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If your heat pump is running but the air never gets warm or cool, start with the simple checks: confirm the thermostat mode and setpoint, set the fan to Auto, replace a dirty filter, and look for ice or debris around the outdoor unit. For homeowners needing heat pump repair in Cornelius, OR, the issue may also involve low refrigerant, restricted airflow, a frozen coil, a failed compressor, or a reversing valve that cannot switch between heating and cooling. A brief defrost cycle can cause temporary cool air in winter, but ongoing temperature failure is not normal.
Learn about common heat pump problems | Schedule heat pump service
Best Owner Direct HVAC & Electrical is a family-owned HVAC company based in Cornelius, OR, serving homeowners and businesses across the Portland metro and surrounding Oregon communities. I am Chandrine Stepisnik, and this guide will help you narrow down the likely cause before you decide whether to call for professional help.
Schedule a heat pump diagnosis if basic checks do not restore heating or cooling.

When your system turns on and circulates air throughout your ductwork without actually changing the indoor temperature, it points to a failure in the refrigeration cycle rather than a total electrical shutdown. A heat pump relies on a continuous vapor-compression cycle to absorb thermal energy from one location and release it in another. If the indoor blower fan motor operates normally while thermal transfer is blocked, you will feel neutral, unconditioned room-temperature air blowing from the supply registers.
When you encounter a heat pump running but not heating or cooling, what it means is that the closed-loop system is failing to absorb or discharge heat properly. Understanding how a heat pump reverses the refrigeration cycle helps clarify how the indoor and outdoor units work in tandem.

When thermal transfer breaks down, several primary system faults are typically responsible:
The reversing valve is the central component that differentiates a heat pump from a standard air conditioner. This four-way valve uses an electromagnetic solenoid coil and internal sliding mechanism to reverse the path of high-pressure refrigerant gas. In cooling mode, it sends hot discharge gas to the outdoor coil to reject heat outside; in heating mode, it redirects that hot gas to the indoor coil to warm your living space.
If the solenoid coil burns out, loses low-voltage electrical signal from the thermostat, or experiences internal mechanical sticking, the slider cannot change positions.
Adequate cubic feet per minute (CFM) of airflow is necessary for thermal exchange. When return airflow is severely choked by a clogged furnace or air handler filter, static pressure inside the ductwork climbs dramatically.
Without sufficient air passing across the indoor evaporator coil in cooling mode, the refrigerant cannot absorb heat. The coil temperature drops below 32°F, causing atmospheric humidity to condense and instantly freeze onto the aluminum fins. As ice sheets accumulate, airflow is entirely blocked.
In heating mode, restricted airflow across the indoor coil prevents the release of heat, driving head pressure to extreme levels and causing the compressor to shut down on its internal high-pressure safety switch while the indoor blower fan continues to blow unconditioned air.
Before examining mechanical components, check your control settings. Modern digital and smart thermostats manage complex staging, reversing valve orientation, and auxiliary heat activation. A configuration error or wiring fault can cause continuous fan run times without activating the heating or cooling stages.

