PS10-40H-6T-N-22/15 SEQUENCE VALVE
Manufacturer: Hydraforce
Material #: 561844215
Model : PS10-40H-6T-N-22/15 SEQUENCE 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 5618442.15 (5618442.15) is a spool type, direct acting, adjustable hydraulic sequence valve known as the PS10-40X. This component is designed with an externally vented spring chamber and functions by blocking flow bidirectionally between ports 2 and 3. The spring chamber is consistently vented at port 4, allowing for precise control of fluid dynamics within hydraulic systems. When the pressure setting at port 1 is achieved, the spool shifts, enabling bidirectional flow between ports 2 and 3. An important feature of this valve is that any pressure present at port 4 adds to the spring setting in a direct 1:1 ratio, which enhances its operational efficiency. The PS10-40X incorporates several key features that contribute to its reliability and longevity. It includes adjustment mechanisms that prevent backing out of the valve and ensure that springs do not become solid during operation, thereby maintaining consistent performance under varying conditions. The valve offers optional spring ranges up to 151.7 bar (2200 psi), providing flexibility for different application needs. Its construction features a hardened precision spool and cage, ensuring durability over extended periods of use. The industry-common size of this sequence valve facilitates easy integration into existing hydraulic systems across various applications where precise control of fluid flow is necessary. Its robust design makes it suitable for demanding environments where reliability and precision are critical factors in system performance.
$126.25 USD
Availability: Backordered
Ships from US
Qty:
Delivered as early as October 28, 2026







