Industrial compressor oil filter
Match the compressor model and filter specification before replacing for low oil-pressure trips.
MYCOM compressor fault guide for N-series, F-series, ComPAC, and MYPRO systems: oil pressure, discharge temperature, vibration, and reset limits.
MYCOM compressor fault guide for N-series, F-series, ComPAC, and MYPRO systems: oil pressure, discharge temperature, vibration, and reset limits.
Parts to price first
Match the compressor model and filter specification before replacing for low oil-pressure trips.
Use only after confirming range, output signal, thread, and refrigerant compatibility.
Relevant for discharge-temperature or sensor-range faults after wiring checks.
Match refrigerant, valve size, coil voltage, and system pressure before ordering.
MYCOM compressors — built by Mayekawa Manufacturing — are workhorses in industrial refrigeration. You’ll find them in cold storage facilities, food processing plants, and industrial process cooling running ammonia (NH3), HFCs, or hydrocarbon refrigerants. When a MYCOM trips, your refrigeration system is down and product is at risk. This guide covers the alarm codes and fault conditions for MYCOM N-series reciprocating and F-series single-screw compressors, including the ComPAC controller.
MYCOM (the brand name used by Mayekawa for industrial refrigeration compressors) covers two main compressor architectures in industrial installations:
N-series Reciprocating Compressors (N6, N8, N10, N12 — 6, 8, 10, and 12 cylinder)
F-series Single-Screw Compressors (F6, F8, F10)
Both series use external protection packages — typically PLC-based (Allen Bradley, Siemens) or the Mayekawa MYPRO TOUCH+ (formerly ComPAC) controller. The controller monitors all protection devices and logs alarms with timestamps.
MYCOM compressors use three tiers of protection:
| Protection Device | Abbreviation | Function |
|---|---|---|
| High Pressure Cutout | HP | Shuts down on high discharge pressure |
| Low Oil Pressure Protection | OP | Shuts down on low differential oil pressure |
| Low Pressure Control | LP | Controls capacity steps via suction pressure |
| Discharge Temperature Switch | DT | Shuts down on excessive discharge temperature |
| Motor Overload | OL | Thermal/electronic overload on motor |
| No-Flow (Cooling Water) | WF | Shuts down if cooling water flow is lost |
All HP and OP trips are manual reset — the condition must be resolved and the safety must be manually reset before restart. LP trips are auto-reset.
Critical rule: Never reset a compressor after an HP or OP trip without determining why it tripped. Back-to-back resets with an unresolved fault cause bearing damage and compressor failure.
The MYPRO TOUCH+ (and older ComPAC) provides:
Alarm text: HP TRIP / HIGH PRESSURE CUTOUT / DISCHARGE PRESSURE HIGH
Trigger: Discharge pressure has reached the HP cutout setpoint. For ammonia systems, typical HP setpoint is 2.0–2.7 MPa (gauge) depending on system design. The mechanical HP switch (if installed) also trips a separate circuit.
Causes:
Air-cooled condensing:
Water-cooled condensing (common in NH3 systems):
Diagnosis:
Reset: Manual reset. For systems with a mechanical HP pressure switch (separate from the ComPAC), reset the mechanical switch first, then reset the ComPAC/control panel.
Operating limit (M-series NH3): Maximum discharge pressure 2.6 MPa (gauge) for standard units; 2.0 MPa for units equipped with shut-off valves.
Alarm text: OP TRIP / LOW OIL PRESSURE / OIL PRESSURE FAULT
Trigger: The differential oil pressure (oil supply pressure minus suction pressure) has dropped below the minimum setpoint. Per MYCOM specification, minimum oil pressure differential is typically suction pressure + 0.15 MPa. The OP device has a 30-second time delay to allow the oil system to build pressure on startup before the protection becomes active.
Causes:
Diagnosis:
Reset: Manual reset. Resolve oil system fault before restart.
Oil pressure setpoint (from MYCOM documentation):
Alarm text: DISCHARGE TEMP HIGH / DT TRIP / HIGH DISCHARGE TEMPERATURE
Trigger: Discharge gas temperature has exceeded the cutout setpoint. MYCOM’s maximum discharge temperature specification is 160°C. A warning typically triggers at 140–150°C.
Causes:
Diagnosis:
Discharge temperature monitoring: MYCOM’s daily inspection protocol requires recording discharge temperature every 2–3 hours. A trend of rising discharge temperature over days indicates a deteriorating condition before a fault trip occurs.
Alarm text: LOW SUCTION PRESSURE / LP TRIP / SUCTION PRESSURE LOW
Trigger: Suction pressure has fallen below the LP setpoint. The LP device also controls capacity unloading steps.
Causes:
Diagnosis:
Low pressure control (LP) function: The LP device on MYCOM reciprocating compressors also controls capacity steps by monitoring suction pressure. When suction pressure drops below the unload setpoint, cylinders are unloaded via solenoid valve. This is automatic and does not generate a fault alarm — it is normal capacity control. A fault trip only occurs if pressure drops to the cutout setpoint.
