D633-302B
Description
I. Model Breakdown Explanation (D633-302B)
D633: D633 Series Direct Acting Servo Valve (DDV), NG6 (03) Installation Surface, MuGe China
302:
3: Flow Code → 10 L/min (Δp=35 bar) Moog Inc.
0: Electronic / Frequency Response → Standard Frequency Response (60–90 Hz), Analog Input, Position Closed Loop, MuGe China
2: Y Port / Seal → No Y Port (Backflow), NBR (Nitrile Butadiene Rubber) Seal, -20 to +80°C Moog Inc.
B: Standard Type, No Special Coating, Standard Voltage Version
One Sentence: D633-302B = NG6 + 10 L/min@35bar + 350bar High Pressure + Direct Acting Without Pilot + 60–90Hz Standard Frequency Response + No Y Port (Backflow) + NBR Seal
II. Core Parameters (Δp=35 bar)
Rated Flow: 10 L/min Moog Inc.
Maximum Pressure: 350 bar (P/A/B); T Port (No Y): 50 bar Moog Inc.
Hysteresis: <0.2% MuGe China
Resolution: <0.1% MuGe China
Frequency Response (±100%): 60–90 Hz MuGe China
Step Response: ≈15 ms Moog Inc.
Zero Position Leakage: ≈0.1 L/min (210 bar) MuGe China
Seal / Temperature: NBR (-20 to +80°C)
Drive: 24VDC, ±10V or 4–20mA Moog Inc.
Filter: ISO 4406 15/12
Features: No Pilot Hole, Extremely Anti-Pollution, Independent of Dynamic and Pressure, Spring Retention After Power Off, Internal Leakage Design (T Port Low Pressure)
III. Comparison of D633-302B with Common Models (Key Differences) Table
Project D633-302B (10L standard / without Y) D633-231A (40L standard / with Y) D633-255A (40L high-frequency / with Y/FKM)
Flow rate 10 L/min 40 L/min 40 L/min
Frequency response 60–90 Hz (standard) 60–90 Hz (standard) 100–120 Hz (high frequency)
Y port No Y port (T≤50bar) With Y port (T≤350bar) With Y port (T≤350bar)
Sealing material NBR (−20~+80℃) NBR (−20~+80℃) FKM (−20~+120℃)
Positioning Low flow, standard dynamic, low-pressure return oil High flow, standard dynamic, high-pressure return oil High flow, high frequency, high temperature, high-pressure return oil
Sentence: 302B is the entry-level model of the D633 series for low-flow applications, suitable for low-pressure return oil, normal temperature, and standard dynamic systems with medium to low power.
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