Frozen Evaporator Coil - Diagnostic Tree
Symptom
Customer reports an air conditioner that's running but not cooling - and on inspection the evaporator coil (indoor) is iced over. Often presents as "the unit ices up, I turn it off for a while, then it cools for an hour and ices up again." Root cause is always one of two things: not enough airflow across the coil OR not enough refrigerant in the system. Symptoms look identical; the diagnostic distinguishes them.
Likely Causes
In order of frequency:
- Restricted airflow (dirty filter) - 40 % of frozen-coil calls
- Restricted airflow (blocked return grille, closed dampers, kinked flex duct) - 15 %
- Failed indoor blower motor or capacitor - 10 %
- Undercharged refrigerant (slow leak) - 12 %
- Restricted metering device (TXV or fixed orifice) - 8 %
- Dirty evaporator coil itself - 5 %
- Setpoint too low + low ambient + high humidity (75 °F setpoint at 65 °F outdoor with damp returns) - 5 %
- Other (refrigerant blend issues, wrong evaporator for the condensing unit) - 5 %
Diagnostic Steps
- Confirm the coil is actually frozen. Pull the access panel. Ice on the coil itself = frozen evap. Ice ONLY on the suction line outside = different issue (overcharge or low ambient).
- Thaw the coil before proceeding. Turn the system to FAN ONLY (not OFF - fan running thaws faster). Wait 1 - 2 hours OR use a small space heater pointed at the coil with the fan running.
- Replace the air filter - always, even if it "looked clean." Cellulose filters can be airflow-blocking before they look dirty.
- Verify return airflow path is clear. Walk every return grille. Closed dampers? Furniture blocking? Kinked flex duct in the attic?
- Measure indoor temperature delta. With the system running cool and the coil clean + airflow restored:
- Delta of 18 - 22 °F → system OK; problem WAS airflow restriction
- Delta < 15 °F → low refrigerant OR restricted metering device
- Delta > 25 °F → low airflow (filter, blower, ductwork)
- Gauge the system. With evap coil clean and dry:
- Low suction + low liquid + high superheat → undercharged
- Low suction + normal liquid + high superheat → metering device restriction
- Low pressures + low superheat → low charge with the orifice still bypassing some
- Measure indoor blower amperage. Compare to FLA. Lower than expected = motor / wheel / capacitor issue restricting airflow.
Resolution
- Dirty filter or restricted return: filter change + airflow restoration. No further work needed once the coil is fully thawed and operating cleanly.
- Failed blower motor or capacitor: replace; verify FLA returns to spec.
- Undercharged refrigerant: leak-search and repair, then recharge. NEVER just "top off" - see EPA warning.
- Restricted metering device: TXV replacement (or fixed-orifice cleaning if the orifice is field-serviceable).
- Dirty evaporator coil: chemical clean per manufacturer label, in-place if accessible.
- Low ambient + low setpoint: customer education. Modern thermostats with lockout below 55°F outdoor handle this automatically.
"Top-off" recharging without finding the leak is an EPA Section 608 violation if you exceed the leak-rate threshold (10 % per year for residential under most current rules). It's also poor practice - the customer's refrigerant leaks out again, the second visit costs them more than the leak-search would have. Find the leak. Always.
Prevention
- Annual coil + filter check catches a dirty coil before it freezes
- Customer education on filter change frequency (typically 60 - 90 days, more often for pet households)
- Quote a leak-search test on any system that's had a recharge in the last 2 years
References
- ACCA Quality Installation Standard
- EPA Section 608 leak-rate regulations
- Manufacturer service literature for the specific equipment
- Manuall internal: AC Won't Cool - Diagnostic Tree, Heat Pump Refrigerant Charge Reference