Kawasaki OB20-V1.0/310 Hydraulic Valve Block is a precision-engineered hydraulic control component designed for managing fluid flow and pressure distribution in complex hydraulic systems. Built to meet the demanding requirements of industrial machinery, mobile equipment, and construction systems, this valve block offers a compact and efficient solution for integrating multiple control functions within a single unit. The OB20-V1.0/310 designation identifies the specific configuration, flow capacity, and pressure handling characteristics, ensuring reliable performance and compatibility with Kawasaki hydraulic platforms.
This valve block features high-quality internal channeling and precision-machined ports that ensure minimal internal leakage, optimized flow paths, and smooth pressure transitions. It is designed to accommodate multiple directional, pressure, and flow control valves, enabling centralized control of hydraulic actuators such as cylinders, motors, or other fluid-powered components. The integrated design reduces the need for extensive piping, minimizes pressure drop, and simplifies the overall hydraulic circuit.
Manufactured from robust, corrosion-resistant materials—typically high-grade steel or anodized aluminum—the OB20-V1.0/310 is engineered to withstand high operating pressures and harsh environmental conditions. Its modular structure supports easy customization and scalability, while standard mounting interfaces and port configurations ensure quick installation and service access. The valve block is often used in OEM systems for mobile cranes, excavators, presses, and marine hydraulic units, where compact and reliable hydraulic control is critical.
In summary, the Kawasaki OB20-V1.0/310 Hydraulic Valve Block delivers high-performance fluid control in a durable and space-saving package. Its precise design, rugged construction, and multi-function capability make it an ideal choice for engineers and system integrators looking to enhance efficiency, reliability, and compactness in modern hydraulic systems.