935SA
Legacy 95 · single-stage · 95% condensing
Bryant Legacy 95% single-stage. Two-digit Comfort/Legacy IFC. One PS, PVC trap. Not 935CA Evolution and not 916S 96/97%.
Not 935CA Evolution. Not 916S. Not 912S 92%.
AFUE
95% Legacy single-stage condensing
This board
Two-digit IFC (single-stage Comfort — not TP6, not Infinity)
- Same Carrier two-digit language that applies to single-stage: 11, 12, 13, 14, 21, 22, 23, 24, 31, 33, 34, 41 (59SC6), 45.
- There is no high-fire PS and no W2 furnace path. Do not run the 59TP6 32-then-high-fire playbook.
- Some boards still flash 32 for the single PS path — confirm the door card. 59TP6 uses 32 specifically as low-fire PS. On SC5/SC6, 32 is not a second stage.
- A live 3 1.6-style CFM readout is a TP6/VS habit. Comfort 96 is not reporting staged CFM that way.
- Amber LED flash charts from old 80% Comfort boards do not apply.
Last codes store ~48 h or until power is pulled (code 11 = no history). Diagnostic button where equipped. Recreate the call and watch the live digit.
Universal swap
Legacy 95. ICM282B / 50M56U if the silk is HK42FZ004–016.
Silk: HK42FZ004 · HK42FZ007 · HK42FZ008 · HK42FZ009 · HK42FZ011 · HK42FZ016
White-Rodgers
- 50M56U-843
HK42FZ004/007/008/009/011/016 — not 013.
ICM
- ICM282B
HK42FZ004–016 including 013.
Honeywell
—- 935CA Evolution IFC. 50A55 onto a motor this board did not ship with.
After you pull the dead card
- 1Kill power. Photograph the silk-screen part number on the dead board before you pull it.
- 2Match staging (1 vs 2 vs modulating), igniter (carbide / nitride / spark), and motor (PSC / ECMx / 9-speed tap / serial VS).
- 3Set heat-off delay and any 80+/90+ jumper to the door card. Prove one full try and flame µA before you leave.
Field wiring
Written landings for Bryant 935SA. Not a factory schematic.
Conventional single-stage furnace IFC. One W. Cool Y passes through to the outdoor. No ComfortBridge, no ABCD, no W2.
Written circuit description only — FieldBench does not redraw maker schematics. Example: R to W closes on a heat call; verify 24V at W1 before you change the IFC.
Open manufacturer PDFHeat sequence
- 1Power. L1 / N → IFC → transformer → R120V in, 24V out
- 2Call. Stat W → IFC W~24 VAC
- 3Draft. IFC → inducer → PS close120V motor, 24V prove
- 4Ignite. IFC → HSI120 VAC
- 5Gas. IFC → valve~24 VAC
- 6Flame. Rod → IFCµA DC
- 7Blow. IFC → heat speedAfter flame prove
This indoor
Legacy 95% single-stage. Not Evolution 935CA.
24V single-stage heat
Door card is one-stage. Twin terminal empty unless the job is actually twinned.
Wall thermostat
Single-stage heat/cool. W2 from a leftover two-stage stat does nothing useful.
- R24V hot from the IFC24V
- CCommon24V
- WHeat24V
- YCool — also starts the outdoor24V
- GFan24V
Furnace IFC
Transformer lives here. Y out to the outdoor contactor. TWIN empty on a standalone.
- RHot to the stat24V
- CCommon — must reach the outdoor24V
- WHeat call24V
- YCool in / cool out24V
- GBlower24V
- TWINEmpty unless twinned24V
Landing
- 24VIFC Rstat R
~24 VAC hot
- 24VIFC Cstat Coutdoor C
Common
- 24VStat WIFC W
Heat. Stays in this cabinet.
- 24VStat YIFC Youtdoor Y
Cool / contactor
- 24VStat GIFC G
Fan. Does not go outdoors.
IFC harness — single-stage heat
After W arrives. This is the gas train, not the thermostat strip.
Transformer + fuse
120V primary. 24V secondary. Dark stat = fuse / door / transformer first.
- L1 / N120V to the IFCLine
- XFMR24V to R24V
- FUSEOn the IFC24V
24V safety chain
Door, limit, rollout in series. Open anywhere kills heat.