Alarm text: MOTOR OVERLOAD / OL TRIP / OVERCURRENT
Trigger: Motor current has exceeded the thermal overload relay setting for a sustained period, or the overload has detected a phase imbalance or single-phase condition.
Causes:
Diagnosis:
Reset: Allow motor to cool for 10–15 minutes. Resolve root cause before restart.
Liquid slugging is not always a discrete fault code — it manifests as one of several symptoms:
Signs of liquid slugging:
Causes:
Prevention and diagnosis:
Alarm text: VIBRATION HIGH / VIBRATION WARNING / VIB ALARM
Trigger: Vibration sensor (if equipped on MYPRO TOUCH+ units) has exceeded warning or cutout threshold.
MYCOM vibration standards (from engineering documentation):
| Zone | Vibration Velocity | Action |
|---|---|---|
| A or B | < 7.1 mm/s rms | Normal operation |
| C | 7.1–18 mm/s rms | Investigate cause |
| D | > 18 mm/s rms | Stop immediately |
Causes of excessive vibration:
Diagnosis:
Alarm text: COOLING WATER FAULT / NO FLOW ALARM / WATER FLOW LOW
Trigger: Cooling water flow to the water-cooled head covers and/or oil cooler has been interrupted.
Important: On MYCOM water-cooled compressors, cooling water must flow during operation. Loss of cooling water causes overheating of head covers and oil. MYCOM documentation states: cooling water must stop flowing when the compressor is NOT running to prevent refrigerant condensation in the crankcase.
Causes:
Diagnosis:
MYCOM cooling water limit: Cooling water outlet temperature must not exceed 50°C. Cooling water pressure must not exceed 0.6 MPa (gauge).
Cause: Lost communication between the MYPRO TOUCH+ panel and field instruments (pressure transducers, temperature sensors, motor protection relay).
Diagnosis:
Cause: A pressure transducer or temperature sensor is reading outside its configured range. Common on startup after sensor replacement if wrong sensor range is selected.
Fix: Verify sensor range matches the MYPRO TOUCH+ configuration. Replace sensor if actual value is within range but reading is erratic (failing transducer).
Per MYCOM operating instructions, before restarting after any extended off period:
MYCOM specifies the following start/stop limits for reciprocating compressors:
Exceeding these limits causes excessive motor heating and mechanical wear.
| Part | Application | Notes |
|---|---|---|
| Oil filter element | All N-series, F-series | Replace at 100-hour initial run, then every 3,000 hours or annually |
| Oil strainer (100-mesh) | All N-series | Clean at initial run and every 3,000 hours |
| Discharge valve plate | N-series | Replace when wear exceeds 0.20mm at seat. NH3 and HFC/propane types differ — confirm before ordering |
| Suction plate valve | N-series | Inspect at overhaul. Replace if seat contact depth > 0.20mm |
| Valve spring (discharge) | N-series | Replace at every overhaul (periodic wear item) |
| Valve spring (suction) | N-series | NH3 type: 10/cylinder; HFC/propane: 6/cylinder |
| Piston rings | N-series | Replace when abutment joint gap exceeds 2.5mm |
| Cylinder sleeve | N-series | Replace when bore exceeds 146.2mm (nominal 146mm) |
| Oil pump assembly | N-series | Replace if oil pressure cannot be maintained with filter and strainer clean |
| Mechanical seal assembly | N-series | Replace if oil leakage exceeds 12 cc/hour |
| Pressure transducers (suction, discharge, oil) | All models | Verify replacement matches existing signal range (0–10V, 4–20mA) |
| Discharge temperature thermostat/sensor | All models | Check winding/resistance per replacement instructions |
| Crankcase heater | All models | 100W–500W depending on model; test continuity before installation |
| Interval | Task |
|---|---|
| Daily (every 2–3 hours) | Record suction pressure, discharge pressure, oil pressure, discharge temperature, oil level, current |
| Monthly | Belt tension check, protection device operation test, oil analysis |
| 100 hours | Oil change, oil strainer clean, oil filter replacement |
| 3,000 hours | Oil change, strainer clean, filter replacement, suction filter inspection |
| First overhaul (4,000–8,000 hrs depending on speed) | Piston rings, valve plates, valve springs, cylinder sleeve inspection |
| Second overhaul (8,000–16,000 hrs) | Full disassembly including crankshaft, main bushings |
Before ordering, match the refrigeration part to the model number, electrical rating, and failure symptom. Check current prices on Amazon - prices and availability change frequently.
First overhaul interval is earlier for higher-speed operation:
Find replacement parts for Mycom compressors on Amazon:
A low oil pressure trip means the compressor did not maintain enough oil differential pressure. Check oil level, oil pump output, plugged filters, strainers, and pressure-control settings before restart.
No. Document the fault conditions and find the cause first. Back-to-back resets after high pressure or oil pressure trips can damage bearings, valves, or the compressor.
Many systems use the MYPRO TOUCH+ controller or older ComPAC controls, while some plants integrate protection through PLC systems such as Allen-Bradley or Siemens.