OMR Technical Information Versions

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1 Versions Versions Mounting flange Spigot diam,eter (front /rear end) Bolt circle diameter (BC) Shaft Port size European version US version Side port version End port version Flange port version Standard shaft seal High pressure shaft seal Drain connection Check valve Main type designation G ½ No No OMR Cyl. 2 mm G ½ Yes Yes OMR 2 hole oval flange (A2-flange) 82. mm [3.2 in] mm [4.20 in] Cyl. 1 inch Splined 1 inch G ½ Yes Yes OMR G ½ No No OMR G ½ Yes Yes OMR 7 /8-14 UNF Yes Yes OMR G ½ No No OMR G ½ Yes Yes OMR 7 /8-14 UNF Yes Yes OMR 4 hole oval flange (A4-flange) Square flange (C-flange) 82. mm [3.2 in] 44.4 mm [1. in] mm [4.20 in] 82. mm [3.2 in] OMR motors with corrosion resistant parts 2 hole oval flange (A2-flange) 82. mm [3.2 in] OMR motors with needle bearings 2 hole oval flange (A2-flange) Wheel 82. mm [3.2 in] 82. mm [3.2 in] OMR motors with integrated brake 2 hole oval flange (A2-flange) 82. mm [3.2 in] mm [4.20 in] mm [4.20 in] mm [.81 in] mm [4.20 in] OMR motors with integrated brake and needle bearings 2 hole oval flange (A2-flange) Wheel 82. mm [3.2 in] 82. mm [3.2 in] mm [4.20 in] mm [.81 in] Cyl. 32 mm G ½ Yes Yes OMR Tap. 28. mm G ½ Yes Yes OMR Cyl. 2 mm G ½ Yes Yes OMR Cyl. 32 mm G ½ Yes Yes OMR Cyl. 1¼ in 7 /8-14 UNF Yes Yes OMR Cyl. 2 mm G ½ Yes Yes OMR Cyl. 1 in 7 /8-14 UNF Yes Yes OMR Cyl. 2 mm G ½ Yes Yes OMR C Cyl. 2 mm G ½ Yes Yes OMR N Tap. 3 mm G ½ Yes Yes OMRW N Tap. 1¼ in 7 /8-14 UNF Yes Yes OMRW N Cyl. 2 mm G ½ Yes Yes OMR F Cyl. 1 in 7 /8-14 UNF Yes Yes OMR NF Tap. 3 mm G ½ Yes Yes OMRW NF Functions diagram - see page: Features available (options) : Low leakage (low speed valve) Speed sensor Viton shaft seal Reverse rotation Painted 40 20L0262 Rev CB Apr 9

2 Code Numbers Code Numbers Displacement [cm 3 ] Code numbers Technical data - Page Dimensions - Page OMR motors with corrosion resistant parts OMR motors with needle bearings OMR motors with integrated brake OMR motors with integrated brake and needle bearings Ordering Add the four digit prefix 11- to the four digit numbers from the chart for complete code number. Example: for an OMR 1 with A4 flange, cyl. 32 mm shaft, port size G 1 /2 and side port version. Orders will not be accepted without the four digit prefix. 20L0262 Rev CB Apr 9 41

