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| Item | Control Valve |
|---|---|
| Actuation Type | Solenoid |
| Center Position | Float Center |
| Center Position - Hydraulic Valves | Float |
| Coil Voltage | 24V |
| Electrical Connection Type | Din Without Plug |
| Gpm @ 3000 Psi | 18.5 GPM |
| Height | 1.97" |
| Includes Seals | Seals Included |
| Input Voltage | 24V DC |
| Length | 9 1/5" |
| Max Flow (at 3000 Psi) | 20 GPM |
| Max. Flow Rate | 80 LPM |
| Max. Pressure | 5000 psi |
| Max. Tank Pressure | 3000 psi |
| Maximum Flow Rate3 | 18.5 GPM |
| Nfpa Size | D03 |
| Number Of Positions | 3 |
| Number Of Ways | 4 |
| Operating Temperature - Maximum | 140°F |
| Operating Temperature - Minimum | -4°F |
|---|---|
| Operator Type | Solenoid |
| Overall Height | 1.97" |
| Overall Length | 9.2" |
| Overall Width | 1.81" |
| Parker Valve Style Code | C |
| Return Mechanism | Solenoid |
| Return Type - Hydraulic Valves | Spring Centered |
| Seal Material | Buna N |
| Series | D1VW Series |
| Solenoid Standards | Din Style 43650 Without Plug |
| Spool Type | Float Center P Blocked, A, B Greater Than T |
| Subplate Pattern | Nfpa D03 (Cetop 3, Ng 6) |
| Valve Control | Directional Control |
| Valve Style | Double Solenoid, 3 Position, Spring Centered |
| Valve Type | Ball |
| Voltage | 24V DC |
| Width | 1.81" |
| Standards | ISO-4401, NFPA D03 |
Parker D1VW004CNJW directional control valve is ideal for controlling the direction of fluid flow in a hydraulic circuit, enabling precise operation of hydraulic actuators. It ensures that machinery can perform complex and controlled movements, such as lifting, tilting and pressing in assembly lines, construction equipment and automated production processes.
| Height (cm) | 4.6 |
|---|---|
| Length (cm) | 23.37 |
| Width (cm) | 5 |
| HS Code | 8481200020 |
|---|---|
| Country Of Origin | US |
| Weight (kg) | 2.214 |
It has a DIN connection without a plug providing a standardised interface for easy and reliable electrical connections while allowing users flexibility to choose their plug solutions based on system requirements.
Regular maintenance should include checking for leaks, ensuring electrical connections are secure and testing the valve operation to detect any irregularities. Periodic cleaning of the valve and replacement of any worn parts is also recommended to maintain efficiency and prevent system failures.
Selecting the correct configuration of the control valve depends on your specific hydraulic system requirements, including flow rate, pressure and desired control method.
It has operating temperatures ranging from -25 to 60 degrees F.
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