John P.
How to adjust gas pressure on a gas valve?
Adjusting gas pressure is dangerous and should only be done by a qualified technician. Improper adjustment can cause serious injury or damage.
Trane S9V2B080U4PSB is a two-stage condensing gas fired furnace with a 96% AFUE. It features 3-way multi-poise design, allowing for upflow, horizontal left or right installation. With a powerful blower motor, advanced controls, and a durable stainless steel heat exchanger, this unit provides efficient, reliable heating for your home. Built-in self diagnostics ensure easy troubleshooting, while its compact size makes it ideal for tight spaces.
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U ow
S9V2B040U3PSBA
S9V2B060U3PSBA
S9V2B060U4PSBA
S9V2B080U3PSBA
S9V2B080U4PSBA
S9V2C080U5PSBA
S9V2C100U4PSBA
S9V2C100U5PSBA
S9V2D120U5PSBA
S9V2B040D3PSBA
S9V2B060D3PSBA
S9V2B080D3PSBA
S9V2B080D4PSBA
S9V2C100D4PSBA
S9V2C100D5PSBA
S9V2D120D5PSBA only. Actual model may differ in appearance.
2
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.
SA FE OP ER
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.
UIIC K H ha ng bllo err,, to increase efficiency and provide a positive discharge of gas fumes to the outside.
NE S
Multiport Inshot burners will give years of quiet and efficient service. All models can be
RA TE
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 contacts for EAC and HUM.
EN ER Y E FF EN T O ER
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.
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.
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.
ell a nd arro un on enamel finish for strength and beauty. Every orientation has at least two venting options.
There are no knockouts on cabinet.
FE AT GE NE OP ER
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.
22-1921-1C-EN
EL S
Meets utility rebates
Lowers utility bills
EL EC
Efficient airflow design reduces electrical energy use
4 IIN CH
Lighter, easier to move and fit into tight spaces like short basements or tight closets
Works great with larger, high-efficiency coils
No knockouts
9 SKU’s — Upflow / Horizontal Left / Horizontal Right
7 SKU’s — Downflow
Added application flexibility and reduction in specification errors
At least 400 CFM/ton at 0.5 in. H
2
CFM/ton
0 external static pressure; setup airflow options down to 290
All models are air tight; 1% or less air leakage as per ASHRAE 193
Open vestibule design provides a full 34” high open vestibule
DIIM EN
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
RA TE
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
TU BU AR Y H XC HA
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
WE R,, D NE D E
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
22-1921-1C-EN 3
TII--P OIIS UP FL CA ED
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
4 22-1921-1C-EN
Table 1. Accessories
Model Number
BAYHANG
BAYVENT200B
BAYVENTCN200B
BAYAIR30AVENTA
BAYAIR30CNVENT
BAYREDUCE
BAYLIFTB
BAYLIFTC
BAYLIFTD
BAYBASE205
BAYFLTR206
BAYSLF1165AA (a)
BAYFLTR203
BAYFLTR204
BAYFLTR205
BAYLPSS400A
BAYMFGH200A
(a) Airflow greater than 1600 CFM requires dual returns
Description
Horizontal Hanging Kit
Sidewall Vent Termination Kit
Sidewall Vent Termination Kit (Canada —
CPVC)
Concentric Vent Kit
Concentric Vent Kit (Canada — CPVC)
Reducing Coupling (CPVC)
Dual Return Kit (B size extension)
Dual Return Kit (C size extension)
Dual Return Kit (D size extension)
Downflow Subbase
Filter Access Door Kit (Downflow only)
Use with
All Upflow Furnaces
All Furnaces
All Furnaces
All Furnaces
All Furnaces
All Furnaces
B Cabinet Upflow Furnaces
C Cabinet Upflow Furnaces
D Cabinet Upflow Furnaces
All Downflow Furnaces
All Upflow Furnaces
1” SlimFit Box with MERV 4 Filter
Horizontal Filter Kit
All Upflow Furnaces
B Cabinet Furnaces in Downflow/Horizontal
Horizontal Filter Kit
Horizontal Filter Kit
C Cabinet Furnaces in Downflow/Horizontal
D Cabinet Furnaces in Downflow/Horizontal
LP Conversion Kit with Stainless Steel Burners All Furnaces
Manufactured/Mobile Housing Kit All Furnaces
22-1921-1C-EN 5
MODEL
TYPE
RATINGS (b)
1st Stage Input BTUH (ICS)
1st Stage Capacity BTUH
2nd Stage Input BTUH
2nd Stage Capacity BTUH (ICS) (c) (d)
1st Stage Temp. Rise (Min.-Max.)
2nd Stage Temp. Rise (Min.-Max.)
AFUE (%)
BLOWER DRIVE
Diameter — Width (In.)
No. Used
Speeds (No.)
CFM vs. in. w.g.
S9V2B040U3PSBA (a)
S9V2B060U4PSBA
Upflow/Horizontal Upflow/Horizontal Upflow/Horizontal Upflow / Horizontal
26,000
25,220
40,000
38,800
25 - 55
30 - 60
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
39,000
37,830
60,000
58,200
25 - 55
35 - 65
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
39,000
37,830
60,000
58,200
25 - 55
35 - 65
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
3/4
Variable
120 / 1 / 60
8.0
Centrifugal
52,000
50,440
80,000
77,600
30 - 60
40 - 70
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
Motor HP
RPM
Volts/Ph/Hz
FLA
COMBUSTION FAN — Type
Drive — No. Speeds
Motor HP — RPM
Volts/Ph/Hz
FLA
FILTER — Furnished?
Type recommended
Hi Vel. (No.-Size-Thk.)
VENT PIPE DIAMETER — Min (in.)
(e) (f)
HEAT EXCHANGER
Type — Fired
— Unfired
Gauge (Fired)
ORIFICES — Main
Nat. Gas Qty. — Drill Size
LP Gas Qty. — Drill Size
GAS VALVE
PILOT SAFETY DEVICE
Type
BURNERS — Type
Number
POWER CONN. — V/Ph/Hz (g)
Ampacity (In Amps)
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 16x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
2- 45
2- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
2
120 / 1 / 60
7.9
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 16x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
3 - 45
3 - 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
3
120 / 1 / 60
7.9
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 16x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
3 - 45
3 - 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
3
120 / 1 / 60
10.8
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 16x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
4 - 45
4 - 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
4
120 / 1 / 60
7.9
6 22-1921-1C-EN
MODEL
Max. Overcurrent Protection (Amps)
PIPE CONN. SIZE (in.)
DIMENSIONS
Uncrated (In.)
Crated (In.)
S9V2B040U3PSBA (a)
S9V2B060U4PSBA
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
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.) 122/114 127/119 130/122 132/124
(c)
(d)
(e)
(f)
(g)
(a)
(b)
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
TYPE
RATINGS (b)
1st Stage Input BTUH (ICS)
1st Stage Capacity BTUH
2nd Stage Input BTUH
2nd Stage Capacity BTUH (ICS) (c) (d)
1st Stage Temp. Rise (Min.-Max.)
2nd Stage Temp. Rise (Min.-Max.)
AFUE (%)
BLOWER DRIVE
Diameter — Width (In.)
No. Used
Speeds (No.)
CFM vs. in. w.g.
Motor HP
RPM
Volts/Ph/Hz
FLA
COMBUSTION FAN — Type
Drive — No. Speeds
Motor HP — RPM
Volts/Ph/Hz
FLA
FILTER — Furnished?
Type recommended
Hi Vel. (No.-Size-Thk.)
VENT PIPE DIAMETER — Min (in.)
