PV092 Parker Axial Piston Variable High Pressure Hydraulic Open Circuit Pump for Systems
Basic Info.
After-sales Service
Free Warranty
Structure
Axial Plunger Pump
Cylinder Number
Single Cylinder
Drive Mode
Mechanically Driven Pump
Pump Shaft Position
Horizontal
Straight Shaft Swashplate Piston Type
Pressureoil
Radial Plunger Pump Type
Valve with Flow
Transport Package
Wooden Box
Product Description
Product
Technical data
With through drive for single and multiple pumps.
Swash plate type for open circuit.
Technical Features
--Low noise level.
--Fast response.
--Service-friendly.
--High self-priming speed.
--Compact design.
--Through drive for 100% nominal torque.
| | PV016 | PV020 | PV023 | PV028 | PV032 | PV040 | PV046 |
Frame size | | 1 | 1 | 1 | 1 | 2 | 2 | 2 |
Max. Displacement | [cm3/rev.] | 16 | 20 | 23 | 28 | 32 | 40 | 46 |
Output flow at 1500 rpm | [l/min] | 24 | 30 | 34,5 | 42 | 48 | 60 | 69 |
Nominal pressure pN | [bar] | 350 | 350 | 350 | 350 | 350 | 350 | 350 |
Min. outlet pressure | [bar] | 15 | 15 | 15 | 15 | 15 | 15 | 15 |
Max. pressure pmax at 20% working cycle1) | [bar] | 420 | 420 | 420 | 420 | 420 | 420 | 420 |
Case drain pressure, continuous | [bar] | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 |
Case drain pressure, max. peak | [bar] | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 |
Min. Inlet pressure, abs. | [bar] | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 |
Max. Inlet pressure | [bar] | 16 | 16 | 16 | 16 | 16 | 16 | 16 |
Input power at 1500 rpm and 350 bar | [kW] | 15.5 | 19.5 | 22.5 | 27.5 | 31 | 39 | 45 |
Max speed at 1 bar, abs, inlet pressure | [rpm] | 3000 | 3000 | 3000 | 3000 | 2800 | 2800 | 2800 |
Min. speed | [rpm] | 50 | 50 | 50 | 50 | 50 | 50 | 50 |
Moment of inertia | [kgm2] | 0.0017 | 0.0017 | 0.0017 | 0.0017 | 0.0043 | 0.0043 | 0.0043 |
Weight | [kg] | 19 | 19 | 19 | 19 | 30 | 30 | 30 |
| | PV063 | PV080 | PV092 | PV140 | PV180 | PV270 | PV360 |
Frame size | | 3 | 3 | 3 | 4 | 4 | 5 | 6 |
Max. Displacement | [cm3/rev.] | 63 | 80 | 92 | 140 | 180 | 270 | 360 |
Output flow at 1500 rpm | [l/min] | 94.5 | 120 | 138 | 210 | 270 | 405 | 540 |
Nominal pressure pN | [bar] | 350 | 350 | 350 | 350 | 350 | 350 | 350 |
Min. outlet pressure | [bar] | 15 | 15 | 15 | 15 | 15 | 15 | 15 |
Max. pressure pmax at 20% working cycle | [bar] | 420 | 420 | 420 | 420 | 420 | 420 | 420 |
