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Product Details:
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| Weight (approx.): | ~240 Kg | Compatible Fluids: | Mineral Oils (HL/HLP), HFC (Water Glycol With Derating) |
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| Seal Material: | NBR (Standard, Code P Implied) | Through Drive: | N00: No Through-drive Capability |
| Port Configuration: | PPB13: SAE Flanged Ports, Metric Screws, 13 Series Port Plate | ||
| Highlight: | Rexroth high displacement piston pump,A4VSO500EO1 piston pump with warranty,Germany imported Rexroth piston pump |
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Parameter Category |
Parameter |
Specification / Description |
|---|---|---|
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General Information |
Manufacturer / Model |
Rexroth (Germany), A4VSO Series |
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Complete Model |
A4VSO500EO1/30L-PPB13N00 |
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Pump Type |
Swashplate Axial Piston Pump, Open Circuit |
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Hydraulic Performance |
Nominal Displacement |
500 cm³/rev |
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Nominal Pressure (Continuous) |
350 bar |
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Peak Pressure (Intermittent) |
400 bar |
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Recommended Speed |
750 – 1200 rpm (Max ~1500 rpm subject to inlet conditions) |
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Theoretical Flow @ 1200 rpm |
~600 L/min |
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Control Type |
EO1 — Electro-Hydraulic Control (Pilot Pressure Dependent) |
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Mechanical Interface |
Shaft Type |
Parallel Key Shaft (DIN 6885) |
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Rotation Direction |
Counter-Clockwise (L) — viewed from shaft end |
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Mounting Flange |
ISO 3019-2 (4-bolt, metric) |
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Port Configuration |
PPB13: SAE flanged ports, metric screws, 13 series port plate |
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Through Drive |
N00: No through-drive capability |
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Sealing & Media |
Seal Material |
NBR (Standard, code P implied) |
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Compatible Fluids |
Mineral oils (HL/HLP), HFC (Water Glycol with derating) |
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Weight (approx.) |
~240 kg |
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| A4VSO250LR3N/30R-PPB25K35E |
| A4VSO250LR3N/30R-PPB25N00E |
| A4VSO250LR3N/30R-PPB25N00E |
| A4VSO250LR3N/30R-PZB25N00E |
| A4VSO250LR3S/30R-PPB25K35E |
| A4VSO250LR3S/30R-PPB25N00E |
| A4VSO250LR3S/30R-PZB25K33E |
| A4VSO250MA/30R-PPB13N00 |
| A4VSO250OV/30R-PKD63N00-SO55 |
| A4VSO355DFE1/30R-VPB25K99E |
| A4VSO355DFE1/30R-VPB25U99E |
| A4VSO355DFR/22L-PSD63N00-SO481 |
| A4VSO355DFR/30L-PRD63N00 |
| A4VSO355DFR/30R-VKD63N00E |
| A4VSO355DFR/30R-VKD63N00E |
| A4VSO355DR/30R-FKD75U99 |
| A4VSO355DR/30R-PKD63N00 |
| A4VSO355DR/30R-PKD63N00E |
| A4VSO355DR/30R-PKD63N00E |
| A4VSO355DR/30R-PKD63N00ESO103 |
| A4VSO355DR/30R-PPB13N00E |
| A4VSO355DR/30R-VKD63N00 |
| A4VSO355DR/30R-VKD63N00E |
| A4VSO355DR/30R-VKD75U99E |
| A4VSO355DRG/30R-PKD63K02 |
| A4VSO355DRG/30R-PKD63N00E |
| A4VSO355DRG/30R-PPB13N00 |
| A4VSO355DRG/30R-VPB13N00 |
| A4VSO355DRG/30R-VPB13N00E |
| A4VSO355DRG/30R-VPB13N00E |
| A4VSO355DS1/30W-PKD63T020NE |
| A4VSO355DS1/30W-PRD63T031N |
| A4VSO355EO2/30R-PKD63K16 |
