10H55 - Copeland ZPS51K5E-TFD-830, 48300 BTUH Two-Stage Scroll Compressor, R-410A, 10.9 EER, 460 VAC 3 Ph 60 Hz

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10H55 - Copeland ZPS51K5E-TFD-830, 48300 BTUH Two-Stage Scroll Compressor, R-410A, 10.9 EER, 460 VAC 3 Ph 60 Hz

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Model #10H55
$2,847.62
$6,185.40
Save $3,337.78
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Description

The Copeland ZPS51K5E-TFD-830 is an advanced two-stage scroll compressor designed to provide efficient and reliable cooling performance for a variety of applications. With a cooling capacity of up to 48,300 BTUH (British Thermal Units per Hour), this compressor is well-suited for addressing cooling needs in both residential and commercial settings. Its two-stage operation offers enhanced efficiency and comfort by adjusting cooling output based on demand.

Engineered to utilize R-410A refrigerant, the ZPS51K5E-TFD-830 compressor aligns with modern environmental standards while delivering effective heat transfer capabilities. R-410A is recognized for its eco-friendly properties and its ability to efficiently transfer heat, making it a suitable choice for cooling systems. This compressor contributes to responsible cooling practices while maintaining efficient temperature control.

The two-stage operation of the ZPS51K5E-TFD-830 compressor is a standout feature. It operates in two distinct stages to optimize cooling efficiency. During regular operating conditions, the compressor starts in the first stage, providing cooling at a lower capacity to match moderate cooling requirements. As cooling demands increase, the compressor seamlessly transitions to the second stage, delivering higher cooling capacity to meet elevated temperature needs. This staged operation enhances energy efficiency, reduces noise levels, and improves overall system performance.

With an Energy Efficiency Ratio (EER) of 10.9, the Copeland ZPS51K5E-TFD-830 compressor underscores its commitment to energy-efficient operation. The EER is a measure of cooling output relative to electrical power input, indicating how effectively the compressor converts electrical energy into cooling performance. A higher EER signifies improved energy efficiency, leading to reduced energy consumption and operational costs while maintaining effective cooling capabilities.

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