York S1-324-36074-306 1HP ECM Blower Motor W/Module

Special Price $1,619.97 Regular Price $1,798.16
In stock
SKU
S1-324-36074-306
The York S1-324-36074-306 is a 1 HP ECM blower motor which is high efficiency blower motor with an integrated module for improved control and efficiency. The innovation and precision of this motor are expected to improve the efficiency of HVAC systems. The ECM technology allows for precise speed regulation and flexibility, which changes its operation in response to system requirements. Compared to the conventional motors, this dynamic adjustment results in substantial energy conservations and reduced costs of operation. The motor is also complemented by the integrated module that provides complex control options and perfect compatibility.
Manufacturer:
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Specifications

  • Type: Blower Motor
  • Horsepower: 1HP
  • Voltage Rating: 120/240 V
Manufacturer Name: York
Product Number: S1-324-36074-306
OEM Part Number: S1-324-36074-306
Product Description: 1Hp Ecm Blower Motor W/Module
Weight:17.28lbs/7838.07g

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Customer Questions
How to install an expansion valve for refrigeration?

Thermostatic expansion valves are an integral part of your refrigeration unit. They are responsible for ensuring the right dosage of refrigerant is entering the cooling coil to ensure maximum efficiency in the air conditioning of the system.    These special expansion valves come with a temperature sensor that is mounted at the end of the evaporator coil. They incorporate signals from this sensor to maintain the required temperature of the HVAC system. The thermostatic expansion valve works like a precision device that can regulate the measurements of the liquid refrigerant that flows into the evaporator of your system. This regulation in the flow of the refrigerant is essential to prevent the reverse flow of the refrigerant into the compressor of your system.    Through this mechanism, the thermostatic expansion valve successfully separates the high and low pressure sides of the refrigeration/air conditioning system. The liquid refrigerant enters the expansion ...

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