3 Technical Data Technical data for OMR with 2 mm and 1 in cylindrical shaft Type OMR OMR OMR OMR OMR OMR OMR OMR OMR Motor size Geometric displacement cm 3 [inch] 1.6 [3.16] 80.3 [4.91] 99.8 [6.11] 12.7 [7.69] 19.6 [9.77] [12.23] [1.26] 31.7 [19.32] Max. speed min Max. torque Max. output Max. pressure drop Max. oil flow Max. starting pressure with unloaded shaft Min starting torque [22.80] [rpm] int 1) N m [lbf in] kw [hp] l/min [US gal/min] 100 [890] int. 1) 130 [110] peak 2) 170 [110] 7.0 [9.4] int. 1) 8. [11.4] 140 [2030] int 1) 1 peak 2) [32] at max. press drop N m [lbf in] at max. press.drop int. 1) N m [lbf in] 40 [10.6] int. 1) 0 [13.2] 10 [14] 80 [710] 100 [890] ] 220 [19] 270 [2390] 12. [16.8] 1.0 [20.1] 1 [32] 10 [14] 10 [1330] 170 [110] 240 [2120] 280 [2480] 320 [2830] 13.0 [17.4] 1.0 [20.1] 1 [32] 10 [14] [1770] 230 [2040] 1) Intermittent operation: the permissible values may occur for max. 10% of every minute. 2) Peak load: the permissible values may occur for max. 1% of every minute. [26] 340 [3010] 370 [3280] 12. [16.8] 14. [19.4] 1 [32] 9 [130] 20 [2210] 280 [2480] [26] 390 [340] 4 [4070] 10.0 [13.4] 12. [16.8] 130 [1890] 1 [32] 7 [100] 240 [2120] 320 [2830] [26] 390 [340] [49] 8.0 [10.7] 10.0 [13.4] 110 [10] 140 [2030] [32] [] 2 [2] 330 [2920] [26] 380 [33] 0 [310] 6.0 [8.1] 8.0 [10.7] 80 [11] 110 [10] [] 240 [2120] 310 [2740] [26] 420 [3720] 610 [400].0 [6.7] 6. [ [1020] 100 [140] 10 [2180] [] 2 [2] 30 [3100] [26] 430 [3810] 0 [310] 4.0 [.4] 6.0 [8.1] [800] 8 [1230] 130 [1890] [] 240 [2120] 380 [33] 42 20L0262 Rev CB Apr 9

4 Technical Data Technical data for OMR with 1 in splined and 28. mm tapered shaft Type OMR OMR OMR OMR OMR OMR OMR OMR OMR Motor size Geometric displacement cm 3 [inch] 1.6 [3.16] 80.3 [4.91] 99.8 [6.11] 12.7 [7.69] 19.6 [9.77] [12.23] [1.26] 31.7 [19.32] Max. speed min Max. torque Max. output Max. pressure drop Max. oil flow Max. starting pressure with unloaded shaft Min starting torque [22.80] [rpm] int 1) N m [lbf in] kw [hp] l/min [US gal/min] 100 [890] int. 1) 130 [110] peak 2) 170 [110] 7.0 [9.4] int. 1) 8. [11.4] 140 [2030] int 1) 1 peak 2) [32] at max. press drop N m [lbf in] at max. press.drop int. 1) N m [lbf in] 40 [10.6] int. 1) 0 [13.2] 10 [14] 80 [710] 100 [890] ] 220 [190] 270 [2390] 12. [16.8] 1.0 [20.1] 1 [32] 10 [14] 10 [1330] 170 [110] 240 [2120] 280 [2480] 320 [2830] 13.0 [17.4] 1.0 [20.1] 1 [32] 10 [14] [1770] 230 [2040] 1) Intermittent operation: the permissible values may occur for max. 10% of every minute. 2) Peak load: the permissible values may occur for max. 1% of every minute. [26] 340 [3010] 370 [3280] 12. [16.8] 14. [19.4] 1 [32] 9 [130] 20 [2210] 280 [2480] 3 [3190] 430 [3810] 4 [4070] 12. [16.8] 14.0 [18.8] 16 [2390] [32] 7 [100] [26] 30 [3100] 3 [3190] 440 [3890] [49] 10.0 [13.4] 13.0 [17.4] 130 [1890] 1 [32] [] [26] 400 [340] 3 [3190] 470 [41] 0 [310] 7.0 [9.4] 9. [12.7] 100 [140] 140 [2030] [] 290 [270] 400 [340] 3 [3190] 470 [41] 610 [400].0 [6.7] 8.0 [10.7] 8 [1230] 11 [1670] 10 [2180] [] 31 [2790] 400 [340] 3 [3190] 4 [4070] 0 [310].0 [6.7] 7.0 [9.4] 70 [1020] 90 [1310] 130 [1890] [] [26] 380 [33] 20L0262 Rev CB Apr 9 43

