Upflow/ Horizontal Left/Right, Downflow Two Stage Condensing Gas Fired Furnace

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1 Product Data Upflow/ Horizontal Left/Right, Downflow Two Condensing Gas Fired Furnace Upflow, Convertible to HorizontalRight or HorizontalLeft S9V2B040U3PSBB S9V2B060U3PSBB S9V2B060U4PSBB S9V2B080U3PSBB S9V2B080U4PSBB S9V2C080U5PSBB S9V2C100U4PSBB S9V2C100U5PSBB S9V2D120U5PSBB Downflow Only S9V2B040D3PSBB S9V2B060D3PSBB S9V2B080D3PSBB S9V2B080D4PSBB S9V2C100D4PSBB S9V2C100D5PSBB S9V2D120D5PSBB Note:Graphics in this document are for representation only. Actual model may differ in appearance. July E-EN

2 General Features NATURALGAS MODELS Central Heating furnace designs are certified by the American Gas Association 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 stainless steel primary heat exchangerquickly transfers heat to provide warm conditioned air to the structure. Low energy power vent blower,to increase efficiency and provide a positive 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. Also contains dry contactsforeac and HUM. ENERGY EFFICIENT OPERATION Furnace is certified by the manufacturer to leak 1% or less of nominal air conditioning CFM delivered when pressurized to.5" water column with all inlets, outlets, and drains sealed. AIR DELIVERY The variable speed blower motor has sufficient airflow for most heating and cooling requirements and will switch from heating to cooling speeds on demand from room thermostat. SECONDARY HEAT EXCHANGER The S-Series furnace has a special type 29-4C stainless steel secondary heat exchanger to reclaim heat from flue gases which would normally be lost. STYLING Heavygauge steeland "wrap-around"cabinet constructionis used inthe cabinetwith bakedon enamel finish for strength and beauty. Every orientation has at least two venting options. There are no knockouts on cabinet. FEATURES ANDGENERAL 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 E-EN

3 Features and Benefits 96.0% AFUE ACROSSALLMODELS Meets utility rebates 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 3 WAY MULTI-POISE/ DEDICATED DOWNFLOW 9SKU s Upflow/Horizontal Left / HorizontalRight 7SKU s Downflow Added application flexibility and reduction in specification errors AIRFLOW Atleast400 CFM/tonat0.5in. H 2 0externalstatic pressure; setup airflow optionsdown to290 CFM/ton REGULATORY All modelsare air tight;1%orless air leakage asper ASHRAE 193 Open vestibule design provides a full 34 high open vestibule DIMENSIONS Widths are industry standard: 17.5, 21, and 24.5 Depth remains approximately 28 Cabinet will be 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 STAINLESS STEELPRIMARY HEAT EXCHANGER 29 4C STAINLESS STEEL SECONDARY HEAT EXCHANGER Stainless steel is a more durable, corrosive-resistant material than aluminumized steel Integrated rail system for easy access if required Reduces or eliminates need for baffles VORTICA IIBLOWER,DESIGNEDEXCLUSIVELY FOR THE S-SERIESFURNACE Improved airflow efficiency Durable, easy to clean, two piece housing Single piece belly band/ motor arm assembly Blower deck has full-length rails for easy removal and replacement, regardless of poise E-EN 3

4 Featuresand Benefits THREE WAY MULTI-POISE (UPFLOW, HORIZONTAL LEFT ANDRIGHT) PLUS DEDICATED DOWNFLOW Easier to specify Shipped ready to install(no kits required) Every model has at least two venting options When in horizontal, trap extends only about 2 Barbed fitting on trap at hose connection and on cabinet transition for hose has barbed fitting and clamps at both ends for leak resistance. Vent table improvements including longer vent lengths; 2 pipe can be used up to 100K E-EN

5 Accessories Table 1. Accessories Model Number Description Use with BAYHANG Horizontal Hanging Kit All Upflow Furnaces BAYVENT200B Sidewall Vent Termination Kit All Furnaces BAYVENTCN200B Sidewall Vent Termination Kit (Canada All Furnaces CPVC) BAYAIR30AVENTA Concentric Vent Kit All Furnaces BAYAIR30CNVENT Concentric Vent Kit (Canada CPVC) All Furnaces BAYREDUCE Reducing Coupling (CPVC) All Furnaces BAYLIFTB Dual Return Kit (B size extension) B Cabinet Upflow Furnaces BAYLIFTC Dual Return Kit (C size extension) C Cabinet Upflow Furnaces BAYLIFTD Dual Return Kit (D size extension) D Cabinet Upflow Furnaces BAYBASE205 Downflow Subbase All Downflow Furnaces BAYFLTR206 Filter Access Door Kit (Downflow only) All Downflow Furnaces BAYSF1165AA 1 SlimFit Box with MERV 4 Filter All Upflow Furnaces BAYFLTR203 Horizontal Filter Kit B Cabinet Furnaces in Downflow/Horizontal BAYFLTR204 Horizontal Filter Kit C Cabinet Furnaces in Downflow/Horizontal BAYFLTR205 Horizontal Filter Kit D Cabinet Furnaces in Downflow/Horizontal BAYLPSS400B Propane Conversion Kit with Stainless Steel All Furnaces Burners BAYMFGH200B Manufactured/Mobile Housing Kit All Furnaces BAYCNDTRAP2A BAYCNDTRAP3A greater than 1600 CFM requires dual returns Inline Condensate Trap Kit used with Special Venting on 2 Vent Pipe Inline Condensate Trap Kit used with Special Venting on 3 Vent Pipe All Furnaces All Furnaces E-EN 5

