165 1.43498 114 237 0.42304 -5 23 46.5725 35 95 6.40021 75 167 1.38703 115 239 0.41164 -4 25 44 36 97 6.13059 76 169 1.34105 116 241 0.4006 -3 27 41.5878 37 99 5.87359 77 171 1.29078 117 243 0.38991 -2 28 39.8239 38 100 5.62961 78 172 1.25423 118 244 0.37956 -1 30 37.1988 39 102 5.39689 79 174 1.2133 119 246 0.36954 0 32 35.2024 40 104 5.17519 80 176 1.17393 120 248 0.35982 1 34 33.3269 41 106 4.96392 81 178 1.13604 121 250 0.35042 2 36 31.5635 42 108 4.76253 82 180 1.09958 122 252 0.3413 3 37 29.9058 43 109 4.5705 83 181 1.06448 123 253 0.33246 4 39 28.3459 44 111 4.38736 84 183 1.03069 124 255 0.3239 5 41 26.8778 45 113 4.21263 85 185 0.99815 125 257 0.31559 6 43 25.4954 46 115 4.04589 86 187 0.96681 126 259 0.30754 7 45 24.1932 47 117 3.88673 87 189 0.93662 127 261 0.29974 8 46 22.5662 48 118 3.73476 88 190 0.90753 128 262 0.29216 9 48 21.8094 49 120 3.58962 89 192 0.8795 129 264 0.28482 10 50 20.7184 50 122 3.45097 90 194 0.85248 130 266 0.2777 11 52 19.6891 51 124 3.31847 91 196 0.82643 131 268 0.27078 12 54 18.7177 52 126 3.19183 92 198 0.80132 132 270 0.26408 13 55 17.8005 53 127 3.07075 93 199 0.77709 133 271 0.25757 14 57 16.9341 54 129 2.95896 94 201 0.75373 134 273 0.25125 15 59 16.1156 55 131 2.84421 95 203 0.73119 135 275 0.24512 16 61 15.3418 56 133 2.73823 96 205 0.70944 136 277 0.23916 17 63 14.6181 57 135 2.63682 97 207 0.68844 137 279 0.23338 18 64 13.918 58 136 2.53973 98 208 0.66818 138 280 0.22776 19 66 13.2631 59 138 2.44677 99 210 0.64862 139 282 0.22231 4 Appendix 3 ► iii) Pressure On Service Port Cooling chart(R454B): ODU(DB) 15 45 75 85 105 115 120 IDU(DB/WB) F( C) 0( 17) 5(-15) (-9.44) (7.22) (23.89) (29.44) 95 (35) (40.56) (46.11) (48.89) 70/59 (21.11/15) 5.9 6.0 6.7 7.3 7.5 7.2 7.4 7.9 9.2 9.7 BAR 75/63 (23.89/17.22) 6.1 6.2 7.2 7.9 7.9 7.6 7.9 8.3 9.8 10.2 80/67 (26.67/19.44) 6.5 6.6 7.8 8.7 8.5 8.2 8.3 8.8 10.2 10.8 90/73 (32.22/22.78) 7.1 7.2 8.8 9.6 9.4 8.7 9.2 9.7 11.3 11.9 70/59 (21.11/15) 85 86 97 106 109 104 108 114 134 140 75/63 (23.89/17.22) 89 90 105 114 114 110 115 121 142 148 PSI 80/67 (26.67/19.44) 94 95 113 126 123 118 121 127 148 157 90/73 (32.22/22.78) 102 104 127 139 136 126 133 140 164 172 70/59 (21.11/15) 0.59 0.60 0.67 0.73 0.75 0.72 0.74 0.79 0.92 0.97 M Pa 75/63 (23.89/17.22) 0.61 0.62 0.72 0.79 0.79 0.76 0.79 0.83 0.98 1.02 80/67 (26.67/19.44) 0.65 0.66 0.78 0.87 0.85 0.82 0.83 0.88 1.02 1.08 90/73 (32.22/22.78) 0.71 0.72 0.88 0.96 0.94 0.87 0.92 0.97 1.13 1.19 1.40 1.20 1.00 0.80 70/59 0.60 f 75/63 0.40 80/67 0.20 --X-90/73 0.00 1N 1ti1 �� 01 tit Cb ti ti ti Appendix 4 ► Heating chart(R454B): DU(DB/WB) 57/53 47/43 37/33 27/23 17/13 (-8.33/- 0/- -17 �F(��) (13.89/11.67) (8.33/6.11) (2.78/0.56) (-2.78/-5) 10.56) IDU(DB) (-17) (-27) 55(12.78) 27.7 26.1 23.1 20.9 19.0 16.9 15.1 BAR 65(18.33) 29.8 27.5 24.3 23.2 21.3 18.7 17.4 75(23.89) 31.0 28.8 25.4 24.0 22.8 19.6 18.3 55(12.78) 402 378 335 303 275 245 218 PSI 65(18.33) 432 398 352 337 309 271 252 75(23.89) 449 418 368 348 330 284 265 55(12.78) 2.77 2.61 2.31 2.09 1.90 1.69 1.51 MPa 65(18.33) 2.98 2.75 2.43 2.32 2.13 1.87 1.74 75(23.89) 3.10 2.88 2.54 2.40 2.28 1.96 1.83 3.5 3 2.5 2 1.5 --#--55 1 0.5 f65 0 --A--75 (0 titi� 1� ti � 1� �\�� �\ \�� �\\ \ 0 ry ti -4 Appendix 5 ► W) System Pressure Table-R454B Pressure Temperature Pressure Temperature Kpa bar PSI °C °F Kpa bar PSI °C °F 58.196 0.58 8.44 -60 -76 935.23 9.35 135.64 8 46.4 61.517 0.62 8.92 -59 -74.2 963.75 9.64 139.78 9 48.2 64.988 0.65 9.43 -58 -72.4 992.93 9.93 144.01 10 50 68.615 0.69 9.95 -57 -70.6 1022.8 10.23 148.34 11 51.8 72.402 0.72 10.50 -56 -68.8 1053.3 10.53 152.76 12 53.6 76.354 0.76 11.07 -55 -67 1084.5 10.85 157.29 13 55.4 80.478 0.80 11.67 -54 -65.2 1116.4 11.16 161.91 14 57.2 84.776 0.85 12.30 -53 -63.4 1149 11.49 166.64 15 59 89.256 0.89 12.95 -52 -61.6 1182.3 11.82 171.47 16 60.8 93.923 0.94 13.62 -51 -59.8 1216.3 12.16 176.40 17 62.6 98.781 0.99 14.33 -50 -58 1251.1 12.51 181.45 18 64.4 103.84 1.04 15.06 -49 -56.2 1286.6 12.87 186.60 19 66.2 109.1 1.09 15.82 -48 -54.4 1322.8 13.23 191.85 20 68 114.56 1.15 16.61 -47 -52.6 1359.9 13.60 197.23 21 69.8 120.25 1.20 17.44 -46 -50.8 1397.7 13.98 202.71 22 71.6 126.15 1.26 18.30 -45 -49 1436.3 14.36 208.31 23 73.4 132.28 1.32 19.18 -44 -47.2 1475.7 14.76 214.02 24 75.2 138.64 1.39 20.11 -43 -45.4 1515.9 15.16 219.85 25 77 145.24 1.45 21.06 -42 -43.6 1557 15.57 225.82 1 26 78.8 152.09 1.52 22.06 -41 -41.8 1598.9 15.99 231.89 27 80.6 159.18 1.59 23.09 -40 -40 1641.6 16.42 238.09 28 82.4 166.54 1.67 24.15 -39 -38.2 1685.2 16.85 244.41 29 84.2 174.15 1.74 25.26 -38 -36.4 1729.7 17.30 250.86 30 86 182.04 1.82 26.40 -37 -34.6 1775 17.75 257.43 31 87.8 190.2 1.90 27.59 -36 -32.8 1821.3 18.21 264.15 32 89.6 198.65 1.99 28.81 -35 -31 1868.4 18.68 270.98 33 91.4 207.39 2.07 30.08 -34 -29.2 1916.5 19.17 277.95 34 93.2 216.42 2.16 31.39 -33 -27.4 1965.6 19.66 285.08 35 95 225.76 2.26 32.74 -32 -25.6 2015.5 20.16 292.31 36 96.8 235.41 2.35 34.14 -31 -23.8 2066.5 20.67 299.71 37 98.6 245.37 2.45 35.59 -30 -22 2118.4 21.18 1 307.24 38 100.4 255.67 2.56 37.08 -29 -20.2 2171.3 21.71 314.91 39 102.2 266.29 2.66 38.62 -28 -18.4 2225.2 22.25 322.73 40 104 277.25 2.77 40.21 -27 -16.6 2280.2 22.80 330.70 41 105.8 288.56 2.89 41.85 -26 -14.8 2336.1 23.36 338.81 42 107.6 300.22 3.00 43.54 -25 -13 2393.2 23.93 347.09 43 109.4 312.24 3.12 45.28 -24 -11.2 2451.3 24.51 355.52 44 111.2 324.63 3.25 47.08 -23 -9.4 2510.4 25.10 364.09 45 113 337.39 3.37 48.93 -22 -7.6 2570.7 25.71 372.84 46 114.8 350.54 3.51 50.84 -21 -5.8 2632.1 26.32 381.74 47 116.6 364.08 3.64 52.80 -20 -4 2694.7 26.95 390.82 48 118.4 378.02 3.78 54.83 -19 -2.2 2758.3 27.58 400.04 49 120.2 392.37 3.92 56.91 -18 -0.4 1 2823.2 1 28.23 409.46 50 122 407.13 1 4.07 1 59.05 1 -17 1.4 2889.3 28.89 1 419.04 1 51 1 123.8 Appendix 6 ► 422.31 4.22 61.25 -16 3.2 2956.5 29.57 428.79 52 125.6 437.92 4.38 63.51 -15 5 3025 30.25 438.72 I 53 127.4 453.98 4.54 65.84 -14 6.8 3094.7 30.95 448.83 I 54 129.2 470.47 4.70 68.23 -13 8.6 3165.7 31.66 459.13 55 131 487.43 4.87 70.69 -12 10.4 3238.1 32.38 469.63 I 56 132.8 504.84 5.05 73.22 -11 12.2 3311.7 33.12 480.30 I 57 134.6 522.73 5.23 75.81 -10 14 3386.7 33.87 491.18 58 136.4 541.1 5.41 78.48 -9 15.8 3463 34.63 502.25 I 59 138.2 559.95 5.60 81.21 -8 17.6 3540.7 35.41 513.52 I 60 140 579.31 5.79 84.02 -7 19.4 3619.9 36.20 525.00 61 141.8 599.16 5.99 86.90 -6 21.2 3700.5 37.01 536.69 62 143.6 619.54 6.20 89.85 -5 23 3782.7 37.83 548.61 63 145.4 640.43 6.40 92.88 -4 24.8 3866.3 38.66 560.74 64 147.2 661.86 6.62 95.99 -3 26.6 3951.5 39.52 573.10 65 149 683.82 6.84 99.18 -2 28.4 4038.3 40.38 585.69 66 150.8 706.34 7.06 102.44 -1 30.2 4126.8 41.27 598.52 67 152.6 729.41 7.29 105.79 0 32 4217 42.17 611.60 68 154.4 753.06 7.53 109.22 1 33.8 4309 43.09 624.95 69 156.2 777.28 7.77 112.73 2 35.6 4402.9 44.03 638.56 70 158 802.08 8.02 116.33 3 37.4 4498.7 44.99 652.46 71 159.8 827.48 8.27 120.01 4 39.2 4596.5 45.97 666.64 72 161.6 853.49 8.53 123.78 