WENK Pneumatic HERION Type 263 Series Solenoid Valve
Product Detail
Working Media |
Non-Aggressive Air |
Working Pressure |
0.15~1.0Mpa |
Working Temperature Range |
-5℃~40℃ |
Operation fregueny |
≤0.06s |
Body Material |
Aluminum Alloy |
Herion Type 263 Series Solenoid Valve User Manual

1. Product Introduction
The Herion Type 263 Series Solenoid Valve is a high-performance pneumatic control component introduced by WENK Pneumatic, specifically designed for precise fluid control in industrial automation systems. This series features aluminum alloy bodies and efficient sealing systems, offering compact structure, quick response, and long service life.
The Herion Type 263 Series Solenoid Valve is suitable for various automation equipment, machinery, and industrial control systems. It can be used to control the flow direction of compressed air or other non-corrosive gases, widely applied in automated production lines, packaging machinery, textile machinery, medical equipment, and other fields.

2. Installation Steps
-
Confirm installation location
- Select an appropriate installation position ensuring the valve will not be subject to external interference during operation
- Ensure the installation environment meets the product's usage requirements
-
Preparation
- Verify that the valve model and specifications meet system requirements
- Ensure all installation tools are available
- Clean the installation surface
-
Valve installation
- Choose the appropriate mounting method as needed
- Secure the valve to the installation position using suitable screws
- Ensure the valve is firmly installed without looseness
-
Pneumatic connection
- Confirm that the air supply meets the valve's operating requirements
- Connect the inlet port, working ports, and exhaust port according to the markings on the valve body
- Use appropriate sealing materials to ensure tight connections without leakage
-
Electrical connection
- Confirm that the power supply matches the valve's rated voltage
- Connect the power cord according to the wiring diagram
- Ensure electrical connections are secure and insulation is good
-
Inspection
- Check all connections for correctness
- Ensure the valve can operate freely after installation
Confirm installation location
- Select an appropriate installation position ensuring the valve will not be subject to external interference during operation
- Ensure the installation environment meets the product's usage requirements
Preparation
- Verify that the valve model and specifications meet system requirements
- Ensure all installation tools are available
- Clean the installation surface
Valve installation
- Choose the appropriate mounting method as needed
- Secure the valve to the installation position using suitable screws
- Ensure the valve is firmly installed without looseness
Pneumatic connection
- Confirm that the air supply meets the valve's operating requirements
- Connect the inlet port, working ports, and exhaust port according to the markings on the valve body
- Use appropriate sealing materials to ensure tight connections without leakage
Electrical connection
- Confirm that the power supply matches the valve's rated voltage
- Connect the power cord according to the wiring diagram
- Ensure electrical connections are secure and insulation is good
Inspection
- Check all connections for correctness
- Ensure the valve can operate freely after installation

3. Operation Guide
-
Valve operation
- For single solenoid valves
- When the coil is energized, the valve switches to the working position
- When the coil is de-energized, the valve resets to the initial position
- For double solenoid valves
- When the left coil is energized, the valve switches to the left position
- When the right coil is energized, the valve switches to the right position
- When both coils are de-energized, the valve remains in the last working position
- Remote control of the valve can be achieved through control signals
-
Working principle
- The solenoid valve controls the movement of the valve core through the energization and de-energization of the electromagnetic coils
- The movement of the valve core changes the connection method of the air circuit, thereby controlling the direction of fluid flow
- Adopting a pilot-operated structure, it provides quick response and reliable operation
-
Notes
- Do not exceed the valve's maximum working pressure and temperature range
- Avoid use in environments with strong vibration or impact
- Keep the valve clean to prevent dust and impurities from entering the valve body
- Ensure stable power supply voltage to avoid excessive voltage fluctuations
Valve operation
- For single solenoid valves
- When the coil is energized, the valve switches to the working position
- When the coil is de-energized, the valve resets to the initial position
- For double solenoid valves
- When the left coil is energized, the valve switches to the left position
- When the right coil is energized, the valve switches to the right position
- When both coils are de-energized, the valve remains in the last working position
- Remote control of the valve can be achieved through control signals
Working principle
- The solenoid valve controls the movement of the valve core through the energization and de-energization of the electromagnetic coils
- The movement of the valve core changes the connection method of the air circuit, thereby controlling the direction of fluid flow
- Adopting a pilot-operated structure, it provides quick response and reliable operation
Notes
- Do not exceed the valve's maximum working pressure and temperature range
- Avoid use in environments with strong vibration or impact
- Keep the valve clean to prevent dust and impurities from entering the valve body
- Ensure stable power supply voltage to avoid excessive voltage fluctuations

