Industrial Controller
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Infinite Innovation, the Future of Industrial Control Systems
Infinite Innovation, the Future of Industrial Control Systems
PRODUCT POSITION:HOMEPRODUCT—DG4V-5-2CJ-M-U-H6-20
DG4V-5-2CJ-M-U-H6-20
Parameter Description / Value Notes Product Line Eaton DG4V Second Generation Type Proportional Directional Control Valve 4-way, 3-position, Single-Stage Porting Size NG05 (CETOP 5 / NFPA D02) Standard subplate interface Maximum Operating Pressure 350 bar (5,075 psi) Maximum Flow Rate Approx. 40 - 60 L/min (10.5 - 16 US gpm) *Dependent on spool and pressure drop (e.g., Δp = 10 bar).* Spool Type 2CJ "2" denotes a specific high-performance spool series with LVDT feedback. "CJ" indicates a linear or modified linear flow characteristic. Center Position M (Closed Center / All Ports Blocked) In the center (neutral) position, all work ports (A, B) and the pressure port (P) are blocked, and the tank port (T) is open. This holds an actuator in place. Solenoid Type Proportional Solenoid Wet armature design Feedback Type Integrated LVDT The spool has a built-in LVDT for closed-loop position control. Electrical Connector U (DIN 43650 Form A, 4-pin) Standard industrial connector Integrated Electronics H6 On-board amplifier card designed for LVDT feedback valves. Input Signal ±10 VDC or 4-20 mA Selectable via internal dip-switches Supply Voltage (to amplifier) 12-30 VDC For the H6 amplifier IP Rating IP65 (with connector properly installed) Dust-tight and protected against water jets Hydraulic Fluid Mineral-based hydraulic oil to ISO 11158 Fluid Viscosity Range 10 to 400 cSt (50 to 2000 SUS) Operating Temperature Range -20°C to +70°C (-4°F to +158°F)
DESCRIBE
Eaton DG4V-5-2CJ-M-U-H6-20 Solenoid Operated, High-Performance Proportional Directional Control Valve with LVDT Feedback This model is a single-stage, high-performance proportional directional control valve. It incorporates an LVDT (Linear Variable Differential Transformer) for closed-loop spool position control. The integrated electronics continuously compare the actual spool position (from the LVDT) with the command signal and make real-time corrections. This advanced control strategy ensures very high repeatability, low hysteresis, and excellent dynamic performance, making it suitable for demanding industrial applications where precise control of actuator speed and position is critical.
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