5 41 4696.5 46.97 681.15 73 163.4 880.11 8.80 127.64 6 42.8 4798.9 47.99 696.00 74 165.2 907.35 9.07 131.60 7 44.6 4904.1 49.04 711.25 75 167 Appendix 7 ► Residential Mechanical Application For Instruction/Checklist,please click here Site Address: 17318 81st Dr NE Project Name: I Lenita Parrish J Project Valuation: 16231.95 Preferred Contact: Owner Contractor Project Description: Installation of 80% gas furnace with AC Owner Details Owner Name: Lenita Parrish Home No.: 17318 Email Address: lenitaparrish@gmail.com Cell No.: 2066042651 Mailing Address: 17318 81 st Dr NE City: Arlington State: WA Zip: 98223 Contractor Details Contractor Name: Fast Home services Office No.: 14258184090 Email Address: mdonker@fast-heatingandaii Cell No.: Mailing Address: 116120 Redmond-Woodinville City: Woodinville State: I WA Zip: 98072 L&I Contractor License Number: I FASTHHA754P8 Expiration Date: 10/29/2027 Proposed Piping Material: O CSST O Brass 0 Black Steel Galvanized Steel Other Proposed Piping Size: 1/2" 5/8" 3/4" III 1 1/2" 2" Distance from Meter to furthest Appliance: Total BTU's of all Appliances: 90000 Residential mechanical permits will be assessed a base fee, fee per unit, and inspection fee (plan review per Table 4-8 may be required for certain permits) Type of Fixture No. of Units Additional Plan Review fees Air Cond. Unit< or equal to 100Btu/h Air Cond. Unit>100Btu/h Air Cond. Unit>500BhVh 1 Air Handling Units Base Mechanical Fee Boiler<100Btu/h>3hp Boiler>1 million Btu/h<50hp Boiler>1.5 million Btu/h<50hp Boiler>100Btu/h 3-15hp Boiler>500Btu/h 15-30hp Commercial Hoods -Type I Commercial Hoods -Type II Diffusers Dryer Ducting Ductwork(drawings required) Evaporative Coolers ExhaustNentilation Fans Fireplace/Insert/Stove Forced Air Heat< or equal to 100 Btu/h Forced Air Heat>100 Btu/h 1 Gas Clothes Dryer Gas Fired Air Conditioning Unit<or equal to 100 Btu/h Gas Fired Air Conditioning Unit>100 Btu/h Gas Fired Air Conditioning Unit>500 Btu/h Gas Piping<or equal to 5 units Gas Piping for each additional unit> 5 Heat Exchangers Heat Pump-Condensing Unit Hot Water Heat Coils Miscellaneous Appliance - regulated by mechanical code, not otherwise specified Package Units< or equal to 100btu/> 100 Btu Range/Cook top-Gas Fired Refrigeration Unit < or equal to 100Btu/h Refrigeration Unit>100Btu/h Refrigeration Unit>500Btu/h Re-inspection fee Residential Range Hood Unit Heaters < or equal to 100 Btu/h F Unit Heaters >100 Btu/h Variable Air Volume Boxes (part of air conditioning system) Wall Heaters - Gas Fired Water Heater- Gas Fired I hereby certify that the above information is correct and that the construction on, and the occupancy and the use of the above described property will be in accordance with the laws, rules and regulation of the State of Washington. Print Name: I Micaela-Aleja Donkey Date: 07/21/2026 0 TR E° Product Data Upflow/Downflow/Horizontal Gas-Fired, 1-Stage and 2-Stage Induced Draft Furnaces with High Efficiency Motor Upflow, Downflow, Horizontal Right/Left Single Stage Two Stage S8BlAO4OM3PSCA/CS8XlAO4OM3PSCA/C S8X2A040M3PSC S8131 B040M2PSCA/C S8X1 B040M2PSCA/C S8X2B060M4PSC S8131 B060M4PSCB/C S8X1 B060M4PSCB/C S8X2B080M4PSC S8131 B080M4PSCB/C S8X1 B080M4PSCB/C S8X2C080M5PSC S8131C080M5PSCA/CS8X1C080M5PSCA/C S8X2C100M5PSC ° S8131C100M5PSCB/C S8X1C100M5PSCB/C S8X2D120M5PSC \ ®� S8131 D120M5PSCA/C S8X1 D120M5PSCA/C 00 o •� � ssxz 0 ® S8X1 ® S8B1 Note:Models may have a "T"in the 12th digit designating they meet California Note:Graphics in this document are for less than 40 ng/J(NOx)emissions requirements. representation only.Actual model may differ in appearance. May 2024 22-1959-1 F-EN 1 � n N = TECH NO LOG I ES' 0 MWE® Table of Contents General Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 Features and Benefits. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 Accessories. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 Product Specifications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6 AirflowTables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 CFM Versus Temperature Rise. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 WiringDiagrams. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 Electrical Connections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 FieldWiring . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 Outline Drawing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 2 22-1959-1 F-EN 0 TRANE® General Features NATURAL GAS MODELS Central Heating furnace designs are certified by Intertek for both natural and L.P. gas. Limit setting and rating data were established and approved under standard rating conditions using American National Standards Institute standards. SAFE OPERATION The Integrated System Control is a solid state device which continuously monitors for presence of flame when the system is in the heating mode of operation. Dual solenoid combination gas valve and regulator provide additional safety. QUICK HEATING Durable,cycle tested,heavy gauge tubular aluminized steel heat exchanger quickly transfers heat to provide warm conditioned air to the structure. Low energy power vent blower,to increase efficiency and provide a discharge of gas fumes to the outside. BURNERS Multiport, Inshot burners will give years of quiet and efficient service.All models can be converted to L.P.gas with LP conversion kit. INTEGRATED SYSTEM CONTROL Exclusively designed operational program provides total control of furnace limit sensors, blowers,gas valve,flame control and includes self diagnostics for ease of service. ENERGY EFFICIENT OPERATION Air-TiteTI cabinet design is certified to<1%air leakage per ASHRAE 193 "Method of Test for Determining the Airtightness of HVAC Equipment." AIR DELIVERY The 9 speed constant torque blower motor has sufficient airflow for most heating and cooling requirements and will switch from heating to cooling speeds on demand from room thermostat. STYLING Heavy gauge steel and "wrap-around"cabinet construction is used in the cabinet with baked- on enamel finish for strength and beauty. Every orientation has at least two venting options. There are no knockouts on cabinet. FEATURES AND GENERAL OPERATION The S-Series furnace utilizes a Silicon Nitride Hot Surface Ignition system,which eliminates the waste of a constant burning pilot.The integrated system control lights the main burners upon a demand for heat from the room thermostat.Complete front service access. a. Low energy power venter b.Vent proving pressure switches. 