16M32 - LG APM030KA, 37900/28100 BTUH Two-Stage Scroll Compressor, R-410A, 15.6/19.8 EER, 208-230 VAC 1 Ph 60 Hz

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16M32 - LG APM030KA, 37900/28100 BTUH Two-Stage Scroll Compressor, R-410A, 15.6/19.8 EER, 208-230 VAC 1 Ph 60 Hz

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Model #16M32
$1,833.00
$3,526.20
Save $1,693.20
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Description

The LG APM030KA Two-Stage Scroll Compressor is an advanced and efficient cooling solution designed to provide reliable and consistent cooling performance for various applications. With a cooling capacity ranging from 37,900 BTUH (British Thermal Units per Hour) in the first stage to 28,100 BTUH in the second stage, this compressor is well-equipped to handle a wide range of cooling requirements in residential, commercial, and industrial settings. Its cutting-edge design and features make it an essential component for achieving optimal temperature control.

Engineered for compatibility with R-410A refrigerant, the APM030KA compressor adheres to modern refrigerant standards, ensuring efficient and environmentally-friendly cooling. R-410A refrigerant is known for its high heat-carrying capacity, making it well-suited for demanding cooling needs. This compatibility ensures optimal cooling performance while adhering to industry regulations and standards.

The APM030KA compressor features a two-stage operation that allows it to deliver cooling in two distinct stages based on the cooling demand. This two-stage operation enhances efficiency by adjusting the compressor's capacity to match the actual cooling load. This feature contributes to energy savings and improved temperature control, making the compressor an ideal choice for achieving precise climate management.

The compressor boasts an impressive Energy Efficiency Ratio (EER) ranging from 15.6 in the first stage to 19.8 in the second stage. The EER measures the ratio of cooling output to electrical input, indicating how effectively the compressor converts electrical energy into cooling performance. Higher EER values signify superior energy efficiency, leading to reduced energy consumption and operational costs while maintaining effective cooling capabilities.

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