York chiller pressure transducer
Match signal range, pressure range, connector, and refrigerant-side compatibility before replacing.
York chiller fault guide for YVAA, YVFA, YWHA, YT, and OptiView controls: pressure trips, oil faults, VSD alarms, sensors, and reset limits.
York chiller fault guide for YVAA, YVFA, YWHA, YT, and OptiView controls: pressure trips, oil faults, VSD alarms, sensors, and reset limits.
Parts to price first
Match signal range, pressure range, connector, and refrigerant-side compatibility before replacing.
Use for leaving chilled-water, condenser-water, or suction-temperature faults after confirming the sensor curve.
Relevant for screw-compressor oil-pressure faults when the filter interval or pressure drop points to restriction.
Match horsepower, voltage, RPM, rotation, and mounting before ordering for YVAA/YVFA airflow faults.
York chillers — now part of Johnson Controls — use the OptiView Control Center across the YVAA (air-cooled screw), YVFA (VSD air-cooled screw), YWHA (water-cooled), and YT (centrifugal) product families. When a fault triggers, the OptiView logs it with timestamp and operating data. This guide covers the most common York chiller fault codes, what causes each one, and how to diagnose and reset.
The OptiView Control Center is York’s standard controller for mid-to-large commercial and industrial chillers. It provides:
OptiView severity classifications:
| Classification | Behavior |
|---|---|
| Safety Cutout | Immediate compressor shutdown, manual reset required |
| Fault/Inhibit | Compressor shutdown, condition must clear |
| Warning | No shutdown — operator notification only |
| Start Inhibit | Prevents startup but no active fault |
York/OptiView faults are displayed as text strings rather than numeric codes, though the system assigns internal code numbers visible in service tools. Faults are categorized as:
The OptiView displays the fault type, circuit (if applicable), current operating parameters, and previous 5 shutdown causes.
York’s unit log (also accessible from History) records operating data every 5 minutes during normal operation. This is distinct from fault history and provides trend data to identify developing problems before they trip the chiller.
Johnson Controls Tech View software provides deeper diagnostics:
Fault code: Code 48 (internal) — HIGH DISCHARGE PRESSURE (HARDWARE - HPCO)
Trigger: The mechanical high-pressure cutout switch (HPCO) has opened. This is a hardware safety independent of the OptiView software logic.
Applies to: YVAA, YVFA, YWHA, YT
Causes (YVAA/YVFA air-cooled):
Causes (YWHA water-cooled):
Diagnosis:
Reset: Latching. Reset at OptiView after condition resolves. The mechanical HPCO switch on older YVAA/YWHA units may also require manual reset (pushbutton on switch body).
Fault code: Code 27 — HIGH DISCHARGE PRESSURE (SOFTWARE)
Trigger: OptiView software has detected discharge pressure above the software cutout threshold (typically set 5–10 psi below the hardware HPCO). This trips the compressor before the mechanical switch activates.
Diagnosis: Same as hardware HPCO. The software trip is a precautionary shutdown that allows for a more controlled unload sequence before full trip.
Fault code: Code 55 — HIGH DISCHARGE PRESSURE RATE
Trigger: The rate of discharge pressure rise is too steep, indicating a rapid deterioration in condensing conditions.
Causes:
Fault code: Code 30 — LOW SUCTION PRESSURE
Trigger: Suction pressure has reached the cutout threshold.
Causes:
Diagnosis:
Fault code: Code 52 — LOW SUCTION PRESSURE SMART FREEZE
Trigger: The “Smart Freeze Protection” algorithm on newer OptiView units has detected suction temperature approaching the evaporator freeze point.
This is a more sensitive protection than a simple pressure cutout — it monitors suction saturation temperature vs. leaving chilled water temperature and shuts down earlier to protect the evaporator from freeze damage.
Causes: Same as standard low suction pressure fault, plus:
Fault code: Code 3 — LOW CHILLED LIQUID TEMPERATURE
Trigger: Leaving chilled water temperature has dropped to the cutout setpoint (typically 36°F or 2°C for water systems).
Causes:
Reset: Non-latching in most cases — the chiller will restart automatically when leaving water temperature rises above the restart setpoint.