5 Technical Data Technical data for OMR with 32 mm, 1 ¼ in cylindrical shaft and 3 mm, 1 ¼ in tapered shaft Type OMR OMR OMR OMR OMR OMR OMR OMR OMR Motor size Geometric displacement Max. speed Max. torque Max. output Max. pressure drop Max. oil flow Max. starting pressure with unloaded shaft Min starting torque cm 3 [inch] 1.6 [3.16] 80.3 [4.91] 99.8 [6.11] 12.7 [7.69] 19.6 [9.77] [12.23] [1.26] 31.7 [19.32] [22.80] min [rpm] int 1) N m [lbf in] kw [hp] l/min [US gal/min] 100 [890] int. 1) 130 [110] peak 2) 170 [110] 7.0 [9.4] int. 1) 8. [11.4] 140 [2030] int 1) 1 peak 2) [32] at max. press drop N m [lbf in] at max. press.drop int. 1) N m [lbf in] 40 [10.6] int. 1) 0 [13.2] 10 [14] 80 [710] 100 [890] 19 [1730] 220 [197] 270 [2390] 12. [16.8] 1.0 [20.1] 1 [32] 10 [14] 10 [1330] 170 [110] 240 [2120] 280 [2480] 320 [2830] 13.0 [17.4] 1.0 [20.1] 1 [32] 10 [14] [1770] 230 [2040] [26] 340 [3010] 370 [3280] 12. [16.8] 14. [19.4] 1 [32] 9 [130] 20 [2210] 280 [2480] 380 [33] 430 [3810] 4 [4070] 12. [16.8] 14.0 [18.8] 1 [32] 7 [100] 320 [2830] 370 [3280] 40 [3980] 00 [4430] [49] 11.0 [14.8] 13.0 [17.4] 1 [32] [] 410 [3630] 4 [4070] 40 [4780] 610 [400] 710 [6280] 10.0 [13.4] 12.0 [16.1] 1 [32] [] 00 [4430] 0 [4870] 0 [4870] 690 [6110] 840 [7440] 9.0 [12.1] 10.0 [13.4] 13 [19] [] [] 00 [4430] 6 [840] 80 [130] 690 [6110] 830 [730] 7. [10.1] 9.0 [12.1] 11 [1670] 10 [2180] 1 [] 470 [4170] 70 [00] Type OMR 0-3 cont 1) Intermittent operation: the permissible values may occur for max. 10% of every minute. 2) Peak load: the permissible values may occur for max. 1% of every minute. int. 1) peak 2) Max. inlet pressure 1 [32] Max.return pressure with drain line 1 [32] 44 20L0262 Rev CB Apr 9

6 Technical Data Technical Data for Parking Brake Motor OMR F, OMR NF and OMRW NF Holding torque 1) Min. release pressure 2) Max. pressure in brake line Technical data for brake motor N m [lbf in] 400 [340] 21 [30] 1) This brake is to be used only as a passive parking brake. It may not be used for dynamic braking. 2) Brake motors must always have a drain line. The brake release pressure is the difference between the pressure in the brake release line and the pressure in the drain line. Function In normal condition where there is no pressure on the integrated brake in OMR, i.e. the brake is applied. The brake is released when hydraulic pressure of 21 min. is applied to the brake release port (1). The pressure forces the piston (2) against the springs (3 and 4) disengaging the outer and inner discs ( and 6) from each other so that the cardan shaft (7) and consequently output shaft (8) become free to rotate. If the pressure on the brake release port is reduced to less than 21, the springs force the piston and pressure pad (9) against the brake discs and the cardan shaft/output shaft begin to lock up. 20L0262 Rev CB Apr 9 4

