Hydraulic Pump A4CSG Series A4CSG500EPG/30R-VZH35F684M Variable Displacement Piston Pump A4CSG250 A4CSG355 A4CSG500 A4CSG750

Hydraulic Pump A4CSG Series A4CSG500EPG/30R-VZH35F684M Variable Displacement Piston Pump A4CSG250 A4…

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Hydraulic Pump A4CSG Series A4CSG500EPG/30R-VZH35F684M Variable Displacement Piston Pump A4CSG250 A4CSG355 A4CSG500 A4CSG750

Unlike a fixed-displacement pump, the A4CSG can vary its output flow while running at constant speed, simply by changing the swivel angle of its swashplate. That’s the core of what makes it valuable: one pump, infinitely variable flow, without touching engine or motor RPM.

Key Design Features

Swashplate, variable-displacement design rated for closed-circuit hydrostatic drives

Nominal pressure of 350 bar (5,100 psi), with a peak pressure rating of 400 bar (5,800 psi)

Integrated boost pump and valving — the charge pump, high-pressure relief valves, and flushing valve all live inside the housing, so you’re not bolting on a separate charge circuit

Reversible flow direction, which lets the same unit drive a motor forward and reverse without external switching valves

Compact envelope relative to its output, with a short installation length that matters a lot in mobile equipment where space is at a premium

Through-drive capability, so a second pump (another A4CSG, an A4VSO, a gear pump, or similar) can be tandem-mounted off the back of the primary unit

How the A4CSG Works

Swashplate Displacement Control

Inside the A4CSG, a cylinder barrel carrying multiple pistons rotates against a swashplate set at a variable angle. As the barrel turns, each piston is forced in and out of its bore, drawing in fluid on one stroke and discharging it under pressure on the next. Tilt the swashplate further, and each piston travels a longer stroke — more displacement per revolution, more flow out. Bring the swashplate back toward zero angle, and displacement — and flow — drops toward nothing, even with the shaft still spinning at full speed.

This is the fundamental advantage over a fixed pump: you get flow control without governing engine speed, and because the pump is reversible, the swashplate can swing past center to reverse the direction of flow entirely — which is what lets a single A4CSG drive a hydraulic motor forward, neutral, and reverse.

Closed-Circuit Operation and the Integrated Boost Pump

In a closed-circuit hydrostatic transmission, fluid doesn’t return to a reservoir after every pass — it flows from pump to motor and back to the pump in a continuous loop. The catch is that closed loops lose a small volume of fluid to internal leakage and case drain, so the loop needs constant “topping off” to stay full and to replace the oil that’s carrying heat away.

That’s the job of the integrated boost (charge) pump built into the A4CSG housing. It draws fluid from a reservoir, keeps the low-pressure side of the loop charged (typically in the 20–30 bar range depending on configuration), and works with the flushing valve to continuously exchange a portion of loop oil for cooler, filtered fluid. Because this is all built into the pump body rather than bolted on separately, the A4CSG stays compact, and the plumbing stays simple.

Control and Adjustment Options

The A4CSG is offered with several different control devices depending on how the application needs the swashplate angle to be commanded:

Hydraulic control (HD/HM) — pilot-pressure or control-volume dependent adjustment

Hydraulic control with servo/proportional valve (HS) — for more precise, remotely piloted control

Electro-hydraulic control (EP) — proportional solenoid-driven, ideal where a controller (like a machine ECU) needs to command displacement electronically

Electro-hydraulic pump control with hitch control valve — used in more integrated mobile applications

Fluid, Filtration, and Maintenance Requirements

Getting long service life out of an A4CSG comes down to fluid cleanliness and correct fluid selection — this is true of essentially all axial piston equipment, but it matters especially here given the pressures and tight internal clearances involved.

Hydraulic Fluid Selection

The A4CSG is designed to run on HLP mineral oil per DIN 51524, though Rexroth also publishes guidance (data sheets 90220, 90221, 90222) for environmentally acceptable fluids and fire-resistant HFDR/HFDU fluids where required. Fluid should be selected so the operating viscosity stays within Rexroth’s optimum viscosity range (νopt) across the expected temperature envelope — running too thin or too thick both accelerate wear and reduce efficiency.

Filtration and Cleanliness

Rexroth specifies a minimum cleanliness level of ISO 4406 20/18/15 for the A4CSG, and recommends filter cartridges rated at β20 ≥ 100 for the boost circuit. In practice, this means:

Install filtration in the charge/boost line, either via a threaded filter port or a mounted in-line filter

Check and change filters on a defined interval, not just “when the light comes on”