Fault code: Code 17 — MOTOR CURRENT OVERLOAD (HARDWARE)
Trigger: The motor protection relay or CT-based overload detection has tripped on sustained overcurrent.
Causes:
Diagnosis:
Fault code: Code 43 — MOTOR CURRENT OVERLOAD (SOFTWARE)
Trigger: OptiView has calculated motor utilization above threshold based on CT readings. Typically trips at 110–115% of FLA setting.
Fault code: (varies) — SYSTEM FAULT: CONTROL VOLTAGE
Trigger: Control power supply voltage is outside the acceptable range for the OptiView and associated controls.
Causes:
Diagnosis:
Fault code: Code 14 — SINGLE PHASE INPUT (UNIT)
Trigger: One phase of the three-phase power supply is missing or significantly unbalanced at the unit disconnect.
Causes:
Diagnosis: Measure voltage on all three phases at main disconnect. If one phase is missing, check upstream fuses and connections.
Fault code: Code 28 — HIGH DIFFERENTIAL OIL PRESSURE
Trigger: Oil pressure differential (oil supply minus suction pressure) is too high, indicating a blockage in the oil return circuit or a malfunctioning oil pressure regulating valve.
Causes (YVAA screw compressors):
Fault code: Code 29 — LOW DIFFERENTIAL OIL PRESSURE
Trigger: Oil pressure differential has dropped below minimum required for compressor bearing lubrication.
Causes:
Diagnosis:
Trigger: Oil temperature has exceeded the warning or cutout threshold.
Causes:
Fault code: Code 20 — EVAP ANTI-FREEZE PUMP FAULT
Trigger: The evaporator antifreeze pump (if equipped) has failed or flow switch is not satisfied.
Causes:
Fault code: Code 36 (YVAA-specific) — HIGH MOTOR TEMPERATURE
Trigger: Motor winding temperature sensor has detected overtemperature.
Causes:
Fault code: Code 21 — LOW HEAT EXCHANGER TEMPERATURE
Trigger: Heat exchanger (evaporator) refrigerant temperature has approached the freeze protection threshold.
Causes: Same as Low Chilled Liquid Temperature — loss of water flow is the primary cause.
The YVFA uses a Variable Speed Drive (VSD) to vary compressor speed based on load. VSD faults generate a separate fault category.
Fault code: Code 7 — VSD COMMUNICATIONS FAILURE
Trigger: Communication between the OptiView and the VSD control board has been interrupted.
Causes:
Diagnosis:
Fault code: Code 4 — VSD INITIALIZATION FAILURE
Trigger: VSD fails to complete its startup self-test sequence.
Causes:
Fault code: Code 45 — HIGH BASEPLATE TEMPERATURE
Trigger: VSD heat sink temperature has exceeded limits.
Causes:
Fault code: Code 13 — HIGH VSD AMBIENT TEMPERATURE
Trigger: Air temperature at the VSD enclosure has exceeded limits.
Fix: Check VSD enclosure ventilation. Verify that any cooling fans in the VSD enclosure are running.
Fault code: Code 19 — HIGH HARMONIC FILTER TEMPERATURE
Trigger: On units equipped with harmonic filters (line reactors or active filters), the filter temperature has exceeded limits.
Fix: Check harmonic filter cooling ventilation. Verify filter connections are tight (loose connections cause resistive heating).
Fault codes: Code 37/38 — PRE-CHARGE LOW DC BUS VOLTAGE / PRE-CHARGE DC BUS VOLTAGE IMBALANCE
Trigger: During VSD startup pre-charge phase, DC bus voltage is not building correctly.
Causes:
Safety note: Never work on VSD until DC bus voltage is confirmed at 0V. Fully charged DC bus can hold lethal voltage for several minutes after power removal.
Fault code: Code 18 — CT PLUG FAULT
Trigger: Current transformer (CT) plug is not connected or signal is out of range.
Fix: Verify CT wiring connections. Check CT plug is fully seated in OptiView input module.
Fault code: Code 34 — SENSOR FAILURE
Trigger: One or more temperature or pressure sensors is reading outside its configured range.