22-1959-1 F-EN 3 0 TRANE® Features and Benefits 80%AFUE on S8*1 and S8X2 FURNACE MODELS Lowers utility bills ELECTRICALLY EFFICIENT Efficient airflow design reduces electrical energy use 34 INCH TALL Lighter,easier to move and fit into tight spaces like short basements or tight closets Works great with larger, high-efficiency coils No knockouts 4-WAY MULTI-POISE S8*1 -8 SKU's — Upflow/Downflow/Horizontal Left/Horizontal Right S8X2-6 SKU's —Upflow/Downflow/Horizontal Left/Horizontal Right Added application flexibility and reduction in specification errors AIRFLOW At least 400 CFM/ton at 0.5 in. H2O external static pressure REGULATORY All models are airtight; 1%or less air leakage as per ASHRAE 193 Open vestibule design provides a full 34" high open vestibule for ease of installation and service DIMENSIONS Widths are industry standard: 14.5", 17.5",21" and 24.5" Depth remains approximately 28" Cabinet is compatible with industry standard coils,as well as,other accessories INTEGRATED FURNACE CONTROL Setup/Status/Diagnostics/Digital Display No dip switches Last six errors stored Dry contact EAC and HUM connections All Molex connections; no spade terminals Low voltage labeled above and below Rain shield over IFC keeps condensate off the control TUBULAR ALUMINIZED STEEL HEAT EXCHANGER VORTICA II BLOWER, DESIGNED EXCLUSIVELY FOR THE S-SERIES FURNACE Improved airflow efficiency Durable,easy to clean, housing Single piece belly band/motor arm assembly Blower deck has full-length rails for easy removal and replacement, regardless of poise FOUR-WAY MULTI-POISE (UPFLOW,DOWNFLOW, HORIZONTAL LEFT AND RIGHT) Easier to specify Shipped ready to install (no conversion kits required) Every model has at least two venting options 4 22-1959-1 F-EN 0 TRANS° Accessories Table 1. Accessories Model Number Description Use with BAYHANG Horizontal Hanging Kit All Furnaces BAYLIFTB Dual Return Kit(B size extension) B Cabinet Furnaces BAYLIFTC Dual Return Kit(C size extension) C Cabinet Furnaces BAYLIFTD Dual Return Kit(D size extension) D Cabinet Furnaces BAYBASE205 Downflow Subbase All Furnaces in Downflow orientation B Cabinet Modular Blowers in Downflow/ BAYFLTR203 Horizontal Filter Kit Horizontal C Cabinet Modular Blowers in Downflow/ BAYFLTR204 Horizontal Filter Kit Horizontal BAYFLTR205 Horizontal Filter Kit D Cabinet Modular Blowers in Downflow/ Horizontal BAYFLTR206 Filter Access Door Kit(Downflow only) All Furnaces in Downflow orientation BAYSF1165*(a) 1"SlimFit Box with MERV 4 Filter All Furnaces All furnaces when used in side return BAYSF1255* 1"SlimFit Filter and Insulated Frame application B Cabinet furnaces only when in bottom return application FLRSF1255 1"Filter replacement(Qty 12) BAYSF1255* BAYVENT600A Internal venting kit B,C,and D Furnaces in Downflow orientation BAYVENT800B Masonry Chimney Vent Kit All Furnaces BAYSWT21AHALTAA High Altitude Pressure Switch Kit S8*lA04OM3P*,S8*1B040M2P* BAYSWT22AHALTAA High Altitude Pressure Switch Kit S8X2A040M3P* BAYSWT14AHALTAB High Altitude Pressure Switch Kit S8*1C080M5P*,S8*1C100M5P*, S8*1D120M5P* BAYSWT15AHALTAA High Altitude Pressure Switch Kit S8*lB06OM4P*,S8*1B080M4P* BAYSWT16AHALTAB High Altitude Pressure Switch Kit S8X2C080M5P* BAYSWT17AHALTAA High Altitude Pressure Switch Kit S8X2B060M4PSAAA BAYSWT18AHALTAA High Altitude Pressure Switch Kit S8X2B080M4P* BAYSWT19AHALTAA High Altitude Pressure Switch Kit S8X2C100M5P* BAYSWT23AHALTAA High Altitude Pressure Switch Kit S8X2B060M4PSAAB&later, S8X2B060M4PTAAA&later BAYSWT24AHALTAA High Altitude Pressure Switch Kit S8X2D120M5P* BAYLPSS400* Propane Conversion Kit with Stainless Steel All Furnaces Burners PIP02095 U fitting for gas piping All Furnaces for right hand gas entry (a) Airflow greater than 1600 CFM requires dual returns 22-1959-1 F-EN 5 0 TRANS° Product Specifications MODEL S8*1A040M3PSC S8*1B040M2PSC S8*1B060M4PSC S8*1B080M4PSC A/C(a) A/C(a) B/C(a) B/C(b) Type Upflow/Horizontal/ Upflow/Horizontal/ Upflow/Horizontal/ Upflow/Horizontal/ Downflow Downflow Downflow Downflow RATINGS(c) Input BTUH 40,000 40,000 60,000 80,000 Capacity BTUH(ICS)(d) 32,300 32,500 48,700 65,100 Temp.Rise(Min.-Max.)OF 30-60 30-60 30-60 30-60 AFUE-Rating(d) 80 80 80 80 Return Air Temp.(Min.-Max.) OF 550F-80OF 550F-80OF 550F-80OF 550F-80OF BLOWER DRIVE DIRECT DIRECT DIRECT DIRECT Diameter-Width(in.) 11 X 8 11 X 8 11 X 8 11 X 8 No.Used 1 1 1 1 Speeds(No.)(e) CTM-9 CTM-9 CTM-9 CTM-9 CFM vs.in.w.g. See Fan Performance See Fan Performance See Fan Performance See Fan Performance Table Table Table Table Motor HP 1/2 1/3 3/4 3/4 R.P.M. 1050 1050 1050 1050 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 120/1/60 FLA 6.4 4.1 9.2 9.2 COMBUSTION FAN-Type PSC PSC SP SP Drive-No.Speeds Direct-1 Direct-1 Direct-1 Direct-1 Motor RPM 3300/3162 3300/3225 3300 3300 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 120/1/60 FLA 0.30 0.30 1.40 1.40 Inducer Orifice 1.20 1.15 1.40 2.15 FILTER-Furnished? No No No No Type Recommended High Velocity High Velocity High Velocity High Velocity Hi Vel.(No.-Size-Thk.) 1-14X25-tin. 1-16X25-tin. 1-16X25-1in. 1-16X25-tin. VENT PIPE DIAMETER-Min.(in.)(f) 4 Round 4 Round 4 Round 4 Round HEAT EXCHANGER-Type Aluminized Steel Aluminized Steel Aluminized Steel Aluminized Steel Gauge(Fired) 20-19 20-19 20-19 20-19 ORIFICES-Main Nat.Gas Qty.-Drill Size 2-45 2-45 3-45 4-45 L.P.Gas Qty.-Drill Size 2-56 2-56 3-56 4-56 GAS VALVE Redundant-Single Stage Redundant-Single Redundant-Single Stage Redundant-Single Stage Stage PILOT SAFETY DEVICE-Type 120 V SiNi Igniter 120 V SIM Igniter 120 V SiN1 Igniter 120 V SIM Igniter BURNERS-QTY 2 2 3 4 POWER CONN.-V/Ph/HZ(9) 120/1/60 120/1/60 120/1/60 120/1/60 Ampacity(Amps) 8.5 5.6 13.1 13.1 Max.Overcurrent Protection 15 15 15 15 (Amps) PIPE CONN.SIZE(IN.) 1/2 1/2 1/2 1/2 DIMENSIONS HxWxD HxWxD HxWxD HxWxD Uncrated(in.) 34 x 14.5 x 28.75 34 x 17.5 x 28.75 34 x 17.5 x 28.75 34 x 17.5 x 28.75 6 22-1959-1 F-EN 0 TR/WE° Product Specifications MODEL S8*1A040M3PSC S8*1B040M2PSC S8*1B060M4PSC S8*1B080M4PSC A/C(a) A/C(a) B/C(a) B/C(b) Crated(in.) 35.5 x 16.5 x 30.87 35.5 x 19.5 x 30.87 35.5 x 19.5 x 30.87 35.5 x 19.5 x 30.87 WEIGHT Shipping(Lbs.)/Net(Lbs.) 102/94 128/120 128/120 137/129 (a) Central Furnace heating designs are certified to ANSI Z21.47-latest edition. (b) Central Furnace heating designs are certified to ANSI Z21.47-latest edition. (0 For U.S.applications,above input ratings(BTUH)are up to 2,000 feet,derate 4%per 1,000 feet for elevations above 2,000 feet above sea level. (d) Based on U.S.government standard tests (e) 9 Speed constant torque ECM Blower Motor. (f) Refer to the Installer's Guide. (9) The above wiring specifications are in accordance with National Electric Code,however,installations must comply with local codes. MODEL S8*1C080M5PSC S8*1C100M5PSC S8*1D120M5PSC A/C(b) B/C(a) A/C(a) Type Upflow/Horizontal/ Upflow/Horizontal/ Upflow/Horizontal/ Downflow Downflow Downflow RATINGS(b) Input BTUH 80,000 100,000 120,000 Capacity BTUH(ICS)(c) 64,700 80,700 98,000 Temp.Rise(Min.-Max.)OF 30-60 30-60 35-65 AFUE-Rating(c) 80 80 80 Return AirTemp.(Min.-Max.) OF 550E-80OF 550E-80OF 550E-80OF BLOWER DRIVE DIRECT DIRECT DIRECT Diameter-Width(in.) 11 X 11 11 X 11 11 X 11 No.Used 1 1 1 Speeds(No.)