(e) (f)
HEAT EXCHANGER
Type — Fired
— Unfired
S9V2B080U4PSBA (a)
S9V2C100U4PSBA
Upflow/Horizontal Upflow/Horizontal Upflow/Horizontal Upflow / Horizontal
52,000
50,440
80,000
77,600
30 - 60
35 - 65
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
3/4
Variable
120 / 1 / 60
8.0
Centrifugal
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 16x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
52,000
50,440
80,000
77,600
30 - 60
35 - 65
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
1
Variable
120 / 1 / 60
10.5
Centrifugal
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 20x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
65,000
63,050
100,000
97,000
25 - 55
35 - 65
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
3/4
Variable
120 / 1 / 60
8.0
Centrifugal
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 20x25 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
409 Stainless Steel
29–4C Stainless Steel
65,000
63,050
100,000
97,000
25 - 55
30 - 60
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
1
Variable
120 / 1 / 60
10.5
Centrifugal
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 20x25 — 1 in.
2 Round
22-1921-1C-EN 7
MODEL
Gauge (Fired)
S9V2B080U4PSBA (a)
S9V2C100U4PSBA
20 20 20 20
ORIFICES — Main
Nat. Gas Qty. — Drill Size
LP Gas Qty. — Drill Size
GAS VALVE
PILOT SAFETY DEVICE
Type
BURNERS — Type
Number
POWER CONN. — V/Ph/Hz (g)
Ampacity (In Amps)
Max. Overcurrent Protection (Amps)
PIPE CONN. SIZE (in.)
DIMENSIONS
Uncrated (In.)
4 - 45
4- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
4
120 / 1 / 60
10.8
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
35-1/2 x 19-1/2 x 30-7/8
4 - 45
4- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
4
120 / 1 / 60
13.9
15
1/2
H x W x D
34 x 21 x 28–3/4
35-1/2 x 23 x 30-7/8
5 - 45
5- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
5
120 / 1 / 60
10.8
15
1/2
H x W x D
34 x 21 x 28–3/4
35-1/2 x 23 x 30-7/8
5 - 45
5- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
5
120 / 1 / 60
13.9
15
1/2
H x W x D
34 x 21 x 28–3/4
35-1/2 x 23 x 30-7/8 Crated (In.)
WEIGHT
Shipping (Lbs.)/Net (Lbs.) 135/127 149/139 154/144 155/145
(c)
(d)
(e)
(f)
(g)
(a)
(b)
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
TYPE
RATINGS (b)
1st Stage Input BTUH (ICS)
1st Stage Capacity BTUH
2nd Stage Input BTUH
2nd Stage Capacity BTUH (ICS) (c) (d)
1st Stage Temp. Rise (Min.-Max.)
2nd Stage Temp. Rise (Min.-Max.)
AFUE (%)
BLOWER DRIVE
Diameter — Width (In.)
No. Used
Speeds (No.)
CFM vs. in. w.g.
Motor HP
RPM
Volts/Ph/Hz
FLA
COMBUSTION FAN — Type
S9V2D120U5PSBA (a)
S9V2B060D3PSBA
Upflow/Horizontal Downflow Downflow Downflow
78,000
75,660
120,000
116,400
35-65
40-70
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
1
Variable
120 / 1 / 60
10.5
Centrifugal
26,000
25,220
40,000
38,800
25 - 55
30 - 60
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
39,000
37,830
60,000
58,200
25 - 55
35 - 65
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
52,000
50,440
80,000
77,600
30 - 60
40 - 70
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
1/2
Variable
120 / 1 / 60
5.7
Centrifugal
8 22-1921-1C-EN
MODEL
Drive — No. Speeds
S9V2D120U5PSBA (a)
S9V2B060D3PSBA
Motor HP — RPM
Volts/Ph/Hz
FLA
FILTER — Furnished?
Type recommended
Hi Vel. (No.-Size-Thk.)
VENT PIPE DIAMETER — Min (in.)
(e) (f)
HEAT EXCHANGER
Type — Fired
— Unfired
Gauge (Fired)
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
1 — 24x25 — 1 in.
3 Round
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 14x20 — 1 in.
2 Round
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 14x20 — 1 in.
2 Round
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 14x20 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
409 Stainless Steel
29–4C Stainless Steel
20
409 Stainless Steel
29–4C Stainless Steel
20
409 Stainless Steel
29–4C Stainless Steel
20
ORIFICES — Main
Nat. Gas Qty. — Drill Size
LP Gas Qty. — Drill Size
GAS VALVE
PILOT SAFETY DEVICE
Type
BURNERS — Type
Number
POWER CONN. — V/Ph/Hz (g)
Ampacity (In Amps)
Max. Overcurrent Protection (Amps)
PIPE CONN. SIZE (in.)
DIMENSIONS
Uncrated (In.)
6 - 45
6- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
6
120 / 1 / 60
13.9
15
1/2
H x W x D
34 x 24-1/2 x 28–3/4
2- 45
2- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
2
120 / 1 / 60
7.9
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
3 - 45
3 - 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
3
120 / 1 / 60
7.9
15
1/2
H x W x D
34 x 17-1/2 x 28–3/4
4 - 45
4 - 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
4
120 / 1 / 60
7.9
15
1/2
H x W x D
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.) 167/156 122/114 127/119 132/124
(c)
(d)
(e)
(f)
(g)
(a)
(b)
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.
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.
22-1921-1C-EN 9
MODEL
TYPE
RATINGS (b)
1st Stage Input BTUH (ICS)
1st Stage Capacity BTUH
2nd Stage Input BTUH
2nd Stage Capacity BTUH (ICS) (c) (d)
1st Stage Temp. Rise (Min.-Max.)
2nd Stage Temp. Rise (Min.-Max.)
AFUE (%)
BLOWER DRIVE
Diameter — Width (In.)
No. Used
Speeds (No.)
CFM vs. in. w.g.
S9V2B080D4PSBA (a)
S9V2C100D4PSBA (a) S9V2C100D5PSBA (a) S9V2D120D5PSBA (a)
Downflow Downflow Downflow Downflow
52,000
50,440
80,000
77,600
30 - 60
35 - 65
96.0
DIRECT
11 X 8
1
Variable
See Fan Performance
Table
3/4
Variable
120 / 1 / 60
8.0
Centrifugal
65,000
63,050
100,000
97,000
25 - 55
35 - 65
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
3/4
Variable
120 / 1 / 60
8.0
Centrifugal
65,000
63,050
100,000
97,000
25 - 55
30 - 60
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
1
Variable
120 / 1 / 60
10.5
Centrifugal
78,000
75,660
120,000
116,400
35-65
40-70
96.0
DIRECT
11 X 10
1
Variable
See Fan Performance
Table
1
Variable
120 / 1 / 60
10.5
Centrifugal
Motor HP
RPM
Volts/Ph/Hz
FLA
COMBUSTION FAN — Type
Drive — No. Speeds
Motor HP — RPM
Volts/Ph/Hz
FLA
FILTER — Furnished?
Type recommended
Hi Vel. (No.-Size-Thk.)
VENT PIPE DIAMETER — Min (in.)
(e) (f)
HEAT EXCHANGER
Type — Fired
— Unfired
Gauge (Fired)
ORIFICES — Main
Nat. Gas Qty. — Drill Size
LP Gas Qty. — Drill Size
GAS VALVE
PILOT SAFETY DEVICE
Type
BURNERS — Type
Number
POWER CONN. — V/Ph/Hz (g)
Ampacity (In Amps)
Max. Overcurrent Protection (Amps)
PIPE CONN. SIZE (in.)
