
( Brand: Parker ), ( Manufacturer Part Number: 20CC02LVC4B ), ( Thread: Female ), ( Shape: Inline ), ( Operation: Solenoid ), ( Country/region Of Manufacture: United States ), ( Type: Shut-off Valve ), ( Connection: Threaded )
The Parker 20cc02LVC4B Shut Valve is a high-performance, electrically operated solenoid valve designed for various applications. This valve operates on a 24-volt power supply, consuming a modest 8 watts of energy, making it an energy-efficient solution for your system.
The Parker 20cc02LVC4B Shut Valve is rated for a maximum working pressure of 130 pounds per square inch (psi), ensuring reliable operation even under high-pressure conditions. Its 20cc valve capacity allows for efficient flow control, making it an ideal choice for applications where precise fluid control is required.
The valve body is constructed from durable materials, providing long-lasting performance under harsh operating conditions. The Parker 20cc02LVC4B Shut Valve features a sealed design, preventing leakage and ensuring a reliable seal even in high-pressure environments.
The valve operates using a solenoid coil, which can be actuated electrically. This makes the valve easy to integrate into automated systems, providing precise control over fluid flow. The valve can be used for a variety of applications, including pneumatic control systems, hydraulic systems, and other industrial applications.
In summary, the Parker 20cc02LVC4B Shut Valve is a robust, energy-efficient, and reliable solution for precise fluid control. Its high pressure rating, durable construction, and ease of integration make it a versatile choice for various industrial applications.
The 20cc02LVC4B Parker shut valve is a solenoid-operated, two-way, direct-acting valve designed for 24-volt DC applications with a maximum operating pressure of 130 psi. Here are some pros and cons to consider before making a purchase:
Pros:1. Durable Construction: The Parker 20cc02LVC4B is built with a corrosion-resistant housing and diaphragm, making it ideal for use in harsh environments.
2. Reliable Performance: The valve is designed to provide consistent and reliable operation, even under high pressure and temperature conditions.
3. Energy Efficient: With an 8-watt power consumption, this valve is a cost-effective option for applications that require low power consumption.
4. Compact Size: The 20cc02LVC4B has a compact size, making it easy to install in tight spaces.
5. Easy to Install: The valve is easy to install and requires minimal wiring, saving time and effort during installation.
Cons:1. Limited Flow Rate: The 20cc02LVC4B has a limited flow rate, which may not be suitable for high-volume applications.
2. Limited Operating Temperature Range: The valve has a limited operating temperature range of -40 C to 85 C, which may not be suitable for applications in extreme temperature conditions.
3. May Not Be Compatible with All Control Systems: The valve may not be compatible with all control systems, requiring additional modifications or components to interface with the system.
Conclusion:The Parker 20cc02LVC4B is a reliable and energy-efficient solenoid-operated shut valve that is ideal for applications requiring low power consumption and compact size. However, its limited flow rate and operating temperature range may not be suitable for all applications. Before making a purchase, it is essential to evaluate your specific application requirements and ensure that the valve is compatible with your control system.
Recommendation:If you are looking for a reliable and energy-efficient solenoid-operated shut valve for low-volume applications, the Parker 20cc02LVC4B is an excellent choice. However, if you require a higher flow rate or a wider operating temperature range, you may want to consider other options available in the market. It is essential to carefully evaluate your application requirements and consult with a professional to ensure that you select the right valve for your specific application.
Parker shut off valve 20CC02LVC4B, 24 volts dc, 8 watts , 130 psi this is a offer.