(d) CTM-9 CTM-9 CTM-9 CFM vs.in.w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 1 1 1 R.P.M. 1050 1050 1050 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 10.9 10.9 10.9 COMBUSTION FAN-Type PSC PSC PSC Drive-No.Speeds Direct-1 Direct-1 Direct-1 Motor RPM 3300/2971 3300/2680 3300/3025 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 0.30/0.43 0.33/0.58 0.33/0.57 Inducer Orifice 1.80 2.50 2.15 FILTER-Furnished? No No No Type Recommended High Velocity High Velocity High Velocity Hi Vel.(No.-Size-Thk.) 1-20 X 25-1 in. 1-20 X 25-1 in. 1-24 X 25-1 in. VENT PIPE DIAMETER-Min.(in.)(e) 4 Round 4 Round 4 Round HEAT EXCHANGER-Type Aluminized Steel Aluminized Steel Aluminized Steel Gauge(Fired) 20-19 20-19 20-19 ORIFICES-Main Nat.Gas Qty.-Drill Size 4-45 5-45 6-45 L.P.Gas Qty.-Drill Size 4-56 5-56 6-56 GAS VALVE Redundant-Single Stage Redundant-Single Stage Redundant-Single Stage PILOT SAFETY DEVICE-Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS-QTY 4 5 6 22-1959-1 F-EN 7 aMANE Product Specifications MODEL S8*1CO80M5PSC S8*1C100M5PSC S8*1D120M5PSC A/C(b) B/Clai A/C(a) POWER CONN.-V/Ph/HZ M 120/1/60 120/1/60 120/1/60 Ampacity(Amps) 14.1/14.2 14.1/14.4 14.1/14.4 Max.Overcurrent Protection(Amps) 15 15 15 PIPE CONN.SIZE(IN.) 1/2 1/2 1/2 DIMENSIONS HxWxD HxWxD HxWxD Uncrated(in.) 34 x 21 x 28.75 34 x 21 x 28.75 34 x 24.5 x 28.75 Crated(in.) 35.5 x 23 x 30.87 35.5 x 23 x 30.87 35.5 x 26.5 x 30.87 WEIGHT Shipping(Lbs.)/Net(Lbs.) 142/134 144/136 160/152 (a) Central Furnace heating designs are certified to ANSI Z21.47-latest edition. (b) For U.S.applications,above input ratings(BTUH)are up to 2,000 feet,derate 4%per 1,000 feet for elevations above 2,000 feet above sea level. (_) Based on U.S.government standard tests (d) 9 Speed constant torque ECM Blower Motor. (e) Refer to the Installer's Guide. M The above wiring specifications are in accordance with National Electric Code,however,installations must comply with local codes. Model S8X2A040M3PSC(a) S8X2B060M4PSC(a) S8X2B080M4PSC(a) Type Upflow/Horizontal/Downflow Upflow/Horizontal/Downflow Upflow/Horizontal/Downflow RATINGS(b) 1st Stage Input BTUH 26,000 39,000 52,000 1st Stage Capacity BTUH(ICS) 20,900 31,500 42,500 2nd Stage Input BTUH 40,000 60,000 80,000 2nd Stage Capacity BTUH(ICS)W 32,200 48,700 65,000 1st Stage Temp.Rise(Min.-Max.)OF 20-50 20-50 25-55 2nd Stage Temp.Rise(Min.-Max.)IF 30-60 30-60 30-60 AFUE(%)(c) 80 80 80 Return Air Temp.(Min.-Max.) IF 55OF-80OF 55OF-80OF 55OF-80OF BLOWER DRIVE DIRECT DIRECT DIRECT Diameter-Width(in.) 11 X 8 11 X 8 11 X 8 No.Used 1 1 1 Speeds(No.)(d) CTM-9 CTM-9 CTM-9 CFM vs.in.w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 1/2 3/4 3/4 R.P.M. 1050 1050 1050 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 6.4 9.2 9.2 COMBUSTION FAN-Type PSC PSC PSC Drive-No.Speeds Direct-2 Direct-2 Direct-2 Motor RPM 3300/2600 3300/2600 3300/2600 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 0.30 0.30 0.33 Inducer Orifice 1.20 1.40 1.75 FILTER-Furnished? No No No Type Recommended High Velocity High Velocity High Velocity Hi Vel.(No.-Size-Thk.) 1-14X25-Iin. 1-16X25-Sin. 1-16X25-Iin. VENT PIPE DIAMETER-Min.(in.)(e) 4 Round 4 Round 4 Round HEAT EXCHANGER-Type Aluminized Steel Aluminized Steel Aluminized Steel Gauge(Fired) 20-19 20-19 20-19 8 22-1959-1 F-EN 0 TR/WE° Product Specifications Model S8X2A040M3PSC(a) S8X2B060M4PSC(a) S8X2B080M4PSC(a) ORIFICES-Main Nat.Gas Qty.-Drill Size 2-45 3-45 4-45 L.P.Gas Qty.-Drill Size 2-56 3-56 4-56 GAS VALVE Redundant-Two Stage Redundant-Two Stage Redundant-Two Stage PILOT SAFETY DEVICE-Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS-QTY 2 3 4 POWER CONN.-V/Ph/HZ(f) 120/1/60 120/1/60 120/1/60 Ampacity(Amps) 8.5 12.0 12.0 Max.Overcurrent Protection(Amps) 15 15 15 PIPE CONN.SIZE(IN.) 1/2 1/2 1/2 DIMENSIONS HxWxD HxWxD HxWxD Uncrated(in.) 34 x 14.5 x 28.75 34 x 17.5 x 28.75 34 x 17.5 x 28.75 Crated(in.) 35.5 x 16.5 x 30.87 35.5 x 19.5 x 30.87 35.5 x 19.5 x 30.87 WEIGHT Shipping(Lbs.)/Net(Lbs.) 102/94 132/124 137/129 (a) Central Furnace heating designs are certified to ANSI Z21.47-latest edition. (b) For U.S.applications,above input ratings(BTUH)are up to 2,000 feet,derate 4%per 1,000 feet for elevations above 2,000 feet above sea level. (0 Based on U.S.government standard tests (d) 9 Speed constant torque ECM Blower Motor. (e) Refer to the Installer's Guide. M The above wiring specifications are in accordance with National Electric Code,however,installations must comply with local codes. Model S8X2C080M5PSC(a) S8X2C100M5PSC(a) S8X2D120M5PSC(a) Type Upflow/Horizontal/Downflow Upflow/Horizontal/Downflow Upflow/Horizontal/Downflow RATINGS(b) 1st Stage Input BTUH 52,000 65,000 84,000 1st Stage Capacity BTUH(ICS) 41,800 52,300 67,800 2nd Stage Input BTUH 80,000 100,000 120,000 2nd Stage Capacity BTUH(ICS)W 64,900 80,600 98,000 1st Stage Temp.Rise(Min.-Max.)IF 30-60 25-55 30-60 2nd Stage Temp.Rise(Min.-Max.)IF 30-60 30-60 35-65 AFUE(%)(0 80 80 80 Return Air Temp.(Min.-Max.) IF 550F-80OF 55°F-80OF 550F-80OF BLOWER DRIVE DIRECT DIRECT DIRECT Diameter-Width(in.) 11 X 11 11 X 11 11 X 11 No.Used 1 1 1 Speeds(No.)(d) CTM-9 CTM-9 CTM-9 CFM vs.in.w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 1 1 1 R.P.M. 1050 1050 1050 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 10.9 10.9 10.9 COMBUSTION FAN-Type PSC PSC PSC Drive-No.Speeds Direct-2 Direct-2 Direct-2 Motor RPM 3300/2600 3300/2600 3300/2600 Volts/Ph/Hz 120/1/60 120/1/60 120/1/60 FLA 0.30 0.33 0.33 Inducer Orifice 1.80 2.50 2.15 FILTER-Furnished? No No No 22-1959-1 F-EN 9 0 MAKE Product Specifications Model S8X2C080M5PSC(a) S8X2C100M5PSC(a) S8X2D120M5PSC(a) Type Recommended High Velocity High Velocity High Velocity Hi Vel.(No.-Size-Thk.) 1-20 X 25-1 in. 1-20 X 25-1 in. 1-24 X 25-1 in. VENT PIPE DIAMETER-Min.(in.)(e) 4 Round 4 Round 4 Round HEAT EXCHANGER-Type Aluminized Steel Aluminized Steel Aluminized Steel Gauge(Fired) 20-19 20-19 20-19 ORIFICES-Main Nat.Gas Qty.-Drill Size 4-45 5-45 6-45 L.P.Gas Qty.-Drill Size 4-56 5-56 6-56 GAS VALVE Redundant-Two Stage Redundant-Two Stage Redundant-Two Stage PILOT SAFETY DEVICE-Type 120 V SiN1 Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS-QTY 4 5 6 POWER CONN.-V/Ph/HZ(f) 120/1/60 120/1/60 120/1/60 Ampacity(Amps) 14.1 14.1 14.1 Max.Overcurrent Protection(Amps) 15 15 15 PIPE CONN.SIZE(IN.) 1/2 1/2 1/2 DIMENSIONS HxWxD HxWxD HxWxD Uncrated(in.) 34 x 21 x 28.75 34 x 21 x 28.75 34 x 24.5 x 28.75 Crated(in.) 35.5 x 23 x 30.87 35.5 x 23 x 30.87 35.5 x 26.5 x 30.87 WEIGHT Shipping(Lbs.)/Net(Lbs.) 142/134 144/136 160/152 (a) Central Furnace heating designs are certified to ANSI Z21.47-latest edition. (b) For U.S.applications,above input ratings(BTUH)are up to 2,000 feet,derate 4%per 1,000 feet for elevations above 2,000 feet above sea level. (0 Based on U.S.government standard tests (d) 9 Speed constant torque ECM Blower Motor. M Refer to the Installer's Guide. M The above wiring specifications are in accordance with National Electric Code,however,installations must comply with local codes. 