R902566492A4CSG125EPG/30R+A4CSG40EPG/11R
R902461289A4CSG125EPG/30R+A4CSG40EPG/11R
R902462531A4CSG125EPG/30R+A4FO71/10R
R902446201A4CSG125EPG/30R-S1489+SATZ AZ-PG-1X-038R
R902566746A4CSG125HD1GT/30R+A10VSO28DR/31R+AZPN
R902517785A4CSG180EPD/30R+A10VO45DR/31R+A10VO28DRG
R902406365A4CSG180EPG/30R+SATZ AZ-PG-1X-045RE
R902478373AA4CSG250EPD/30R-VZB35F994N
R902539898A4CSG250EO2/30R+A4VSO180DRG/30R
R902535773A4CSG250EPB/30R+A10VSO28DR/31R
R902497211A4CSG250EPB/30R+A10VSO28DR/31R
R902546234A4CSG250EPD/30R+A10VSO100DRG+A10VSO45DRG
R902463442A4CSG250EPD/30R+A10VSO71DRG/31R
R902487659A4CSG250EPD/30R+A4CSG250EPD/30R
R902515138A4CSG250EPD/30R+A4CSG250EPD/30R+A4VSG&
R902514929A4CSG250EPD/30R+A4CSG250EPD+A11VLO130DRG
R902536110A4CSG250EPD/30R+A4CSG250EPD+A11VLO145DRG
R902515009A4CSG250EPD/30R+A4FM250/30W
R902517714A4CSG250EPG/30L+A10VO71DR/31L
R902491954A4CSG250EPG/30R+A4CSG125EPG/30R
R902515014A4CSG250EPG/30R+A4CSG250EPG/30R
R902460577A4CSG250EPG/30R+A4CSG71EPG/11R
R902453172A4CSG250EPG/30R+SATZAZ-PFF-1X-016/005R
R902535779A4CSG250EPGB/30R+A10VSO28DR/31R
R902553115A4CSG250HD1/30R+A4CSG250HD1/30R
R902473295A4CSG250HD2G/30R+A4CSG250HD2G/30R
R902512602A4CSG250HD3U/30R+A4CSG250HD3U/30R
R902535782A4CSG250HS4KP/30R+A10VSO28DR/31R
R902497219A4CSG250HS4KP/30R+A10VSO28DR/31R
R902543177A4CSG250HS4KP/30R+A4VBO71HS4+A10VSO28DR
R902561571A4CSG250HS5P/30R+A4CSG250HS5P/30R
R902513753A4CSG355EPD/30L+A4CSG355EPD/30L
R902514705A4CSG355EPD/30R+A10VSO100DRG/31R
R902476460A4CSG355EPD/30R+A10VSO28DR/31R
R902555600A4CSG355EPD/30R+A4VSO180LR2G/30R
R902496970A4CSG355EPG/30L+A4CSG355EPG/30L
R902478966A4CSG355EPG/30L+A4CSG355EPG/30L
R902533695A4CSG355EPG/30R+A10VSO28DFR1/31R
R902446574A4CSG355EPG/30R+VERB.ELEM.+AZ-PG-045-R
R902494516A4CSG355HD1/30R+A4CSG355HD1/30R
R902539442A4CSG355HD1GT/30R+A4VSO250DFR/30R
R902531165A4CSG355HD1T/30R+A4CSG250HD1T/30R
R902531351A4CSG355HD1T/30R+A4CSG250HD1T/30R
R902481084A4CSG355HD3GA/30L+A10VSO10DR/52L
R902561240A4CSG355HS5KP/30R+A4VSG180HD1GA/30R
R902556851A4CSG355HS5P/30R+A10VSO100ER72/32R
R902514770AA4CSG355EPD/30R+AA4CSG355EPD/30R
R902561240A4CSG355HS5KP/30R+A4VSG180HD1GA/30R
R902512001A4CSG500EPD/30R+HA4VSO500DRG/30R
R902534492A4CSG500HS4P/30R+HA4VSO500EO2/30R
R902478587A4VSG500HS4+HA4VSO500+A4VSO250+A4VSG250
R902453267A4CSG500HD1GA/30L-VZH35F994M-SO526
R902554350A4CSG500EPD/30R+A4CSG355EPD/30RC
R902560412A4CSG500EPD/30R+A4CSG500EPD/30R
R902547054A4CSG500EPD/30R+HA4VSO355LR3S/30R+PVQ54
R902512001A4CSG500EPD/30R+HA4VSO500DRG/30R
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R902451638A4CSG500EPG/30R+SATZAZ-PG-1X-038R
R902493618A4CSG500HD1GA/30R+A4CSG250HD1GA/30R
R902541206A4CSG500HD1P/30R+A10VSO140DR/31R
R902542407A4CSG500HD2GT/30R+A15VSO280LRDRS0A0V
R902493736A4CSG500HS4/30R+HA4VSO355HS4/30R
R902472852A4CSG500HS4E+A4SG500HS4E+A10VO100DFR1-S
R902511048A4CSG500HS4K/30R+HA4VSO355HS4/30R
R902534492A4CSG500HS4P/30R+HA4VSO500EO2/30R
R902540611A4CSG500OV/30L+A4CSG500OV/30L
R902487936A4CSG500OV/30L+A4CSG500OV/30L

 

 

 

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