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...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features –– Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
...Variable Pump Series 31 Sizes 18 to 140 Nominal pressure 280 bar Maximum pressure 350 bar Open circuit Features ––Variable pump in axial piston swashplate design for hydrostatic drives in an open circuit ––T...
... psi) ▶ Open circuit Features ▶ Variable pump with axial piston rotary group in swashplate design for hydrostatic drives in open circuit. ▶ Flow is proportional to drive speed and displacement. ▶ The flow ca...
... psi) ▶ Open circuit Features ▶ Variable pump with axial piston rotary group in swashplate design for hydrostatic drives in open circuit. ▶ Flow is proportional to drive speed and displacement. ▶ The flow ca...
... drives in an open circuit ▶ For use in mobile and stationary appliions ▶ Flow is proportional to the drive speed and displacement. ▶ High power density ▶ High total efficiency ▶ Optimized dimensions for spe...
A7VO A7VO55 A7VO80 A7VO107 A7VO160 series hydraulic piston pump A7VO55DRS/63L-NZB01 Hydraulic Excavator pump Robust high pressure pump for universal use Size 28 500 Nominal pressure 350 bar Maximum pressure 4...
...Variable Pump Features Through drive for mounting of further pumps up to same nominal size Optional with charge pump for the nominal sizes 130…260 Particularly high speeds are possible with impeller pump ver...
...pumps up to same nominal size Particularly high speeds are possible with impeller pump version (A11VLO) Large variety of controls Swashplate design Rexroth Axial piston variable pump A11V(L)O series 1x All-p...
... DRS (Pressure & Flow Control / Load Sensing) Pressure Rating 280 bar (Continuous) 350 bar (Peak, intermittent) Speed Range 1000 – 1800 rpm (Recommended) Max. speed typically 2200–2400 rpm (limited b...
...Variable displacement axial piston pump (swashplate design, open circuit) Nominal Displacement 71 cm³/rev Control Type DRS (Pressure Cut-off + Load Sensing / Flow Control) Pressure Rating 280 bar (Con...
...Variable displacement axial piston pump (swashplate design, open circuit) Nominal Displacement 100 cm³/rev Control Type DFR (Pressure Cut-off + Flow Control / Load Sensing) Pressure Rating 280 bar (Co...
...flow is proportional to the drive speed and the displacement. The flow can be steplessly varied by adjustment of the swash plate angle The through drive is suitable for adding gear pumps and axial piston pum...
...flow is proportional to the drive speed and the displacement. The flow can be steplessly varied by adjustment of the swash plate angle The through drive is suitable for adding gear pumps and axial piston pum...
... in closed circuits; 2. Making the swash plate swing past the neutral position can smoothly change the direction of the liquid flow; 3. The driving speed is proportional to the displacement, and the flow can...
...mechanism operates, it applies mechanical force to change the volume inside the pump body. This volume change causes the liquid to be drawn in through the inlet of the pump and pushed out through the outlet ...