Used DISCO DTU 152 #9361776 for sale

DISCO DTU 152
ID: 9361776
Vintage: 2005
Chiller 2005 vintage.
DISCO DTU 152 is a chiller designed for the recirculating and exchange of heat. It features a high efficiency compressor, which allows for a high cooling capacity in a single unit. The chiller is designed with a direct expansion evaporator, which allows it to quickly remove large amounts of heat from an environment. The evaporator is equipped with a bundle of 2-3/4" copper tubes filled with an optimized charges of refrigerant. The tubes are factory sealed to ensure long lasting equipment seal performance, eliminating the need for field-welded connections. The compressor is mounted on an anti-vibration plate to reduce noise output, and includes a sound blanket for maximum acoustic control. The condenser is composed of heavy duty aluminum louvers for both vapor compression and low noise applications. DISCO DTU152 has a built-in defrost system that automatically controls water temperature and frost buildup. The chiller is also equipped with multi-speed fan to increase or reduce speed for heat load requirements. Other features of DTU 152 chiller include a built-in temperature protection unit for the evaporator, a liquid-filled pressure gauge to check machine pressures, a heated liquid line to make sure the tool remains free of frost and ice, and a field-adjustable overload protection relay. Its digital microprocessor controls operate in conjunction with the asset to ensure consistent and efficient performance. The unit also comes with a remote monitoring model for temperature control. DTU152 chiller has a fairly compact design for easy installation in tight spaces, its construction being made from lightweight but durable materials. The chiller is suitable for general air conditioning, cold storage, refrigeration, and process chillers. It can be used to effectively cool areas up to 1520 sq ft and can maintain a temperature range of -20 to 110 degrees Fahrenheit. The unit offers both dual and single-stage cooling capabilities for optimal temperatures and performance.
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