Case drain pressure, continuous | [bar] | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 | 0.5 |
Case drain pressure, max. peak | [bar] | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 | 2.0 |
Min. Inlet pressure, abs. | [bar] | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 | 0.8 |
Max. Inlet pressure | [bar] | 16 | 16 | 16 | 16 | 16 | 16 | 16 |
Input power at 1500 rpm and 350 bar | [kW] | 61.5 | 78 | 89.5 | 136 | 175 | 263 | 350 |
Max speed at 1 bar, abs, inlet pressure | [rpm] | 2800 | 2500 | 2300 | 2400 | 2200 | 1800 | 1750 |
Min. speed | [rpm] | 50 | 50 | 50 | 50 | 50 | 50 | 50 |
Moment of inertia | [kgm] | 0.018 | 0.018 | 0.018 | 0.030 | 0.030 | 0.098 | 0.103 |
Weight | [kg] | 59 | 59 | 59 | 90 | 90 | 172 | 180 |


Factory
Type
PV092 Product model summary PV092L1D1T1NMT1 PV092R1E1CDNMFZ PV092R1K1T1NKC1 PV092R1K4T1NMLW PV092L1L1T1NUDR PV092R1K1AYNMTK PV092R1K1T1NUDK PV092R1L1T1NGLC PV092L1D1T1NUDR PV092R1E1T1NKLW PV092R1K1T1NKCB PV092R1K4T1NMM1 PV092L1L1T1NUDR PV092R1K1AYNMTK PV092R1K1T1NUDK PV092R1L1T1NHC1 PV092L1D3CDNSCC PV092R1E1T1NKLW PV092R1K1T1NKCC PV092R1K4T1NMMC PV092L1L1T1NWCC PV092R1K1AYNUDM PV092R1K1T1NUDM PV092R1L1T1NHCCK0133 PV092L1D3CDNSCC PV092R1E1T1NMFC PV092R1K1T1NKLW PV092R1K4T1NMMK PV092R1D1LKNUDK PV092R1K1AYNUDM PV092R1K1T1NUDM PV092R1L1T1NHLC PV092L1D3CDNSCC PV092R1E1T1NMFC PV092R1K1T1NKLW PV092R1K4T1NMMK PV092R1D1T1NGLC PV092R1K1BBNFDV PV092R1K1T1NUDM PV092R1L1T1NMF1 PV092L1D3T1NMFC PV092R1E1T1NMMC PV092R1K1T1NKLZ PV092R1K4T1NMMZ PV092R1D1T1NKL1 PV092R1K1BBNMFZ PV092R1K1T1NUL1 PV092R1L1T1NMF1 PV092L1E1T1NMF1 PV092R1E1T1NMMK PV092R1K1T1NKLZ PV092R1K4T1NMMZ PV092R1D1T1NMFC PV092R1K1BBNMFZ PV092R1K1T1NUL1 PV092R1L1T1NMFB PV092L1E1T1NMFC PV092R1E1T1NMMK PV092R1K1T1NMCB PV092R1K4T1NMR1 PV092R1D1T1NMMC PV092R1K1BBNMFZ PV092R1K1T1NULB PV092R1L1T1NMFB PV092L1E1T1NMMK PV092R1E1T1NMRC PV092R1K1T1NMCB PV092R1K4T1NMRW PV092R1D1T1NUCC PV092R1K1BBNMMC PV092R1K1T1NULB PV092R1L1T1NMMC PV092L1E1T1NMRC PV092R1E1T1NMTP PV092R1K1T1NMCB PV092R1K4T1NMRW PV092R1D1T1NULC PV092R1K1BBNMMC PV092R1K1T1NULB PV092R1L1T1NMMW PV092L1E1T1NUCC PV092R1E1T1NUCC PV092R1K1T1NMCC PV092R1K4T1NMRZ PV092R1D1T1VMRC PV092R1K1BBNSLK PV092R1K1T1NULC PV092R1L1T1NMMZ PV092L1E1T1NUDK PV092R1E1T1NUCC PV092R1K1T1NMCC PV092R1K4T1NMT1 PV092R1D1T1VMRC PV092R1K1BBNSLK PV092R1K1T1NULZ PV092R1L1T1NMMZ PV092L1E1T1NUDK PV092R1E1T1NUCC PV092R1K1T1NMF1 PV092R1K4T1NMT1 PV092R1D1T1VMRC PV092R1K1BBNUCC PV092R1K1T1NWC1 