True cabinet temperature sensor
Part: True 800441
Primary box sensor to check for E1 faults.
True T-49 guide for E1-E6 refrigerator faults, cabinet sensors, evaporator sensors, defrost circuits, fan motors, and controller checks.
True T-49 guide for E1-E6 refrigerator faults, cabinet sensors, evaporator sensors, defrost circuits, fan motors, and controller checks.
Parts to price first
Part: True 800441
Primary box sensor to check for E1 faults.
Part: True 800442
Defrost termination sensor to check for E2 faults.
Part: True 800239
Hi-limit thermostat for defrost circuit faults.
Part: True 800267
Condenser fan motor to check on warm-cabinet E4 faults.
Part: True 800258
Evaporator fan motor to check when cabinet airflow is missing.
Part: ETC-200
Controller option for confirmed control-board failures.
The True T-49 is a two-section commercial reach-in refrigerator — a staple in restaurant kitchens and food service operations. The T-49 series uses a microprocessor controller (the Ranco or True-branded ETC controller, depending on production year) that monitors temperature sensors throughout the cabinet.
When a sensor fails, reads out of range, or when the refrigeration system can’t maintain temperature, the controller throws an error code on the digital display. In some T-49 models, the display alternates between the set point and the error code. In others, the error code replaces the temperature readout entirely.
Not all T-49 units use the same controller. True has used multiple controller generations. Older units may use simple setpoint controllers that don’t display codes — they just show temperature. This guide covers T-49 units with the digital controller that displays E1–E6 (primarily units with ETC-200 and equivalent controllers).
What it means: The primary cabinet air temperature sensor (also called the box sensor or return air sensor) is reading outside its acceptable range or has an open/shorted circuit. The controller can’t read cabinet temperature.
Symptoms: Display shows E1 or alternates between the set temperature and E1. The unit may continue running the compressor since it can’t verify temperature, or it may shut down depending on the controller configuration.
Fix:
What it means: The evaporator temperature sensor (coil sensor or defrost termination sensor) is out of range or has failed. This sensor tells the controller when the evaporator is fully defrosted.
Symptoms: E2 code on display. The unit may get stuck in defrost mode (if the controller can’t confirm defrost completion, it may run defrost indefinitely) or skip defrost entirely.
Fix:
What it means: The condenser temperature sensor (if equipped) is reading out of range. Not all T-49 models have a condenser sensor — older units and simpler configurations may not use one.
Fix:
What it means: The cabinet temperature has risen above the high-temperature alarm threshold (set in the controller, often 50°F or the set point plus 10°F). This is a temperature alarm, not necessarily a sensor fault — the cabinet is genuinely too warm.
Common causes:
Fix:
What it means: Cabinet temperature dropped below the low-temperature alarm threshold. Less common than E4, but it happens when the unit is overcooling — usually a thermostat or controller calibration issue, a stuck open expansion valve, or a refrigerant overcharge.
Fix:
What it means: The defrost cycle failed to complete within the allowed time, or the defrost heater circuit has a fault. The evaporator is likely heavily iced up.
Common causes:
Fix:
To manually initiate defrost: press and hold the SET button for 5 seconds on most ETC-200 controllers. The display will show “dEF” or similar. The unit will run a defrost cycle and automatically return to normal operation when the evaporator sensor signals completion.
If manual defrost won’t terminate (the unit stays in defrost indefinitely), the evaporator sensor (E2) or hi-limit thermostat is the likely cause.
| Part | Why | Approx. Cost |
|---|---|---|
| Cabinet temperature sensor — True 800441 | E1 fault — primary box sensor | $20–$40 |
| Evaporator temperature sensor — True 800442 | E2 fault — defrost termination sensor | $20–$40 |
| Defrost heater (model-specific) | E6 — burned out heater | $40–$90 |
| Defrost hi-limit thermostat — True 800239 | E6 — stuck open thermostat | $15–$30 |
| Door gasket (per door) | E4 — warm cabinet from bad seal | $35–$75 |
| Condenser fan motor — True 800267 | E4 — condenser not rejecting heat | $60–$120 |
| Evaporator fan motor — True 800258 | E4 — no airflow through evaporator | $40–$80 |
| ETC-200 controller | Control board failure | $80–$150 |
Need replacement parts? Search for parts and tools on Amazon.
True Manufacturing parts are available through Parts Town, KaTom, and Wasserstrom. Always verify part numbers against your T-49’s serial number and production date — True has made the T-49 since the 1990s and component specifications have changed across generations.
Q: What refrigerant does the True T-49 use?
It depends on the production year. T-49s built after approximately 2014 use R-290 (propane) refrigerant. Older units use R-134a. Check the data plate on the back of the unit or inside the compressor compartment. R-290 is highly flammable and requires specially trained technicians — don’t attempt to service the refrigerant circuit on an R-290 unit without proper training.
Q: My True T-49 shows a temperature number, then briefly flashes E1. Is that bad?
Yes — that alternating display pattern means the controller is detecting a sensor fault but is still able to run based on the last known reading or a default value. The sensor is marginal — either failing or has a loose connection. Don’t wait for it to fail completely. Check the sensor connection now.
Q: How do I reset the error codes on a True T-49?
Most error codes clear automatically once the underlying problem is fixed and the sensor reads correctly. For temperature alarms (E4, E5), the alarm clears once the cabinet returns to normal temperature range. If a code persists after repair, power cycle the unit: unplug for 30 seconds, then plug back in.
Q: True T-49 showing E4 but the cabinet feels cold. What’s happening?
The cabinet may be warm near the top or in dead-air zones even if it feels cold near the center. Also, E4 can be triggered by a sensor that’s not properly positioned — if the cabinet sensor is sitting against the coil instead of in the return air stream, it reads too cold while the actual cabinet air is warm. Verify sensor placement.
Q: Can I replace the ETC-200 controller with a universal temperature controller?
You can, but it’s not recommended for a commercial unit that needs to meet health code. The ETC-200 is configured for True’s specific sensor types and defrost parameters. A universal controller requires reconfiguration and may not support the same alarm features. If cost is a concern, an OEM ETC-200 replacement from True’s parts suppliers runs $80–$150 — comparable to a quality universal controller but plug-and-play.
Commercial refrigeration and ice-machine faults usually trace to condenser airflow, water supply, dirty probes, thermistors, bin switches, float switches, curtain switches, or control-board inputs. Start by cleaning the condenser, confirming water flow, checking sensors, and matching the fault to the exact model before ordering parts.
DIY vs Pro: Cleaning coils, checking water filters, clearing ice buildup, and inspecting loose connectors are reasonable first checks. Sealed-system work, refrigerant charging, pressure controls, and live control-board testing need a refrigeration technician.