Rexroth 4WE6D62 EG24N9K4 B10 Hydraulic Directional Spool Valve 400 L/min 315 Bar DC24V
The Rexroth 4WE6D62 EG24N9K4 B10 Hydraulic Directional Spool Valve delivers exceptional performance with high safety standards for demanding industrial applications.
| Attribute | Value |
|---|---|
| Maximum Flow Rate | 400 L/min |
| Working Pressure | 315 bar |
| Supply Voltage | DC24V |
| Response Time | 10 ms |
| Power Consumption | 2 Watts |
| Flow Rate Range | 0-100 L/min |
| Control Signal | Analog |
| Media | Oil |
| Assembly Position | Any position |
Special flow channel design reduces internal impedance and pressure loss, improving energy efficiency by more than 30%. This design also reduces oil temperature, delaying hydraulic oil deterioration and extending system life.
Valve core switching time controlled in milliseconds for high-frequency requirements. Response time with integrated LVDT feedback is less than 15ms.
Oil-immersed electromagnetic action buffers pressure shocks for high operating stability. Valve core and valve seat provide excellent sealing with low leakage risk, suitable for harsh environments including dust and vibration.
- Supports manual, mechanical, electromagnetic, and hydraulic control methods
- Electromagnetic control ideal for automated production lines
- Hydraulic/pneumatic control suitable for high-pressure and high-temperature scenarios
- Proportional valve enables stepless adjustment of flow and pressure
Working pressure reaches 315bar with special material design to meet various hydraulic system needs. Applications include engineering machinery, wind power pitch control, steel rolling mills, and other industrial fields.
- Manual operation limited to simple scenarios - avoid frequent switching
- Electromagnetic control requires voltage-stabilized power supply to prevent coil damage
- Hydraulic/pneumatic operation requires dedicated actuator
- Regularly check oil cleanliness (recommended NAS 1638 level 6 standard)
- Verify coil resistance (standard value 20Ω±5%)
- Inspect seals every 500 hours to prevent leakage
- For high-pressure scenarios, prefer models with hydrostatic unloading technology
- Closed-loop control systems require high-precision sensors for steady-state accuracy (±0.5%)
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