- DOORInterlock24V
- LIMITMain limit — rise / no airflow24V
- ROLLOUTManual reset. Do not jumper and leave24V
Inducer + one pressure switch
W → inducer 120V → PS closes → IFC continues. One hose, one switch.
- IND120V from the IFC to the inducerLine
- PS24V prove back to the IFC24V
- HOSESingle hose. Do not add a second because two-stage boards have two.24V
HSI + single valve
Igniter is 120V from the IFC. Valve is 24V. Flame rod is µA DC back to the IFC.
- HSI120V hot-surface igniter — not 24VLine
- VALVE24V to the single solenoid24V
- FLAMEµA DC on the rod. Not a 24V circuit24V
PSC blower + run cap
Heat / cool / park taps on the motor. The cap is on this blower — not the outdoor dual can.
- HEATHeat speed tap24V
- COOLCool speed tap24V
- PARKUnused leads parked24V
- CAPRun capacitor on the blowerCap
Landing
- LineL1IFCinducer
120 VAC after W
- 24VIFCPSIFC
~24 VAC prove. Open PS = no ignition.
- LineIFCHSI
120 VAC during trial
- 24VIFCgas valve
~24 VAC after flame prove starts
- 24VFlame rodIFC
µA DC. Not 24V.
- LineIFCblower
120V tap + cap
Prove it
- 24 VAC from R to C at the IFC. Fuse / transformer first if the stat is dark.
- W at the IFC under a heat call. Then inducer / igniter / valve per THIS door card.
Do not
- Do not land a ComfortBridge 1/2 or Infinity ABCD pair on this IFC.
- Do not hunt W2 / E8 / high-fire on a one-stage door.
- TWIN must be empty on a standalone.
9-speed tap, PSC, and CT motors share this thermostat landing. The motor is on the IFC harness diagram.
Sequence
- 1
W
Single W only. Inducer on → the one pressure switch must close (31 if it does not) → HSI → single-stage valve → flame (34 if no prove) → heat-speed blower.
- 2
No W2
There is no second solenoid and no high-fire switch. A wire on W2 does nothing useful on the furnace side. Do not look for a 32-vs-31 two-stage split.
- 3
59SC6 blower
18-speed motor follows heat/cool taps or setup, not a 59TP6 model-plug CFM table. 41 is the RPM-out-of-band code on that motor.
- 4
Limits
33 is the open limit/rollout circuit. Held open becomes lockout 13.
- 5
Ignition fail
34 repeats, then lockout 14.
Faults on this IFC
Step 1, then 2, then 3. Expected reading and the fail branch sit under each check.
11
No stored history
Memory empty or power was cycled.
1 Confirm this is not a fault
On the Bryant 935SA this readout (11) is run status, not a lockout. Write what the display actually shows and whether W/Y/G is present at the IFC.
Expect: Idle / Ht / CF / stage+CFM words change when you apply and remove the call.
If fail: If the word never changes on a real call, the call is not reaching this IFC.
If pass: The board is alive. Diagnose the comfort complaint, not this code.
2 Prove the call at the board
Measure R to W / Y / G at the Bryant 935SA IFC, not at the thermostat. Communicating plates need the data pair and a live indoor address — 24 V on W is not the test.
Expect: Not a fault. Recreate the W call and watch the live code.
If fail: Fix the stat, harness, or data pair before you change parts.
3 Watch one full sequence
Leave power on. Watch Two-digit IFC (single-stage Comfort — not TP6, not Infinity) through one cycle and write the first real fault that replaces this status word.
Expect: W: Single W only. Inducer on → the one pressure switch must close (31 if it does not) → HSI → single-stage valve → flame (34 if no prove) → heat-speed blower.
12
Blower on after power-up
Powered up on a W call — blower-on delay / 90 s class run.
1 Confirm this is not a fault
On the Bryant 935SA this readout (12) is run status, not a lockout. Write what the display actually shows and whether W/Y/G is present at the IFC.
Expect: Idle / Ht / CF / stage+CFM words change when you apply and remove the call.
If fail: If the word never changes on a real call, the call is not reaching this IFC.
If pass: The board is alive. Diagnose the comfort complaint, not this code.
2 Prove the call at the board
Measure R to W / Y / G at the Bryant 935SA IFC, not at the thermostat. Communicating plates need the data pair and a live indoor address — 24 V on W is not the test.
