Gemu 610 15D 71 411/N Pneumatic Valve, Integrated Pneumatic Diaphragm Valve

Gemu 610 15D 71 411/N Pneumatic Valve, Integrated Pneumatic Diaphragm Valve

Brand: Gemu

Origin :China

Model : 610 15D 71 411/N

Series:610

Availability: In stock

GEMU 610 series Ventilation diaphragm valve Tolerance to corrosive fluids containing particles

The GEMU 610 15D 7 1 411/N is a core 2/2-way pneumatic diaphragm valve in the 610 series from the German brand GEMÜ. Specifically designed for industrial fluid control applications, its high reliability and strong adaptability make it a preferred solution in chemical, water treatment, and pharmaceutical industries.

The product uses a PP (polypropylene) valve body paired with an EPDM diaphragm, offering excellent resistance to acid and alkali corrosion. It is stably compatible with neutral, corrosive liquid and gas media, as well as abrasive fluids containing particles. The all-plastic design of the wetted parts further enhances chemical compatibility. The actuation mechanism employs a low-maintenance plastic piston-type pneumatic structure, supporting normally closed (NC), normally open (NO), and double-acting (DA) control modes to meet diverse operating conditions. With a socket weld connection (compatible with DN15/DN20 pipe diameters), it offers outstanding installation adaptability and flow direction flexibility, complying with relevant BS, DIN, and ISO standards.

In terms of core configuration, the product comes standard with an optical position indicator and a travel limit device, enabling quick and accurate confirmation of valve opening and closing status. An optional electrical position feedback function is available for easy remote monitoring and automation integration. Performance-wise, it can operate at pressures up to 6 bar, with a fluid temperature range of -10°C to 80°C and an ambient temperature tolerance of -10°C to 50°C, maintaining stable operation even in harsh industrial environments. Its compact design and excellent flow characteristics balance optimized installation space with efficient fluid control.
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