Description
The Direct Acting Solenoid Valve with a brass body is a critical component designed for precise control in various industrial applications. Operating at a voltage of 24V DC, this normally closed valve effectively isolates flow, regulates pressure, and ensures the safe direction of media in systems such as manufacturing, mining, water treatment, and compressed air systems. With an orifice size of 4 and capable of handling media temperatures ranging from -10 to 100 degrees Celsius, it operates efficiently under pressures of 0-7 bar. Its durable construction, featuring Viton seals, provides excellent corrosion resistance and leak prevention, enhancing system safety and operational efficiency in process plants and pipelines.
Features
- Compact ⅛” size suitable for tight installation spaces.
- 4mm orifice for efficient flow control in various applications.
- Media temperature range of -10 to 100°C for versatile usage.
- Operates on 24V DC voltage for energy-efficient performance.
- Normally Closed (N.C) function ensures safety and reliability.
- Handles air/fluid pressures up to 7 Bar for robust operation.
- Vacuum capability of 27 Hg” for effective suction applications.
- Durable brass body construction for enhanced longevity and corrosion resistance.
Applications
- Used in fluid handling systems for precise control of liquid flow in manufacturing processes.
- Ideal for compressed air applications, ensuring reliable operation in pneumatic systems.
- Utilised in water distribution networks to manage flow and prevent backflow in pipelines.
- Employed in gas pipelines for safe and efficient control of gas flow under varying pressures.
- Integrated into steam systems for effective isolation and control of steam flow in industrial settings.
- Applied in process control systems to automate the regulation of fluids in chemical processing.
- Serves as an equipment isolation valve, providing safety and maintenance capabilities in machinery.
- Utilised in HVAC systems for controlling the flow of refrigerants and maintaining system efficiency.