6 Product Specification MODEL S9V2B040U3PSBB S9V2B060U3PSBB S9V2B060U4PSBB S9V2B080U3PSBB TYPE Upflow/Horizontal Upflow/Horizontal Upflow/Horizontal Upflow / Horizontal RATINGS (b) 1st Input BTUH (ICS) 26,000 39,000 39,000 52,000 1st Capacity BTUH 25,220 37,830 37,830 50,440 2nd Input BTUH 40,000 60,000 60,000 80,000 2nd Capacity BTUH (ICS) (c) (d) 38,800 58,200 58,200 77,600 1st Temp. Rise (Min.-Max.) nd Temp. Rise (Min.-Max.) AFUE (%) (c)(d) BLOWER DRIVE DIRECT DIRECT DIRECT DIRECT Diameter Width (In.) 11 X 8 11 X 8 11 X 8 11 X 8 No. Used Speeds (No.) Variable Variable Variable Variable CFM vs. in. w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 1/2 1/2 3/4 1/2 RPM Variable Variable Variable Variable Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA COMBUSTION FAN Type Centrifugal Centrifugal Centrifugal Centrifugal Drive No. Speeds Direct - 2 Direct - 2 Direct - 2 Direct - 2 Motor HP RPM 3300/ / / /2600 Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA FILTER Furnished? No No No No Type recommended High Velocity High Velocity High Velocity High Velocity Hi Vel. (No.-Size-Thk.) 1 16x25 1 in. 1 16x25 1 in. 1 16x25 1 in. 1 16x25 1 in. VENT PIPE DIAMETER Min (in.) (e) (f) 2 Round 2 Round 2 Round 2 Round HEAT EXCHANGER Type Fired 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel Unfired 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel Gauge (Fired) ORIFICES Main Nat. Gas Qty. Drill Size LP Gas Qty. Drill Size GAS VALVE Redundant - Two Redundant - Two Redundant - Two Redundant - Two PILOT SAFETY DEVICE Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS Type Multiport Inshot Multiport Inshot Multiport Inshot Multiport Inshot Number POWER CONN. V/Ph/Hz (g) 120 / 1 / / 1 / / 1 / / 1 / 60 Ampacity (In Amps) E-EN

7 Product Specification MODEL S9V2B040U3PSBB S9V2B060U3PSBB S9V2B060U4PSBB S9V2B080U3PSBB Max. Overcurrent Protection (Amps) PIPE CONN. SIZE (in.) 1/2 1/2 1/2 1/2 DIMENSIONS H x W x D H x W x D H x W x D H x W x D Uncrated (In.) 34 x 17-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 Crated (In.) 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 WEIGHT Shipping (Lbs.)/Net (Lbs.) 122/ / / /124 (b) (c) (d) (e) (f) (g) Meets Energy Star 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. For Canadian applications, above input ratings (BTUH) are up to 4,500 feet, derate 4% per 1,000 feet for elevations above 4,500 feet above sea level. Central Furnace heating designs are certified to ANSI Z21.47 / CSA 2.3 latest edition. Based on U.S. government standard tests. Refer to the Vent Length Table in the Installer's Guide. All S9V2 furnace models have a vent outlet diameter that equals 2 in. The above wiring specifications are in accordance with National Electrical Code; however, installations must comply with local codes. MODEL S9V2B080U4PSBB S9V2C080U5PSBB S9V2C100U4PSBB S9V2C100U5PSBB TYPE Upflow/Horizontal Upflow/Horizontal Upflow/Horizontal Upflow / Horizontal RATINGS (b) 1st Input BTUH (ICS) 52,000 52,000 65,000 65,000 1st Capacity BTUH 50,440 50,440 63,050 63,050 2nd Input BTUH 80,000 80, , ,000 2nd Capacity BTUH (ICS) (c) (d) 77,600 77,600 97,000 97,000 1st Temp. Rise (Min.-Max.) nd Temp. Rise (Min.-Max.) AFUE (%) (c)(d) BLOWER DRIVE DIRECT DIRECT DIRECT DIRECT Diameter Width (In.) 11 X 8 11 X X X 10 No. Used Speeds (No.) Variable Variable Variable Variable CFM vs. in. w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 3/4 1 3/4 1 RPM Variable Variable Variable Variable Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA COMBUSTION FAN Type Centrifugal Centrifugal Centrifugal Centrifugal Drive No. Speeds Direct - 2 Direct - 2 Direct - 2 Direct - 2 Motor HP RPM 3300/ / / /2600 Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA FILTER Furnished? No No No No Type recommended High Velocity High Velocity High Velocity High Velocity Hi Vel. (No.-Size-Thk.) 1 16x25 1 in. 1 20x25 1 in. 1 20x25 1 in. 1 20x25 1 in. VENT PIPE DIAMETER Min (in.) (e) (f) 2 Round 2 Round 2 Round 2 Round HEAT EXCHANGER Type Fired 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel Unfired 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel E-EN 7

