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MOOG G631-3008A H10JDFM4VBR Servo Valve

Application Scenarios: The Moog G631 series is specifically designed for high-performance industrial equipment where reliable, closed-loop control is a necessity. You will frequently find the G631-3008A in steel and aluminum mills (for roll gap control), flight simulators, material testing machines, and large-scale industrial robots. Its mechanical feedback design makes it highly robust against electrical noise, making it suitable for heavy industrial environments where electronic stability might be challenged but high dynamic response is still required for precision positioning.

Precautions for Use:

  1. Hydraulic Fluid Cleanliness: This valve uses a sensitive nozzle-flapper pilot stage. It is absolutely critical to maintain a fluid cleanliness level of ISO 4406 < 14/11/08 (NAS 5) or better. A failure to provide adequate 10 μm (absolute) filtration can lead to pilot stage blockage and loss of control.

  2. System Flushing: The valve should never be mounted during the initial flushing of a new hydraulic system. Use a flushing plate instead to prevent assembly debris from damaging the precision-ground internal components.

  3. Coil Wiring: Ensure the coils are wired correctly (series, parallel, or single) according to your controller’s output. Incorrect polarity will result in the valve moving in the opposite direction of the command signal.

  4. Null Adjustment: Periodically check the mechanical null adjustment, especially after significant changes in operating temperature or pressure, to ensure the valve remains centered when no signal is applied.

  5. Vibration and Mounting: Ensure the mounting surface is flat and clean. While robust, excessive high-frequency vibration can lead to premature wear of the mechanical feedback wire.

Original price was: $3,558.00.Current price is: $3,120.00.

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Parameter Specification
Model Number G631-3008A
Valve Design 2-Stage, Nozzle-Flapper with Mechanical Feedback
Mounting Pattern ISO 10372-04-04-0-92
Rated Flow (@ ΔpN 70 bar) 40 L/min (approx. 10.6 gpm)
Maximum Operating Pressure 315 bar (4,500 psi)
Rated Signal (Current) ±15 mA (Common for 3008A configuration)
Coil Resistance 200 Ohms per coil (Standard Series/Parallel)
Hysteresis < 3.0%
Threshold < 0.5%
Step Response (0–100%) Standard Dynamics: ~10-15 ms
Seal Material FKM (Viton) as standard
Temperature Range -20°C to +120°C (Fluid dependent)

📦  Warranty&Reture Policy:

🛡️  1、One year warranty. If the product malfunctioned under proper usage per instructions manual within the warranty period, please contact us to obtain shipping instructions and send it back at your shipping costs.
🔍 2、14days evaluation and investigation takes placed after receiving your return item.

 

❓What Is a Proportional Valve?

A proportional valve is a hydraulic valve where a coil-driven solenoid pushes the spool directly in proportion to the input current.

🔍Key Characteristics:

  • Higher flow than a servo valve
  • Lower bandwidth
  • ️ More tolerant of dirtier oil

Many include a position sensor (LVDT) on the spool, which closes the loop and turns the unit into a servoproportional. The valve shown here is a Bosch Rexroth 4WRPEH, one of the more common servoproportionals we see on the bench.

️🛡️A Solenoid-Driven Hydraulic Valve: Two Main Forms

Proportional valves come in two main forms: standard proportional (open-loop) and servoproportional (closed-loop with spool-position feedback). Most of what comes through the bench is one or the other, and the bench work overlaps but is not identical.

1️⃣ Standard Proportional (Open-Loop)

This is the simpler pattern. A pair of large coils on each end of the spool produces a magnetic force that pushes the spool against centering springs. The spool position is roughly proportional to the input current.

  • Feedback: No internal position feedback; if the spool is fighting a load, the position can drift.
  • Performance: Bandwidth is modest (often < 50 Hz), but flow capacity is higher than a servo valve and the tolerance for dirty oil is better.
  • Common Models:
  • Atos: DHZO, DKZOR (without transducer)
  • Bosch Rexroth: 4WRA
  • Yuken: EFBG

2️⃣ Servo Valve proportional (Closed-Loop)

This type adds an LVDT (linear variable differential transformer) that measures actual spool position and feeds it back to onboard or external electronics. The drive electronics adjust coil current continuously to push the spool to the commanded position, even under load.

  • Feedback: Continuous position feedback
  • Performance: Bandwidth is higher than a standard proportional, deadband is smaller, and accuracy is better.
  • Common Models:
  • Atos: DLHZO, DLKZOR
  • Bosch Rexroth: 4WRPH, 4WRPEH, 4WREE
  • Yuken: EHFBG
  • Duplomatic: DXE

️

⚡Shared Skeleton & Bench Work

Both types share the same core anatomy:

  • A body bore with a spool inside
  • Two solenoid coils on each end
  • Centering springs
  • Four hydraulic ports
  • (On servoproportional variants) An LVDT and either an external driver card or onboard electronics (OBE)

Bench Work Note:
The differences are in the feedback loop and the accuracy of the spool fit. However, bench work overlaps a lot. A burned coil is a burned coil. A worn spool is a worn spool. The differences primarily show up in the LVDT and OBE channels on servoproportionals (which do not exist on the standard variants).

Bench Work Note:
The differences are in the feedback loop and the accuracy of the spool fit. However, bench work overlaps a lot. A burned coil is a burned coil. A worn spool is a worn spool. The differences primarily show up in the LVDT and OBE channels on servoproportionals (which do not exist on the standard variants).

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