Models
Amanaac

AXV9S

Inverter · communicating · up to 19 SEER2

Amana variable-speed inverter air conditioner. Badge twin of Goodman GXV9S. No reversing valve. Weigh-in charge.

Not ASXC18 two-stage scroll. Not ALXS4B contactor. Not ASZC heat pump.

Drive

Inverter scroll

Bus

ComfortBridge or 24V per indoor

Sister SKU

Goodman GXV9S / GXV6S

This board

Outdoor inverter (Amana badge)

  • Drive / display, not AMVC E-codes.
  • No dual-cap story.
  • No RV / defrost.

Outdoor display before disconnect.

Universal swap

No universal

Amana AXV9S outdoor. No furnace IFC universal. Replace the OEM outdoor control / contactor / drive by the silk.

Silk: AXV9S

White-Rodgers

ICM

Honeywell

  • Indoor furnace universals (50A55, 50M56U, ICM282B, ICM2811, S9200U). This is not an IFC.
  • Do not ‘adapt’ a furnace board to an outdoor inverter, defrost PCB, or contactor.

After you pull the dead card

  1. 1Photograph the outdoor silk. Indoor 50A55 / ICM282B / S9200U do not belong here.
  2. 2Contactor units: replace the contactor / cap / HPS — there is no universal outdoor board.
  3. 3Inverter / communicating outdoors: OEM drive only. There is no White-Rodgers or ICM outdoor universal.

Field wiring

Written landings for Amana AXV9S. Not a factory schematic.

ComfortBridge inverter AC
1/2 data — or 24V YR-410A

GXV9S / AXV9S / GSXV class. Outdoor drive, no reversing valve. Communicating indoor on 1/2. 24V indoor gets Y and C only.

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 PDF

This indoor

AMVC / AVPTC = 1/2. AR9T96 = Y and C.

ComfortBridge indoor

GMVC / AMVC / AVPTC requesting capacity on 1/2.

ComfortBridge pair

Indoor 1 and 2 to outdoor 1 and 2. Polarity matters. This is not 24V Y.

  • 1DataData
  • 2DataData

Outdoor line — inverter drive

208/230 into the drive. No contactor slam. DC bus can stay live after the disconnect.

  • L1Line to the driveLine
  • L2Line to the driveLine
  • GNDEquipment groundLine

Landing

  • DataIndoor 1/2outdoor 1/2

    Data. Capacity is serial.

  • LineL1 / L2drive

    208/230. No contactor.

24V indoor

GR9T96 / AR9T96 / any conventional Y.

Wall thermostat

Conventional 24V. One cool stage.

  • R24V hot from indoor transformer24V
  • C24V common24V
  • YCool call — one stage24V
  • GIndoor fan24V
  • WHeat. Stays at the indoor.24V

Indoor IFC / AHU

Y in from the stat. Y out to the outdoor contactor. Same transformer.

  • RTransformer hot — feeds the stat24V
  • CTransformer common — must reach the outdoor24V
  • YStat Y in24V
  • YoutTo outdoor contactor coil24V
  • GBlower / cool tap24V
  • WHeat only24V

Outdoor — contactor coil

Y is a call to the drive, not a contactor coil you listen for.

  • YContactor coil. ~24 VAC to C under a call.24V
  • CContactor coil common24V

Outdoor line — inverter drive

208/230 into the drive. No contactor slam. DC bus can stay live after the disconnect.

  • L1Line to the driveLine
  • L2Line to the driveLine
  • GNDEquipment groundLine

Landing

  • 24VStat Yindoor Youtdoor Y

    ~24 VAC call. Drive ramps. No slam.

  • 24VC throughout

    Common

Prove it

  • Drive LEDs / display. There is no contactor to chase.
  • Charge is weigh-in + line-set.

Do not

  • Do not throw a dual run cap.
  • Do not ohm a defrost sensor. That is GSZC / ASZC.

Same 1/2 pair as GSXC18. The outdoor is a drive, not a two-stage scroll board.

Sequence

  1. 1

    Call

    Indoor requests capacity. Inverter ramps. No contactor.

  2. 2

    Protect

    HPS / LPS / drive OC. AC-only — no defrost.

Faults on this IFC

Step 1, then 2, then 3. Expected reading and the fail branch sit under each check.

Comm

ABCD / outdoor drop

lockout

Drive or bus. Wall control loses the outdoor.

  1. 1 Let it cool, then read the drive LED

    On Amana AXV9S overcurrent / overheat is often a dirty coil, a failed OD fan, or a locked compressor — not a dead inverter. Clear airflow, confirm the OD fan, and read the drive LED before you order a control. ABCD landing and polarity, outdoor board power, inverter comms harness.

    Expect: OD fan running. Coil clean. Drive LED decoded from THIS outdoor’s card.

  2. 2 Voltage and compressor windings

    Incoming voltage in range (this plate’s line-voltage code). Compressor windings even, no ground. A shorted compressor will kill a new drive. C still required at the wall control.

    Expect: Balanced windings. No winding to ground. Line voltage stable under load.

  3. 3 Charge and the drive last

    A starved or flooded compressor will overcurrent. Confirm SH/SC and charge weight. Only then condemn the inverter. Indoor must be Infinity-capable. A 24ACC6-style indoor pairing is the wrong mental model.