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 14x20 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
4 - 45
4- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
4
120 / 1 / 60
10.8
15
1/2
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 16x20 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
5 - 45
5- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
5
120 / 1 / 60
10.8
15
1/2
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 16x20 — 1 in.
2 Round
409 Stainless Steel
29–4C Stainless Steel
20
5 - 45
5- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
5
120 / 1 / 60
13.9
15
1/2
Direct - 2
3300/2600
120 / 1 / 60
0.66
No
High Velocity
2 — 16x20 — 1 in.
3 Round
409 Stainless Steel
29–4C Stainless Steel
20
6 - 45
6- 56
Redundant - Two Stage
120 V SiNi Igniter
Multiport Inshot
6
120 / 1 / 60
13.9
15
1/2
10 22-1921-1C-EN
MODEL
DIMENSIONS
Uncrated (In.)
Crated (In.)
S9V2B080D4PSBA (a)
H x W x D
34 x 17-1/2 x 28–3/4
35-1/2 x 19-1/2 x 30-7/8
H x W x D
34 x 21 x 28–3/4
35-1/2 x 23 x 30-7/8
H x W x D
34 x 21 x 28–3/4
35-1/2 x 23 x 30-7/8
H x W x D
34 x 24-1/2 x 28–3/4
35-1/2 x 26-1/2 x 30-7/8
WEIGHT
Shipping (Lbs.)/Net (Lbs.) 135/127 154/144 155/145 167/156
(c)
(d)
(e)
(f)
(g)
(a)
(b)
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.
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.
22-1921-1C-EN 11
Table 2. S9V2B040U3PSBA Heating Airflow
S9V2B040U3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 25,220
2nd Stage Capacity = 38,800
Heating
Airflow
Setting
Low
Target
Airflow
468
CFM
Temp. Rise
0.1
468
49
0.3
452
51
External Static Pressure
0.5
437
54
0.7
421
56
0.9
406
58
Medium Low 598
Watts
CFM
Temp. Rise
27
552
43
58
600
39
90
647
36
121
694
32
152
741
28
Heating 1st
Stage
Medium (a) 634
Watts
CFM
Temp. Rise
41
583
39
76
635
36
112
687
33
147
739
30
183
791
27
High 1008
Watts
CFM
Temp. Rise
48
930
25
83
905
25
118
879
26
153
853
27
189
828
27
Low
Medium Low
650
830
Watts
CFM
Temp. Rise
Watts
CFM
Temp. Rise
125
633
57
48
760
48
178
636
57
92
786
46
232
639
57
135
813
45
285
643
56
179
840
43
339
646
56
223
866
41
Heating 2nd
Stage
Medium
880
Watts
CFM
Temp. Rise
82
792
44
132
817
44
182
842
43
232
867
43
282
892
42
High 1400
Watts
CFM
Temp. Rise
94
1337
27
142
1269
29
189
1200
31
237
1132
32
284
1063
34
Watts 335 376 417 458 499
(a) Factory Setting.
12 22-1921-1C-EN
3P BA
Table 3. S9V2B040D3PSBA Heating Airflow
S9V2B040D3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 25,220
2nd Stage Capacity = 38,800
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
468
598
634
1008
650
830
880
1400
0.1
426
54
182
1307
28
492
78
807
45
146
871
42
38
543
43
66
611
38
81
923
25
198
607
60
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
259
1237
30
526
124
807
45
218
874
42
79
569
41
125
612
38
139
918
25
284
612
60
0.3
External Static Pressure
0.5
0.7
430
54
435
53
439
53
336
1167
32
560
170
808
45
290
878
42
120
595
39
184
614
38
198
914
25
369
617
59
413
1097
33
593
216
808
45
362
881
41
161
621
37
243
616
37
256
909
25
455
622
59
0.9
444
52
489
1028
35
627
261
809
45
434
885
41
202
647
35
303
618
37
314
904
26
540
626
59
(a) Factory Setting.
22-1921-1C-EN 13
Table 4. S9V2B040U3PSBA / S9V2B040D3PSBA Cooling Airflow
S9V2B040U3PSBA / S9V2B040D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
1.5 Ton
2.0 Ton
2.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
620
38
580
33
700
51
660
44
1125
167
1050
800
70
740
58
900
94
840
79
465
21
435
19
525
27
495
24
600
36
555
30
675
47
630
40
620
71
580
64
700
86
660
78
1125
219
1050
800
109
740
95
900
137
840
120
465
48
435
44
525
56
495
51
600
67
555
60
675
81
630
72
620
109
580
101
700
127
660
118
1125
278
1050
800
154
740
138
900
186
840
166
465
80
435
76
525
90
495
85
600
105
555
96
675
121
630
111
620
152
580
142
700
173
660
162
1125
341
1050
800
204
740
185
900
240
840
218
465
118
435
113
525
130
495
124
600
147
555
136
675
166
630
154
620
199
580
188
700
223
660
211
1125
408
1050
800
258
740
236
900
298
840
273
465
161
435
155
525
174
495
167
600
193
555
181
675
215
630
202
14 22-1921-1C-EN
Table 4. S9V2B040U3PSBA / S9V2B040D3PSBA Cooling Airflow (continued)
S9V2B040U3PSBA / S9V2B040D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 3.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
100
875
87
825
121
139
1000
123
925
775
101
725
88
1350
272
1260
226
1200
198
1110
161
1050
139
990
119
930
102
870
86
145
875
129
825
160
188
1000
170
925
775
139
725
123
1350
334
1260
284
1200
254
1110
213
1050
188
990
166
930
146
870
128
195
875
178
825
205
244
1000
223
925
775
182
725
164
1350
402
1260
348
1200
315
1110
271
1050
244
990
219
930
197
870
176
250
875
230
825
254
304
1000
281
925
775
229
725
210
1298
440
1260
417
1200
381
1110
333
1050
304
990
277
930
252
870
229
368
1000
343
925
308
875
287
825
308
1198
450
1198
450
775
281
725
260
1198
450
1110
399
1050
368
990
338
930
311
870
285
(a) Factory Setting
22-1921-1C-EN 15
Table 5. S9V2B060U3PSBA Heating Airflow
S9V2B060U3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 37,830
2nd Stage Capacity = 58,200
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
632
814
893
1153
800
1030
1130
1460
0.1
673
52
75
1072
50
147
1115
48
193
1382
39
382
47
850
41
82
901
39
106
1131
32
209
850
63
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
120
1061
50
196
1127
48
246
1336
40
400
83
827
42
120
903
39
144
1121
31
250
844
63
0.3
External Static Pressure
0.5
0.7
675
52
677
52
679
52
165
1049
51
244
1138
48
300
1289
42
418
120
804
43
157
905
39
181
1112
31
291
838
64
210
1038
52
293
1149
47
354
1243
43
435
156
780
44
195
907
39
219
1102
31
332
833
64
0.9
681
52
255
1027
52
341
1160
47
408
1196
45
453
193
757
45
232
909
39
256
1093
31
373
827
65
(a) Factory Setting.
16 22-1921-1C-EN
3P BA
Table 6. S9V2B060D3PSBA Heating Airflow
S9V2B060D3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 37,830
2nd Stage Capacity = 58,200
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
632
814
893
1153
800
1030
1130
1460
0.1
701
51
48
987
55
117
1054
51
165
1336
40
375
33
799
45
56
887
40
77
1075
33
163
833
64
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
109
991
55
109
1071
50
211
1337
40
402
79
812
44
109
895
40
128
1087
33
227
825
65
0.3
External Static Pressure
0.5
0.7
683
52
664
54
646
55
170
995
55
237
1088
49
256
1338
40
429
125
825
43
163
903
40
180
1099
33
291
816
66
231
1000
54
298
1105
48
302
1339
40
456
171
838
42
217
910
39
231
1111
32
355
808
67
0.9
627
57
292
1004
54
358
1122
48
348
1340
40
483
217
851
42
270
918
39
283
1122
32
419
800
67
(a) Factory Setting.
