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R901463083

4WE6D6X/OFEW110N9DK25L/B10V=CSA=AN

Manufacturer: Bosch Rexroth

Material #: R901463083

Model : 4WE6D6X/OFEW110N9DK25L/B10V=CSA=AN


***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 4WE6D6X/OFEW110N9DK25L/B10V=CSA=AN (R901463083) is a high-performance directional control valve designed for hydraulic systems requiring precise control of fluid direction and flow. This model is a solenoid-operated directional spool valve that enables the start, stop, and direction of flow to be managed effectively. It features a robust housing, one or two high-power solenoids, a control spool, and return springs to maintain the spool in its initial position when de-energized, except for specific versions without spring return. This particular valve is engineered for versatility with its porting pattern conforming to ISO standards and offers the option of having a locating hole. It can be utilized in both 3-way or 4-way configurations depending on system requirements. The high-power solenoid is capable of being rotated by 90 degrees, providing flexibility in installation and maintenance. Electrical connections can be made either as single or central connections based on user preference. For manual operation without power supply, an auxiliary actuation feature is included. Additionally, this model provides the option for spool position monitoring which enhances safety and operational accuracy in complex hydraulic systems. To ensure compatibility with various international standards, this valve conforms to CE requirements according to the Low-Voltage Directive EU for electrical voltages above certain thresholds and optionally includes a solenoid coil with UR marking according to UL specifications. The valve's design also includes provisions for energy efficiency; valves with detent do not require continuous current supply once engaged, contributing to reduced energy consumption. However, it should be noted that pressure peaks might cause unintended movements of the control spool in valves with detent; separate return lines or check valves are recommended in such cases. Internal leakage inherent to this design may increase over its service life but does not detract from its overall reliability and effectiveness in controlled hydraulic applications.

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