***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 2FRM6B76-3X/16QJ3RV (R900221021) is a high-performance flow control valve designed for precise fluid handling in hydraulic systems. This valve maintains a consistent flow rate regardless of pressure and temperature fluctuations, ensuring stable system performance. The 2FRM6B76-3X/16QJ3RV features a robust housing, an adjustable rotary knob for setting the throttle cross-section, and an integrated pressure compensator that balances forces to provide constant flow in channel B.
The unit is designed without an external closing mechanism and does not include a check valve, streamlining its function to throttle the flow from channel A to channel B effectively. The compression spring within the valve ensures that the pressure compensator remains open when there is no fluid movement, while fluid flow enables the compensator to adjust and maintain equilibrium between forces.
For applications requiring bidirectional flow control, this valve can be paired with a rectifier sandwich plate type ZS. Additionally, it adheres to DIN form A porting patterns and can be mounted on subplates that are ordered separately. Users have the option to select adjustment types according to their needs, including a rotary knob with scale or a lockable rotary knob with scale for added security in settings.
Overall, Bosch Rexroth's 2FRM6B76-3X/16QJ3RV offers reliable performance for maintaining constant flows in hydraulic systems where precision is paramount. Its design facilitates easy adjustments and ensures dependable operation even under varying conditions.
$1,195.96 USD
Availability: Backordered
Ships from CA Note: Sales tax, shipping, and applicable tariffs will be calculated at checkout.
Qty:
Delivered as early as April 9, 2027