    Expect: Charge on the nameplate. Drive code gone after a cool-down and a clean coil.

HPS / LPS

Pressure protection

lockout

Still real on an inverter.

  1. 1 Let it cool, then read the drive LED

    On Amana AXV9S overcurrent / overheat is often a dirty coil, a failed OD fan, or a locked compressor — not a dead inverter. Clear airflow, confirm the OD fan, and read the drive LED before you order a control. Coil, fan, charge by weigh-in — you do not ‘top off’ a Greenspeed.

    Expect: OD fan running. Coil clean. Drive LED decoded from THIS outdoor’s card.

  2. 2 Voltage and compressor windings

    Incoming voltage in range (this plate’s line-voltage code). Compressor windings even, no ground. A shorted compressor will kill a new drive. Outdoor fan that is actually the inverter-driven fan, not a dual-cap PSC motor.

    Expect: Balanced windings. No winding to ground. Line voltage stable under load.

  3. 3 Charge and the drive last

    A starved or flooded compressor will overcurrent. Confirm SH/SC and charge weight. Only then condemn the inverter. Do not use 24ACC6 piston superheat as the pass/fail.

    Expect: Charge on the nameplate. Drive code gone after a cool-down and a clean coil.

Inverter

Drive overcurrent / overheat

lockout

L5/L4-class faults on the drive.

  1. 1 Let it cool, then read the drive LED

    On Amana AXV9S overcurrent / overheat is often a dirty coil, a failed OD fan, or a locked compressor — not a dead inverter. Clear airflow, confirm the OD fan, and read the drive LED before you order a control. Compressor to ground, heat sink, supply voltage. Weigh-in vs nameplate.

    Expect: OD fan running. Coil clean. Drive LED decoded from THIS outdoor’s card.

  2. 2 Voltage and compressor windings

    Incoming voltage in range (this plate’s line-voltage code). Compressor windings even, no ground. A shorted compressor will kill a new drive. These L-codes do not exist on 24ACC6. If you are looking at a contactor, you are on the wrong outdoor.

    Expect: Balanced windings. No winding to ground. Line voltage stable under load.

  3. 3 Charge and the drive last

    A starved or flooded compressor will overcurrent. Confirm SH/SC and charge weight. Only then condemn the inverter.

    Expect: Charge on the nameplate. Drive code gone after a cool-down and a clean coil.

Workflows

Silent AXV9S

Indoor calling, outdoor not ramping.

  1. 1 Prove the call and the live code

    Drive LEDs. No contactor to chase.

    Expect: Write whatever Outdoor inverter (Amana badge) is showing. Outdoor display before disconnect.

    If fail: No call at the IFC → stat / harness. Do not change gas parts.

  2. 2 Isolate the first failed step in the sequence

    AMVC / AVPTC = data pair. AR9T96 = 24V Y.

    Expect: Protect: HPS / LPS / drive OC. AC-only — no defrost.

  3. 3 Confirm with a number, then the next part

    Weigh-in. Not an ASX16 top-off.

    Expect: Charge: Recover and weigh. Nameplate + ounces/ft. Not piston SH. · ABCD: Communicating to the Infinity indoor / 59MN7 family. D is not Y.

    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

Charge

Recover and weigh. Nameplate + ounces/ft. Not piston SH.

ABCD

Communicating to the Infinity indoor / 59MN7 family. D is not Y.

Drive

Inverter LEDs / last fault. No contactor coil 24 VAC test.

Gotchas

  • Goodman GXV9S is the twin.

Related plates

Install this plate

Install Amana AXV9S as Inverter · communicating · up to 19 SEER2.

Inverter · communicating · up to 19 SEER2

This plate — not the sister SKU

  • Not ASXC18 two-stage scroll. Not ALXS4B contactor. Not ASZC heat pump.
  • Goodman GXV9S is the twin.

Control on this outdoor

  • Drive / display, not AMVC E-codes.
  • No dual-cap story.
  • No RV / defrost.

Hardware

  • Drive: Inverter scroll
  • Bus: ComfortBridge or 24V per indoor
  • Sister SKU: Goodman GXV9S / GXV6S

First fire

  1. 1Drive LEDs. No contactor to chase.
  2. 2AMVC / AVPTC = data pair. AR9T96 = 24V Y.
  3. 3Weigh-in. Not an ASX16 top-off.

Do not on Amana AXV9S

  • Not ASXC18 two-stage scroll. Not ALXS4B contactor. Not ASZC heat pump.
  • Goodman GXV9S is the twin.

Maker literature

FieldBench does not host manufacturer files. Each link opens the maker’s own literature page in a new tab.

  • Amana literature libraryLiterature searchGas furnace / air-handler PDFs. Match the plate, not just the Amana badge.Open manufacturer PDF

Warranty and bulletins

Affected models, serial range, symptom, remedy, date. Maker files open on the manufacturer site.

All bulletins
  • Standard limited warranty

    warranty sheet

    Amana furnace heat-exchanger / unit-replacement terms

    Registered residential furnace warranty terms · Limited warranty certificate

  • Dealer portals

    dealer

    Where remaining service letters live

    Current-year service letters not on a public literature page · Maker dealer portal