RV58-20A-0-P-46/ M285 RELIEF VALVE
Manufacturer: Hydraforce
Material #: 5600095M285
Model : RV58-20A-0-P-46/ M285 RELIEF VALVE
***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 Hydraforce directly.***
The Hydraforce 5600095.M285 (5600095.M285) is a high-performance hydraulic relief valve designed for efficient operation in lower flow circuits. The RV5820X model, which this unit corresponds to, is a screw-in, cartridge style valve that operates as a direct acting, poppet type relief mechanism. It is specifically engineered to block flow from port 1 to port 2 until the pressure at port 1 is sufficient to displace the spring-opposed poppet from its seat. This functionality ensures precise control over hydraulic pressure within a system.
Rated for an operating pressure up to 345 bar (5000 psi), the 5600095.M285 offers robust performance for demanding applications. Its design includes features such as bidirectional pressure capabilities and a variety of adjustment options that prevent springs from going solid and adjustments from backing out of the valve. This results in enhanced safety and reliability.
The compact size of this valve coupled with its rapid response to pressure changes makes it an ideal choice for applications where space is limited and efficiency is paramount. Additionally, the low internal leakage characteristic of this model enhances its suitability for systems where maintaining hydraulic integrity is crucial.
Overall, the Hydraforce 5600095.M285 provides a dependable solution for managing hydraulic flow and pressure, ensuring optimal performance in various applications requiring precise pressure relief capabilities.
$52.00 USD
Availability: Backordered
Ships from US Note: Sales tax, shipping, and applicable tariffs will be calculated at checkout.
Qty:
Delivered as early as February 16, 2027







