Used LAM RESEARCH 2080 TCU #9005260 for sale
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LAM RESEARCH 2080 TCU is a recirculating, heat exchanger-style chiller designed for use in semiconductorprocessing and other related industries. 2080 TCU utilizes a unique modular design, combined with advanced thermal technology, to provide consistent, temperature-controlled fluid delivery at ultra-high flow rates. LAM RESEARCH 2080 TCU is designed for easy installation into a single unit, placing its components within easy reach for maintenance and servicing. It consists of two major components: the chiller module, which includes the compressor, condenser, expansion valve, and two-stage cooling coils; and the fluid reservoir module, which houses the fluid recirculation and storage units. 2080 TCU uses a two-stage cooling process when delivering its circulated fluids, which helps to maintain the desired temperature of the fluid. The chiller module features a compressor, which can be operated through either water- or R-134a-cooled applications, as well as several fans that enable its operation. It also includes a condenser, which works in conjunction with the compressor to ensure maximum cooling potential. The chiller module utilizes a pair of two-stage cooling coils to regulate the temperature of the fluid. Heat exchangers are also included in the module, using two separate cooling circuits to enable efficient heat transfer between the mixed fluid and the surrounding environment. The fluid reservoir module houses the fluid recirculation and storage units. Fluid can be recycled through the module's feedback loop, while the storage and transfer pumps ensure a precise and controlled flow rate of the circulated fluid. In addition, a bypass valve allows for manual control of the fluid flow to adjust the desired temperature. LAM RESEARCH 2080 TCU is designed to provide a reliable and efficient means of controlling temperatures in semiconductor processing and other related industries. Its modular design and advanced thermal technology enable accurate and consistent delivery of temperature-controlled fluids at ultra-high flow rates, while its two-stage cooling system helps to maximize the efficient heat transfer between the mixed fluid and its surroundings.
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