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R978909301

4WE 10 D4X/CG12N9DA SO9

Manufacturer: Bosch Rexroth

Material #: R978909301

Model : 4WE 10 D4X/CG12N9DA SO9


***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 D4X/CG12N9DA SO9 (R978909301) is a high-performance directional spool valve designed for controlling the start, stop, and direction of flow in hydraulic systems. This particular model is equipped with one or two wet-pin electronic solenoids that actuate the control spool, moving it from its rest position to the desired end position to facilitate the necessary flow direction. The solenoids are powerful enough to handle maximum operating pressures of up to 350 bar and a maximum flow rate of 120 l/min. Featuring a manual override, this valve allows for manual operation in the absence of solenoid energization, ensuring versatility and control under various conditions. The unit can be customized with a throttle insert in channels P, A, B, or T to increase flow resistance when required by operating conditions. For applications without spring return (type .WE E), this valve offers configurations with detent (type .WE ..OF) that lock the control spool in position, allowing for energy-efficient operation as continuous current application is unnecessary. Constructed with a robust housing and designed according to ISO porting patterns, this directional valve ensures reliable performance and compatibility with standard systems. The high-power solenoid coils can be rotated by 90 degrees and replaced without opening the pressure-tight chamber for maintenance ease. Electrical connections can be made through individual or central connections, with an optional auxiliary operating device available. This Bosch Rexroth valve is suitable for various hydraulic applications where precise control over fluid direction and flow is essential. Its design emphasizes durability, flexibility, and energy efficiency while maintaining high standards of performance under demanding operational conditions.

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