8 Product Specification MODEL S9V2B080U4PSBB S9V2C080U5PSBB S9V2C100U4PSBB S9V2C100U5PSBB Gauge (Fired) ORIFICES Main Nat. Gas Qty. Drill Size LP Gas Qty. Drill Size GAS VALVE Redundant - Two Redundant - Two Redundant - Two Redundant - Two PILOT SAFETY DEVICE Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS Type Multiport Inshot Multiport Inshot Multiport Inshot Multiport Inshot Number POWER CONN. V/Ph/Hz (g) 120 / 1 / / 1 / / 1 / / 1 / 60 Ampacity (In Amps) Max. Overcurrent Protection (Amps) PIPE CONN. SIZE (in.) 1/2 1/2 1/2 1/2 DIMENSIONS H x W x D H x W x D H x W x D H x W x D Uncrated (In.) 34 x 17-1/2 x 28 3/4 34 x 21 x 28 3/4 34 x 21 x 28 3/4 34 x 21 x 28 3/4 Crated (In.) 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 23 x 30-7/8 35-1/2 x 23 x 30-7/8 35-1/2 x 23 x 30-7/8 WEIGHT Shipping (Lbs.)/Net (Lbs.) 135/ / / /145 (b) (c) (d) (e) (f) (g) Meets Energy Star 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. For Canadian applications, above input ratings (BTUH) are up to 4,500 feet, derate 4% per 1,000 feet for elevations above 4,500 feet above sea level. Central Furnace heating designs are certified to ANSI Z21.47 / CSA 2.3 latest edition. Based on U.S. government standard tests. Refer to the Vent Length Table in the Installer's Guide. All S9V2 furnace models have a vent outlet diameter that equals 2 in. The above wiring specifications are in accordance with National Electrical Code; however, installations must comply with local codes. MODEL S9V2D120U5PSBB S9V2B040D3PSBB S9V2B060D3PSBB S9V2B080D3PSBB TYPE Upflow/Horizontal Downflow Downflow Downflow RATINGS (b) 1st Input BTUH (ICS) 78,000 26,000 39,000 52,000 1st Capacity BTUH 75,660 25,220 37,830 50,440 2nd Input BTUH 120,000 40,000 60,000 80,000 2nd Capacity BTUH (ICS) (c) (d) 116,400 38,800 58,200 77,600 1st Temp. Rise (Min.-Max.) nd Temp. Rise (Min.-Max.) AFUE (%) (c)(d) BLOWER DRIVE DIRECT DIRECT DIRECT DIRECT Diameter Width (In.) 11 X X 8 11 X 8 11 X 8 No. Used Speeds (No.) Variable Variable Variable Variable CFM vs. in. w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 1 1/2 1/2 1/2 RPM Variable Variable Variable Variable Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA COMBUSTION FAN Type Centrifugal Centrifugal Centrifugal Centrifugal E-EN

9 Product Specification MODEL S9V2D120U5PSBB S9V2B040D3PSBB S9V2B060D3PSBB S9V2B080D3PSBB Drive No. Speeds Direct - 2 Direct - 2 Direct - 2 Direct - 2 Motor HP RPM 3300/ / / /2600 Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA FILTER Furnished? No No No No Type recommended High Velocity High Velocity High Velocity High Velocity Hi Vel. (No.-Size-Thk.) 1 24x25 1 in. 2 14x20 1 in. 2 14x20 1 in. 2 14x20 1 in. VENT PIPE DIAMETER Min (in.) (e) (f) 3 Round 2 Round 2 Round 2 Round HEAT EXCHANGER Type Fired 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel Unfired 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel Gauge (Fired) ORIFICES Main Nat. Gas Qty. Drill Size LP Gas Qty. Drill Size GAS VALVE Redundant - Two Redundant - Two Redundant - Two Redundant - Two PILOT SAFETY DEVICE Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS Type Multiport Inshot Multiport Inshot Multiport Inshot Multiport Inshot Number POWER CONN. V/Ph/Hz (g) 120 / 1 / / 1 / / 1 / / 1 / 60 Ampacity (In Amps) Max. Overcurrent Protection (Amps) PIPE CONN. SIZE (in.) 1/2 1/2 1/2 1/2 DIMENSIONS H x W x D H x W x D H x W x D H x W x D Uncrated (In.) 34 x 24-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 34 x 17-1/2 x 28 3/4 Crated (In.) 35-1/2 x 26-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 19-1/2 x 30-7/8 WEIGHT Shipping (Lbs.)/Net (Lbs.) 167/ / / /124 Meets Energy Star (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. For Canadian applications, above input ratings (BTUH) are up to 4,500 feet, derate 4% per 1,000 feet for elevations above 4,500 feet above sea level. (c) Central Furnace heating designs are certified to ANSI Z21.47 / CSA 2.3. (d) Based on U.S. government standard tests. (e) Refer to the Vent Length Table in the Installer's Guide. (f) All S9V2 furnace models have a vent outlet diameter that equals 2 in. (g) The above wiring specifications are in accordance with National Electrical Code; however, installations must comply with local codes E-EN 9

10 Product Specification MODEL S9V2B080D4PSBB S9V2C100D4PSBB S9V2C100D5PSBB S9V2D120D5PSBB TYPE Downflow Downflow Downflow Downflow RATINGS (b) 1st Input BTUH (ICS) 52,000 65,000 65,000 78,000 1st Capacity BTUH 50,440 63,050 63,050 75,660 2nd Input BTUH 80, , , ,000 2nd Capacity BTUH (ICS) (c) (d) 77,600 97,000 97, ,400 1st Temp. Rise (Min.-Max.) nd Temp. Rise (Min.-Max.) AFUE (%) (c)(d) BLOWER DRIVE DIRECT DIRECT DIRECT DIRECT Diameter Width (In.) 11 X 8 11 X X X 10 No. Used Speeds (No.) Variable Variable Variable Variable CFM vs. in. w.g. See Fan Performance Table See Fan Performance Table See Fan Performance Table See Fan Performance Table Motor HP 3/4 3/4 1 1 RPM Variable Variable Variable Variable Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA COMBUSTION FAN Type Centrifugal Centrifugal Centrifugal Centrifugal Drive No. Speeds Direct - 2 Direct - 2 Direct - 2 Direct - 2 Motor HP RPM 3300/ / / /2600 Volts/Ph/Hz 120 / 1 / / 1 / / 1 / / 1 / 60 FLA FILTER Furnished? No No No No Type recommended High Velocity High Velocity High Velocity High Velocity Hi Vel. (No.-Size-Thk.) 2 14x20 1 in. 2 16x20 1 in. 2 16x20 1 in. 2 16x20 1 in. VENT PIPE DIAMETER Min (in.) (e) (f) 2 Round 2 Round 2 Round 3 Round HEAT EXCHANGER Type Fired 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel 409 Stainless Steel Unfired 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel 29 4C Stainless Steel Gauge (Fired) ORIFICES Main Nat. Gas Qty. Drill Size LP Gas Qty. Drill Size GAS VALVE Redundant - Two Redundant - Two Redundant - Two Redundant - Two PILOT SAFETY DEVICE Type 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter 120 V SiNi Igniter BURNERS Type Multiport Inshot Multiport Inshot Multiport Inshot Multiport Inshot Number POWER CONN. V/Ph/Hz (g) 120 / 1 / / 1 / / 1 / / 1 / 60 Ampacity (In Amps) Max. Overcurrent Protection (Amps) PIPE CONN. SIZE (in.) 1/2 1/2 1/2 1/ E-EN