10 22-1959-1 F-EN 0 TRANE° Airflow Tables Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SCFM/Watts 592/40 342/43 93/46 2 SCFM/Watts 666/48 467/56 268/65 70/74 3 SCFM/Watts 687/49 493/59 299/69 105/78 4 SCFM/Watts 938/100 788/111 638/123 488/134 338/146 S8*1A040M3PSC 5 SCFM/Watts 1006/119 870/131 733/144 597/156 461/169 S8X2A040M3PSC 6 SCFM/Watts 1068/140 944/154 820/167 696/181 573/194 7 SCFM/Watts 1174/181 1066/196 957/211 848/226 740/241 8 SCFM/Watts 1167/194 1098/219 1029/244 960/269 891/294 9 SCFM/Watts 1556/398 1474/416 1392/435 1310/453 1228/471 Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SCFM/Watts 526/34 2 SCFM/Watts 744/54 533/63 322/72 110/81 3 SCFM/Watts 820/68 662/81 504/94 346/106 188/119 4 SCFM/Watts 967/97 811/110 654/122 498/135 341/148 S8*1B040M2PSC 5 SCFM/Watts 997/104 840/116 687/129 533/142 380/154 6 SCFM/Watts 1052/119 911/133 771/148 630/162 490/176 7 SCFM/Watts 1099/134 968/150 837/165 706/180 575/196 8 SCFM/Watts 1168/157 1047/174 926/191 805/208 684/225 9 SCFM/Watts 1303/214 1196/233 1088/252 981/271 874/290 Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SCFM/Watts 596/38 287/42 2 SCFM/Watts 851/70 667/81 483/92 299/102 115/113 3 SCFM/Watts 1142/141 1018/156 893/172 769/187 644/203 4 SCFM/Watts 1196/160 1079/176 961/192 844/208 726/224 S8*1 B060M4PSC 5 SCFM/Watts 1362/220 1258/239 1154/257 1050/276 946/294 S8X2B060M4PSC 6 SCFM/Watts 1416/250 1319/269 1221/288 1124/307 1026/327 7 SCFM/Watts 1495/287 1402/307 1309/327 1216/347 1123/367 8 SCFM/Watts 1574/337 1487/357 1401/378 1314/399 1228/420 9 SCFM/Watts 1983/659 1899/670 1815/680 1730/691 1646/701 Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SCFM/Watts 552/34 160/34 2 SCFM/Watts 891/82 720/93 549/105 378/117 207/129 3 SCFM/Watts 1123/141 996/157 869/173 742/189 615/205 4 SCFM/Watts 1344/224 1240/224 1136/263 1033/283 929/302 S8*1B080M4PSC 5 SCFM/Watts 1479/290 1384/312 1290/333 1196/354 1102/375 S8X2B080M4PSC 6 SCFM/Watts 1583/354 1496/376 1408/398 1321/420 1234/442 7 SCFM/Watts 1654/405 1572/428 1491/451 1409/474 1327/496 8 SCFM/Watts 1818/542 1739/561 1661/581 1582/600 1503/619 9 SCFM/Watts 1926/645 1841/656 1756/667 1670/679 1585/690 22-1959-1 F-EN 11 aTRANE` Airflow Tables Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SUM/Watts 728/44 358/49 2 SUM/Watts 809/53 540/63 271/74 3 SUM/Watts 1440/185 1273/201 1105/218 938/234 770/250 4 SUM/Watts 1536/220 1385/238 1233/257 1081/275 929/293 S8*1COSOMSPSC 5 SUM/Watts 1689/278 1552/299 1414/320 1277/342 1140/363 S8X2CO8OM5PSC 6 SUM/Watts 1792/326 1661/348 1530/371 1400/394 1269/417 7 SUM/Watts 1899/373 1771/397 1643/422 1515/446 1387/471 8 SUM/Watts 2094/500 1985/527 1875/554 1766/582 1656/609 9 SCFM/Watts 2533/931 2414/932 2295/933 2176/933 2058/934 Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SUM/Watts 821/55 442/55 2 SUM/Watts 1359/163 1195/180 1031/198 868/215 704/233 3 SUM/Watts 1602/246 1461/268 1321/290 1180/312 1040/334 4 SUM/Watts 1807/336 1678/362 1550/388 1421/414 1292/440 S8*iC 100M 5PSC 5 SUM/Watts 1827/345 1700/371 1572/398 1444/425 1317/451 S8X2C100M5PSC 6 SUM/Watts 1925/395 1800/423 1675/451 1550/479 1425/508 7 SUM/Watts 2102/503 1985/534 1869/566 1752/597 1635/628 8 SUM/Watts 2222/602 2115/635 2008/667 1901/700 1794/732 9 SUM/Watts 2458/896 2351/913 2245/930 2138/947 2032/964 Furnace Airflow(CFM)Vs.External Static Pressure(in.W.C.) Model Tap Static 0.1 0.3 0.5 0.7 0.9 1 SUM/Watts 1469/184 912/126 355/68 2 SUM/Watts 1429/175 1165/171 900/168 636/164 371/160 3 SUM/Watts 1567/215 1401/232 1235/248 1069/264 903/280 4 SUM/Watts 1858/334 1731/361 1605/388 1478/415 1351/441 S8*i D 12OM5PSC 5 SUM/Watts 2004/418 1890/447 1776/476 1662/505 1548/534 S8X2D12OM5PSC 6 SUM/Watts 2110/488 2004/518 1898/549 1792/580 1686/611 7 SUM/Watts 2245/596 2148/629 2052/662 1956/695 1860/729 8 SUM/Watts 2440/765 2345/794 2250/824 2155/854 2060/884 9 SUM/Watts 2536/882 2431/904 2325/927 2220/949 2114/972 12 22-1959-1 F-EN 0 TRANE® CFM Versus Temperature Rise SSBI/SSXI Furnaces have one stage heating S8X2 Furnaces have two stage heating.First Stage is Low heating and Second Stage is High heating. Table 2. S8B1/S8X1 CFM Versus Temperature Rise Model 500 600 700 800 900 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 S8*1A040M3PSC 59 49 42 37 33 30 S8*1B040M2PSC 59 49 42 37 33 30 S8*1B060M4PSC 56 49 44 40 37 34 32 S8*1B080M4PSC 59 54 49 46 42 40 37 35 33 S8*1C080M5PSC 59 54 49 46 42 40 37 35 33 S8*1C100M5PSC 57 53 49 46 44 41 39 37 35 34 32 31 S8*1D120M5PSC 59 56 52 49 47 44 42 40 39 37 Table 3. S8X2 — Low Heat CFM Versus Temperature Rise—First Stage(Low)Heating Model 400 500 600 700 800 900 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 S8X2A040M3PSC 48 39 32 28 S8X2B060M4PSC 56 47 40 35 31 28 S8X2B080M4PSC 55 48 43 39 35 32 30 28 S8X2C080M5PSC 55 48 43 39 35 32 30 28 S8X2C100M5PSC 60 53 48 44 40 37 34 32 30 S8X2D120M5PSC 57 52 48 44 41 39 37 35 33 31 Table 4. S8X2 — High Heat CFM Versus Temperature Rise—Second Stage(High)Heating Model 400 500 600 700 800 900 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 S8X2A040M3PSC 59 49 42 37 33 30 27 S8X2B060M4PSC 56 49 44 40 37 34 32 S8X2B080M4PSC 59 54 49 46 42 40 37 35 33 S8X2C080M5PSC 59 54 49 46 42 40 37 35 33 S8X2C100M5PSC 57 53 49 46 44 41 39 37 35 34 32 31 S8X2D120M5PSC 59 56 52 49 47 44 42 40 39 37 22-1959-1 F-EN 13 0 TRANE° Wiring Diagrams NOTES' 1.IF ANY OF THE ORIGINAL WIRING SUPPLIED WITH THIS FURNACE MUST BE REPLACED,IT MUST BE WITH WIRE HAVING A TEMPERATURE RATING OF AT LEAST 105°C.WIRES 12,18,20,48,49,50,51,92&93 MUST BE RATED T0250°C. 2.FOR PROPER AIRFLOW IN COOLING/HEAT PUMP MODE,"Y1"ON THE THERMOSTAT MUST BE CONNECTED TO'Y1' OF THE IFC.SEE IOM FOR FIELD WIRING. 3.THE INDOOR BLOWER MOTOR AIRFLOW TABLES ARE LOCATED IN THE IOM.TO CHANGE AIRFLOW USE THE MENU/OPTIONS BUTTONS. S8B1 4.LINE CHOKE AND WIRE BK/28 ONLY USED ON MODELS WITH 1 HP MOTORS. 5.FLAME SENSE TEST PADS:1 VDC=1 MICROAMP.FLAME CURRENT CAN VARY DEPENDING ON THE VOM THAT IS USED AND THE VOLTAGE SUPPLIED TO THE FURNACE, ALTERNATE WIRING DIAGRAM-BLOWER MOTOR THE ACCEPTABLE RANGE S 0.75,3 MICROAMPS. I 6.IF APPLICABLE CONNECTION FOR FACTORY PROGRAMMING ONLY. _M P. yus4 ® ���p_�rWI 58B1peDURNER �M RDLLDUTa ��I/51TxERMA<uMiT � Yu4vYe»Yv51 I 1.—..—..—..—..— c..—. LJ j :eio c•1 BIl4 I I BKI, IUI x . r--.�aa-._ -.� REeAe-Fxa L r—vw — U ww4 MOTOR uvE — Y. weRDNJNU' rPC L� vuwxn ..—.. KWIBUMAHM] N HU a s wt ro RrrvH T s wH p K/L �"re p mD�No� 'leN WH W D 11 —a € „ I — ,'1:'`r'x I cEal a To FloGEN He Her xaa aE lir N�•I KI2] BK13 ,`KIJ I cuo FL TOR R W b e Hl1] To..ciAPss Owwta ILIZEt .NSO 1 aE. ucE rc MOTOR TN ND cE I a R MGENOTE ? 8 z x I H21 F 7 GO H12 scc Hl21 FL W1 K/ eon Gxo IGN D ®® IG B AM02 L.. 'oJ uwxn rLlu AC Lnwuz & wn KwH " RIWHIS INTEGRATED FURNE CONTROL US] ELECTRICALRATING INPUT:24VAC,W Hz. H LINE TNSSEC CURREW:450MA. rran�PROaE N NEUTRAL +MV LOAD WH112 GND GROUND MV OUTPUT;1SA@24 VAC THERMALr-E;;�7n-E� IFC HLO HIGH INO OUTPUT'.22FLA,3.SLFA ACHLI HIGNPUT IG�OUTPUT:2.OA�TVA n INPUT CIto 7`WER DO R: FACTORY PS PRESSURE SWITCH WH WHITE LINE 14.HUMIDIFIER LRA®LEAVER YL YELLOW 2AL WIRING INPUT HUMIDIFIERTAIR CLEANER �L IND INDUCER OR ORANGE —'--ALTERNATE sEExoTEs (DRY CONTACTS) IFC INTEGRATED k4A)(.LOAD20 VAC WAY120VAGBE GR GREEN FURNACE 24 USE OR IEO VAC WAY BE BR BROWN •.