Used NESLAB HX-150 #9021197 for sale

ID: 9021197
Heat exchanger Part no. 0010-00570 Rev D.
NESLAB HX-150 recirculating chiller is an ideal choice for demanding research and industrial requirements where precise temperature control is needed. This chiller is a heat exchanger that uses a coolant flow to remove heat from a process, in order to provide constant, efficient temperatures for sensitive laboratory experiments. NESLAB HX 150 works through a triple loop, multi-stage circulating system with separate cooling loops. An ambient water loop takes in water at the ambient temperature and circulates it, evenly distributing the cooled water to the other pumps. The process water loop passes the heated water over a titanium heat exchanger, connected to a closed evaporator system, where heat is transferred and then efficiently removed from the process. In order for the process temperature to be maintained, the condenser control loop is able to adjust the temperature of the coolant flow, in order to maximize the efficiency of the chilling process. HX-150 is an ideal choice for cooling water baths, circulators and reactors, and has a refrigeration capacity of 1.5 kW. The unit is also environmentally friendly, relying only on the cooling power of an environment-friendly refrigerant, and is inherently safe for both personnel and the environment. The unit features three independent power supply inputs, offering redundancy and enabling the use of multiple power sources. Other features of HX 150 include temperature control accuracy of +/- 0.3 Celsius, a digital display and user interface offering easy access to set parameters, and adjustable fan speeds, meaning the chiller can be adjusted to suit individual requirements. Overall, NESLAB HX-150 recirculating chiller is an efficient and reliable solution to providing precise and constant cooling solutions. Its triple loop system and adjustable fan speeds provide flexibility over the cooling process and its digital user interface makes settings adjustment easy. Its high capacity and temperature accuracy make it an ideal choice for research and industrial requirements where precise temperature control is required.
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