11 Product Specification MODEL S9V2B080D4PSBB S9V2C100D4PSBB S9V2C100D5PSBB S9V2D120D5PSBB DIMENSIONS H x W x D H x W x D H x W x D H x W x D Uncrated (In.) 34 x 17-1/2 x 28 3/4 34 x 21 x 28 3/4 34 x 21 x 28 3/4 34 x 24-1/2 x 28 3/4 Crated (In.) 35-1/2 x 19-1/2 x 30-7/8 35-1/2 x 23 x 30-7/8 35-1/2 x 23 x 30-7/8 35-1/2 x 26-1/2 x 30-7/8 WEIGHT Shipping (Lbs.)/Net (Lbs.) 135/ / / /156 Meets Energy Star (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. For Canadian applications, above input ratings (BTUH) are up to 4,500 feet, derate 4% per 1,000 feet for elevations above 4,500 feet above sea level. (c) Central Furnace heating designs are certified to ANSI Z21.47 / CSA 2.3. (d) Based on U.S. government standard tests. (e) Refer to the Vent Length Table in the Installer's Guide. (f) All S9V2 furnace models have a vent outlet diameter that equals 2 in. (g) The above wiring specifications are in accordance with National Electrical Code; however, installations must comply with local codes E-EN 11

12 Heating and Cooling Tables Table 2. S9V2B040U3PSBB Heating S9V2B040U3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 25,220 2nd Capacity = 38,800 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 468 Medium Low 598 Medium 634 High 1008 Low 650 Medium Low 830 Medium 880 High 1400 Table 3. S9V2B040D3PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2B040D3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 25,220 2nd Capacity = 38,800 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 468 Medium Low 598 Medium 634 High 1008 Low 650 Medium Low 830 Medium 880 High 1400 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

13 Heating and CoolingTables Table 4. S9V2B040U3PSBB / S9V2B040D3PSBB Cooling S9V2B040U3PSBB / S9V2B040D3PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 1.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 13

14 Heatingand Cooling Tables Table 5. S9V2B060U3PSBB Heating S9V2B060U3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 37,830 2nd Capacity = 58,200 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 632 Medium Low 814 Medium 893 High 1153 Low 800 Medium Low 1030 Medium 1130 High 1460 Table 6. S9V2B060D3PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2B060D3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 37,830 2nd Capacity = 58,200 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 632 Medium Low 814 Medium 893 High 1153 Low 800 Medium Low 1030 Medium 1130 High 1460 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

15 Heating and CoolingTables Table 7. S9V2B060U3PSBB / S9V2B060D3PSBB Cooling S9V2B060U3PSBB / S9V2B060D3PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 1.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 15

16 Heatingand Cooling Tables Table 8. S9V2B060U4PSBB Heating S9V2B060U4PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 37,830 2nd Capacity = 58,200 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 782 Medium Low 861 Medium 916 High 1256 Low 990 Medium Low 1090 Medium 1160 High 1590 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

17 Heating and CoolingTables Table 9. S9V2B060U4PSBB Cooling S9V2B060U4PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 17

18 Heatingand Cooling Tables Table 10. S9V2B080U3PSBB Heating S9V2B080U3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 50,440 2nd Capacity = 77,600 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 948 Medium Low 1051 Medium 1090 High 1168 Low 1200 Medium Low 1330 Medium 1380 High 1480 Table 11. S9V2B080D3PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2B080D3PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 50,440 2nd Capacity = 77,600 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 948 Medium Low 1051 Medium 1090 High 1168 Low 1200 Medium Low 1330 Medium 1380 High 1480 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

19 Heating and CoolingTables Table 12. S9V2B080U3PSBB / S9V2B080D3PSBB Cooling S9V2B080U3PSBB / S9V2B080D3PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 19

20 Heatingand Cooling Tables Table 13. S9V2B080U4PSBB Heating S9V2B080U4PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 50,440 2nd Capacity = 77,600 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 864 Medium Low 907 Medium 958 High 1051 Low 1200 Medium Low 1260 Medium 1330 High 1460 Table 14. S9V2B080D4PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2B080D4PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 50,440 2nd Capacity = 77,600 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 864 Medium Low 907 Medium 958 High 1051 Low 1200 Medium Low 1260 Medium 1330 High 1460 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

21 Heating and CoolingTables Table 15. S9V2B080U4PSBB / S9V2B080D4PSBB Cooling S9V2B080U4PSBB / S9V2B080D4PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 21

22 Heatingand Cooling Tables Table 16. S9V2C080U5PSBB Heating S9V2C080U5PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 50,440 2nd Capacity = 77,600 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 857 Medium Low 1044 Medium 1123 High 1498 Low 1190 Medium Low 1450 Medium 1560 High 2080 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

23 Heating and CoolingTables Table 17. S9V2C080U5PSBB Cooling S9V2C080U5PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 5.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 23

24 Heatingand Cooling Tables Table 18. S9V2C100U4PSBB Heating S9V2C100U4PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 63,050 2nd Capacity = 97,000 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1146 Medium Low 1280 Medium 1446 High 1493 Low 1450 Medium Low 1620 Medium 1830 High 1890 Table 19. S9V2C100D4PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2C100D4PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 63,050 2nd Capacity = 97,000 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1080 Medium Low 1166 Medium 1318 High 1361 Low 1500 Medium Low 1620 Medium 1830 High 1890 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

25 Heating and CoolingTables Table 20. S9V2C100U4PSBB / S9V2C100D4PSBB Cooling S9V2C100U4PSBB / S9V2C100D4PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 2.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 25