7 Technical Data - Max. Permissible Shaft Seal Pressure OMR with High Pressure Shaft Seal (HPS) OMR with HPS, without check valves and without drain connection: The shaft seal pressure equals the average of input pressure and return pressure P seal = P in + P return 2 Max. permissible shaft seal pressure OMR with HPS, check valves and with drain connection: The shaft seal pressure equals the pressure in the drain line. OMR with HPS, check valves and without drain connection: The pressure on the shaft seal never exceeds the pressure in the return line. OMR with Standard Shaft Seal OMR with standard shaft seal, check valves and without use of drain connection: The pressure on the shaft seal never exceeds the pressure in the return line OMR with standard shaft seal, check valves and with drain connection: The shaft seal pressure equals the pressure on the drain line. Max. return pressure without drain line or max. pressure in the drain line 1) Intermittent operation: the permissible values may occur for max. 10% of every minute L0262 Rev CB Apr 9

8 Technical Data Pressure Drop in Motor The curve applies to an unloaded motor shaft and an oil viscosity of 3 mm2/s [16 SUS] Oil Flow in Drain Line The table shows the max. oil flow in the drain line at a return pressure less than -10 [-10 psi]. Pressure drop 100 [140] 140 [2030] Voscosity mm2/s [SUS] 20 [100] 3 [16] 20 [100] 3 [16] Oil flow in drain line l/min [US gal/min] 2. [0.66] 1.8 [0.78] 3. [0.93] 2.8 [0.74] Direction of Shaft Rotation 20L0262 Rev CB Apr 9 47

9 Technical Data Permissible Shaft Loads for OMR The permissible radial shaft load (P R ) depends on Speed (n) Distance (L) from the point of load to the mounting flange Mounting flange version Shaft version Mounting flange Shaft version Permissible shaft load (P R ) - l in mm Permissible shaft load (P R ) - l in inch 4-oval flange** 2-hole oval flange (European version) 2 mm cylindrical shaft 1 in cylindrical shaft 1 in splined shaft N* n 9 + L lbf* n L * n min -1 [rpm]; mm [2.2 in] n< min -1 [rpm]; = > P Rmax = 8000 N [1800 lbf] ** For both European and US-version 4-hole oval flange Square flange** 2-hole oval flange (US-version) 32 mm cylindrical shaft 2 mm cylindrical shaft N* n 9 + L lbf* n L N* n L lbf* n L cylindrical shaft 32 mm [1.26 in] other shaft versions The curve shows the relation between P R and n when l = 30 mm [1.18 in] for motors with A2 (European version) and A4 oval mounting flange when l = 24 mm [0.94 in] for motors with square mounting flange and A2 (US version) For applications with special performance requirements we recommend OMP with the output shaft running in needle bearings L0262 Rev CB Apr 9

10 Technical Data Permissible Shaft Load for OMR N and OMR NF with Needle Bearings The output shaft on OMR N and OMR NF runs in needle bearings. These bearings and the recessed mounting flange allow a higher permissible radial load in comparison to OMR motors with slide bearings. The permissible radial load on the shaft is shown for different speeds as a function of the distance from the mounting flange to the point of load application. Curve A shows max. radial shaft load. Any shaft load exceeding the values quoted in the curve will involve a risk of breakage. The other curves apply to a B10 bearing life of 0 hours at the number of revolutions indicated by the curve letter. Mineral based hydraulic oil with a sufficient content of antiwear additives must be used. Bearing life calculations can be made using the explanation and formula provided in the chapter»bearing dimensioning«in the technical information "General" DHMH.PK.100. G L L0262 Rev CB Apr 9 49