4. Maintenance
-
Regular inspection
- Check for valve leakage
- Verify normal valve operation
- Ensure connections are secure
- Check that electrical connections are in good condition
-
Cleaning
- Regularly clean the external surface of the valve to remove dust and dirt
- If impurities are found inside the valve, clean them promptly
-
Lubrication
- Regularly add an appropriate amount of lubricating oil to the valve's moving parts
- Use lubricating oil compatible with the seals
-
Storage
- For long-term storage, store the valve in a dry, clean, and ventilated environment
- Avoid direct sunlight and high-temperature environments
Regular inspection
- Check for valve leakage
- Verify normal valve operation
- Ensure connections are secure
- Check that electrical connections are in good condition
Cleaning
- Regularly clean the external surface of the valve to remove dust and dirt
- If impurities are found inside the valve, clean them promptly
Lubrication
- Regularly add an appropriate amount of lubricating oil to the valve's moving parts
- Use lubricating oil compatible with the seals
Storage
- For long-term storage, store the valve in a dry, clean, and ventilated environment
- Avoid direct sunlight and high-temperature environments

5. Troubleshooting
-
Valve fails to operate
- Possible causes: Power failure or voltage mismatch, damaged coil, valve core stuck
- Solutions: Check power supply and voltage, replace the coil, clean or replace the valve core
-
Valve leakage
- Possible causes: Damaged seals, loose connections, damaged valve body
- Solutions: Replace seals, tighten connections, replace the valve body
-
Unstable valve operation
- Possible causes: Unstable air supply pressure, excessive voltage fluctuations, worn valve core
- Solutions: Stabilize air supply pressure, stabilize power supply voltage, replace the valve core
-
Coil overheating
- Possible causes: Excessive voltage, coil short circuit, frequent valve operation
- Solutions: Check power supply voltage, replace the coil, reduce valve operation frequency
Valve fails to operate
- Possible causes: Power failure or voltage mismatch, damaged coil, valve core stuck
- Solutions: Check power supply and voltage, replace the coil, clean or replace the valve core
Valve leakage
- Possible causes: Damaged seals, loose connections, damaged valve body
- Solutions: Replace seals, tighten connections, replace the valve body
Unstable valve operation
- Possible causes: Unstable air supply pressure, excessive voltage fluctuations, worn valve core
- Solutions: Stabilize air supply pressure, stabilize power supply voltage, replace the valve core
Coil overheating
- Possible causes: Excessive voltage, coil short circuit, frequent valve operation
- Solutions: Check power supply voltage, replace the coil, reduce valve operation frequency

6. Safety Precautions
Before installation and maintenance, ensure the air supply and power are cut off.
Do not exceed the valve's maximum working pressure and temperature range.
Follow relevant safety regulations and operating procedures during installation and operation.
If any valve abnormalities are found, stop using it immediately and conduct inspections and repairs.
Do not disassemble or modify the valve arbitrarily to avoid affecting performance or causing safety accidents.
Before installation and maintenance, ensure the air supply and power are cut off.
Do not exceed the valve's maximum working pressure and temperature range.
Follow relevant safety regulations and operating procedures during installation and operation.
If any valve abnormalities are found, stop using it immediately and conduct inspections and repairs.
Do not disassemble or modify the valve arbitrarily to avoid affecting performance or causing safety accidents.