�.�.LINE FIELD CONTROL USED RO REO _...........241 WIRING RAF REVERSE USE SA BL BLUE AIRFLOW ION HOT SURFACE FRS FLAME ROLLOUT TIMINGS dam• IGNITER e"A FUSE TH 24VAC'HOT) PREPURGE:S SEC. SWITCH TR 24VAC COMMON) INTERPURGE:%SEC. FLAME NOLLOUT1 PA Mvc MAIN VALVE POSTPURDES SEC DEFAULT BLOWER MOTOR TAP SELECTIONS RAF REVERSE 6"-6 LC LINE CHOKE ��FP FrAME PROBE COMMON ION WARM UP:20SEC. r AIRFLOW MV MAIN VALVE IAP:3',TFI:55EC. n coe(CON-1 PAN):TAP TIN TRANSFORMER RETRIES'.2 RECYCLES:10 co(COOLING/HP):TAPT ILI INDUCER LIMIT HEAT ON DELAY:UP TO AO SEC. n HT(wsHEA1): P SWIITTCHURE T GROUND "INTERNAL THERMAL PROTECTION IREP COOL ON DELAY:O SEC. ION IGNTER AUTO RESTART:W MIN. 1 Stage Inducer with CTM Blower Motor FP FIAME PROBE AUTO RESTART PURGE:60 SEC. Sbbe Codes [nF Blower Ta for CorNnuous Fan Ens Flame tleleUed,shauM nor be DreseM IdL Itlle LOP C1. Blower Ta MCom ressor Motle E6.1 Votiage reversed polarity HE Healing HLP H Blower Te for Heati Motle E6.2 Bad Greereme EP Blowr Tep Number rU� Run Teal Motle E6.3 (1)Igniter may Mae LGF COnrinuoum Fen Enor Catles (2)IgniMropen LPI Ccoling1Heat Pump Motle EDI Le OflR—mam-,rues, El.l Gas valve iseneryitttl wfientlsMultl beol! dFt Defmsr Motle E2.1 R xaetlatl Failetl to est 0arre EDo Fleme current is lwv,bN still Menu Option3 E2.2 Recycles exceetletl lbss of strong enoughbalbwopmretim 0— Orientation ealablarlad llameor PS epenx10) Ell (1)Gas vslven.—MIzed Err Active Alarm form E2.3 Ges Valvarmienmmizmtlwben0 (2)Gasvalve relay aWckclmeE L" Le"6 Farb IT,Clear, sheoltlbemxceedmtla0erlOhmes E12 Open fuse • _ Held Ort.,N.n 5 sec) E3.I Shaletl Pressure SWNl: 'fL7yJ1"•�SC!`S C. Cede Release Number E3.2 Open Pressure SWllcb Y• End Ceeb,g DO Gas,(arm) E04 Open Thermal Llmlt Rollo.SWOtl:, HGd Heat 01 Way(sec) a Reverse Aim.I.- D346340POl REV H 14 22-1959-1 F-EN aMWE Wiring Diagrams NOTES: 120V 60 Hz.1 PH 1.IF ANY OF THE ORIGINAL WIRING AS SUPPLIED WITH THIS FURNACE MUST BE REPLACED,IT MUST BE WITH WIRE POWER SUPPLY PER LOCAL CODE HAVING A TEMPERATURE RATING OF AT LEAST 105°C.WIRES 12,18,20,48,49,50,51,92,93 MUST BE RATED TO 250°C. JUNCTION Box 2.COOLING I HEAT PUMP SYSTEMS-Y1 ANDIOR Y2 MUST CONNECT FROM THE THERMOSTAT TO THE IFC LOW 'H !N VOLTAGE TERMINALS FOR PROPER AIRFLOW.SEE IOM FOR FIELD WIRING. !GND I 3.THE INDOOR BLOWER MOTOR AIRFLOW TABLES ARE LOCATED IN THE IOM. SHX1 i r— r I S8X 1 TO CHANGE AIRFLOW USE THE MENU/OPTIONS BUTTONS. 4.LINE CHOKE AND WIRE BK/280NLY USED ON MODELS WITH 1 HP MOTORS. 5.FLAME SENSE TEST PADS:1 VDC=1 MICROAMP.FLAME CURRENT CAN VARY DEPENDING ON THE VOM THAT IS USED AND THE VOLTAGE SUPPLIED TO yl THE FURNACE.THE ACCEPTABLE RANGE IS 0.75-3 MICROAMPS. ---FA yu4 r YD4T TOeox BHxYW 3 Yll YW yuRL yu51 I I F— LINE CHOKE l PANEL LOOP YU4 u K z z BK ows YU4ay�-S��YI/51J K r...... J vu exoixn o u4 L HI4 Moron i IFC Llxa- 3 BK ax BK I ms 1 BK YIfNHO VWM 3P 4 WH j RANHI5 I macWH H1 YY m° ° ,. POR "R s�ocu coos I 1 WH WH ,° r.c.a.w-QR. uxa. 1 VENT 3�'— I a MOTOR p 3° Its g at 1 i u I Ixc jBK 8K3 INDUCER) BK1 WH _e 2 ,SI rJ IIG IGN — BLOWER `rc� y WH WH F� ux cxors I IJ I I 9K MOTOR * 1 RDNVH DNJH BK] rarveL Loon I a 2 VLIWH VLAMN KJ2T p r 3 BLIWH BLNYH T 4 BKANH BKNYH iT - Tars 5 ORANH ORIWH ... 6 BL BL I� I I iLlie+ n3u i xT z s IINo-cT[al I ILI 1 I TNS M v ee Usep �o warm eexmea fi: ���'' 2 BL H -mHsnr sxRlNK I s 3 OR HTi Z 24v 120vH121 Mvc 5� BL BK Wi W I B 6 RD Y ® o co 7, GR �F ®® I v 8 RD BURNER DI DNrt12 H 9 VL R M BOX GND YIN HR4 y� Uys,� I rr 10 WH— INTEGRATEDL C GAS P 11 VALVE FURNACE CONTROL ELECTRICAL RATING ww INPUT'24VAC.WW H LINE TNSSEC.CURRENT:450MA. N NEUTRAL 111 LOAD 11 F�t.:rWW12 GAD GROUND MV WTPUi:t54®24VAC L..— m IFC HLO 0 TP LIMIT IND OUTPUT',2.2 FU,3.5 U. O HLI HIGH LIMIT IGNNPOUTPUT:2.0 A@120 VAC d INPUT CIRC.BLOWER OUTPUT : W R G BC Yw1 Y2 Ekilikh PB PRESSURE SWITCH 14,5FIA,25LRA a120VAC THERMOSTAT INPUT HUMIDIFIER BNR CLEAN ER g IND INDUCER BK BIA K R REEN LINE FACTORY sse xoTez IFC INTEGRATED (DRY CONTACTS) MAX LOAD:t-0A0 MAY B WH WHITE BR BROWN 24V WIRING FURNACE 2/VAC OR 120 VAC MAY BE YL YELLOW RD RED ......LINE FIELD CONTROL USED FLAME ROLLOUT2 THERMAL LIMIT 24V WIRING IF REVERSE FUSE:SA AIRFLOW VL YL 9 IGN HOTNITER FACE FRS FLAME ROLLOUT TH 24VAC'COT) TIMINGS d IGNITER �'� FUSE SWITCH TR -AC BCD MON) PREPURGE:0 SEC. MVC MANIA- INTERPURGE:50 SEC. COMMON POST PURGE:5SEC. o-Fo RAF REVERSE 6'�'a LC LINE LHOKE FP FLAME PROBE MVC MAIN VALVE IGN WARM UP'20SEC. RAF-2 RAF-1 r AIRFLOW ME TRANSFORMER MP:3',TFI'SSEC ILI INDUCER LIMIT RETRIES.2 RECYCLES 10 �F VL�VL INPUT HEAT ON DELAY:UP TO 30 SEC. o� PSSPRRIECHURE T GROUND "INTERNAL THERMAL PROTECTION IGN IGNITER COOL ON DELAY:O SEC. FP FUME PROBE AUTO RESTART:BO MIN. 1 Stage Inducer With CTM Blower Mohr AUTO RESTART PURGE:60 SEC. Stoo.CoEee jh0 Heat ORDNay(sec) E3.1 SMUed Pressure Switch 11 Idle [OF Nmrer TapWC,driuous Fan E3.2 Open Pressure Swtrnh VL Heal'mg COP CI. Blmrer Tap for lst EOH Open Thermal Ll.It RI SYmdr EP Blmver Tap Number .,I.Compressor Motle orR.—AidWw SwtrG1 [OF Cominuous Fan C2. Blower Tapfor2na EDS Flame de d,—la not be present CPI CcclinglHeat Pump Motle O)Igniteropen Stage Compressor Mode E6.1 Voltage reversed polarity PS DEFAULT BLOWER MOTOR TAP SELECTIONS drE DefMM OA xEP xl owe. Blr Tap ror Heating Motle E6 Bea.2 Grounairg FLAME_ROLLOUTi Menu Options .U� Run Teet Motle E5.3 (1)IgnOer relay(ails VL R COF 0— OrienWibn (CONSTANT FAN):TAP CPi(FIRST STAGE COOLING):TAP Error Caaes CP2(SECOND STAGE COOLING):TAP 7 E. Ad,AN,Nenu E01 Ld1o1 IROOrinkmal hllures El.l Gasvalve Uenergizedwhenit should be M HT(GAS HEAT):TAP LSF Lastll Nub(To Clear, E2.1 RetryexceedA(Fai1earoest0ame) EOB Flame aeent is law.but All � YL Hold Option Button 5secl E2.2 Recyclesexceeaetl IM of strong en0Who,diwopereti0n C, Coae Release Number estadisbea Aa—PS open xl0) EII (1)Gas calve noleroryized COd Codirg ORDelay lseq E23 Ges Valve rMenergUatl wfien it (2)Ges retie releysNW Gosetl OdU o..r Unit sho,Ia ba exueeaea anerlotimee E12 oenmeeI D345844POl REVF 22-1959-1 F-EN 15 aTRANE` Wiring Diagrams 120,60 Hz.1 PH NOTES: POWERSUPPLYPPff LOCALCODE CQ�( 1 LEAST05C WIRES 12.18,48N9,50,51.N93,G AS SUPPLIED wITH ANT 94IREQURE A TEMPERATURE RATING OF ATCE M TLEEAAST 50'CR HAVINGATEMPERATURE RATING OF Ai rJUNCTION BO% 1T1 jH N7 /8X2 2.FOR PROPER AIRFLOW IN COOLINGIHEAT PUMP MODES,YIANDIOR Y2 MUST CONNECT FROM THE THERMOSTAT TO THE IFC LOW VOLTAGE TERMINAL STRIP, I y.IGND� 3.FOR COOLING ONLY SYSTEMS,LEAVE YI-0 JUMPER IN PLACE ON THE IFC FOR CORRECT LED READOUT. 