22-1921-1C-EN 17
Table 7. S9V2B060U3PSBA / S9V2B060D3PSBA Cooling Airflow
S9V2B060U3PSBA / S9V2B060D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
1.5 Ton
2.0 Ton
2.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
800
69
740
57
700
900
92
840
78
50
660
44
620
38
580
33
1125
164
1050
465
21
435
19
525
27
495
24
600
36
555
30
675
46
630
40
800
108
740
94
700
900
135
840
118
86
660
78
620
71
580
64
1125
216
1050
465
48
435
45
525
56
495
52
600
67
555
60
675
81
630
72
800
153
740
136
700
900
184
840
164
126
660
117
620
109
580
101
1125
273
1050
465
82
435
78
525
91
495
86
600
105
555
96
675
121
630
111
800
201
740
183
700
900
236
840
214
171
660
161
620
151
580
142
1125
334
1050
465
121
435
116
525
131
495
126
600
146
555
137
675
165
630
153
800
253
740
232
700
900
291
840
267
220
660
208
620
197
580
187
1125
399
1050
465
164
435
160
525
175
495
170
600
192
555
182
675
212
630
200
18 22-1921-1C-EN
Table 7. S9V2B060U3PSBA / S9V2B060D3PSBA Cooling Airflow (continued)
S9V2B060U3PSBA / S9V2B060D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 3.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
930
100
870
85
1200
195
1110
158
1050
137
990
118
775
64
725
54
1350
267
1260
222
99
875
86
825
74
137
1000
121
925
930
145
870
127
1200
250
1110
210
1050
186
990
164
775
102
725
91
1350
329
1260
279
143
875
128
825
115
186
1000
168
925
930
194
870
174
1200
310
1110
266
1050
240
990
216
775
146
725
133
1350
395
1260
342
192
875
175
825
160
240
1000
220
925
930
247
870
225
1200
374
1110
327
1050
298
990
272
775
193
725
178
1296
431
1260
409
245
875
227
825
209
298
1000
276
925
1200
441
1110
390
1050
359
990
330
1218
452
1218
452
775
244
725
228
930
304
870
279
359
1000
335
925
302
875
281
825
262
(a) Factory Setting
22-1921-1C-EN 19
Table 8. S9V2B060U4PSBA Heating Airflow
S9V2B060U4PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 37,830
2nd Stage Capacity = 58,200
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
782
861
916
1256
990
1090
1160
1590
0.1
765
46
119
1022
52
147
1086
49
181
1478
36
434
75
817
43
91
860
41
102
1111
32
227
950
56
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
171
1021
52
202
1084
49
239
1459
37
496
120
812
43
140
856
41
153
1109
32
291
945
56
0.3
External Static Pressure
0.5
0.7
755
47
745
47
736
48
224
1020
52
257
1081
49
297
1441
37
558
166
807
44
188
852
41
204
1107
32
355
941
57
277
1018
53
312
1079
50
356
1422
38
620
212
802
44
237
848
41
256
1105
32
419
936
57
0.9
726
49
330
1017
53
367
1077
50
414
1404
38
682
258
797
44
286
844
42
307
1103
32
484
932
58
(a) Factory Setting.
20 22-1921-1C-EN
Table 9. S9V2B060U4PSBA Cooling Airflow
S9V2B060U4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
2.5 Ton
3.0 Ton
3.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
70
775
60
725
51
93
875
81
825
1125
154
1050
128
1000
113
925
1350
250
1260
208
1200
182
1110
148
1050
128
990
110
930
94
870
80
1575
382
1470
316
109
775
97
725
87
136
875
122
825
1125
205
1050
177
1000
159
925
1350
312
1260
265
1200
237
1110
199
1050
177
990
156
930
138
870
121
1575
453
1470
382
153
775
139
725
127
184
875
168
825
1125
261
1050
229
1000
210
925
1350
377
1260
326
1200
296
1110
254
1050
229
990
206
930
185
870
166
1575
528
1470
453
200
775
185
725
171
234
875
217
825
1125
319
1050
285
1000
264
925
1350
445
1260
390
1200
357
1110
312
1050
285
990
260
930
236
870
215
1575
606
1470
526
251
775
234
725
219
288
875
269
825
1125
381
1050
343
1000
320
925
1350
515
1260
457
1200
422
1110
373
1050
343
990
316
930
290
870
267
1575
686
1470
602
22-1921-1C-EN 21
Table 9. S9V2B060U4PSBA Cooling Airflow (continued)
S9V2B060U4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 4.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
399
1480
322
1400
276
1320
236
1240
199
1160
167
165
1085
140
1015
118
1800
554
1680
457
1600
1400
276
1295
224
1225
193
1155
472
1480
389
1400
340
1320
296
1240
256
1160
220
218
1085
190
1015
165
1800
636
1680
533
1600
1400
340
1295
283
1225
249
1155
548
1480
459
1400
407
1320
359
1240
316
1160
277
274
1085
243
1015
216
1730
656
1680
613
1600
1400
407
1295
345
1225
308
1155
626
1480
533
1400
477
1320
426
1240
379
1160
337
334
1085
301
1015
270
1670
686
1670
686
1600
1400
477
1295
411
1225
371
1155
708
1480
609
1400
550
1320
495
1240
445
1160
399
397
1085
360
1015
327
1600
708
1600
708
1600
1400
550
1295
479
1225
436
1155
(a) Factory Setting
22 22-1921-1C-EN
Table 10. S9V2B080U3PSBA Heating Airflow
S9V2B080U3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 50,440
2nd Stage Capacity = 77,600
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
948
1051
1090
1168
1200
1330
1380
1480
0.1
1070
45
194
1331
55
221
1436
50
287
1380
52
120
1109
42
143
1188
40
154
1230
38
283
1460
49
329
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
CFM
Temp. Rise
0.3
External Static Pressure
0.5
0.7
1030
45
990
46
950
46
246
1293
56
277
1388
52
347
1380
52
162
1061
44
197
1125
42
215
1212
39
351
1400
51
363
297
1256
57
333
1340
54
407
1338
53
203
1013
46
252
1062
43
276
1193
39
396
1338
53
396
349
1218
58
388
1263
56
421
1263
56
245
965
47
307
998
45
336
1174
40
421
1263
56
421
0.9
910
46
401
1172
61
436
1172
61
436
1172
61
286
917
49
361
935
47
397
1156
41
436
1172
61
436
(a) Factory Setting.
22-1921-1C-EN 23
3P BA
Table 11.
S9V2B080D3PSBA Heating Airflow
S9V2B080D3PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 50,440
2nd Stage Capacity = 77,600
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
948
1051
1090
1168
1200
1330
1380
1480
0.1
843
56
195
1211
59
268
1242
57
214
1314
54
249
106
949
50
138
981
48
151
1043
45
181
1087
66
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
255
1168
61
310
1242
57
276
1260
56
285
158
936
51
195
952
49
210
1031
45
244
1076
67
0.3
External Static Pressure
0.5
0.7
836
56
830
57
823
57
315
1124
64
352
1204
59
321
1204
59
321
209
924
51
252
922
51
269
1018
46
307
1065
68
376
1080
66
322
1137
63
351
1137
63
351
260
911
52
309
893
52
328
1006
47
371
1055
68
0.9
816
58
367
1036
69
363
1055
67
373
1055
67
373
312
898
53
366
864
54
387
993
47
434
1044
68
(a) Factory Setting.
