UFLOW 3/2 Way Direct Acting Universal Valve UMV Series is a compact, reliable, and versatile valve designed for efficient control of pneumatic and fluid applications. Its direct-acting operating principle allows the valve to function without requiring a minimum pressure differential, making it suitable for low-pressure and demanding control applications. The 3/2-way configuration provides three ports and two switching positions, enabling reliable control of the flow direction for functions such as air supply, exhaust, switching, and actuator control. The UMV Series can be used for controlling single-acting pneumatic cylinders, automation equipment, air circuits, and various industrial control systems where quick and dependable valve operation is required. Its universal design offers flexibility for different control requirements, while its robust construction supports long-lasting performance, consistent switching, and easy integration into pneumatic automation systems. L N Engineering, Bakrol, is an Authorised Dealer of UFLOW Automation, supplying genuine UFLOW products along with technical guidance, application support, installation assistance, and after-sales service. For dependable 3/2-way direct-acting flow control in industrial automation, choose the UFLOW UMV Series from L N Engineering, Bakrol.
L N Engineering is the authorised dealer of Uflow Automation and supplies, distributes, and deals in a wide range of genuine Uflow products L N ENGINEERING maintains a robust stock of Uflow Solenoid Valves, Uflow Ball Valves, Uflow Butterfly Valves, and Uflow Pneumatic Products, ensuring immediate availability, competitive pricing, and reliable technical support nationwide.
The UFLOW 3/2 Way Direct Acting Universal Valve (UMV Series) Is A Versatile And Highly Reliable Solenoid Valve Designed To Provide Precise Control Of Liquids, Gases, Air, Water, Oil, And Other Compatible Media Across A Wide Range Of Industrial Applications. Engineered With A Direct-acting Operating Principle, The Valve Can Function Effectively Without The Need For Differential Pressure, Making It An Ideal Solution For Low-pressure, Vacuum, And Zero-pressure Systems Where Consistent And Dependabl Continue