PV092R1L1T1NMR1 PV092L1E1T1VMMC PV092R1E1T1NUDK PV092R1K1T1NMFC PV092R1K4T1NSC1 PV092R1D1T1VMRC PV092R1K1JHNMCK PV092R1K1T1NWC1 PV092R1L1T1NMRC PV092L1E3AYNMMC PV092R1E1T1NUDK PV092R1K1T1NMFC PV092R1K4T1NSL1 PV092R1D1T1VMRZ PV092R1K1JHNMFC PV092R1K1T1NWCB PV092R1L1T1NMRC PV092L1E3LYNMMC PV092R1E1T1VUCC PV092R1K1T1NMFZ PV092R1K4T1NSLK PV092R1D3BBNWL1 PV092R1K1JHNMMC PV092R1K1T1NWCC PV092R1L1T1NMRZ PV092L1E3T1NMFC PV092R1E1T1VUCC PV092R1K1T1NML1 PV092R1K4T1NTCC PV092R1D3BBNWL1 PV092R1K1JHNMMC PV092R1K1T1NWL1 PV092R1L1T1NMTP PV092L1E3T1NMFZ PV092R1E1T1VUDR PV092R1K1T1NMLB PV092R1K4T1NUC1 PV092R1D3BCNMR1 PV092R1K1JHNMMW PV092R1K1T1NWL1 PV092R1L1T1NTLC PV092L1E3T1NMMC PV092R1E1T1VUDR PV092R1K1T1NMLB PV092R1K4T1NUCC PV092R1D3CDNMFC PV092R1K1JHVMTK PV092R1K1T1NWLB PV092R1L1T1NTLC PV092L1E3T1VMTP PV092R1E1T1WMR1 PV092R1K1T1NMM1 PV092R1K4T1NUDM PV092R1D3CDNMMC PV092R1K1KJNMFC PV092R1K1T1NWLW PV092R1L1T1NUDR PV092L1E3T1VMTP PV092R1E1T1WMR1 PV092R1K1T1NMMZ PV092R1K4T1NUL1 PV092R1D3CDNMR1 PV092R1K1KJNMMC PV092R1K1T1VKL1 PV092R1L1T1NUDR PV092L1K1BBNMMC PV092R1E3BCNMMW PV092R1K1T1NMRK PV092R1K4T1NWC1 PV092R1D3CDNMRC PV092R1K1KJNMMC PV092R1K1T1VMF1 PV092R1L1T1NUDS PV092L1K1BBNMMC PV092R1E3BCNSLC PV092R1K1T1NMRK PV092R1K4T1NWC1 PV092R1D3CENWCC PV092R1K1KJNMMC PV092R1K1T1VMMC PV092R1L1T1NULC PV092L1K1LKNMFC PV092R1E3CDNFDV PV092R1K1T1NMRW PV092R1K4T1VMMC PV092R1D3CENWCC PV092R1K1KJNMMW PV092R1K1T1VMMW PV092R1L1T1NWCC PV092L1K1LKNMTP PV092R1E3CDNFDV PV092R1K1T1NMRW PV092R1K4T1WMF1 PV092R1D3DDNMLZ PV092R1K1KJNMMW PV092R1K1T1VMMW PV092R1L1T1NWL1 PV092L1K1T1NKLC PV092R1E3CDNFDV PV092R1K1T1NMRZ PV092R1K4T1WMFB PV092R1D3T1N001 PV092R1K1KJNMMZ PV092R1K1T1VMMW PV092R1L1T1NWL1 PV092L1K1T1NKLC PV092R1E3CDNMFC PV092R1K1T1NMSC PV092R1K4T1WMFB PV092R1D3T1NHLC PV092R1K1KJNSCW PV092R1K1T1VMMZ PV092R1L1T1VMF1 PV092L1K1T1NMFC PV092R1E3CDNMFC PV092R1K1T1NMT1 PV092R1K4T1WMFB PV092R1D3T1NHLC PV092R1K1LKNMFC PV092R1K1T1VMMZ PV092R1L1T1VMF1 PV092L1K1T1NMFC PV092R1E3DFNSLC PV092R1K1T1NMTK PV092R1K4T1WMFB PV092R1D3T1NHLC PV092R1K1LKNMFC PV092R1K1T1VMTK PV092R1L1T1VMTK PV092L1K1T1NMFW PV092R1E3DFNSLC PV092R1K1T1NSC1 PV092R1K4T1WMFC PV092R1D3T1NKLC PV092R1K1LKNMMC PV092R1K1T1VMTK PV092R1L1T1VMTK PV092L1K1T1NMLC PV092R1E3T1VMRC PV092R1K1T1NSC1 PV092R1K4T1WMFK PV092R1D3T1NMFC PV092R1K1LKNMRC PV092R1K1T1VSL1 PV092R1L1T1VMTK PV092L1K1T1NMM1 PV092R1E3T1VMTP PV092R1K1T1NSCW PV092R1K4T1WMM1 PV092R1D3T1NMFC