4.FOR HEAT PUMP SYSTEMS,REMOVE THE Yt-0 JUMPER,CONNECT'O'FROM THE THERMOSTAT TO YI'ON THE IFC LOW VOLTAGE TERMINAL STRIP FOR CORRECT LEDAGE READOUT. L T ,_I r,_I I r S.B SHOWN SINGLE STAGE HEATING THERMOSTAT,ATALL TIMR.S SECOND ND TERMINALS ERATON TIE WILL EGITAU RTHEIALSTRIP.HTD WILL ELAY I j} ICI BE SHOWN ABUSE SEVEN SEGMENT DISPLAY AT HANGS ARROW STAGE OPERATION WILL BEGIN AFTER THE OL MENU AN DELAY HAS COMPLETED. 6.AIRFLOW TABLES ARE LOCATED IN THE IOM.TO CHANGEAIRFLOW,REFER TO THE INTEGRATED FURNACE CONTROL MENU AND OPTIONS D, TINECH RFLOWANDBLOW 0ND UVS. O DO ].LINE C U45 AN T WIRE RE N ONLY USE T O MOTELS WR MODELS. LINE CHOKE B.WIRE SENANTRAF-2AS NOTPRESENTON P.FUMEC MODELS. 9.PLANE USSENSETE VOLTAG:1VTC=IMIOTHE.F ECURRENTCAN VARY DEPENDING O.75l MIC VON THAT ,,,=o,,,,„,T� PANELLOOP USETANO THE VOLTAGE SUPPLIED TO THE FURNACE.THE ACCEPTABLE NANGE IS O.T53 MICROAMPS. �""I�"r--/4�Ir- • BK B _ TIK L J S8X2 ^ �" ��"n'11 IFC .._.._.. 1. BK N 'S. sax�vuaa r+ Z vla,J I `1xE 3 .s v ou 77 TM 2 BK xO Ilws�iwwws���� I 1 • BK ONp� vuvE I ,x 4• WH atoEUDTWER R cm 3 WH wa I uxe. �WH WH 2 LLB IeN,H 1 BK 1 VENT BK HI 2 BK 2 MOTOR iR". 3 RD 3 (INDUCER) wwws BLOWER P NER 401 pH.—coeE I ION 5 WH WH IGN WH— a� MOTOR P Q'n f'IN r BK 3 i i I 1 RDANH RDNJH 2 YLANH YLNVH —Hi * 3 BLAAI BLM/H BE S 9 BKAN H BKNdH net Li}Sp' s 6 ORANH ORANH N z I� II I O o 6 BL BL M zs� I w 1 I TINS c 2 BL W O IS, 3 OR ry o 4 VL 24v 20v nxeawreeawK I N 6 BL B RD I I�NUM �la�lel eX 6 Ix�l��l van, Psa T' BR see no BE use ,p 3 w O - Iwo"cEal I O o 8 GR BURNER o R H$ Hen.srvrelrvrc I Mn 9 RD 1J- E BOX GNO w 10 BRSBE L 2xrzl x 11 W 3 WH ®®IOx xn I I P52 O ae L.._ JELU w Y L E_ w,TO % ol "®RTT 9;0�®"M 5 ww, aeaaxaa CIRCe a Ea m IFC r� IN EFREssuPF zswnr},s7 ac Te ea FLAME_ROLLOUT2 THERMAL_LIMIT . LINE A IF ratio oruaxAee suV,SE� zovA®NNY-ss VL VL LINE 'on wlT x F.A.wn H p Egg' RAF-2 RAF-1 IIITEa wee �^mFuuEPROBE RNPur VL u VL VUBE ED _ E'^"L t xeawae T caouxp F1 FLANE,RSOBE S 2 Stage Inducer with CTM Blower Motor _ Jo Has,srnoa Slates Codes HDa Heel OR DEI re` BE n Premure Svntpl Stee IdL mill ISd IrAerSeeTeb ON OmThennel LlmR.ROIIWI SwifcM1,o,PrwNe Airflow Sit,, 1st Stage Healing CDP CI. BDwer Tap Wr,st Slags ..Flame tleleded,shcUldndbe resell VL DEFAULT BLOWER MOTOR TAP SELECTIONS HE2 2ntl Sla a Heagn Caxpreesa Motle BE I Vdta a revereetl ola' 11 &aver TOP Number 12 Bbwer Tap for 2nd Sage SDI Bed Gmundin9 COF(CONSTANT FAN):TAP [DF Continuous PER Compressor Motle F6.3 (1)Igniler relay faib CL1(FIRST STAGE COOLING):TAP CtI tat Stage Cooling HEP HI. 3—Ta fond Sce Heatln 2lO: CL2(SECOND STAGE COOLING):TAP [L2 2nd Soge Curling H2 Bldwer Tap for 2nd doge Heating ET.I ISt stage gas III(MAIL)is energized when it should bed( FLAME_ROLLOUTI P51 HT1(FIRST STAGE HEAT):TAP HpI tat So eHeat Pum .u� Run Tesl Motle E. Fbme Frrent is bw betstlll strop enou hWallav retlm VL HT2(SECOND STAGE HEAT):TAPS xP2 2nd Bra eHeat Pum Error Codes E09 Oen Inducer Limit SwilcAa COMensate Svnlch dFE Tefroaf Mode EOI Lour of IRO or'mdmal failures EII (1)lsl stage gas valve not every zed when it ehWd be Men.0 ons E2., Rein,exweded FEW to Ru Aare (2)1atsWge gas valve relay sWd closed 0.� One— E2.2 Recyde xceedec(Ioss of eetabllahed (3)2nd siege gas vahre relay sWd,closed E.. Acflve Abrm Menu flameor PBo en xl0 (4)2ndstage gas valveenergizetl LfiP Last 6 Faufls(TOClsar, E2.3 I stSMge Gas Valve rM energized when it when flshould notbe Hdd Optbn Budon Ssec) sM1ald be exreedetl atlerf0 times (5)2nd stage gasvalve notenerg'vxd [. Code Re lease Number E3.1 $M1orletl Pressure SMilcM1,lsl SWe when gshad be COd Coding ON Delay(sec) E3.2 Oen pressure Swflch,lst Sla E12 Open Wse I. Ouc UnOT a E3.R Sholled Pressure Switch2nd Sloe 16 22-1959-1 F-EN 0 TRAME° Electrical Connections Make wiring connections to the unit as indicated on enclosed wiring diagram.As with all gas appliances using electrical power,this furnace shall be connected into a permanently live electric circuit.It is recommended that furnace be provided with a separate"circuit protection device" electric circuit.The furnace must be electrically grounded in accordance with local codes or in the absence of local codes with the National Electrical Code,ANSI/NFPA 70,if an external electrical source is utilized.The integrated furnace controiis polarity sensitive.The hot leg of the 120V power supply must be connected to the black power lead as indicated on the wiring diagram. Refer to the SERVICE FACTS literature and unit wiring diagram attached to furnace. I � ' FIRE HAZARD! Failure to follow this Warning could result in property damage,severe personal injury,or death. This Warning applies to installations with a flammable refrigeration system.The furnace must be powered except for service.The furnace shall be installed and connected according to installation instructions and wiring diagrams that are provided with the evaporator coil. Field Wiring FIELD WIRING DIAGRAM FOR S8B1/S8X1 SINGLE STAGE HEATING THERMOSTAT,ONE/TWO STAGE AC OR HEAT PUMP Two Stage Thermostat Furnace Outdoor Unit NOTES: (No Transformer) 1) HP=Wiring used for Heat Pump systems. 2) Y1 and/or Y2 must connect from the thermostat to the IFC for proper airflow. W1 W1 HP X2 3)AITCONT824 thermostats do not require the use of X2. 4) Y2 not available for S861. option®1 R R R HP Condensate ------------------ Switch ------------G------- G Q B B B ;LY2 Y2 - ------- -- Y2-- ----- option r2 Y1 Y1 Y1 Y1 Condensate ----- ------------- ----------------- -------- --------- --------------------—--- Switch --- ---�p HP 0 Two Stage FIELD WIRING DIAGRAM FOR S8X2 TWO STAGE Thermostat Fumace HEATING THERMOSTAT,ONE/TWO STAGE AC OR HEAT PUMP NOTES: 1) HP=Wiring used for Heat Pump systems. Outdoor Unit 2)Y1 and/or Y2 must connect from the thermostat to the IFC W2 W2 (No Transformer) for proper airflow. 3) Remove Y1-0 jumper for HP systems.O terminal must be connected as shown for gas heating operation during defrost. X2 W1 W1 HP 4) If the thermostat does not have W2,or there are not enough conductors jumper W1 to W2 at the IFC. Option#1 R R HP R 5)AITCONT824 thermostats do not require the use of X2. Condensate --- --------- ---• Switch --- -------------- B Q G G Retl p AfrFD Field Wiring EAC B B 'LY2 using eAc Terminals Green ---• g� Y2Y2 Blue .......................................................... Black (- Option m Y 1 Y1 Replace the factory installed 35va transformer with the 50va transformer i�l suppliedwith theair cleaner.Connect to FAC terminals on the IFC per ___ ________ _____O HP 0 the wldng diagram. 22-1959-1 F-EN 17 0 TRANE° Outline Drawing Table 5. 14.5", 17.5",21" and 24.5"Width Cabinets v - M M \ M d N Vcp c.0 c9 cp 9� M_ cn aD cfl cD c.0 cfl 00000000000000000000u00000000a000 w � wwww 00000a000000u0000000u0000000aa000 o � "' c") "' "' w M = _ _ _ Q V ego �m ° -- - . m o i o w i m o i 7 - u .d a sg 18 22-1959-1 F-EN Notes 22-1959-1 F-EN 19 TRANE® Trane - by Trane Technologies (NYSE: TT), a global innovator - creates comfortable, energy efficient indoor environments for commercial and residential applications. For more information, please visit trane. com or tranetechnologies.com. 0%. us Intertek Trane has a policy of continuous data improvement and it reserves the right to change design and specifications without notice.We are committed to using environmentally conscious print practices. 