24 22-1921-1C-EN
Table 12.
S9V2B080U3PSBA / S9V2B080D3PSBA Cooling Airflow
S9V2B080U3PSBA / S9V2B080D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
2.0 Ton
2.5 Ton
3.0 Ton (a)
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
1125
166
1050
139
1000
123
925
101
875
88
825
77
775
66
725
57
1350
267
1260
620
40
580
35
700
52
660
46
800
71
740
59
900
95
840
80
134
825
120
775
1125
222
1050
192
1000
173
925
149
875
107
725
96
1350
333
1260
620
75
580
68
700
91
660
83
800
114
740
99
900
141
840
124
183
825
167
775
1125
282
1050
248
1000
228
925
200
875
153
725
139
1338
396
1260
620
115
580
107
700
133
660
124
800
160
740
143
900
191
840
172
236
825
218
775
1125
345
1050
308
1000
286
925
255
875
202
725
187
1263
421
1260
620
159
580
150
700
180
660
169
800
210
740
191
900
245
840
223
1125
410
1050
370
1000
346
925
312
875
291
825
272
775
254
725
237
1172
436
1172
620
207
580
197
700
229
660
218
800
262
740
242
900
301
840
277
22-1921-1C-EN 25
Table 12.
S9V2B080U3PSBA / S9V2B080D3PSBA Cooling Airflow (continued)
S9V2B080U3PSBA / S9V2B080D3PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 3.5 Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
87
1460
329
1460
329
120
930
103
870
223
1200
196
1110
160
1050
139
990
1400
294
1295
239
1225
207
1155
177
1085
151
1015
128
170
930
150
870
132
1400
363
1400
363
285
1200
255
1110
216
1050
192
990
1400
363
1295
303
1225
267
1155
235
1085
205
1015
179
224
930
202
870
181
1338
396
1338
396
350
1200
318
1110
275
1050
248
990
1338
396
1295
370
1225
332
1155
296
1085
264
1015
234
281
930
257
870
234
1263
421
1263
421
419
1200
385
1110
337
1050
308
990
1263
421
1263
421
1225
399
1155
360
1085
325
1015
292
289
1172
436
1172
436
341
930
314
870
436
1172
436
1110
402
1050
370
990
1172
436
1172
436
1172
436
1155
427
1085
388
1015
353
(a) Factory Setting
26 22-1921-1C-EN
Table 13. S9V2B080U4PSBA Heating Airflow
S9V2B080U4PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 50,440
2nd Stage Capacity = 77,600
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
864
907
958
1051
1200
1260
1330
1460
0.1
914
51
206
1260
57
232
1360
53
263
1420
51
377
90
940
50
104
983
47
118
1029
45
155
1207
60
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
258
1261
57
287
1347
53
322
1439
50
433
131
912
51
141
932
50
151
1068
44
195
1206
60
0.3
External Static Pressure
0.5
0.7
882
53
849
55
816
57
309
1262
57
342
1333
54
380
1458
49
489
172
885
53
178
881
53
184
1107
42
235
1205
60
361
1263
57
397
1320
54
439
1477
49
546
213
858
54
215
830
55
218
1146
40
275
1204
60
0.9
783
59
412
1264
57
452
1306
55
497
1496
48
602
255
831
56
253
779
58
251
1185
39
314
1203
60
(a) Factory Setting.
22-1921-1C-EN 27
4P BA
Table 14.
S9V2B080D4PSBA Heating Airflow
S9V2B080D4PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 50,440
2nd Stage Capacity = 77,600
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
864
907
958
1051
1200
1260
1330
1460
0.1
770
61
181
1190
59
206
1225
58
239
1227
57
320
72
809
58
88
854
54
101
993
47
133
1082
66
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
239
1190
59
268
1225
58
303
1227
57
390
118
809
58
134
854
54
150
993
47
186
1082
66
0.3
External Static Pressure
0.5
0.7
770
61
770
61
770
61
298
1190
59
329
1225
58
367
1227
57
460
164
809
58
180
854
54
198
993
47
239
1082
66
357
1190
59
390
1225
58
431
1227
57
530
210
809
58
227
854
54
247
993
47
292
1082
66
0.9
770
61
416
1190
59
451
1225
58
495
1227
57
600
256
809
58
273
854
54
296
993
47
346
1082
66
(a) Factory Setting.
28 22-1921-1C-EN
Table 15.
S9V2B080U4PSBA / S9V2B080D4PSBA Cooling Airflow
S9V2B080U4PSBA / S9V2B080D4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
2.5 Ton
3.0 Ton
3.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
1350
252
1260
209
1200
184
1110
150
1050
130
990
112
930
95
870
81
1575
383
1470
775
61
725
52
875
82
825
71
1125
155
1050
130
1000
115
925
94
177
990
156
930
1350
311
1260
265
1200
237
1110
199
1050
138
870
121
1575
452
1470
775
98
725
87
875
122
825
110
1125
205
1050
177
1000
160
925
136
228
990
205
930
1350
374
1260
324
1200
294
1110
253
1050
185
870
166
1575
524
1470
775
139
725
127
875
167
825
153
1125
259
1050
228
1000
209
925
183
282
990
258
930
1350
440
1260
386
1200
354
1110
309
1050
235
870
214
1575
599
1470
775
184
725
171
875
216
825
199
1125
316
1050
282
1000
262
925
233
1350
508
1260
451
1200
416
1110
369
1050
340
990
313
930
288
870
265
1575
676
1470
775
233
725
218
875
267
825
249
1125
376
1050
340
1000
317
925
286
22-1921-1C-EN 29
Table 15.
S9V2B080U4PSBA / S9V2B080D4PSBA Cooling Airflow (continued)
S9V2B080U4PSBA / S9V2B080D4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 4.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
317
1400
278
1295
225
1225
194
1155
166
1085
141
1015
119
1800
555
1680
458
1600
400
1480
323
1400
278
1320
237
1240
201
1160
168
382
1400
339
1295
282
1225
248
1155
218
1085
190
1015
165
1784
619
1680
531
1600
470
1480
388
1400
339
1320
295
1240
255
1160
220
449
1400
404
1295
343
1225
306
1155
273
1085
242
1015
215
1746
665
1680
608
1600
543
1480
456
1400
404
1320
357
1240
314
1160
275
520
1400
472
1295
407
1225
367
1155
331
1085
298
1015
268
1665
674
1665
674
1600
619
1480
527
1400
472
1320
421
1240
375
1160
334
593
1400
542
1295
473
1225
431
1155
392
1085
356
1015
324
1581
681
1581
681
1600
697
1480
600
1400
542
1320
488
1240
439
1160
395
(a) Factory Setting
30 22-1921-1C-EN
Table 16. S9V2C080U5PSBA Heating Airflow
S9V2C080U5PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 50,440
2nd Stage Capacity = 77,600
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
857
1044
1123
1498
1190
1450
1560
2080
0.1
837
55
127
1387
52
248
1484
48
281
1954
37
597
65
997
46
102
1067
43
123
1420
32
238
1129
63
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
195
1395
51
310
1498
48
358
1956
37
732
112
1015
45
155
1094
42
180
1416
33
320
1148
62
0.3
External Static Pressure
0.5
0.7
870
53
902
51
934
50
263
1404
51
372
1512
47
435
1959
37
866
160
1033
45
209
1121
41
236
1411
33
402
1168
61
331
1412
51
434
1525
47
512
1961
37
1001
208
1050
44
263
1148
40
293
1407
33
485
1188
60
0.9
967
48
399
1420
51
496
1539
47
589
1964
37
1135
256
1068
43
316
1175
39
350
1402
34
567
1208
59
(a) Factory Setting.