PV092R1K1LKNMTZ PV092R1K1T1VSLC PV092R1L4T1NFDV PV092L1K1T1NMMC PV092R1E8AYNWCC PV092R1K1T1NSL1 PV092R1K4T1WMM1 PV092R1D3T1NML1 PV092R1K1LKNUDR PV092R1K1T1WGLB PV092R1L4T1NFDV PV092L1K1T1NMRC PV092R1E8AYNWCC PV092R1K1T1NSLC PV092R1K4T1WMM1 PV092R1D3T1NML1 PV092R1K1T1N00045 PV092R1K1T1WMLW PV092R1L4T1NKCC PV092L1K1T1NMRC PV092R1E8AYNWLC PV092R1K1T1NSLK PV092R1K4T1WMMW PV092R1D3T1NMM1 PV092R1K1T1N001 PV092R1K1T1WMM1 PV092R1L4T1NKCC PV092L1K1T1NMRC PV092R1E8DFNWCC PV092R1K1T1NSLK PV092R1K4T1WMR1 PV092R1D3T1NMMC PV092R1K1T1N100 PV092R1K1T1WMMK PV092R1L4T1NKCC PV092L1K1T1NMRK PV092R1E8DFNWLC PV092R1K1T1NSLK PV092R1K8T1N100 PV092R1D3T1NMMW PV092R1K1T1NFDV PV092R1K4BBNML1 PV092R1L4T1NMFB PV092L1K1T1NTLC PV092R1E8T1NMMC PV092R1K1T1NSLZ PV092R1K8T1N100 PV092R1D3T1NMMW PV092R1K1T1NGL1 PV092R1K4JHNMFW PV092R1L4T1NMFC PV092L1K1T1VMMC PV092R1K1AYNHLK PV092R1K1T1NTCK PV092R1K8T1NMMC PV092R1D3T1NMMZ PV092R1K1T1NGLC PV092R1K4JHNMFW PV092R1L4T1NMFC PV092L1K4KJNUDR PV092R1K1AYNHLK PV092R1K1T1NTLC PV092R1K8T1NSLC PV092R1D3T1NMR1 PV092R1K1T1NGLC PV092R1K4KJWMR1 PV092R1L4T1NUC1 PV092L1K4LKNUDR PV092R1K1AYNMC1 PV092R1K1T1NTLC PV092R1K8T1NSLC PV092R1D3T1NMR1 PV092R1K1T1NGLW PV092R1K4T1NGL1 PV092R1L4T1NUC1 PV092L1K4LKNUDR PV092R1K1AYNMC1 PV092R1K1T1NTLZ PV092R1K8T1NSLC PV092R1D3T1NMRC PV092R1K1T1NGLW PV092R1K4T1NKLC PV092R1L4T1NUC1 PV092L1L1T1NMF1 PV092R1K1AYNMFC PV092R1K1T1NUC1 PV092R1K8T1NUDR PV092R1D3T1NSLC PV092R1K1T1NHC1 PV092R1K4T1NMF1 PV092R1L4T1NUDM PV092L1L1T1NMM1 PV092R1K1AYNMFZ PV092R1K1T1NUC1 PV092R1K8T1VMMC PV092R1D3T1PMMC PV092R1K1T1NHCB PV092R1K4T1NMF1 PV092R1L4T1NUDM PV092L1L1T1NMM1 PV092R1K1AYNMLC PV092R1K1T1NUCC PV092R1K8T1VMRC PV092R1D3T1PMMC PV092R1K1T1NHCC PV092R1K4T1NMFB PV092R1L4T1NUDM PV092L1L1T1NMMW PV092R1K1AYNMMC PV092R1K1T1NUCZ PV092R1L1CDNMRC PV092R1D3T1PMMC PV092R1K1T1NHL1 PV092R1K4T1NMFC PV092R1L4T1NWLW PV092L1L1T1NMTP PV092R1K1AYNMMC PV092R1K1T1NUCZ PV092R1L1KJNUDR PV092R1D3T1VMMC PV092R1K1T1NHL1 PV092R1K4T1NMFK PV092R1L8LKNULC PV092L1L1T1NMTP PV092R1K1AYNMRC PV092R1K1T1NUDF PV092R1L1T1N001 PV092R1D3T1VMMC PV092R1K1T1NHLC PV092R1K4T1NMFW PV092R1L8T1NMMC PV092L1L1T1NUDR PV092R1K1AYNMTK PV092R1K1T1NUDK PV092R1L1T1NGLC PV092R1D3T1VMMC PV092R1K1T1NHLC PV092R1K4T1NMFW PV092R1L8T1NMMC PV092R2L4T1NMMZ PV092R2L1T1N001 PV092R2K4T1NMRC PV092R1E1CDNMFZ PV092R1K1T1NHLK PV092R1K4T1NMFZ PV092R1L8T1NULC PV092R1E1CDNMFZ PV092R1K1T1NHLW PV092R1K4T1NMLW PV092R2K4LKNMMZ