Hoshizaki harvest thermostat
Part: 443-3501-01
Harvest thermostat to check for E2 harvest timeout faults.
Hoshizaki KM-901 fault codes E1 through E8 explained. Check harvest, thermistor, fan, pressure, water, and control-board problems.
Hoshizaki KM-901 fault codes E1 through E8 explained. Check harvest, thermistor, fan, pressure, water, and control-board problems.
Parts to price first
Part: 443-3501-01
Harvest thermostat to check for E2 harvest timeout faults.
Part: 443-3501-02
Thermistor to price first for E5 sensor faults.
Part: 622-2041-01
Fan motor to inspect on E3 high-pressure faults.
Part: 422-3541-01
Harvest valve to price if harvest will not complete.
Part: 2A4334G01
Board option for confirmed E8 faults after power and wiring checks.
Part: 946-2101-04
Cleaner for scale-related faults and preventive maintenance.
The Hoshizaki KM-901 is a commercial modular ice machine that produces crescent-shaped ice using an evaporator plate and refrigerant system. When the control board detects an abnormal condition, it flashes an error code on the LED indicators and stops ice production.
The KM-901 uses a single-digit error system (E1–E8) displayed via LED blink codes on the control board, or on a remote display panel if one is installed. Understanding these codes is the difference between a 20-minute fix and an unnecessary service call.
The KM-901 produces approximately 901 lbs of ice per 24 hours under AHRI standard conditions (70°F ambient, 50°F water). Real-world output is lower in warmer kitchens. If the machine is producing less ice than expected without throwing an error code, that’s a different set of diagnostics — this guide focuses on fault codes specifically.
What it means: The machine couldn’t complete a freeze cycle within the maximum allowed time (typically 60 minutes). Ice isn’t forming fast enough on the evaporator.
Common causes:
Fix:
What it means: The machine couldn’t complete a harvest cycle (releasing ice from the evaporator) within the allowed time. Ice is stuck on the evaporator or the hot gas valve isn’t opening fully.
Common causes:
Fix:
What it means: The high-pressure switch opened, indicating excessive discharge pressure.
Common causes:
Fix:
What it means: The low-pressure safety switch opened. Low suction pressure typically indicates low refrigerant charge (a leak) or a failed metering device.
Fix: Stop here. Refrigerant diagnosis requires EPA 608 certification and manifold gauges. Call a certified commercial refrigeration technician.
What it means: The thermistor monitoring evaporator temperature is reading out of range or has an open/shorted circuit.
Fix:
What it means: A drain or water level issue — the sump may not be draining correctly or the float valve is stuck.
Fix:
What it means: Communication lost between the main control board and a secondary module or remote display.
Fix: Check all wiring connectors between the main control board and any secondary boards or remote panels. Re-seat connectors. If the error persists, the control board or secondary module may have failed.
What it means: The control board has detected an internal fault.
Fix:
Scale buildup causes more service calls on the KM-901 than any component failure. Run a cleaning cycle every 6 months (more often in hard water areas).
| Part | Why | Approx. Cost |
|---|---|---|
| Harvest thermostat — Hoshizaki 443-3501-01 | E2 — harvest timeout (stuck ice) | $35–$55 |
| Evaporator thermistor — Hoshizaki 443-3501-02 | E5 — thermistor fault | $25–$45 |
| Water curtain assembly | E2 — ice not releasing (cracked/stuck curtain) | $40–$70 |
| Condenser fan motor — Hoshizaki 622-2041-01 | E3 — high pressure from failed fan | $120–$200 |
| Hot gas solenoid valve — Hoshizaki 422-3541-01 | E2 — harvest won’t complete | $80–$150 |
| Control board — Hoshizaki 2A4334G01 | E8 — internal board fault | $300–$550 |
| Scale Away cleaner — Hoshizaki 946-2101-04 (1 qt) | Preventive cleaning, E6 | $15–$25 |
| Float valve assembly | E6 — water level fault | $30–$60 |
| Water inlet valve | E6 — restricted water flow | $40–$80 |
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Always verify part numbers against your specific KM-901 model suffix (KM-901MAH, KM-901MRH, etc.) before ordering. Hoshizaki parts are available through authorized distributors including Parts Town, Wasserstrom, and KaTom.
Q: How do I clear an error code on the Hoshizaki KM-901?
Most error codes clear automatically once the machine is power cycled and the underlying issue is resolved. Press the power button to turn the machine off, wait 30 seconds, then press ICE to restart. If the code returns within one cycle, the problem is still active.
Q: My KM-901 shows E2 on every harvest cycle in summer but not in winter. Why?
This is almost always a refrigerant or high ambient temperature issue. As ambient temperature rises in summer, the refrigerant system works harder. If charge is marginally low, the system copes in winter but can’t complete harvest in summer because there isn’t enough hot gas to warm the evaporator. Have a technician check refrigerant charge.
Q: How often should I clean the KM-901?
Hoshizaki recommends every 6 months, but in areas with hard water (above 10 grains per gallon), every 3–4 months is better. Scale buildup is the single biggest cause of reduced ice output and E6 faults. Nickel-plated evaporator models are more scale-resistant but still need regular cleaning.
Q: What’s the difference between the KM-901MAH and KM-901MRH?
MAH = air-cooled head, MRH = remote condenser (condensing unit is installed remotely, often on the roof). The fault codes are the same, but E3 (high pressure) diagnostics differ — on the MRH, you’re inspecting a remote condenser, not an integral one. The hot gas valve and harvest thermostat are the same across both configurations.
Q: Can I use generic ice machine cleaner instead of Hoshizaki Scale Away?
Yes, as long as it’s nickel-safe. Hoshizaki’s evaporators are nickel-plated, and some aggressive cleaners can damage the plating and void the warranty. Check that any cleaner you use is labeled safe for nickel-plated evaporators. Hoshizaki’s own 946-2101-04 is the safest choice.
Record the full model number, exact code, and operating mode before replacing parts. Similar code labels can point to different sensors, pumps, boards, or wiring circuits across product families.
Reset once after correcting an obvious cause. If the code returns immediately, leave the equipment off and test the named circuit instead of repeatedly cycling power.