22-1921-1C-EN 31
Table 17. S9V2C080U5PSBA Cooling Airflow
S9V2C080U5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
3.5 Ton
4.0 Ton
4.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
168
1225
145
1155
125
1085
107
1015
91
1575
279
1470
233
1400
205
1295
1800
399
1680
332
1600
291
1480
237
1400
205
1320
176
1240
150
1160
127
2025
550
1890
456
227
1225
201
1155
178
1085
157
1015
138
1575
351
1470
300
1400
269
1295
1800
482
1680
409
1600
364
1480
305
1400
269
1320
236
1240
207
1160
180
2025
643
1890
543
289
1225
261
1155
235
1085
211
1015
189
1575
426
1470
370
1400
336
1295
1800
567
1680
488
1600
441
1480
375
1400
336
1320
300
1240
267
1160
237
2025
740
1890
632
355
1225
324
1155
295
1085
269
1015
244
1575
504
1470
443
1400
406
1295
1800
655
1680
571
1600
519
1480
449
1400
406
1320
367
1240
330
1160
297
2025
838
1890
725
423
1225
389
1155
358
1085
329
1015
302
1575
584
1470
519
1400
478
1295
1800
745
1680
655
1600
600
1480
524
1400
478
1320
436
1240
396
1160
360
2020
934
1890
819
32 22-1921-1C-EN
Table 17.
S9V2C080U5PSBA Cooling Airflow (continued)
S9V2C080U5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 5.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
1395
203
1305
171
2250
734
2100
607
2000
1800
399
1665
324
1575
279
1485
239
531
1850
430
1750
370
1650
316
1550
268
1450
225
1395
267
1305
231
2250
839
2100
705
2000
1800
482
1665
400
1575
351
1485
307
624
1850
515
1750
450
1650
392
1550
339
1450
291
1395
334
1305
294
2250
947
2100
805
2000
1800
567
1665
479
1575
426
1485
378
719
1850
603
1750
533
1650
470
1550
412
1450
360
1395
403
1305
360
2150
955
2100
907
2000
1800
655
1665
561
1575
504
1485
451
816
1850
693
1750
619
1650
551
1550
489
1450
432
1395
476
1305
428
2020
934
2020
934
2000
1800
745
1665
645
1575
584
1485
527
916
1850
785
1750
707
1650
634
1550
568
1450
507
(a) Factory Setting
22-1921-1C-EN 33
Table 18. S9V2C100U4PSBA Heating Airflow
S9V2C100U4PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 63,050
2nd Stage Capacity = 97,000
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
1146
1280
1446
1493
1450
1620
1830
1890
0.1
1191
50
244
1658
54
330
1869
48
471
1959
46
540
133
1314
45
173
1478
40
243
1498
39
264
1480
60
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
0.3
External Static Pressure
0.5
0.7
1199
49
1208
49
1216
49
312
1656
54
408
1857
48
549
1919
47
600
192
1304
45
235
1466
40
304
1511
39
330
1488
60
380
1654
54
486
1846
49
628
1879
48
660
251
1294
45
297
1453
40
364
1524
39
397
1496
60
449
1652
54
564
1811
49
677
1811
49
677
310
1284
46
359
1441
40
425
1537
39
464
1503
60
0.9
1224
49
517
1650
55
642
1714
52
695
1714
52
695
369
1274
46
421
1428
40
485
1550
38
531
1511
60
(a) Factory Setting.
34 22-1921-1C-EN
4P BA
Table 19.
S9V2C100D4PSBA Heating Airflow
S9V2C100D4PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 63,050
2nd Stage Capacity = 97,000
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
1080
1166
1318
1361
1500
1620
1830
1890
0.1
1068
55
223
1620
55
276
1768
50
372
1810
49
405
101
1158
51
115
1326
46
153
1312
46
166
1514
58
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
0.3
External Static Pressure
0.5
0.7
1048
57
1029
60
1009
63
297
1588
56
345
1746
51
446
1783
50
476
151
1113
53
172
1272
48
206
1270
47
221
1478
60
370
1556
57
415
1724
52
520
1756
51
548
201
1068
55
229
1218
50
259
1229
47
276
1441
61
443
1523
58
484
1702
53
594
1729
52
677
251
1023
57
285
1164
51
312
1188
48
331
1404
63
0.9
989
66
516
1491
59
553
1620
53
668
1702
52
695
301
978
59
342
1111
53
365
1147
49
387
1367
64
(a) Factory Setting.
22-1921-1C-EN 35
Table 20.
S9V2C100U4PSBA / S9V2C100D4PSBA Cooling Airflow
S9V2C100U4PSBA / S9V2C100D4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
2.5 Ton
3.0 Ton
3.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
1350
194
1260
163
1200
144
1110
119
1050
104
990
91
930
78
870
67
1575
289
1470
775
52
725
45
875
68
825
60
1125
123
1050
104
1000
93
925
77
156
990
140
930
1350
259
1260
224
1200
202
1110
173
1050
125
870
111
1575
363
1470
775
92
725
83
875
112
825
102
1125
178
1050
156
1000
142
925
123
210
990
192
930
1350
326
1260
287
1200
263
1110
231
1050
174
870
158
1575
440
1470
775
135
725
125
875
160
825
147
1125
236
1050
210
1000
195
925
173
268
990
247
930
1350
396
1260
353
1200
327
1110
291
1050
228
870
209
1575
519
1470
775
183
725
170
875
211
825
196
1125
296
1050
268
1000
251
925
226
1350
468
1260
422
1200
393
1110
354
1050
329
990
306
930
284
870
264
1575
600
1470
775
234
725
220
875
265
825
249
1125
360
1050
329
1000
309
925
282
36 22-1921-1C-EN
Table 20.
S9V2C100U4PSBA / S9V2C100D4PSBA Cooling Airflow (continued)
S9V2C100U4PSBA / S9V2C100D4PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 4.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
131
1085
113
1015
96
1800
410
1680
342
1600
301
1480
246
241
1400
213
1295
175
1225
152
1155
1400
213
1320
183
1240
157
1160
133
187
1085
166
1015
146
1800
494
1680
420
1600
376
1480
316
311
1400
280
1295
237
1225
211
1155
1400
280
1320
247
1240
216
1160
189
247
1085
222
1015
199
1800
580
1680
502
1600
454
1480
388
383
1400
349
1295
302
1225
273
1155
1400
349
1320
313
1240
279
1160
248
308
1085
281
1015
256
1800
669
1680
585
1600
534
1480
464
458
1400
421
1295
369
1225
338
1155
1400
421
1320
381
1240
344
1160
310
373
1085
343
1015
315
1714
695
1680
671
1600
617
1480
541
535
1400
495
1295
439
1225
405
1155
1400
495
1320
452
1240
412
1160
375
(a) Factory Setting
22-1921-1C-EN 37
Table 21. S9V2C100U5PSBA Heating Airflow
S9V2C100U5PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 63,050
2nd Stage Capacity = 97,000
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
(a)
Medium
High
Low
Medium Low
Medium
High
Target
Airflow
1145
1426
1548
1620
1590
1980
2150
2250
0.1
1129
52
270
1968
45
526
2092
43
672
2150
42
743
116
1373
43
195
1475
40
248
1540
38
301
1570
57
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
0.3
External Static Pressure
0.5
0.7
1097
53
1065
54
1033
56
342
1936
46
613
2071
43
752
2130
42
814
169
1376
42
264
1460
40
311
1545
38
347
1548
58
413
1903
47
700
2051
44
831
2110
42
886
222
1378
42
332
1445
39
374
1551
38
393
1526
59
485
1871
48
787
2030
44
910
2090
43
957
275
1381
42
400
1430
39
436
1556
38
440
1503
60
0.9
1000
57
557
1839
49
875
2010
45
990
2029
44
905
328
1384
42
468
1415
39
499
1561
38
486
1481
61
(a) Factory Setting.
