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R978008619

DIRECTIONAL SPOOL VALVE 4WEH 22 Q7X/6EW110N9ETDK25L/B08

Manufacturer: Bosch Rexroth

Material #: R978008619

Model : 4WEH 22 Q7X/6EW110N9ETDK25L/B08


***Disclaimer: The following summary contains information gathered from various sources such as product descriptions, technical specifications and catalogs. While efforts have been made to provide accurate details, inaccuracies may occur. It is advised to verify all information by contacting Bosch Rexroth directly.***
The Bosch Rexroth 4WEH 22 Q7X/6EW110N9ETDK25L/B08 (R978008619) is a high-performance industrial hydraulic valve designed for subplate mounting and conforming to CE and CSA standards. It features a size Q spool valve with electrohydraulic actuation, capable of reliably switching the direction of oil flow as indicated by its hydraulic symbol. This valve is equipped with internal pilot oil supply and return, supporting a maximum pressure with an electrical connection through a Brad Harrison MiniChange connector that includes an LED. The unit has multiple ports and is solenoid-actuated, with the type of actuation being solenoid actuation. The 4WEH 22 Q7X/6EW110N9ETDK25L/B08 offers versatility in its applications due to its compatibility with various hydraulic fluids including HL, HLP, HLPD, HVLP, HVLPD, and HFC. It also has NBR seals for durability. The valve's design includes a spool symbol Q which allows for precise control over the fluid dynamics within hydraulic systems. This model provides convenience with options such as manual override and conforms to several connection diagrams including NFPA T3.5.1 R2 D03 Size 3 CETOP and ISO standards. With a supply voltage of 110 VAC and multiple switching positions available, this valve is designed to handle a max flow rate efficiently while maintaining performance integrity. The Bosch Rexroth directional spool valve is characterized by its robust construction and reliable performance in controlling the start, stop, and direction of flow in hydraulic systems. Its design ensures that it can be used in various applications requiring precise control over fluid dynamics without compromising on efficiency or safety.

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