11 Technical Data Permissible Shaft Load for OMRW N and OMRW NF with Needle Bearings The output shaft on OMRW N runs in needle bearings. These bearings and the recessed mounting flange allow a higher permissible radial load in comparison to OMR motors with slide bearings. The permissible radial load on the shaft is shown for different speeds as a function of the distance from the mounting flange to the point of load application. Curve A shows max. radial shaft load. Any shaft load exceeding the values quoted in the curve will involve a risk of breakage. The other curves apply to a B10 bearing life of 0 hours at the number of revolutions indicated by the curve letter. Mineral based hydraulic oil with a sufficient content of antiwear additives must be used. Bearing life calculations can be made using the explanation and formula provided in the chapter»bearing dimensioning«in the technical information "General" DHMH.PK.100. G L L0262 Rev CB Apr 9

12 Function Diagrams Function Diagrams Explanation of function diagram use, basis and conditions can be found on page 7. Continuous range Intermittent range (max. 10% operation every minute) Max. permissible continuous/intermittent pressure drop for the actual shaft version can be found on page Intermittent pressure drop and oil flow must not occur simultaneously. 20L0262 Rev CB Apr 9 1

13 Function Diagrams Function Diagrams Explanation of function diagram use, basis and conditions can be found on page 7. Continuous range Intermittent range (max. 10% operation every minute) Max. permissible continuous/intermittent pressure drop for the actual shaft version can be found on page Intermittent pressure drop and oil flow must not occur simultaneously. 2 20L0262 Rev CB Apr 9

14 Function Diagrams Function Diagrams Explanation of function diagram use, basis and conditions can be found on page 7. Continuous range Intermittent range (max. 10% operation every minute) Max. permissible continuous/intermittent pressure drop for the actual shaft version can be found on page Intermittent pressure drop and oil flow must not occur simultaneously. 20L0262 Rev CB Apr 9 3

15 Function Diagrams Function Diagrams Explanation of function diagram use, basis and conditions can be found on page 7. Continuous range Intermittent range (max. 10% operation every minute) Max. permissible continuous/intermittent pressure drop for the actual shaft version can be found on page Intermittent pressure drop and oil flow must not occur simultaneously. 4 20L0262 Rev CB Apr 9

16 Function Diagrams Function Diagrams Explanation of function diagram use, basis and conditions can be found on page 7. Continuous range Intermittent range (max. 10% operation every minute) Max. permissible continuous/intermittent pressure drop for the actual shaft version can be found on page Intermittent pressure drop and oil flow must not occur simultaneously. 20L0262 Rev CB Apr 9

17 OMP, OMR and OMH Weight of Motors Weight of Motors Code no Weight kg [lb] [1.2] [1.4] [16.] [17.6] [18.7] [14.8] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [12.3] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [12.1] [12.1] [12.3] [14.8] [1.2] [1.4] [16.] Code no Weight kg [lb] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [13.0] [13.7] [14.1] [1.2] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] Code no Weight kg [lb] [1.2] [16.3] [12.1] [12.1] [12.3] [13.0] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [12.3] [12.6] [13.0] [13.7] [14.1] [14.6] [1.2] [16.3] [13.2] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] 20L0262 Rev CB Apr 9 93

18 OMP, OMR and OMH Weight of Motors Weight of Motors Code no Weight Code no Weight kg [lb] kg [lb] [12.3] [12.6] [13.0] [13.2] [13.7] [14.1] [14.6] [1.2] [16.3] [11.9] [11.9] [13.4] [13.7] [14.1] [14.3] [14.8] [1.2] [1.7] [16.3] [17.4] [12.1] [12.3] [12.8] [13.0] [13.4] [13.9] [14.3] [1.0] [16.1] [12.1] [12.3] [12.8] [13.0] [13.4] [13.9] [14.3] [1.0] [16.1] [12.3] [12.6] [13.0] [13.7] [14.1] [1.2] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [16.1] [16.] [16.8] [17.2] [17.9] [19.0] [20.1] [21.2] [22.3] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [20.9] [20.9] [20.7] [20.9] [21.4] [22.1] [23.1] [24.3] [2.4] [26.] [14.8] Code no Weight kg [lb] [1.2] [16.] [17.6] [18.7] [20.9] [20.7] [20.9] [21.4] [22.1] [23.1] [24.3] [2.4] [26.] [32.0] [32.4] [33.1] [34.2] [2.4] [26.] [26.] [27.6] [27.6] [28.7] [29.8] [30.9] [2.4] [26.] [26.] [27.6] [27.6] [28.7] [29.8] [30.9] [11.0] [11.2] [11.7] [11.9] [12.3] [12.8] [13.2] [13.9] [1.0] [12.3] [12.6] [13.0] [11.9] [13.7] [14.1] 94 20L0262 Rev CB Apr 9