38 22-1921-1C-EN
5P BA
Table 22.
S9V2C100D5PSBA Heating Airflow
S9V2C100D5PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 63,050
2nd Stage Capacity = 97,000
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
1094
1296
1346
1620
1520
1800
1870
2250
0.1
1094
53
236
1744
51
378
1811
49
421
2211
40
714
100
1296
45
156
1346
43
172
1620
36
284
1437
62
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
0.3
External Static Pressure
0.5
0.7
1023
57
952
61
881
65
308
1712
52
462
1779
50
508
2109
42
817
153
1212
48
216
1259
46
234
1515
38
358
1420
63
380
1680
53
545
1747
51
594
2006
45
920
206
1127
51
276
1171
49
297
1409
41
431
1403
63
453
1649
54
629
1715
52
681
1903
47
1023
258
1043
55
337
1083
53
359
1304
44
504
1385
64
0.9
809
69
525
1617
55
713
1683
53
768
1800
49
905
311
958
58
397
996
56
421
1198
46
578
1368
65
(a) Factory Setting.
22-1921-1C-EN 39
Table 23.
S9V2C100U5PSBA / S9V2C100D5PSBA Cooling Airflow
S9V2C100U5PSBA / S9V2C100D5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
3.5 Ton
4.0 Ton
4.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
1800
381
1680
314
1600
275
1480
222
1400
191
1320
163
1240
139
1160
117
2025
531
1890
1225
134
1155
115
1085
98
1015
83
1575
263
1470
218
1400
191
1295
155
1800
460
1680
388
1600
345
1480
288
1400
254
1320
223
1240
195
1160
170
2025
620
1890
1225
190
1155
168
1085
148
1015
131
1575
333
1470
283
1400
254
1295
214
1800
542
1680
466
1600
419
1480
357
1400
319
1320
285
1240
254
1160
226
2025
711
1890
1225
249
1155
225
1085
202
1015
182
1575
406
1470
352
1400
319
1295
275
1800
627
1680
545
1600
496
1480
428
1400
388
1320
351
1240
317
1160
286
2025
805
1890
1225
311
1155
284
1085
259
1015
237
1575
481
1470
423
1400
388
1295
340
1800
713
1680
627
1600
574
1480
502
1400
458
1320
418
1240
381
1160
348
2025
901
1890
1225
375
1155
346
1085
319
1015
294
1575
558
1470
496
1400
458
1295
406
40 22-1921-1C-EN
Table 23.
S9V2C100U5PSBA / S9V2C100D5PSBA Cooling Airflow (continued)
S9V2C100U5PSBA / S9V2C100D5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 5.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
2000
512
1850
411
1750
352
1650
299
1395
189
1305
158
2250
717
2100
589
1550
252
1450
210
437
1800
381
1665
307
1575
263
1485
224
2000
600
1850
492
1750
429
1650
372
1395
252
1305
217
2250
816
2100
681
1550
320
1450
275
520
1800
460
1665
380
1575
333
1485
290
2000
691
1850
577
1750
509
1650
448
1395
317
1305
279
2242
909
2100
776
1550
392
1450
342
606
1800
542
1665
457
1575
406
1485
359
2000
784
1850
663
1750
592
1650
526
1395
386
1305
344
2137
908
2100
873
1550
467
1450
413
694
1800
627
1665
536
1575
481
1485
431
2000
878
1850
752
1750
676
1650
606
1395
456
1305
411
2029
905
2029
905
1550
543
1450
485
784
1800
713
1665
616
1575
558
1485
505
(a) Factory Setting
22-1921-1C-EN 41
Table 24. S9V2D120U5PSBA Heating Airflow
S9V2D120U5PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 75,660
2nd Stage Capacity = 116,400
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium (a)
High
Low
Medium Low
Medium
High
Target
Airflow
1123
1332
1404
1620
1560
1850
1950
2250
0.1
1138
61
291
1980
55
456
2075
52
527
2280
48
795
115
1371
51
182
1440
48
208
1669
42
315
1654
65
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
0.3
External Static Pressure
0.5
0.7
1158
60
1178
59
1198
58
360
1951
56
539
2037
53
611
2197
50
819
176
1383
50
251
1450
48
283
1674
42
388
1637
66
430
1922
57
621
1999
54
696
2114
52
842
236
1394
50
320
1461
48
357
1680
41
460
1621
67
499
1893
58
704
1961
55
781
2032
54
865
297
1406
49
389
1471
47
431
1685
41
533
1604
67
0.9
1218
57
568
1864
58
787
1923
56
865
1949
56
888
358
1417
49
457
1482
47
505
1691
41
605
1587
68
(a) Factory Setting.
42 22-1921-1C-EN
Table 25. S9V2D120D5PSBA Heating Airflow
S9V2D120D5PSBA Furnace Heating Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
1st Stage Capacity = 75,660
2nd Stage Capacity = 116,400
Heating
Heating 1st
Stage
Heating 2nd
Stage
Airflow
Setting
Low
Medium Low
Medium
High (a)
Low
Medium Low
Medium
High
Target
Airflow
1160
1332
1404
1620
1750
1850
1950
2250
0.1
1234
56
327
1788
60
380
1891
56
424
2080
51
708
137
1305
53
158
1324
53
179
1598
44
266
1687
63
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
0.3
External Static Pressure
0.5
0.7
1240
56
1246
56
1252
55
407
1771
60
464
1862
57
524
2100
51
768
198
1311
53
221
1510
46
246
1484
47
316
1673
64
487
1754
61
549
1833
58
624
2120
51
828
258
1318
53
284
1697
39
313
1371
49
366
1659
64
568
1738
61
633
1803
60
724
2140
51
888
319
1325
52
347
1884
32
380
1257
52
416
1645
65
0.9
1258
55
648
1721
62
718
1774
61
824
2160
51
948
380
1332
52
410
2070
25
447
1144
54
466
1631
65
(a) Factory Setting.
22-1921-1C-EN 43
Table 26. S9V2D120U5PSBA / S9V2D120D5PSBA Cooling Airflow
S9V2D120U5PSBA / S9V2D120D5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling
Cooling
Cooling
3.5 Ton
4.0 Ton
4.5 Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
1800
356
1680
295
1600
258
1480
210
1400
181
1320
155
1240
132
1160
112
2025
492
1890
1225
128
1155
111
1085
95
1015
80
1575
248
1470
206
1400
181
1295
148
1800
433
1680
368
1600
328
1480
274
1400
243
1320
213
1240
187
1160
163
2025
579
1890
1225
182
1155
162
1085
143
1015
126
1575
316
1470
270
1400
243
1295
205
1800
514
1680
443
1600
400
1480
342
1400
307
1320
274
1240
245
1160
218
2025
669
1890
1225
240
1155
217
1085
195
1015
176
1575
387
1470
337
1400
307
1295
265
1800
597
1680
521
1600
475
1480
412
1400
374
1320
338
1240
306
1160
276
2025
761
1890
1225
300
1155
274
1085
250
1015
228
1575
461
1470
407
1400
374
1295
328
1800
682
1680
601
1600
552
1480
484
1400
443
1320
405
1240
369
1160
337
2025
855
1890
1225
363
1155
335
1085
309
1015
285
1575
537
1470
479
1400
443
1295
393
44 22-1921-1C-EN
Table 26.
