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6 Cylinders Single Stage Cold Storage Compressor R22 40hp Refrigeration Compressor
|Brand Name:||Carrier Carlyle|
|Minimum Order Quantity:||1 Piece/Pieces|
|Packaging Details:||Plywood pallet+Plywood|
|Delivery Time:||7~15 work days|
|Payment Terms:||L/C, T/T|
|Supply Ability:||50 units per month|
cool room refrigeration compressor,
screw type compressor
06EA299600 Carrier Carlyle Cold Storage Compressor R404a 40hp Refrigeration compressor With 6 cylinders single stage
The Carlyle Compound Cooling compressor offers the highest energy efficiency available for low temperature refrigeration when using a single compressor. A single Carlyle Compound Cooling compressor provides the capacity and efficiency equal to a two-compressor booster system.
The Carlyle Compound Cooling compressor is designed with two compression stages in a single body and utilizes subcooling from a simple plate to plate heat exchanger that is the system subcooler.
A variation of the two-stage booster system, the internally compounded compressor has both the high and low stages built into one compressor body. In this arrange- ment, compression is accomplished in two stages, safely and economically.
All 06CC models have six cylinders. Four cylinders act as the low stage and “boost” the suction pressure from the refrigeration load to the intermediate pressure. The remaining two cylinders, acting as the high stage, complete the compression to normal condensing temper- atures. The result is lower internal losses and a compres- sor that delivers more capacity in the same displacement. The lower losses increase operating efficiencies.
Carlyle's innovative design makes it literally two compressors in one, with both high and low stages built in.
Narrow-seat valve design makes it the most efficient low-temp compressor on the market in both HCFC and HFC applications in the 6 1/2 HP to 30 HP ranges.
Optimizes System Operation.
Compatible with HFC refrigerants and POE oil in single, multiplexed and parallel system design configurations.
Utilizing liquid subcooling minimizes liquid temperature fluctuation to TXVs on systems incorporating floating condensing temperatures.
Electronic oil-pressure switch.
Volume of oil
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