Used TEL / TOKYO ELECTRON C255 #9350438 for sale

TEL / TOKYO ELECTRON C255
ID: 9350438
Wafer Size: 12"
Chiller, 12".
TEL / TOKYO ELECTRON C255 heat exchanger and recirculating chiller is a high performance liquid cooling device designed to cool a variety of different electronic components and processes. This chiller utilizes a combination of conventional and advanced cooling technologies for efficient operation, resulting in maximum energy efficiency and optimal performance. TEL C255's heat exchanger is configured to use an advanced twin-refrigerant equipment, allowing for the cooling of either electrical or sensitive applications simultaneously. The heat exchanger is equipped with a variable frequency drive that optimizes energy management by adapting the compressor speed accordingly, making TOKYO ELECTRON C 255 a highly efficient and economical cooling solution. TOKYO ELECTRON C255's refrigerant circuit also includes two different evaporator coils, which can be adjusted to achieve the most efficient cooling performance. This system uses one of two circulating pumps, depending on the application. The two circulating pumps allow for the efficient transfer of heat energy between the components and their respective liquid coolants. This ensures a uniform distribution of the flow of coolant throughout the unit, allowing for a stable operating temperature and maximum performance. TEL / TOKYO ELECTRON C 255 is also designed with advanced safety features including a motor overload protection machine and a pressure switch. This ensures that the chiller does not exceed its designated maximum pressure, which helps to protect all components within the tool. Additionally, C255 features redundant fans with automatic speed regulation for increased protection against overheating. Overall, C 255 heat exchanger and recirculating chiller is an excellent choice for a wide range of cooling applications, ranging from mild industrial to sensitive electronic components. It provides the user with optimal performance and efficiency, enabling the user to reduce energy costs and maximize the lifespan of their components.
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