S9V2D120U5PSBA / S9V2D120D5PSBA Cooling Airflow (continued)
S9V2D120U5PSBA / S9V2D120D5PSBA Furnace Cooling Airflow (CFM) and Power (Watts) vs. External Static Pressure with Filter
External Static Pressure
Cooling
Unit
Outdoor
Airflow
Setting
(CFM/ ton)
0.1
0.3
0.5
0.7
0.9
Cooling 5.0 Ton (a)
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
Cooling 450
CFM/Ton
Cooling 420
CFM/Ton
Cooling 400
CFM/Ton
Cooling 370
CFM/Ton
Cooling 350
CFM/Ton
Cooling 330
CFM/Ton
Cooling 310
CFM/Ton
Cooling 290
CFM/Ton
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
Watts
CFM
Watts
CFM
Watts
CFM
Watts
CFM
Watts
2000
475
1850
383
1750
329
1650
281
1550
237
1450
199
1395
180
1305
151
2250
659
2100
544
406
1800
356
1665
288
1575
248
1485
212
2000
561
1850
463
1750
405
1650
352
1550
305
1450
262
1395
241
1305
208
2250
756
2100
634
488
1800
433
1665
360
1575
316
1485
277
2000
650
1850
546
1750
484
1650
427
1550
375
1450
328
1395
305
1305
269
2250
856
2100
728
572
1800
514
1665
435
1575
387
1485
344
2000
741
1850
631
1750
564
1650
503
1550
448
1450
397
1395
371
1305
332
2188
900
2100
823
659
1800
597
1665
512
1575
461
1485
414
2000
834
1850
717
1750
647
1650
582
1550
523
1450
468
1395
440
1305
398
2103
922
2100
920
747
1800
682
1665
592
1575
537
1485
487
(a) Factory Setting
22-1921-1C-EN 45
Maximum Vent Length Table
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 Model
Altitude 0–2,000 Feet
S9V2B040U3PS, S9V2B040D3PS,
S9V2B060U3PS, S9V2B060D3PS,
S9V2B060U4PS
S9V2B080U3PS, S9V2B080D3PS,
S9V2B080U4PS, S9V2B080D4PS,
S9V2C080U5PS
S9V2C100U4PS, S9V2C100D4PS,
S9V2C100U5PS, S9V2C100D5PS
S9V2D120U5PS, S9V2D120D5PS
200
100
50
200
200
200
Note 1
Altitude 2,001–5,400 Feet
200
S9V2B040U3PS, S9V2B040D3PS,
S9V2B060U3PS, S9V2B060D3PS,
S9V2B060U4PS
S9V2B080U3PS, S9V2B080D3PS,
S9V2B080U4PS, S9V2B080D4PS,
S9V2C080U5PS
S9V2C100U4PS, S9V2C100D4PS,
S9V2C100U5PS, S9V2C100D5PS
S9V2D120U5PS, S9V2D120D5PS
200
80
50
200
120
150
Note 1
Altitude 5,401–7,800 Feet
200
S9V2B040U3PS, S9V2B040D3PS,
S9V2B060U3PS, S9V2B060D3PS,
S9V2B060U4PS
S9V2B080U3PS, S9V2B080D3PS,
S9V2B080U4PS, S9V2B080D4PS,
S9V2C080U5PS
S9V2C100U4PS, S9V2C100D4PS,
S9V2C100U5PS, S9V2C100D5PS
S9V2D120U5PS, S9V2D120D5PS
100
50
Note 1
150
70
100
Note 1
Altitude 7,801–10,100 Feet
100
S9V2B040U3PS, S9V2B040D3PS,
S9V2B060U3PS, S9V2B060D3PS,
S9V2B060U4PS
S9V2B080U3PS, S9V2B080D3PS,
S9V2B080U4PS, S9V2B080D4PS,
S9V2C080U5PS
S9V2C100U4PS, S9V2C100D4PS,
S9V2C100U5PS, S9V2C100D5PS
Notes:
S9V2D120U5PS, S9V2D120D5PS
90
Note 1
Note 1
Note 1
90
50
50
50
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).
46 22-1921-1C-EN
S9V2 Wiring Diagram and Schematic
22-1921-1C-EN 47
48 22-1921-1C-EN
Two Stage
Thermostat
G
B/C
Y2
Y1
O
BK
W2
W1
R
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.
Two Stage
Thermostat
G
B/C
Y2
Y1
O
BK
W2
W1
R
Furnace
G
B/C
Y2
Y1
O
BK
W2
W1
R
FIELD WIRING DIAGRAM FOR
TWO STAGE HEATING THERMOSTAT, TWO STAGE COOLING
Outdoor Unit
(No Transformer)
B/C
Y2
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 auto-
matically set with the IFC Menu optionsin ODU section.
2-1=2 stage / 1 compressor (1st stage airflow = 75%)
2-2=2 stage / 2 compressors (1st stage airflow = 50%)
Furnace IFC
Y1
SEE
NOTE 2
INTER-COMPONENT WIRING
24 V FIELD WIRING
24 V FACTORY WIRING
BK JUMPER
SEE NOTE 1
Furnace
G
B/C
Y2
BK
W2
W1
R
Y1
O
SEE
NOTE 2
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 = 75%)
2-2=2 stage / 2 compressors (1st stage airflow = 50%)
Furnace IFC
Y1
O
INTER-COMPONENT WIRING
24 V FIELD WIRING
24 V FACTORY WIRING
R-BK
JUMPER
SEE NOTE 1
22-1921-1C-EN 49
50
Single Stage
Thermostat
BK
W1
R
G
B/C
W1
R
G
B/C
Single Stage
Thermostat
BK
Y1
O
Y1
O
Furnace
BK
W2
W1
R
G
B/C
Y2
Y1
O
FIELD WIRING DIAGRAM FOR
SINGLE STAGE HEATING THERMOSTAT, SINGLE STAGE COOLING
SEE
NOTE 4
Outdoor Unit
(No Transformer)
B/C
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 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.
Furnace IFC
SEE
NOTE 2
INTER-COMPONENT WIRING
24 V FIELD WIRING
24 V FACTORY WIRING
BK JUMPER
SEE NOTE 1
Furnace
BK
W2
W1
R
G
B/C
FIELD WIRING DIAGRAM FOR
SINGLE STAGE HEATING THERMOSTAT, SINGLE STAGE HEAT PUMP
SEE
NOTE 4
Outdoor Unit
(No Transformer)
X2
R
B/C
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.
Furnace IFC
Y2
Y1
Y1
SEE
NOTE 2
O
O
INTER-COMPONENT WIRING
24 V FIELD WIRING
24 V FACTORY WIRING
BK JUMPER
SEE NOTE 1
22-1921-1C-EN
22-1921-1C-EN 51
52 22-1921-1C-EN
22-1921-1C-EN 53
54 22-1921-1C-EN
22-1921-1C-EN 55
56 22-1921-1C-EN
22-1921-1C-EN 57
58 22-1921-1C-EN
22-1921-1C-EN 59
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.
22-1921-1C — EN 29 Mar 2017
Supersedes 22-1921-1B-EN (September 2016) ©2016 Ingersoll Rand | all rights reserved
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