Hot & Cold Water Mixing Station Series HCMX |
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Thermostatic Hot & Cold Water Mixer Model HCMX-BR-TC |
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A liquid filled thermostat and a stainless steel control valve guard against unexpected hot or cold water spikes and proportion the water flow to maintain a constant outlet temperature +/- 3ºF over the range of 80 to 160ºF for up to 10 gallons per minute at a differential pressure of 40 psi, with a maximum hot water supply of 180ºF. Mixed water temperature is adjusted by turning a set-screw and is indicated on a dial thermometer. The housing is bronze and wetted parts are bronze, stainless steel, PTFE and buna rubber. The assembly includes an inlet shut-off valve and a check valve with ¾” NPT union connection on both the hot and cold waterlegs. The HCMX-BR-TC is available with the following optional components: SS wall mounting plate, SS hose rack, hand held spray nozzle, automatic shut-off spray lance, and a variety of hot water rated hoses. Features:
Automatically responds to temperature and pressure variations in hot and cold water lines. The stainless steel piston and liner precisely proportion water flow to maintain a constant outlet temperature and to guard against unexpected hot or cold water spikes. |
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Mixing Stations have been engineered for maximum reliability and operator safety. Using the proportional flow water control valves, the operator can adjust the mixing station to deliver the desired hot water temperature as indicated on the dial thermometer located in the mixed water discharge. By depressing the ergonomically designed fail-safe trigger of the hand-held spray nozzle or the optional spray lance, the operator can direct a steady flow of hot water from a fine spray to a solid jet. Our Mixing Stations are widely used in dairy, pharmaceutical, food processing,chemical and industrial plants.
The Model HCMX-BR-TC is a thermostatically controlled mixing valve assembly that delivers constant temperature water. It automatically compensates for fluctuations in either incoming hot and cold water temperature and/or pressure.