Collection:SMC Manifolds DIN Rail EX121 with Transmission System For SV Valves

The SMC Stacking Manifold DIN Rail Mount SI Unit SS5Y5-45S1 5000 offers a versatile solution for pneumatic control systems. This manifold, designed for SY5000 base mounted valves, provides a com... Read more

SMC Manifolds DIN Rail EX121 with Transmission System For SV Valves

SMC Manifolds DIN Rail EX121 with Transmission System For SV Valves

The SMC Stacking Manifold DIN Rail Mount SI Unit SS5Y5-45S1 5000 offers a versatile solution for pneumatic control systems. This manifold, designed for SY5000 base mounted valves, provides a compact and efficient way to organize multiple valves in a single assembly. With the ability to accommodate up to 20 stations as standard, it caters to a wide range of industrial applications requiring precise pneumatic control.

Featuring a DIN rail mount design, the SS5Y5-45 manifold ensures easy installation and integration into existing control systems. The common supply and exhaust can be flexibly located on the upper side, lower side, or both sides, allowing for customized configurations to suit specific system requirements. This adaptability makes it an ideal choice for various industrial setups, from manufacturing lines to process control systems.

The manifold's individual wiring for each valve station provides enhanced control and diagnostics capabilities. This feature allows for independent operation and monitoring of each valve, improving system efficiency and troubleshooting. With six port sizes available, users can select the optimal configuration for their flow requirements, ensuring optimal performance across different applications.

When selecting this manifold, consider factors such as the number of valve stations needed, desired port locations, and specific flow requirements. The SS5Y5-45's compatibility with the SY5000 series valves, known for their high flow and low power consumption, makes it an excellent choice for those seeking to optimize their pneumatic systems' performance and energy efficiency.