Expect: Normal after a brownout. Repeating 12 + 41 on a 59SC6 → 18-speed calibration / static.
If fail: Fix the stat, harness, or data pair before you change parts.
3 Watch one full sequence
Leave power on. Watch Two-digit IFC (single-stage Comfort — not TP6, not Infinity) through one cycle and write the first real fault that replaces this status word.
Expect: W: Single W only. Inducer on → the one pressure switch must close (31 if it does not) → HSI → single-stage valve → flame (34 if no prove) → heat-speed blower.
13
Limit lockout
Limit/rollout stayed open. Auto-reset ~3 h on this IFC family.
1 Treat this as flame outside the exchanger
Do not reset the Bryant 935SA rollout and walk away. Write the code, kill the call, and look for flame at the burners, crossover, and vestibule before you do anything else.
Expect: No flame outside the exchanger. Burners seated. Crossover lit.
If pass: Still inspect secondary / flue / condensate before you reset.
2 Secondary, condensate, and flue
Blocked secondary, drowned collector, or a plugged flue pushes flame out the front. Pull the inducer/collector look, confirm the trap is flowing, and check PVC/vent. Treat as a hardened 33. Filter, heat speed / 18-speed tap, rise, rollout reset.
Expect: Dry collector, open flue, trap clear.
3 Reset only after the cause is fixed
Manual-reset rollout. Recurring rollout on Bryant 935SA is a CO / fire call — cracked primary, misaligned burners, or a failed secondary. Confirm CO in the space before you leave.
Expect: One clean cycle after the cause is fixed. No second reset as a repair.
14
Ignition lockout
Hardened 34. Auto-reset ~3 h.
1 Watch one full try — do not reset
Write the Bryant 935SA code. Watch inducer, HSI glow, valve click, flame, µA. The step that dies is the repair. Resetting only burns another try into a harder lockout. HSI, gas, flame sensor, ground. Do not sit on resets.
Expect: W → No W2 → 59SC6 blower → Limits → Ignition fail
2 Gas and the valve
Cock open, inlet pressure, then manifold on the stage that is failing vs the rating plate. 24 VAC at the valve during trial? Coil ohms? A valve that never opens looks like a ‘bad igniter’ if you did not watch the sequence.
Expect: Inlet and manifold on the plate. 24 VAC only during trial.
3 Flame prove, then the lockout timer
Glow + valve + no prove → rod, ground, or IFC sense. Prove then drop → µA / PS / limit. Soft lockouts on this family often auto-reset on a long clock — do not sit on resets.
Expect: Flame sense: µA per Comfort 96 door card (typically ≥ 0.5–1.0 µA class).
21
Gas-heat lockout / model plug
Valve relay fault, or missing/wrong model plug on boards that use one (more likely on 59SC6 18-speed).
1 Read the plug / card on THIS cabinet
On Bryant 935SA the model plug or shared-data card must match this cabinet size. A 100 kBtu plug in an 80 cabinet overfires and limits. A leftover memory card after a control swap throws d0/d4-class codes. Valve harness and 24 VAC during trial.
Expect: Plug / card part matches the rating plate and the replacement control bulletin.
2 Reseat, then confirm the menu
Kill power, reseat, restore power. On communicating plates open the setup and confirm unit size / motor HP. If this cabinet has a model plug, it must match THIS Comfort 96 cabinet — do not steal a 59TP6 plug and expect correct CFM.
Expect: IFC recognizes the plug. No size-mismatch code.
3 Do not run it mismatched
A wrong plug is not a ‘temporary’ fix. It will throw limit, ignition, or blower-band codes that look like bad parts. Fit the correct plug, then re-run the original complaint. Miswired valve.
Expect: One clean sequence on the correct identity.
22
Flame with valve off
Flame sense while GV de-energized.
1 Shut the gas cock first
On Bryant 935SA the rod sees flame with the valve de-energized. Shut the cock. If flame stays, the valve is leaking — replace it. Do not jump or energize it as a test. Leaking valve. Shut the cock.
Expect: Flame dies when the cock is shut.
If fail: Leaking valve. Replace. Do not leave the unit.
