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R900961986

4WE 10 J4X/CW110N9DK25L/V

Manufacturer: Bosch Rexroth

Material #: R900961986

Model : 4WE 10 J4X/CW110N9DK25L/V


***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 4WE 10 J4X/CW110N9DK25L/V (R900961986) is a high-performance directional spool valve designed to manage the start, stop, and direction of fluid flow within a hydraulic system. This model features a robust housing, one or two wet-pin electronic solenoids, a control spool, and return springs. The solenoids actuate the control spool when energized, shifting it from its neutral position to enable flow in the necessary direction between ports P to A and B to T or P to B and A to T. The valve is designed with manual override capabilities, allowing for manual operation in the absence of solenoid power. It also includes throttle inserts that can be used in various channels (P, A, B or T) to increase flow resistance when operating conditions exceed the valve’s performance limit. This particular model has no spring return mechanism at the control spool when de-energized; hence it does not default to a basic position. The 4WE 10 J4X/CW110N9DK25L/V is characterized by its high-power solenoid capacity and conforms with ISO porting patterns. It features AC solenoids with detachable coils that can be rotated by 90 degrees and replaced without opening the pressure-tight chamber for maintenance ease. Electrical connections can be made individually or centrally, according to user preference or system requirements. With a size designation of 10 and belonging to component series X and X2 (X3), this directional valve is engineered for maximum operating pressures up to 350 bar and can handle maximum flow rates of up to 120 l/min. Its versatility makes it suitable for various applications requiring precise control of hydraulic flow with an emphasis on energy-efficient operation due to its detent feature allowing for reduced continuous current application during use.

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