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ClimateMaster S14S0017N16 277V 1/2Hp Variable Motor

Special Price $795.79 Regular Price $883.33
In stock
SKU
S14S0017N16

The ClimateMaster S14S0017N16 is a replacement 1/2 horsepower variable speed motor built exclusively for geothermal heating and cooling. It uses electronically commutated motor  technology to effectively control airflow within your system and runs on a 277-volt power source. With this variable speed motor, you can cut energy consumption and increase system efficiency by having it automatically alter its operation based on your climate control demands. When compared to conventional fixed-speed motors, the S14S0017N16 can result in notable energy bill reductions. Its silent functioning also guarantees a more comfortable and tranquil living space. For compatible ClimateMaster geothermal systems, the S14S0017N16 is a direct replacement, making installation simple for trained HVAC experts. Investing in this cutting-edge engine will revitalize your geothermal system.  

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Manufacturer Name: ClimateMaster
Product Number: S14S0017N16
OEM Part Number: S14S0017N16
Product Description: 277V 1/2Hp Variable Motor
Weight:14.82lbs/6722.23g

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Customer Questions
What maintenance is required for the ClimateMaster S14S0017N16 Variable Motor?

Inspect the motor for dust buildup, vibration, and bearing wear. Ensure electrical connections are tight and free from corrosion. Verify smooth operation and cooling airflow during service checks.

What are common issues with the ClimateMaster S14S0017N16 Variable Motor?

  • Irregular speed control or fluctuating performance.
  • Motor overheating under continuous load.
  • Bearing wear causing vibration or noise.
  • Electrical faults leading to startup failure.
  • Reduced efficiency from internal component wear.

Installation Steps

Step 1: Turn off power supply and apply lockout/tagout for safety before servicing motor.

Step 2: Remove old motor carefully and note wiring connections for accurate reinstallation.

Step 3: Mount new motor securely onto bracket ensuring proper alignment and stability.

Step 4: Connect wiring per manufacturer diagram, double-check terminals before tightening.

Step 5: Check supply compatibility and insulation integrity before energizing.

Step 6: Tighten all fittings and align shaft to prevent vibration during operation.

Step 7: Restore power and test motor operation ensure smooth rotation, no vibration or overheating.