| A4VSO355EO2/30R-PKD63K52 |
| A4VSO355EO2/30R-PKD63K52-SO30 |
| A4VSO355EO2/30R-PKD75K02E |
| A4VSO355EO2/30R-VKD75K68E |
| A4VSO355HD1GBP/30R-PKD63N00 |
| A4VSO355HD1U/30R-PKD63N00 |
| A4VSO355HD1U/30R-PKD63N00E |
| A4VSO355HS/30R-PKD63N00E |
| A4VSO355HSE/30R+A4VSO71HSE/10RE |
| A4VSO355HSE/30R-PKD63N00E |
| A4VSO355HSE/30R-PPB13N00ESO2 |
| A4VSO355HSE/30R-VPB25U33E |
| A4VSO355LR2DF/30R-PKD63N00 |
| A4VSO355LR2DF/30R-PRD63N00E |
| A4VSO355LR2DF/30R-PRD63N00E |
| A4VSO355LR2DNT/30R-PKD63N00E |
| A4VSO355LR2DNT/30R-PKD63N00E |
| A4VSO355LR2G/30L-VRD75U18E |
| A4VSO355LR2G/30L-VRD75U99E |
| A4VSO355LR2G/30R-PKD63N00 |
| A4VSO355LR2G/30R-PKD63N00E |
| A4VSO355LR2G/30R-PPB13N00E |
| A4VSO355LR2G/30R-PPB13N00E |
| A4VSO355LR2G/30R-PPB13N00E |
| A4VSO355LR2G/30R-PRD63K99E |
| A4VSO355LR2N/30R-PKD63K15 |
| A4VSO355LR2N/30R-PPB13K04E |
| A4VSO40DFR/10L-PKD63K05 |
| A4VSO40DFR/10R-PKD63K03 |
| A4VSO40DFR/10R-PKD63K15 |
Q1: What does "EO1" control mean on an A4VSO500 pump?
A: EO1 is an electro-hydraulic (pilot-pressure dependent) control. Unlike LR/DFR which have internal springs setting the LS differential, EO1 requires an external pilot pressure (X port) to command the swashplate angle. Typically used with a remote proportional valve or electronic controller to set pump displacement/pressure demand. No external pilot = pump goes to minimum displacement (or zero depending on spring bias — usually near-zero for EO).
Q2: The rotation code is "L" (30L) — what does that mean practically?
A: "L" = Counter-Clockwise when viewed from the drive shaft end. This is the opposite of the more common "R" (Clockwise). The pump must be driven in this direction — running it in reverse will cause immediate failure due to loss of lubrication and improper suction. Always verify your prime mover / coupling rotates counter-clockwise from the shaft side.
Q3: What are the suction (inlet) requirements for this 500 cc pump?
A: With 500 cm³/rev displacement, inlet conditions are critical:
At 1200 rpm, inlet absolute pressure should be ≥ 1.0–1.2 bar (boost pump strongly recommended for sustained high-speed operation).
For speeds >1200 rpm, a dedicated charge pump / supercharge circuit is essential to prevent cavitation.
Use generously sized inlet piping (≥ DN80/100), minimize elbows/restrictions, and fit a 149 µm (100 mesh) suction strainer.
Q4: Can I mount an auxiliary pump (gear pump) on the rear?
A: No. The suffix N00 indicates no through-drive shaft. The rear of the pump housing is blanked. If you need a through-drive for a charge / pilot gear pump, select a version with a through-drive code such as K01, K02, etc.
Q5: How should the case drain (L port) be handled?
A: Connect one case drain port directly to the tank with a dedicated line — zero backpressure (max 0.5 bar). The second drain port must be plugged. Route the drain line to above the tank oil level or provide a loop to prevent air ingestion. A blocked or pressurized drain = shaft seal failure.
Q6: What drive motor power is required?
A: At 1200 rpm, 350 bar, and 500 cc:
Theoretical hydraulic power ≈ (500 × 10⁻⁶ × 350 × 1200) / 600 ≈ 350 kW
Including mechanical losses (~90%), input power ≈ 390 kW
Recommend a 400 kW (≈535 HP) prime mover with adequate starting torque reserve for 400 bar peak conditions.
Q7: Is the standard NBR seal okay for water glycol (HFC) or phosphate ester (HFD)?
A: Standard NBR is compatible with HFC (water glycol) with pressure/temp derating. It is NOT compatible with HFD (phosphate ester) — for HFD you need FKM (Viton) seals, typically a custom order with /V suffix. Confirm with Rexroth if your fluid is not mineral oil (HL/HLP).
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