2 Rod and IFC flame circuit
If flame dies with the cock shut, the rod is shorted to ground or the IFC flame circuit is lying. Unplug the rod, inspect ceramic, and check the harness for a rub-through on the collector.
Expect: Rod isolated from ground. IFC does not report flame with the rod unplugged.
3 Confirm valve solenoids are actually off
Measure 24 VAC at both solenoids after the call drops. A welded IFC relay or a shorted W will keep a solenoid wet and look like ‘unexpected flame.’ Replace the IFC only after the valve and rod are proven.
Expect: 0 VAC at both solenoids after the call. No flame.
23
PS did not open
The (only) pressure switch is still made when it should be open.
1 Unplug the switch with the inducer off
On Bryant 935SA this code is the switch made when the inducer is not running. Unplug that switch only. Welded switch, water in hose, inducer still spinning when it should be off.
Expect: Code changes when the harness is open.
If fail: Wrong switch, or the IFC input is shorted.
If pass: Switch/hose path. Go to step 2.
2 Water in the hose vs a welded switch
Blow the hose. Water holding residual draft is more common than a welded switch. Confirm the hose is not teed and not routed uphill. Ohm the switch with the hose off. One switch — there is no ‘the other PS’ to swap to.
Expect: Hose empty. Switch opens with no draft.
3 IFC input last
If the switch ohms open, the hose is dry, and the code does not change with the harness off, the Bryant 935SA IFC input is shorted. Do not keep swapping switches.
Expect: Known-good open switch + open harness = code gone. If not, IFC.
24
Secondary fuse open
24 V fuse on the IFC.
1 Find the 24 V short before you replace the fuse
On Bryant 935SA an open IFC fuse is a short on W, Y, G, HUM, EAC, or a data pair landed on 24 V. Unplug the thermostat / data harness first. Tstat short, HUM/EAC, valve harness. Replace fuse only after the short is gone.
Expect: Fuse out. 24 V transformer still good. Harness isolated.
2 Replace the fuse with the harness off
New fuse, harness still off. If it holds, the short is in the field wiring or accessory. Plug one circuit back at a time (W, then Y, then HUM/EAC).
Expect: Fuse holds with harness off. Dies when the shorted lead lands.
3 If it blows with the harness off
Short is on the Bryant 935SA IFC or the gas-valve harness. Unplug the valve and try once more. Repeat blow with valve unplugged = IFC.
Expect: Do not keep feeding fuses into a welded valve coil or a burned IFC trace.
31
Pressure / draft did not close
Inducer running, the only prove switch is open. This is the single draft path — not ‘low fire’ and not a missing high-fire switch.
1 Prove the high-fire call
Write the live Bryant 935SA code before you pull power. Confirm this IFC is actually commanded to high — W2 at the board, or the staging timer has expired. Trap, collector, PVC slope, wind, inducer.
Expect: R to W2 ~24 VAC (conventional) or a high-stage request on a communicating stat.
If fail: No high request → thermostat / staging / menu. Not a high-fire pressure switch.
If pass: Go to step 2. Do not jump the high-fire switch to ‘see if it runs.’
2 Prove the inducer actually went high
Listen and amp the inducer on low vs high. No speed-up → IFC high output or inducer winding. Speed-up and this code still live → high-fire PS path (hose, switch, vent). Attic jobs: ice in the vent, dry-siphoned or frozen trap.
Expect: Inducer current and collector draft rise on high.
If fail: Measure 120 VAC on the high-speed inducer lead during the high call. 0 V = IFC. Voltage + dead motor = inducer.
3 Isolate the HIGH hose and switch
High-fire hose on the high tap only — a tee with the low switch is the common first-install miss on this dual-switch plate. Blow the hose, confirm it is dry and downhill to the collector. Ohm the high-fire switch: it is NO and must close only on high draft. If the door card also lists 32, treat 32 as this same single PS path — confirm the sticker.
Expect: Pressure switch: One switch, one hose. Open with inducer off; must close on a W call. 31 = never closed. 23 = never reopened.
If fail: Welded open, cracked hose, or water in the line. Replace the failed part — do not leave a jumper.
If pass: Switch and hose good → step 4 (vent / condensate / IFC).
4 Vent, condensate, and the IFC input
High fire needs more draft than a low-fire code ever saw. Check PVC size on this cabinet, shared chase, wind, ice, bird screen, and condensate backing into the collector only on high. If the switch closes on known draft and the code stays, the Bryant 935SA IFC input is the last call.
