PV7-1X/25-30RE01MW5-16WH
PV7-1X/10-20RE01MD0-10
PV7-1X/63-71RE07MD0-16-Q90 PV7 blade oil pump, German Rexroth original hydraulic pump, imported in stock
| Parameter | Specification |
| Model Series | PV7-1X/25-30RE01MW5-16WH PV7-1X/10-20RE01MD0-10 PV7-1X/63-71RE07MD0-16-Q90 (typical models) |
| Displacement per Revolution | 10–25 cm³/rev (varies by specific model) |
| Maximum Operating Pressure | 210 bar (continuous), 250 bar (peak) |
| Maximum Speed | 1800–3600 rpm (depends on displacement and fluid viscosity) |
| Minimum Speed | 600 rpm (ensures stable operation) |
| Fluid Medium | Mineral oil-based hydraulic fluid (ISO VG 32/46/68 recommended) |
| Fluid Temperature Range | -20 °C to +80 °C (operation); -40 °C to +90 °C (storage) |
| Viscosity Range | 10–1000 mm²/s (operation); 2–1500 mm²/s (start-up) |

| PV7-2X/20-20RA01MA0-10-P85 |
| PV7-1X/06-10RA01MA0-10-P50 |
| PV7-2X/20-25RA01MA0-05-P32 |
| PV7-1X/06-14RA01MA0-07-P50 |
| PV7-2X/20-25RA01MA0-05-P50 |
| PV7-1X/06-14RA01MA0-07-P65 |
| PV7-1X/06-14RA01MA0-07-P70 |
| PV7-2X/20-20RA01MA0-10-P65 |
| PV7-2X/20-20RA01MA0-05-P25 |
| PV7-2X/20-20RA01MA0-05-P50 |
| PV7-1X/06-14RA01MA0-10-A473 |
| PV7-1X/06-10RA01MA0-10-P100 |
| PV7-1X/06-14RA01MA0-10-A492 |
| PV7-2X/20-20RA01MA0-10-C3.1 |
| PV7-2X/20-20RA01MA0-05-A480 |
| PV7-2X/20-20RA01MA0-10-A480 |
| PV7-1X/06-10RA01MA0-10-C3.1 |
| PV7-2X/20-20RA01MA0-10-P100 |
| PV7-2X/20-25RA01MA0-05-P24Q30 |
| PV7-1X/06-10RA01MA0-05-P35Q11 |
| PV7-2X/20-25RA01MA0-05-P30Q25 |
| PV7-1X/06-10RA01MA0-05-P40Q11 |
| PV7-2X/20-25RA01MA0-05-P30Q36 |
| PV7-1X/06-10RA01MA0-05-P50Q15 |
| PV7-2X/20-25RA01MA0-05-P45Q35 |
| PV7-1X/06-10RA01MA0-10-P55Q12 |
| PV7-2X/20-25RA01MA0-05-P45Q36 |
| PV7-1X/06-10RA01MA0-10-P65Q12 |
| PV7-2X/20-25RA01MA0-10-P63Q35 |
| PV7-1X/06-10RA01MA0-10-P70Q12 |
| PV7-1X/06-10RA01MA0-05-P15Q08 |
| PV7-1X/06-14RA01MA0-07-P70Q18 |
| PV7-1X/06-10RA01MA0-05-P25Q09 |
| PV7-1X/06-14RA01MA0-04-P30Q19 |
| PV7-1X/06-10RA01MA0-05-P25Q11 |
| PV7-1X/06-10RA01MA0-10-P100Q10 |
| PV7-1X/06-10RA01MA0-05-P35Q09 |
| PV7-1X/63-71RE07MC3-16 |
| PV7-1X/100-118RE07MD3-16 |
| PV7-1X/63-71RE07MW0-16WG |
| PV7-1X/10-20RE01MD5-10 |
| PV7-1X/25-30RE01MW0-16WG |
| PV7-1X/40-45RE37MW5-16WG |
| PV7-1X/100-118RE07MC5-16WG |
| PV7-1X/63-94RE07MC7-08WG |
| PV7-1X/40-45RE37MW6-16WH |