22-1959-1 F-EN 30 May 2024 Supersedes 22-1959-1 E-EN (March 2023) ©2024 Trane Permit#: 6975 Permit Date: 07/22/26 Permit Type: RESIDENTIAL MECHANICAL Project Name: Lenita Parrish Applicant Name: Fast Home services Applicant Address: 16120 Redmond-Woodinville Rd N Applicant, City, State, Zip: Woodinville Contact: Micaela-Aleja Donker Phone: 4258184090 Email: mdonker@fast-heatingandair.com Scope of Work: Replacement of furnace and heat pump Valuation: 16232.00 Square Feet: 0 Number of Stories: 0 Construction Type: VB Occupancy Group: R-3; Residential ID Code: Permit Issued: 07/22/2026 Permit Expires: 01/21/2027 Form Permit Type: RESIDENTIAL MECHANICAL Civic Plus Number: Status: COMPLETE Assigned To: LaNay Hendrick Property Parcel# Address Legal Description Owner Name Owner Phone Zoning BRUNNER JACK D 100 SINGLE 01040900000900 17318 81 ST DR NE FAMILY &BETTY L RESIDENCE Contractors Contractor Primary Contact Phone Address Contractor Type License License# 16120 Woodinville CONSTRUCTION Construction Fast Water Heater (425)336-3617 Redmond Rd Ne CONTRACTOR Contractor FASTWWH750P7 Ste 15 16120 Woodinville CONSTRUCTION Fast Water Heater (425)336-3617 Redmond Rd Ne CONTRACTOR UBI 602 564 544 Ste 15 Inspections Date Inspection Type Description Scheduled Date Completed Date Inspector Status C 14. Please contact homeowner 07/31/2026 MECHANICAL with arrival window.Lenita 08/05/2026 08/05/2026 BUILDING Approved FINAL Parrish(206)604-2651 Fees Fee Description Notes Amount Processing/Technology $25.00 Inspection $75.00 Air Cond.Unit<100 BTU/h Enter#of units $15.00 Forced Air Heat<100 BTU/h Enter#of units $15.00 Mechanical Base Permit Fee $25.00 Credit Card Service $4.65 Total $159.65 Attached Letters Date Letter Description 07/22/2026 Building Permit 07/22/2026 Web Form-Residential Mechanical Application Payments Date Paid By Description Payment Type Accepted By Amount 07/22/2026 Ionitse cc LaNay Hendrick $4.65 07/22/2026 XBP Conf: $155.00 323085646 Outstanding Balance $0.00 Uploaded Files Date File Name 07/23/2026 33384518-Signed Permit Application.pdf 07/22/2026 33363230-Furnacee Spec Sheet.pdf 07/22/2026 33363227-Air Conditioning Spec Sheet.pdf 07/22/2026 8e38c5f568a87cl929ad795ae2ca03a3 Mechanical Layout.jpg 07/22/2026 6dOb2907fb35el6eace6aa72blbfe9ff Measurments.jpg 07/22/2026 fd20d85082c95ecdc45d7335eea22509 20815635-Residential Mechanical Application.pdf CITY OF ARLINGTON ` 18204 59th Avenue NE,Arlington,WA 98223 INSPECTIONS: 360-403-3417-Permit Center: 360-403-3551 BUILDING PERMIT 17318 81ST DR NE Permit#: 6975 PERMIT EXPIRES 180 DAYS AFTER Parcel#: 01040900000900 DATE OF ISSUANCE. Scope of Work:Replacement of furnace and heat pump Valuation: 16232.00 OWNER APPLICANT CONTRACTOR BRUNNER JACK D&BETTY L Fast Home services Fast Water Heater 17318 81 ST DR NE 16120 Redmond-Woodinville Rd N 16120 Woodinville Redmond Rd Ne Ste 15 ARLINGTON,WA 98223 Woodinville Woodinville,Wa 98072 4258184090 (425)336-3617 LIC:FASTWWH750P7 EXP: 11/20/2027 LIC:602 564 544 EXP:05/31/2027 MECHANICAL CONTRACTOR PLUMBING CONTRACTOR LIC#: EXP: LIC#: EXP: JOB DESCRIPTION PERMIT TYPE: RESIDENTIAL MECHANICAL CODE YEAR: 2021 STORIES: 0 CONST.TYPE: VB DWELLING UNITS: OCC GROUP: R-3;Residential BUILDINGS: OCC LOAD: PERMIT APPROVAL The issuance or granting of this permit shall not be construed to be a permit for,or approval of,any violation of this Code or any other ordinance or order of the City,of any state or federal law,or of any order,proclamation,guidance advice or decision of the Governor of this State.To the extent the issuance or granting of this permit is interpreted to allow construction activity during any period of time when such construction is prohibited or restricted by any state or federal law,or order,proclamation,guidance advice or decision of the Governor of this State,this permit shall not authorize such work and shall not be valid.The building official is authorized to prevent occupancy or use of a structure where in violation of this Code,any other City ordinances of this jurisdiction or any other ordinance or executive order of the City,or of any state or federal law,or of any order,proclamation, guidance advice or decision of the Governor.The building official is authorized to suspend or revoke this permit if it is determined to be issued in error or on the basis of incorrect,inaccurate or incomplete information,or in violation of any City ordinance,regulation or order,state or federal law,or any order,proclamation,guidance or decision of the Governor. I AGREE TO COMPLY WITH CITY AND STATE LAWS REGULATING CONSTRUCTION AND IN DOING THE WORK AUTHORIZED THEREBY;NO PERSON WILL BE EMPLOYED IN VIOLATION OF THE LABOR CODE OF THE STATE OF WASHINGTON RELATING TO WORKMEN'S COMPENSATION INSURANCE AND RCW 18.27. THIS APPLICATION IS NOT A PERMIT UNTIL SIGNED BY THE BUILDING OFFICIAL OR HIS/HER DEPUTY AND ALL FEES ARE PAID. IT IS UNLAWFUL TO USE OR OCCUPY A BUILDING OR STRUCTURE UNTIL A FINAL INSPECTION HAS BEEN MADE AND APPROVAL OR A CERTIFICATE OF OCCUPANCY HAS BEEN GRANTED.IBC 110/IRC 110. SALES TAX NOTICE: Sales tax relating to construction and construction materials in the City of Arlington must be reported on your sales tax return form and coded City of Arlington#3101. 07/22/2026 Applicant Signature Date Building Official Date CONDITIONS Adhere to approved mechanical equipment Permit shall be onsite for inspections Call for inspections The property owner shall ensure that the construction project complies with all applicable zoning codes and regulations.The property owner shall also ensure that the construction project does not cause any adverse impact on the surrounding environment or community.The property owner shall be responsible for obtaining all necessary permits and approvals from the relevant authorities before commencing construction.The property owner shall ensure that the construction project complies with all applicable design review requirements. THIS PERMIT AUTHORIZES ONLY THE WORK NOTED.THIS PERMIT COVERS WORK TO BE DONE ON PRIVATE PROPERTY ONLY.ANY CONSTRUCTION ON THE PUBLIC DOMAIN(CURBS, SIDEWALKS,DRIVEWAYS, MARQUEES,ETC.)WILL REQUIRE SEPARATE PERMISSION. PERMIT FEES Date Description Fee Amount 07/22/2026 Processing/Technology $25.00 07/22/2026 Inspection $75.00 07/22/2026 Air Cond. Unit<_100 BTU/h $15.00 07/22/2026 Forced Air Heats 100 BTU/h $15.00 07/22/2026 Mechanical Base $25.00 Total Due: $155.00 Total Payment: $155.00 Balance Due: $0.00 CALL FOR INSPECTIONS Call by 3:30 pm for next day inspection,allow 48 hours for Fire Inspections When calling for an inspection please leave the following information: Permit Number,Type of Inspection being requested,and whether you prefer morning or afternoon INSPECTION INFORMATION I Pass/Fail