26 Heatingand Cooling Tables Table 21. S9V2C100U5PSBB Heating S9V2C100U5PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 63,050 2nd Capacity = 97,000 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1145 Medium Low 1426 Medium 1548 High 1620 Low 1590 Medium Low 1980 Medium 2150 High 2250 Table 22. S9V2C100D5PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2C100D5PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 63,050 2nd Capacity = 97,000 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1094 Medium Low 1296 Medium 1346 High 1620 Low 1520 Medium Low 1800 Medium 1870 High 2250 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

27 Heating and CoolingTables Table 23. S9V2C100U5PSBB / S9V2C100D5PSBB Cooling S9V2C100U5PSBB / S9V2C100D5PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 5.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 27

28 Heatingand Cooling Tables Table 24. S9V2D120U5PSBB Heating S9V2D120U5PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 75,660 2nd Capacity = 116,400 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1123 Medium Low 1332 Medium 1404 High 1620 Low 1560 Medium Low 1850 Medium 1950 High 2250 Table 25. S9V2D120D5PSBB Heating CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts S9V2D120D5PSBB Furnace Heating (CFM) and Power (Watts) vs. with Filter 1st Capacity = 75,660 2nd Capacity = 116,400 Heating Heating 1st Heating 2nd Factory Setting. Setting Target Low 1160 Medium Low 1332 Medium 1404 High 1620 Low 1750 Medium Low 1850 Medium 1950 High 2250 CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts CFM Temp. Rise Watts E-EN

29 Heating and CoolingTables Table 26. S9V2D120U5PSBB/ S9V2D120D5PSBB Cooling S9V2D120U5PSBB / S9V2D120D5PSBB Furnace Cooling (CFM) and Power (Watts) vs. with Filter Cooling Unit Outdoor Setting (CFM/ton) Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 3.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 4.5 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Cooling 450 CFM CFM/Ton Watts Cooling 420 CFM CFM/Ton Watts Cooling 400 CFM CFM/Ton Watts Cooling 370 CFM Cooling 5.0 Ton CFM/Ton Watts Cooling 350 CFM CFM/Ton Watts Cooling 330 CFM CFM/Ton Watts Cooling 310 CFM CFM/Ton Watts Cooling 290 CFM CFM/Ton Watts Factory Setting E-EN 29

30 Maximum Vent Length Table Model Maximum Total Equivalent Length in Feet for Vent and Inlet Air (See Notes) 2 inch or 2.5 inch Pipe 3 inch or 4 inch Pipe Altitude 0 2,000 Feet S9V2B040U3PS, S9V2B040D3PS, S9V2B060U3PS, S9V2B060D3PS, S9V2B060U4PS S9V2B080U3PS, S9V2B080D3PS, S9V2B080U4PS, S9V2B080D4PS, S9V2C080U5PS S9V2C100U4PS, S9V2C100D4PS, S9V2C100U5PS, S9V2C100D5PS S9V2D120U5PS, S9V2D120D5PS Note Altitude 2,001 5,400 Feet S9V2B040U3PS, S9V2B040D3PS, S9V2B060U3PS, S9V2B060D3PS, S9V2B060U4PS S9V2B080U3PS, S9V2B080D3PS, S9V2B080U4PS, S9V2B080D4PS, S9V2C080U5PS S9V2C100U4PS, S9V2C100D4PS, S9V2C100U5PS, S9V2C100D5PS S9V2D120U5PS, S9V2D120D5PS Note Altitude 5,401 7,800 Feet S9V2B040U3PS, S9V2B040D3PS, S9V2B060U3PS, S9V2B060D3PS, S9V2B060U4PS S9V2B080U3PS, S9V2B080D3PS, S9V2B080U4PS, S9V2B080D4PS, S9V2C080U5PS S9V2C100U4PS, S9V2C100D4PS, S9V2C100U5PS, S9V2C100D5PS Note S9V2D120U5PS, S9V2D120D5PS Note Altitude 7,801 10,100 Feet S9V2B040U3PS, S9V2B040D3PS, S9V2B060U3PS, S9V2B060D3PS, S9V2B060U4PS S9V2B080U3PS, S9V2B080D3PS, S9V2B080U4PS, S9V2B080D4PS, S9V2C080U5PS Note 1 50 S9V2C100U4PS, S9V2C100D4PS, S9V2C100U5PS, S9V2C100D5PS Note 1 50 S9V2D120U5PS, S9V2D120D5PS Note 1 50 Notes: 1. Not allowed 2. FOR DURAVENT MANUFACTURED MODULAR VENTING SYSTEMS THAT ARE IN THE APPROVED VENT PIPE MATERIAL TABLE, EQUIVALENT VENT LENGTHS MAY BE DIFFERENT FROM WHAT IS SHOWN ABOVE. REFER TO THE VENTING SYSTEM MANUFACTURER'S INSTALLATION INSTRUCTIONS FOR APPROPRIATE VENTING DIAMETERS AND EQUIVALENT LENGTHS. 3. Minimum vent length for all models: 15' equivalent. 4. DO NOT MIX PIPE DIAMETERS IN THE SAME LENGTH OF PIPE OUTSIDE THE FURNACE CABINET (Except adapters at the top of the furnace). If different inlet and vent pipe sizes are used, the vent pipe must adhere to the maximum length limit shown in the table above (See note 7 below for exception). The inlet pipe can be of a larger diameter, but never smaller than the vent pipe. 5. MAXIMUM PIPE LENGTHS MUST NOT BE EXCEEDED! THE LENGTH SHOWN IS NOT A COMBINED TOTAL, IT IS THE MAXIMUM LENGTH OF EACH (Vent or Inlet air pipes). 6. One SHORT radius 90 elbow is equivalent to 10' of 4" pipe, 10' of 3" pipe, or 8 of 2" pipe. One LONG radius elbow is equivalent to 6' of 4" pipe, 7 of 3" pipe, or 5' of 2" pipe. Two 45 elbows equal one 90 LONG elbow. One MITERED elbow is equivalent to 12 of 3 pipe or 12 of 2 pipe. 7. The termination tee or bend must be included in the total number of elbows. If the BAYAIR30AVENTA or BAYAIR30CNVENT termination kit is used, the equivalent length of pipe is 5 feet. For BAYVENT200B and BAYVENTCN200B the equivalent length is 0 feet. 8. For Canadian applications, venting systems must meet ULC-S636 requirements. 9. The INLET AIR of one pipe systems require the installation of a minimum of one 90 elbow (to prevent dust and debris from falling straight into the furnace) E-EN

