Collection:SMC Bar Stock Manifolds Individual Wiring SS5Y5 5000

SMC Bar Stock Manifolds Individual Wiring SS5Y5 5000 offer a range of advanced valve solutions designed for efficient and cost-effective performance. These manifolds, part of the SY5000 series, ... Read more

SMC Bar Stock Manifolds Individual Wiring SS5Y5 5000

SMC Bar Stock Manifolds Individual Wiring SS5Y5 5000

SMC Bar Stock Manifolds Individual Wiring SS5Y5 5000 offer a range of advanced valve solutions designed for efficient and cost-effective performance. These manifolds, part of the SY5000 series, feature individual wiring for each valve, providing flexibility and precise control in pneumatic systems. The bar stock construction ensures durability and reliability, making these manifolds suitable for demanding industrial applications.

These manifolds accommodate up to 20 stations as standard, allowing for extensive customization to meet specific system requirements. With 15 port sizes available, users can select the optimal configuration for their flow and pressure needs. The common P, EA, and EB ports simplify installation and reduce the complexity of pneumatic circuits, enhancing overall system efficiency.

The SY series valves incorporated in these manifolds deliver high flow rates while maintaining low power consumption, a crucial factor for energy-efficient operations. Their compact design makes them ideal for applications where space is at a premium. Users can choose between body ported or base mounted styles, offering versatility in installation methods. Whether used individually or in manifold-mounted configurations, these valves provide consistent performance and adaptability to various pneumatic system designs.

When selecting SMC Bar Stock Manifolds, consider the number of stations required, the appropriate port sizes for your application, and the specific flow and pressure demands of your system. The individual wiring feature allows for independent control of each valve, which can be particularly beneficial in applications requiring precise sequencing or selective actuation of pneumatic components.