Follow this diagnostic sequence to verify your control system:
During smart thermostat installations or seasonal updates, the configuration of the O/B terminal is a common point of failure. Heat pump manufacturers use different logic standards for energizing the reversing valve:
If a replacement thermostat defaults to the incorrect energization setting, selecting "Heat" will cause the heat pump to operate in cooling mode, blowing cool air into the living space. If you recently installed a new control interface in your home in Hillsboro, Beaverton, or Tigard, navigate to the installer setup menu and verify that your O/B terminal orientation matches your equipment specifications.
During cold, humid weather across the Pacific Northwest, heat pump outdoor coils naturally accumulate frost. To maintain performance, the system periodically initiates a defrost cycle:
A normal defrost cycle runs every 30 to 90 minutes and lasts approximately 5 to 15 minutes. During this brief window, the outdoor unit may emit steam, the outdoor fan will shut off, and the system temporarily shifts into cooling mode to direct heat outward.
To keep your home comfortable during defrost, the defrost control board signals the indoor auxiliary electric resistance heat strips to engage. If those heat strips fail, or if your outdoor unit gets stuck in defrost mode due to a faulty sensor or relay, your system will blow cold air indoors until manually shut down.
When thermostat settings and basic airflow pathways are clear, the issue often stems from the refrigeration circuit. The closed-loop circuit depends on precise refrigerant mass and proper compressor pumping capacity to maintain system pressure differentials.
Learn more by reviewing our guide on heat pump ice buildup causes and what to do.
| System Component | Observed Symptom | Likely Cause | Recommended Corrective Action |
|---|---|---|---|
| Reversing Valve | System blows cold in heat mode; no click heard when switching modes | Burned-out solenoid coil or stuck mechanical slider | Test 24V signal at valve coil; replace solenoid or physical valve body |
| Refrigerant Circuit | Suction line is warm; ice bands form across indoor or outdoor coils | System leak causing low refrigerant charge | Perform nitrogen pressure leak test, repair tubing, and recharge by weight |
| Compressor | Outdoor fan runs, but compressor hums briefly and shuts down | Defective run capacitor, seized bearings, or open overload switch | Test microfarad rating on capacitor; measure compressor motor winding resistance |
| Air Filter / Blower | Weak airflow from vents; indoor evaporator coil encased in ice sheet | Clogged air filter or failing indoor blower capacitor | Replace pleated air filter immediately; allow frozen coils to thaw naturally |
| Defrost Board | Thick ice encases entire outdoor unit; system blows cold in winter | Failed defrost sensor, stuck relay, or bad control board | Inspect defrost thermostat/sensor; clear heavy snow and ice buildup manually |
Refrigerant is not consumed during normal operation; it cycles indefinitely within hermetically sealed copper lines. If your system is low on refrigerant, a physical leak has developed in the line sets, flared fittings, service valves, or coil assemblies.
When refrigerant volume drops:
The compressor pumps refrigerant throughout the entire system. If the indoor blower and outdoor fan are spinning, it is easy to assume the entire system is running when the compressor has actually stalled.
Listen closely near the outdoor unit:
While basic checks like clearing registers and changing filters are manageable for homeowners, many heat pump repairs require specialized diagnostic equipment and training.
Our comprehensive heat pump repairs complete guide explains the technical repairs required for complex mechanical failures.
To protect your system and maintain overall efficiency, follow a proactive maintenance schedule outlined in our heat pump tune-up and maintenance guide.
Attempting technical repairs on a heat pump carries serious safety hazards, including line-voltage electrical shock (up to 240V) and high-pressure chemical handling.
Tasks safe for homeowners:
Repairs requiring a licensed technician:

This commonly occurs when the heat pump enters its normal 5- to 15-minute defrost cycle to melt frost off the outdoor coil. During this time, the unit temporarily runs in cooling mode, and if the auxiliary electric heat strips fail to engage simultaneously, the indoor air will feel cool. Other causes include a stuck reversing valve, low refrigerant charge, or an outdoor unit that has shut off on high-pressure safety lockout.
To test the reversing valve, switch the thermostat mode from Heat to Cool while the system is operating and listen near the outdoor cabinet for a distinct "whoosh" or metallic click as the slider moves. If the sound is absent and the lines do not change temperature, the valve or solenoid coil has likely failed. If the outdoor fan runs but you hear only an intermittent humming noise accompanied by high electrical draw, the compressor or its run capacitor is faulty.
Indoor air filters should be inspected monthly and replaced or cleaned every 30 to 60 days to prevent static pressure buildup. The outdoor condenser coil should be gently cleared of leaves, dirt, and debris every spring and fall. A full professional chemical wash of the indoor and outdoor coils should be performed annually during a comprehensive system tune-up.
A heat pump that runs without heating or cooling wastes energy and strains critical mechanical components like the compressor. Whether the problem is caused by a simple thermostat configuration error, a stuck reversing valve, frozen coils, or low refrigerant charge, addressing the root cause quickly restores your home's comfort and protects your equipment.
Best Owner Direct HVAC & Electrical is a family-owned HVAC, electrical, and water-heater services company based in Cornelius, OR, serving homeowners and businesses throughout the Portland metro and surrounding Oregon communities, including Beaverton, Hillsboro, Tigard, Lake Oswego, Tualatin, West Linn, Oregon City, Forest Grove, Sherwood, and Newberg.
Our licensed technicians provide reliable same-day and emergency service to get your heating and cooling systems operating at peak performance.
If your system is running without conditioning your home, contact our team today for expert heat pump services to schedule your system diagnosis.