31 SCALE <VIEW SCALE> X S9V2 Wiring Diagram YL/3 BR/53 PS2 BR/7 INDUCER_LIMIT PR/1 PR/54 GAS VALVE RD/9 BL/5 BR/ BL/2 RD/6 CONDENSATE 24v LINE CHOKE PR/4 TNS YL/3 120v BK/28 YL/52 PS1 OR/11 WH/15 BK/14 YL/47 SEE NOTE 10 TO POWER HARNESS *SEE NOTE 12 YL/52 YL/ YL/33 YL/34 RAF-1 RAF-2 YL/44 YL/43 WH/40 YL/34 YL/33 WH/16 TO BURNER BOX HARN YL/47 YL/46 YL/45 * SEE NOTE 11 YL/45 YL/42 GR/41 WH/40 BK/39 GR/41 BK/39 BL/35 WH/37 WH/36 GR/32 BK/28 BL/26 WH/25 YL/48 YL/49 WH/ BK/38 BK/23 1JPR 2JPR GND AC AC GR/32 GR/YL YL/50 YL/50 YL/49 BLOWER MOTOR FLAME_ROLLOUT1 FLAME_ROLLOUT2 THERMAL_LIMIT 12V Tx Rx GND BL/35 WH/37 WH/36 BK/38 120v 60 Hz. 1 PH POWER SUPPLY PER LOCAL CODE IFC IS POLARITY SENSITIVE WH/15 WH/16 JUNCTION BOX GR/YL/ YL/48 YL/51 BK/14 WH/17 YL/51 H GND GR/YL/31 BK/29 WH/17 BK/13 BK/29 BK/13 N BK/27 BK/ PANEL LOOP BURNER BOX GND GR/8 FLAME_PROBE BR/53 BR/10 RD/9 BR/7 RD/6 BL/5 PR/4 OR/11 BL/2 PR/1 WH/12 ** INTERNAL THERMAL PROTECTION FRS FLAME ROLLOUT SWITCH FP FLAME PROBE IGN HOT SURFACE IGNITER SEE NOTE FP HLI MVH MVL GND PS2 TH MVC HLO PS1 TR ILI IFC SEE NOTE 6 BK JUMPER EAC HUM LINE NEUTRAL 24 / 120 VAC MAY BE USED FP FUSE TNS-H CIRC-H LINE-H MENU LC LINE CHOKE GROUND OPTION LINE-N (blocked) CIRC-N TNS-N IGN-N IND-N IND-LO IND-HI IGN-H Tx GND Rx 12V TO PERSONALITY MODULE BK W2 W1 R G B/C Y2 Y1 O THERMOSTAT SEE NOTES 2, 3, 4, 5, WH/21 WH/ WH/20 RD/19 BK/ BK/18 BK BLACK 1 BK/22 WH WHITE WH/25 BK/23 WH/24 BL/26 H LINE N NEUTRAL GND GROUND HLO HIGH LIMIT OUTPUT HLI HIGH LIMIT INPUT PS1 1ST STAGE PRESSURE INPUT PS2 2ND STAGE PRESSURE INPUT IND INDUCER IFC INTEGRATED FURNACE CONTROL RAF REVERSE AIR FLOW CONDENSATE SWITCH RAF REVERSE AIR FLOW BK JUMPER BK/18 RD/19 WH/20 Tx TRANSMIT SIGNAL Rx RECEIVE SIGNAL TH 24VAC (HOT) TR 24VAC (COMMON) MVC VALVE COMMON MVL VALVE LOW STAGE MVH VALVE HIGH STAGE TNS TRANSFORMER ILI INDUCER LIMIT INPUT IGN IGNITER FP FLAME PROBE HI SECOND STAGE LO FIRST STAGE PS PRESSURE SWITCH LINE } FACTORY 24V } WIRING LINE FIELD 24V WIRING GR/YL VENT MOTOR (INDUCER) ** IGN OR ORANGE BR BROWN PR PURPLE RD RED YL YELLOW GR GREEN BL BLUE INTEGRATED FURNACE CONTROL ELECTRICAL RATING INPUT: 24 VAC, 60 HZ. XFMR SEC. CURRENT: 450 MA. + MV LOAD MV OUTPUT: 24 VAC IND OUTPUT: 2.2 FLA, VAC MAX. IGN OUTPUT: VAC CIRC. BLOWER OUTPUT: 14.5 FLA, VAC HUMIDIFIER & AIR CLEANER (DRY CONTACTS) MAX. LOAD: VAC 24 VAC OR 120 VAC MAY BE USED FUSE: 5A TIMINGS PREPURGE: 0 SEC. INTERPURGE: 60 SEC. POST PURGE: 5 SEC. IGN WARMUP: 20 SEC. IAP: 2; TFI: 5 SEC. RETRIES: 2 RECYCLES: 10 HEAT ON DELAY: UP TO 30 SEC. COOL ON DELAY: 0 SEC. AUTO RESTART: 60 MIN. AUTO RESTART PURGE: 60 SEC E-EN 31

