| Specification | Value |
|---|---|
| Product Name | DSG 01 3C2 D24 N1 50 Direction Control Valve |
| Valve Type | Solenoid Operated Direction Control Valve |
| Model | DSG-01-3C2-D24-N1-50 |
| Operating Voltage | 24V DC |
| Valve Function | 4-Way, 3-Position |
| Mounting Type | Subplate Mount (NG6 / CETOP 3) |
| Flow Rate | Up to 60 L/min |
| Maximum Operating Pressure | 315 Bar |
| Hydraulic Fluid | Mineral Hydraulic Oil |
| Operating Temperature | -20°C to +70°C |
| Coil Type | DC Solenoid Coil |
| Body Material | High-Strength Cast Iron |
| Application | Industrial Hydraulic Systems |
| Country of Origin | As Per Manufacturer |
DSG 01 3C2 D24 N1 50 Direction Control Valve is a high-performance hydraulic directional valve used to control the movement of hydraulic oil inside industrial machines. It features a 24V DC solenoid coil that delivers quick and reliable shifting between flow paths. The compact design makes installation simple and suitable for a wide range of hydraulic applications.
This valve is ideal for hydraulic power units, industrial automation systems, CNC machines, presses, and other equipment where accurate hydraulic flow control is important.
The DSG 01 3C2 D24 N1 50 Direction Control Valve is widely used in:
This hydraulic control valve ensures accurate oil flow direction for improved machine performance. The responsive solenoid valve design provides quick switching with minimal delay. It supports stable hydraulic pressure and helps reduce energy loss during operation.
Its compact body allows easy replacement in existing hydraulic circuits, making maintenance simple and reducing machine downtime.
This valve is commonly installed across industries that rely on hydraulic motion control, including:
The DSG 01 3C2 D24 N1 50 Direction Control Valve delivers dependable performance even during continuous industrial use. It offers precise directional control, smooth hydraulic operation, and long service life. The robust design supports reliable operation in demanding environments while helping improve overall equipment efficiency.
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