19 OMP, OMR and OMH Weight of Motors Weight of Motors Code no Weight kg [lb] [14.6] [1.2] [16.3] [11.0] [11.2] [11.7] [12.3] [12.8] [13.2] [13.9] [1.0] [12.0] [12.0] [12.3] [12.1] [12.3] [12.8] [13.0] [13.4] [13.9] [14.3] [1.0] [16.1] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [14.8] [1.2] [1.4] [16.] [17.6] [18.7] [20.9] [13.4] [13.9] [14.1] [14.6] [1.2] [16.3] [17.4] [18.] [19.6] 11H [23.1] Code no Weight kg [lb] 11H [24.3] 11H [2.4] 11H [27.1] 11H [28.7] 11H [23.1] 11H [24.3] 11H [2.4] 11H [27.1] 11H [28.7] 11H [23.1] 11H [24.3] 11H [2.4] 11H [27.1] 11H [28.7] 11H [2.4] 11H [27.1] 11H [28.7] 11H [23.1] 11H [24.3] 11H [2.4] 11H [27.1] 11H [28.7] 11H [23.1] 11H [24.3] 11H [2.4] 11H [27.1] 11H [28.7] 11H [23.1] 11H [28.7] 11H [24.3] 11H [2.4] 11H [27.1] 20L0262 Rev CB Apr 9 9

20 Our Products Open circuit axial piston pumps Gear pumps and motors Fan drive systems Closed circuit axial piston pumps and motors Bent axis motors Hydrostatic transmissions Transit mixer drives Hydrostatic transaxles Electrohydraulics Integrated systems Microcontrollers and software PLUS+1 GUIDE Displays Joysticks and control handles Sensors Orbital motors Inverters Electrohydraulic power steering Hydraulic power steering Hydraulic integrated circuits (HIC) Cartridge valves Directional spool valves Proportional valves Sauer-Danfoss Mobile Power and Control Systems Market Leaders Worldwide Sauer-Danfoss is a comprehensive supplier providing complete systems to the global mobile market. Sauer-Danfoss serves markets such as agriculture, construction, road building, material handling, municipal, forestry, turf care, and many others. We offer our customers optimum solutions for their needs and develop new products and systems in close cooperation and partner ship with them. Sauer-Danfoss specializes in integrating a full range of system components to provide vehicle designers with the most advanced total system design. Sauer-Danfoss provides comprehensive worldwide service for its products through an extensive network of Global Service Partners strategically located in all parts of the world. Local address: Sauer-Danfoss (US) Company 2800 East 13th Street Ames, IA 0010, USA Phone: Fax: Sauer-Danfoss GmbH & Co. OHG Postfach 24, D-2431 Neumünster Krokamp 3, D-2439 Neumünster, Germany Phone: Fax: Sauer-Danfoss ApS DK-6430 Nordborg, Denmark Phone: Fax: Sauer-Danfoss-Daikin LTD. Shin-Osaka TERASAKI 3rd Bldg. 6F Nishimiyahara, Yodogawa-ku Osaka , Japan Phone: Fax: L0262 Rev CC Mar

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