| PV7-1X/100-118RE07MD6-16 |
| PV7-1X/40-45RE37MC5-16WG |
| PV7-1X/100-118RE07MC0-16 |
| PV7-1X/63-71RE07MD0-16 |
| PV7-1X/40-45RE37MC0-16-P90 |
| PV7-1X/25-30RE01MC0-16-P100Q38 |
| PV7-1X/100-150RE07MC0-08-A464 |
| PV7-1X/100-118RE07MD0-16 |
| PV7-1X/10-14RE01MN0-16 |
| PV7-1X/40-45RE37MC5-16 |
| PV7-1X/100-118RE07MC5-16 |
| PV7-1X/25-30RE01KC3-16 |
| PV7-1X/10-20RE01MC5-10WG |
| PV7-1X/25-30RE01MW0-16 |
| PV7-1X/16-20RE01MD3-16 |
| PV7-1X/16-20RE01MC0-16-P110 |
| PV7-1X/40-45RE37KD0-16-C3.1 |
| PV7-1X/63-71RE07MC5-16WH |
| PV7-1X/16-30RE01KC0-08 |
| PV7-1X/10-14RE01MD5-16 |
| PV7-1X/63-71RE07MC6-16 |
| PV7-1X/16-20RE01KD0-16 |
| PV7-1X/10-14RE01MW0-16 |
| PV7-1X/63-71RE07MC0-16-C3.1 |
| PV7-1X/16-30RE01MW0-08WH |
| PV7-1X/100-150RE07MC0-08-A446 |
| PV7-1X/25-30RE01MC5-16WG |
| PV7-1X/10-20RE01MC0-10-A497 |
| PV7-1X/100-150RE07KC0-08 |
| PV7-1X/100-150RE07MD5-08 |
| PV7-1X/25-45RE01MC0-08-P25Q50 |
| PV7-1X/40-71RE37MC5-08 |
| PV7-1X/10-14RE01KD0-16 |
| PV7-1X/16-20RE01MC0-16-P120 |
| PV7-1X/100-150RE07MW0-08WH |
| PV7-1X/16-20RE01MC5-16WG |
| PV7-1X/10-20RE01MW0-10WH |
| PV7-1X/63-94RE07KD0-08 |
| PV7-1X/63-71RE07MW0-16WH |
| PV7-1X/63-71RE07MC7-16WH |
| PV7-1X/40-45RE37MC0-16 |
| PV7-1X/63-94RE07MC0-08-P80Q114 |
| PV7-1X/40-45RE37MC5-16WH |
| PV7-1X/10-14RE01KN0-16 |
| PV7-1X/25-30RE01MC5-16WH |
| PV7-1X/63-71RE07KC0-16 |
FAQ;
Forty-One
Q: How do I calibrate the Pressure Feedback Signal Linearization Gain?
A: Set it to 0.1–5 bar/mA to match the output signal range of your pressure sensor for accurate feedback.
Forty-Two
Q: What is the purpose of the Flow Feedback Signal Zero Offset Correction?
A: It compensates for sensor drift, ensuring the flow feedback signal reads zero when there is no fluid flow.
Forty-Three
Q: What is the recommended Temperature Feedback Sampling Frequency?
A: Set it to 1–10 Hz; higher frequencies are ideal for monitoring rapid temperature changes.
Forty-Four
Q: How do I adjust the Displacement Feedback Sensor Calibration Value?
A: Adjust it to ≤±2% of the nominal displacement to calibrate the displacement sensor for accurate feedback.
Forty-Five
Q: How does the Efficiency Feedback Signal Smoothing Time Constant work?
A: A longer time constant (10–1000 ms) reduces noise in efficiency feedback data for more stable readings.
Maintenance Management