32 S9V2Wiring Diagram NOTES: 1. IF ANY OF THE ORIGINAL WIRING AS SUPPLIED WITH THIS FURNACE MUST BE REPLACED, IT MUST BE WITH WIRE HAVING A TEMPERATURE RATING OF AT LEAST 105 C. WIRES 12, 48, 49, 50, AND 51 REQUIRE A TEMPERATURE RATING OF AT LEAST 250 C. 2. FOR PROPER AIRFLOW IN COOLING/HEAT PUMP MODE, "Y1" MUST BE CONNECTED TO THE THERMOSTAT FOR SINGLE STAGE UNITS. FOR TWO STAGE UNITS,"Y1" AND "Y2" MUST BE CONNECTED TO THE THERMOSTAT. VSPD OD SYSTEMS REQUIRE DIFFERENT CONNECTIONS, SEE RELAY PANEL INSTRUCTIONS. 3. FOR SINGLE STAGE THERMOSTATS, JUMPER "W1" AND "W2" TERMINALS. SECOND STAGE HEATING WILL BE ENERGIZED ONCE THE INTER-STAGE DELAY HAS EXPIRED. "HT2" WILL BE SHOWN ON SEVEN SEGMENT DISPLAY AT ALL TIMES. 4. FOR HEAT PUMP SYSTEMS, "Y1" AND "O" TERMINALS MUST BE CONNECTED TO THE ROOM THERMOSTAT. FOR TWO STAGE UNITS, "Y1", "Y2", AND "O" TERMINALS MUST ALL BE CONNECTED TO THE ROOM THERMOSTAT. 5. FOR TWO STAGE SYSTEMS, USE "Y1" FOR LOW SPEED AND "Y2" FOR HIGH SPEED CONNECTION TO THE LOW-VOLTAGE TERMINAL BLOCK. SINGLE STAGE SYSTEMS USE "Y1" FOR THE CONNECTION TO THE LOW-VOLTAGE TERMINAL BLOCK. 6. THE "BK" JUMPER MUST BE CUT WHEN APPLYING AN AIRFLOW COMMAND TO THE "BK" TERMINAL SUCH AS PULSE WIDTH MODULATION. 7. SEE INDOOR MOTOR AIRFLOW SELECTION CHART, LOCATED IN THE INTEGRATED FURNACE CONTROL MENU & OPTIONS SETTINGS TO SET AIRFLOW AND COOLING OFF DELAYS. 8. 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. THE ACCEPTABLE RANGE IS MICROAMPS. 9. CORRECT PERSONALITY MODULE IS REQUIRED FOR PROPER FURNACE OPERATION. PERSONALITY MODULE IS S9V2 SPECIFIC TO EACH MODEL & SERIAL NUMBER, AND IS TO REMAIN WITHIN ITS ORIGINAL UNIT. 10. LINE CHOKE AND WIRE BK/28 ONLY USED ON MODELS WITH 3/4 AND 1 HP MOTORS. 11. DOWNFLOW MODELS ONLY USE ONE REVERSE AIRFLOW SWITCH. 12. CONNECTION MAY OR MAY NOT BE PRESENT. IF CONNECTION IS NOT PRESENT, WIRES 33 AND 34 WILL NOT BE USED. 2 Inducer with ECM Blower Motor E04 Status Codes OdU Outdoor Unit E05 1 dl Idle COF Blower Constant Fan Multiplier % E6.1 Ht1 1st Heating Ht2 2nd Heating ArF (followed by x 10) COF Continuous Fan CL1 1st Cooling CL2 2nd Cooling HP1 1st Heat Pump HP2 2nd Heat Pump dft Defrost Mode Menu Options Active Alarm Menu CPC CPH Hod 1 Sd 9HC run E01 E2.1 E2.2 E2.3 Cooling (CFM/Ton) Heat Pump Heating (CFM/Ton) Heat Off Delay (sec) Inter- Delay (sec) Gas Heating CFM ( x10) Run Test Mode Error Codes Loss of the IRQ/other internal failures Retry exceeded (Failed to est flame) Recycles exceeded (loss of established flame) or 10X PS1 open E6.2 E6.3 E7.1 E08 E09 E11 E12 E13 Err L6 F Last 6 Faults (To Clear, Hold Option Button 5 sec) Code Release Number Cooling Off Delay (sec) Outdoor Tonnage Cr COd Odt E3.1 E3.2 E3.3 E3.4 1st Gas Valve not energized when it should be exceeded after 10 times Shorted Pressure Switch, 1st Open Pressure Switch, 1st Shorted Pressure Switch, 2nd Open Pressure Switch, 2nd E14 E15 E17 E18 Open Thermal Limit, Rollout Switch, or Reverse Switch Flame detected, should not be present Voltage reversed polarity Bad Grounding (1) Igniter relay fails, (2) Igniter open 1st stage gas valve (MVL) is energized when it should be off Flame current is low, but still strong enough to allow operation. Open Inducer Limit Switch or Condensate Switch (1) 1st stage gas valve not energized when it should be (2) 1st stage gas valve relay stuck closed (3) 2nd stage gas valve relay stuck closed (4) 2nd stage gas valve energized when it should not be (5) 2nd stage gas valve not energized when it should be Open fuse Blower HP/OEM ID No PM and local copy bad Both Unit Data File in PM and local Unit Data File are Corrupt Blower motor no communication response Blower communication failure on the control D346022P E-EN

