Used SMC INR-499-201 #9186400 for sale

ID: 9186400
Vintage: 1999
Thermo chiller 1999 vintage.
SMC INR-499-201 is a recirculating, heat exchanger-style industrial chiller, designed for continuous-duty operation in demanding industrial environments. This chiller equipment is a reliable and effective way to remove heat from critical components or systems, allowing for efficient operation. The chiller's configuration consists of a vertical tank serving as a heat exchanger; two centrifugal pumps; and two Siemens Simotics FD motor pumps. The vertical tank is filled with a thermal storage medium, such as water, glycol or oil, and acts as a reservoir where the discharged heat is absorbed. Its design provides for complete thermal transfer. The two centrifugal pumps draw cold liquid from the tank, pass it through the heat exchanger, and push it back into the tank. The Siemens Simotics FD pumps are responsible for distributing the cooled fluid throughout the cooling loop. The system utilizes a low-noise, stainless steel cooling fan located near the heat exchanger and draws in ambient air, passing it through the heat exchanger core, where it absorbs heat, and is then exhausted either outside the building or inside. The addition of the fan ensures that the chiller remains at a constant temperature while providing effective cooling of whatever unit it is used with. INR-499-201 also includes temperature sensors located near the fan and the heat exchanger, the latter of which can be monitored in order to ensure that the machine is working efficiently. A condensate pan is located at the base of the chiller to collect any excess condensation which may accumulate during cooling, and can be easily emptied in case of overflow or freeze-up. SMC INR-499-201 is an effective, efficient, and reliable way of removing heat from critical components or systems, whether in a large-scale industrial application, or even in a smaller, domestic one. With minimal maintenance and regular monitoring, this reliable chiller can ensure that temperatures are kept within acceptable parameters and help to maximize efficiency and minimize operating costs.
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