Diagnosis:
Fault code: Code 35 — LOW MOTOR CURRENT
Trigger: Motor current is significantly below expected value for operating conditions. Indicates the compressor is not loaded as expected.
Causes:
Trigger: OptiView has detected the guide vane position is not matching the commanded position.
Causes:
Diagnosis:
Fault codes: Code 53/54 — ISOLATION VALVE FAILED TO CLOSE / ISOLATION VALVE FAILED TO OPEN
Trigger: Compressor isolation valve end switch has not confirmed the commanded position within the required time.
Causes:
York technicians should always review fault history before clearing a latching alarm. The OptiView stores data at fault time — once the system is running again, the fault timestamp and operating data remain in history, but confirming conditions before reset helps root-cause analysis.
VSD faults may require additional steps:
| Part | Application | Notes |
|---|---|---|
| Discharge pressure transducer | YVAA, YVFA, YWHA | Verify signal type (0–5V, 4–20mA) and range |
| Suction pressure transducer | YVAA, YVFA, YWHA | Match exact replacement to original |
| Leaving chilled water temp sensor | All models | 10K NTC thermistor; verify curve vs. OptiView config |
| Entering/leaving condenser temp sensors | All models | Immersion or strap-on depending on application |
| Oil pressure transducer | YVAA, YVFA screw | Differential type; check thread size and range |
| OptiView Control Board | All models | Requires full re-commissioning by JCI service |
| VSD IGBT module | YVFA | Match to VSD frame size — not interchangeable between frames |
| VSD cooling pump | YVFA glycol-cooled VSD | Replace if flow rate is insufficient |
| EXV motor/valve assembly | YVAA, YVFA | Test motor winding resistance before replacing valve |
| Condenser fan motor | YVAA, YVFA | Verify HP, RPM, rotation direction matches |
| High-pressure cutout switch | YVAA, YVFA, YWHA | Check factory-set trip pressure matches unit design |
| Oil filter element | All screw-compressor models | Annual replacement minimum |
On York chillers, the OptiView snapshot at fault time is usually more valuable than the front-panel alarm name. Record evaporator pressure, condenser pressure, leaving chilled water temperature, compressor current, and VSD status before clearing the fault. A low-pressure trip during startup points to a different cause than the same code after 20 minutes at full load.
DIY vs Pro: Facility staff can verify flow switches, strainers, pump status, condenser airflow, and obvious sensor wiring damage. Refrigerant-side diagnostics, VSD faults, EXV replacement, and control-board commissioning belong with York/JCI service or a licensed chiller technician.
Before ordering, match the HVAC part to the model number, electrical rating, and failure symptom. Check current prices on Amazon - prices and availability change frequently.
VSD not configured for connected motor: The OptiView must have motor FLA and voltage programmed correctly for current limit protection to function. After motor or VSD replacement, verify all motor parameters match nameplate.
Incorrect refrigerant circuit count: YVAA comes in single and dual-circuit versions. Circuit count must be configured correctly or alarms trip on non-existent circuits.
Flow switch not commissioned: Chilled water flow switch must be tested during commissioning. An uncalibrated or bypassed flow switch is the most common cause of low-flow damage on York chillers.
Setpoint winter/summer conflicts: Discharge pressure limiting setpoints designed for summer operation may not match winter ambient temperatures — the unit will keep trying to limit capacity before the circuit is fully stable. Review seasonal setpoints annually.
Service mode left active: After maintenance, confirm no actuators or setpoints are left in manual/override mode. OptiView will indicate service mode on the main screen, but technicians sometimes overlook this when handing the unit back.
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Open the History screen from the OptiView main menu. Review the first shutdown record with pressures, temperatures, amps, and VSD status before resetting the chiller.
Common causes include dirty condenser coils, failed condenser fans, low water flow, high entering condenser-water temperature, non-condensables, or an overcharge.
Facility staff can verify pumps, strainers, airflow, flow switches, and visible wiring. Refrigerant-side faults, VSD faults, EXV replacement, and board commissioning belong with York/JCI service or a licensed chiller technician.