33 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 or CSA C22.1 Electrical Code, if an external electrical source is utilized. The integrated furnace control is 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. Field Wiring Two Thermostat BK W2 W1 R G B/C Y2 Y1 Furnace BK W2 W1 R G B/C Y2 Y1 FIELD WIRING DIAGRAM FOR TWO STAGE HEATING THERMOSTAT, TWO STAGE COOLING Outdoor Unit (No Transformer) B/C Y2 Y1 NOTES: 1) For PWM (BK) enabled thermostats, cut the BK jumper on the IFC and connect wiring. 2) The factory Y1-O jumper must remain in place for proper LED read out in cooling mode. 3) Y1 and Y2 wiring from the thermostat must connect to the IFC for proper airflow and LED readout. 4) Single compressor and two compressor airflow is automatically set with the IFC Menu optionsin ODU section. 2-1=2 stage / 1 compressor (1st stage airflow = 80%) 2-2=2 stage / 2 compressors (1st stage airflow = 50%) Furnace IFC O O SEE NOTE 2 INTER-COMPONENT WIRING 24 V FIELD WIRING 24 V FACTORY WIRING BK JUMPER SEE NOTE 1 Two Thermostat BK W2 W1 R G B/C Furnace BK W2 W1 R G B/C FIELD WIRING DIAGRAM FOR TWO STAGE HEATING THERMOSTAT, TWO STAGE HEAT PUMP Outdoor Unit (No Transformer) X2 R B/C Y2 NOTES: 1) For PWM (BK) enabled thermostats, cut the BK jumper on the IFC and connect wiring. 2) Remove the factory Y1-O jumper for HP systems for proper LED read out. 3) Y1 and Y2 wiring from the thermostat must connect to Y1 and Y2 of the IFC for proper airflow and LED readout. 4) Single compressor and two compressor airflow is automatically set with the IFC Menu options in ODU section. 2-1=2 stage / 1 compressor (1st stage airflow = 80%) 2-2=2 stage / 2 compressors (1st stage airflow = 50%) Furnace IFC Y2 Y2 Y1 O Y1 O SEE NOTE 2 Y1 O INTER-COMPONENT WIRING 24 V FIELD WIRING 24 V FACTORY WIRING R-BK JUMPER SEE NOTE E-EN 33

34 ElectricalConnections Single Thermostat BK W1 R G B/C Furnace BK W2 W1 R G B/C FIELD WIRING DIAGRAM FOR SINGLE STAGE HEATING THERMOSTAT, SINGLE STAGE COOLING SEE NOTE 4 Outdoor Unit (No Transformer) B/C NOTES: 1) For PWM (BK) enabled thermostats, cut the BK jumper on the IFC and connect wiring. 2) The factory Y1-O jumper must remain in place for proper LED read out in cooling mode. 3) Y1 wiring from the thermostat must connect to Y1 of the IFC for proper airflow and LED readout. 4) Place field supplied jumper between W1 and W2 on the IFC. Interstage delay is factory set for 10 minutes but is field adjustable with the Menu option in the ISD section. 5) Single stage airflow is set with the IFC Menu options in ODU section. Select 1-1. Y2 Y1 Furnace IFC Y1 Y1 O O SEE NOTE 2 INTER-COMPONENT WIRING 24 V FIELD WIRING 24 V FACTORY WIRING BK JUMPER SEE NOTE 1 Single Thermostat BK W1 R G B/C Y1 O Furnace BK W2 W1 R G B/C Y2 Y1 O SEE NOTE 4 SEE NOTE 2 FIELD WIRING DIAGRAM FOR SINGLE STAGE HEATING THERMOSTAT, SINGLE STAGE HEAT PUMP Outdoor Unit (No Transformer) X2 R B/C Y1 O NOTES: 1) For PWM (BK) enabled thermostats, cut the BK jumper on the IFC and connect wiring. 2) Remove the factory Y1-O jumper for HP systems for proper LED read out. 3) Y1 wiring from the thermostat must connect to Y1 of the IFC for proper airflow and LED readout. 4) Place field supplied jumper between W1 and W2 on the IFC. Interstage delay is factory set for 10 minutes but is field adjustable with the Menu option in the ISD section. 5) Single stage airflow is set with the IFC Menu options in ODU section. Select 1-1. INTER-COMPONENT WIRING 24 V FIELD WIRING 24 V FACTORY WIRING Furnace IFC BK JUMPER SEE NOTE E-EN

35 ElectricalConnections COMMUNICATING CONTROLS WITH NON-COMMUNICATING S9V2 FURNACE AND COMMUNICATING VS COOLING/HP Relay Panel D R B Communicating Control Outdoor Unit D R Indoor Unit R D R B B B/C O Y1 Y2 W1 W2 G BK O Y1 Y2 W1 W2 W3 G BK SOV STG1 STG2 STG1 STG2 STG3 FAN PWM NOTES: 1. Cut the BK jumper at the indoor unit - After cutting the jumper, power must be off or cycled on-off-on for the IFC to work properly 2. Requires an 850 control with software version 3.0+ or Not a valid combination with 950 control CPC=CFM/Ton cooling. Must be set to 400. CPH=CFM/Ton heating. Must be set to 400. Furnace LED s will read CoF continous fan during cooling and heat pump operation. HUM HUM 24V ONLY HUM HUM 24 V Field Wiring AUX1 AUX1 24V ONLY AUX1 AUX1 AUX2 AUX2 24V ONLY AUX2 AUX E-EN 35

36 Outline Drawings Upflow Furnace B Size Cabinet E-EN

37 OutlineDrawings Upflow Furnace C Size Cabinet E-EN 37

38 OutlineDrawings Upflow Furnace D Size Cabinet E-EN

39 OutlineDrawings Downflow Furnace B Size Cabinet E-EN 39

40 OutlineDrawings Downflow Furnace C Size Cabinet E-EN

41 OutlineDrawings Downflow Furnace D Size Cabinet E-EN 41

42 Notes E-EN

43 Notes E-EN 43

44 Ingersoll Rand (NYSE: IR) advances the quality of life by creating comfortable, sustainable and efficient environments. Our people and our family of brands including Club Car, Ingersoll Rand, Thermo King and Trane work together to enhance the quality and comfort of air in homes and buildings; transport and protect food and perishables; and increase industrial productivity and efficiency. We are a global business committed to a world of sustainable progress and enduring results. ingersollrand.com Ingersoll Rand has a policy of continuous product and product data improvements and reserves the right to change design and specifications without notice. We are committed to using environmentally conscious print practices E-EN 05 Jul 2018 Supersedes D-EN (October 2017) 2017 Ingersoll Rand

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