Expect: Clear vent, dry collector, known-good switch, then IFC.
33
Limit or rollout open
Airflow or flame-containment. Single-stage heat speed, not TP6 model-plug CFM.
1 Treat this as flame outside the exchanger
Do not reset the Bryant 935SA rollout and walk away. Write the code, kill the call, and look for flame at the burners, crossover, and vestibule before you do anything else.
Expect: No flame outside the exchanger. Burners seated. Crossover lit.
If pass: Still inspect secondary / flue / condensate before you reset.
2 Secondary, condensate, and flue
Blocked secondary, drowned collector, or a plugged flue pushes flame out the front. Pull the inducer/collector look, confirm the trap is flowing, and check PVC/vent. Filter, coil, return, heat tap (59SC5) or 18-speed heat selection (59SC6). Do not pull a 59TP6 model-plug CFM table onto this motor.
Expect: Dry collector, open flue, trap clear.
3 Reset only after the cause is fixed
Manual-reset rollout. Recurring rollout on Bryant 935SA is a CO / fire call — cracked primary, misaligned burners, or a failed secondary. Confirm CO in the space before you leave. Rollout is manual reset — inspect exchanger before you reset.
Expect: One clean cycle after the cause is fixed. No second reset as a repair.
34
Ignition prove fail
Trial without flame sense. Repeats → 14.
1 Measure µA while it is running
Do not clean first and guess. Series-µA the rod on Bryant 935SA during a call. Falling µA is oxide, ground, or a dying flame. A hard drop is often the pressure switch or limit opening, not the rod. HSI glow and 120 VAC, gas cock, manifold, flame rod oxide, IFC ground.
Expect: Flame sense: µA per Comfort 96 door card (typically ≥ 0.5–1.0 µA class).
2 Rod, ground, then gas
Clean the rod with a non-scratch pad — not sandpaper. Chassis ground to burner box and IFC (painted screw and missing star washer are classic). Then manifold on the stage that is dropping and confirm LP conversion leftovers.
Expect: Manifold on the rating plate. Solid burner-box ground.
3 Prove it is not a switch opening
Watch the live Bryant 935SA display when flame drops. A PS or limit code that appears at the drop means the rod was a victim. Inducer, hose, vent wind, or a limit on a wrong heat tap.
Expect: µA stable and the live code stays a flame code — then rod/valve/IFC. Otherwise chase the new code.
41
Blower RPM out of band
Applies on 59SC6 18-speed / VS-ish motors. Comfort 96 PSC/CT 59SC5 jobs rarely throw a true 41.
1 Is the wheel free?
Spin the Bryant 935SA blower by hand. Ice, debris, or a seized bearing is not a control problem. Confirm the motor type on this plate — serial ECM, 9-speed tap, or X-13 — before you grab a capacitor. Confirm it is an 18-speed 59SC6 before you chase a VS model plug.
Expect: Wheel free. Correct motor family for this IFC.
2 Command vs rotation
Call for G or heat and confirm the IFC is actually requesting CFM (taps, serial, or communicating). Amp the motor. Locked rotor + a good command = motor. No command = IFC / harness / shared data. Static, wheel, harness, heat/cool taps or setup — not a 59TP6 plug chart.
Expect: Command present. Motor amps in range, not locked.
3 Static and the wrong motor
High static will trip current/limit codes and look like a dead motor. Measure TES vs this cabinet. Wrong horsepower or a leftover memory card after a control swap is the other half of this call. Filter and coil first.
Expect: Static on the blower chart. Matching motor / shared-data card.
45
Control lockout
IFC parked itself.
1 Write the live code and watch one cycle
On Bryant 935SA read Two-digit IFC (single-stage Comfort — not TP6, not Infinity) before you pull power. Write 45 exactly. Watch one full sequence and note which step dies. Power reset once after the root code is understood. Repeat 45 = board or persistent input.
Expect: W: Single W only. Inducer on → the one pressure switch must close (31 if it does not) → HSI → single-stage valve → flame (34 if no prove) → heat-speed blower.
2 Prove the circuit this code names
Use the Bryant 935SA door card and the test points on this plate. Isolate the named switch, sensor, or output with a meter — do not swap the IFC first.
Expect: Pressure switch: One switch, one hose. Open with inducer off; must close on a W call. 31 = never closed. 23 = never reopened.
3 Confirm with a number, then the next part
If the named part measures good, the IFC input/output or a related code on this same plate is next. Do not apply a sister-SKU chart.
Expect: Pressure switch: One switch, one hose. Open with inducer off; must close on a W call. 31 = never closed. 23 = never reopened.
Workflows
31 on 935SA
No heat.
1 Prove the call and the live code
One PS. Trap / PVC. Not Evolution ABCD.
Expect: Write whatever Two-digit IFC (single-stage Comfort — not TP6, not Infinity) is showing. Last codes store ~48 h or until power is pulled (code 11 = no history). Diagnostic button where equipped. Recreate the call and watch the live digit.
If fail: No call at the IFC → stat / harness. Do not change gas parts.
2 Isolate the first failed step in the sequence
Rise vs the 95% Legacy chart, not 916S 97%.
Expect: No W2: There is no second solenoid and no high-fire switch. A wire on W2 does nothing useful on the furnace side. Do not look for a 32-vs-31 two-stage split.
3 Confirm with a number, then the next part
Rise vs the 95% Legacy chart, not 916S 97%.
Expect: Pressure switch: One switch, one hose. Open with inducer off; must close on a W call. 31 = never closed. 23 = never reopened. · W at IFC: R to W ~24 VAC. No W2 furnace path to wait on.
If fail: Stay on this plate. The out-of-range reading is the part.
If pass: Reading in range → the next step in this workflow is the repair.
Test points
Pressure switch
One switch, one hose. Open with inducer off; must close on a W call. 31 = never closed. 23 = never reopened.
W at IFC
R to W ~24 VAC. No W2 furnace path to wait on.
Heat speed
59SC5 tap/profile vs rise. 59SC6 18-speed heat selection — not a TP6 model-plug CFM number.
Flame sense
µA per Comfort 96 door card (typically ≥ 0.5–1.0 µA class).
Gotchas
- 935CA is the Evolution 95%. If the wall control is ABCD, leave this page.
Related plates
Install this plate
Install Bryant 935SA as Legacy 95 · single-stage · 95% condensing.
Legacy 95 · single-stage · 95% condensing
This plate — not the sister SKU
- Not 935CA Evolution. Not 916S. Not 912S 92%.
- 935CA is the Evolution 95%. If the wall control is ABCD, leave this page.
IFC on this door
- Same Carrier two-digit language that applies to single-stage: 11, 12, 13, 14, 21, 22, 23, 24, 31, 33, 34, 41 (59SC6), 45.
- There is no high-fire PS and no W2 furnace path. Do not run the 59TP6 32-then-high-fire playbook.
- Some boards still flash 32 for the single PS path — confirm the door card. 59TP6 uses 32 specifically as low-fire PS. On SC5/SC6, 32 is not a second stage.
- A live 3 1.6-style CFM readout is a TP6/VS habit. Comfort 96 is not reporting staged CFM that way.
- Amber LED flash charts from old 80% Comfort boards do not apply.
Hardware
- AFUE: 95% Legacy single-stage condensing
First fire
- 1One PS. Trap / PVC. Not Evolution ABCD.
- 2Rise vs the 95% Legacy chart, not 916S 97%.
Do not on Bryant 935SA
- Not 935CA Evolution. Not 916S. Not 912S 92%.
- 935CA is the Evolution 95%. If the wall control is ABCD, leave this page.
Maker literature
FieldBench does not host manufacturer files. Each link opens the maker’s own literature page in a new tab.
- Bryant document searchLiterature searchEnter the full Bryant plate (926TB60100V21, 987MA…). Owner PDFs are public; many I/Os are dealer-gated.Open manufacturer PDF
- Bryant document searchLiterature searchSearch Bryant 935SA on the maker’s literature page.Open manufacturer PDF
Warranty and bulletins
Affected models, serial range, symptom, remedy, date. Maker files open on the manufacturer site.
Residential limited warranty
warranty sheetCarrier / Bryant registered heat-exchanger terms
Current 59-series / Evolution / Preferred registered warranty · Limited warranty certificate
Dealer portals
dealerWhere remaining service letters live
Current-year service letters not on a public literature page · Maker dealer portal