Orbital Motors OMS, OMT and OMV Orbital Motors

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1 MAKING MODERN LIVING POSSIBLE Technical Information Orbital Motors OMS, OMT and OMV Orbital Motors powersolutions.danfoss.com

2 Revision history Table of revisions Date Changed Rev November 2014 Converted to Danfoss layout - DITA CMS FA Jun 2013 Drawing corrected EK Apr 2013 Drawing corrected EJ Jan 2013 Correct drawing EI Nov 2012 Planetary Gears deleted EH Jul 2012 Typo in Major dia EG Nov 2010 Dimensions changed EF Nov 2009 conversions, and layout adjusted ED 2 520L0407 Rev FA November 2014

3 Contents A wide range of Orbital Motors Characteristic, features and application areas of Orbital Motors...6 Characteristic features of Danfoss Orbital Motors... 6 Technical features of Danfoss Orbital Motor...6 The Danfoss Orbital Motors are used in the following application areas:...7 Survey of literature with technical data on Danfoss Orbital Motors...7 Data survey Versions Code numbers Technical Data Function Diagrams Shaft Version OMS, OMT and OMV speed, torque and output... 8 OMS versions Features available (options): Code numbers...11 Ordering...11 Technical data for OMS...12 Max. Permissible Shaft Seal Pressure Pressure Drop in Motor...14 Oil flow in drain line Direction of Shaft Rotation Permissible Shaft Loads for OMS...14 Function Diagrams Shaft Version...23 Port Thread Versions...27 Dimensions European Version Standard Flange Dimensions US Version Standard Flange Dimensions European Version Special Flange Dimensions US Version A-2 Flange...34 Magneto Flange SAE-B Flange...38 Dimensions European Version Wheel...40 Dimensions US Version Wheel...42 Dimensions European Version Short OMSS Versions Code Numbers Installing the OMSS OMSS Dimensions of the Attached Component...45 Internal Spline Data for the Component to be Attached Drain Connection on OMSS or Attached Component...46 OMT Versions...47 Features available (options) L0407 Rev FA November

4 Contents Technical Data Function Diagrams Shaft version Code numbers...48 Ordering...48 Technical data for OMT, OMTW, OMTS, OMT FX OMT FL and OMT FH Max. Permissible Shaft Seal Pressure Pressure Drop in Motor...51 Oil flow in drain line Direction of Shaft Rotation Permissible Shaft Loads for OMT...52 Function Diagrams Shaft Version...59 Port Thread Versions...62 Dimensions European Version Standard Flange Dimensions US Version Standard Flange Dimensions European Version Wheel...67 Dimensions US Version Wheel...69 Dimensions European Version Brake-Wheel...71 Brake-Standard Short OMTS Versions Code numbers Technical data Function diagrams Shaft version Installing the OMTS OMTS Dimensions of the Attached Component...76 Internal Spline Data for the Component to be Attached Drain Connection on OMTS or Attached Component...77 OMV versions...79 Features available (options)...79 Code numbers...80 Ordering...80 Technical data for OMV, OMVW and OMVS...81 Max. permissible shaft seal pressure...81 Pressure drop in motor Oil flow in drain line Direction of shaft rotation...83 Permissible shaft loads for OMV Function diagrams...86 Shaft Version...89 Port thread versions...92 Dimensions European version Standard flange L0407 Rev FA November 2014

5 Contents Dimensions US version Standard flange SAE-C Flange...97 Dimensions European version Wheel...99 Dimensions US version Wheel Dimensions European version Short OMVS Weight of motors Installing the OMVS OMVS dimensions of the attached component Internal spline data for the component to be attached Drain connection on OMVS or attached component Weight of motors L0407 Rev FA November

6 A wide range of Orbital Motors Characteristic, features and application areas of Orbital Motors Danfoss is a world leader within production of low speed orbital motors with high torque. We can offer more than 3,000 different orbital motors, categorised in types, variants and sizes (including different shaft versions). The motors vary in size (rated displacement) from 8 cm³ [0.50 in³] to 800 cm³ [48.9 in³] per revolution. Speeds range up to approximate 2,500 min -1 (rpm) for the smallest type and up to approximate 600 min -1 (rpm) for the largest type. Maximum operating torques vary from 13 N m [115 lbf in] to 2,700 N m [24,000 lbf in] (peak) and maximum outputs are from 2.0 kw [2.7 hp] to 70 kw [95 hp]. Characteristic features of Danfoss Orbital Motors Smooth running over the entire speed range Constant operating torque over a wide speed range High starting torque High return pressure without the use of drain line (High pressure shaft seal) High efficiency Long life under extreme operating conditions Robust and compact design High radial and axial bearing capacity For applications in both open and closed loop hydraulic systems Suitable for a wide variety of hydraulics fluids Technical features of Danfoss Orbital Motor The programme is characterised by technical features appealing to a large number of applications and a part of the programme is characterised by motors that can be adapted to a given application. Adaptions comprise the following variants among others: 6 520L0407 Rev FA November 2014

7 A wide range of Orbital Motors Motors with corrosion resistant parts Wheel motors with recessed mounting flange OMP, OMR- motors with needle bearing OMR motor in low leakage version OMR motors in a super low leakage version Short motors without bearings Ultra short motors Motors with integrated positive holding brake Motors with integrated negative holding brake Motors with integrated flushing valve Motors with speed sensor Motors with tacho connection All motors are available with black finish paint The Danfoss Orbital Motors are used in the following application areas: Construction equipment Agricultural equipment Material handling & Lifting equipment Forestry equipment Lawn and turf equipment Special purpose Machine tools and stationary equipment Marine equipment Survey of literature with technical data on Danfoss Orbital Motors Detailed data on all Danfoss Orbital Motors can be found in our motor catalogue, which is divided into more individual subcatalogues: General information on Danfoss Orbital Motors: function, use, selection of orbital motor, hydraulic systems, etc. Technical data on small motors: OML and OMM Technical data on medium sized motors: OMP, OMR, OMH Technical data on medium sized motors: DH and DS Technical data on medium sized motors: OMEW Technical data on medium sized motors: VMP Technical data on medium sized motors: VMR Technical data on large motors: OMS, OMT and OMV Technical data on large motors: TMT Technical data on large motors: TMV A general survey brochure on Danfoss Orbital Motors gives a quick motor reference based on power, torque, speed and capabilities. 520L0407 Rev FA November

8 Data survey OMS, OMT and OMV speed, torque and output min -1 (rpm) Max. speed lbf in Nm Max. Torque hp kw Max. output OMS OMT OMV Intermittend values Continuous values The bar diagrams above are useful for a quick selection of relevant motor size for the application. The final motor size can be determined by using the function diagram for each motor size L0407 Rev FA November 2014

9 Data survey OMS can be found here OMT can be found here OMV can be found here The function diagrams are based on actual tests on a representative number of motors from our production. The diagrams apply to a return pressure between 5 and 10 bar [75 and 150 psi] when using mineral based hydraulic oil with a viscosity of 35 mm²/s [165 SUS] and a temperature of 50 C [120 F]. For further explanation concerning how to read and use the function diagrams, please consult the paragraph "Selection of motor size" in the technical information "General Orbital motors" 520L L0407 Rev FA November

10 Versions OMV versions Mounting flange Shaft Port size European version US version Drain connection Check valve Standard flange Cyl. 50 mm G1 X Yes Yes OMV Cyl in 1 5/16-12 UN X Yes Yes OMV Splined in G1 X Yes Yes OMV 1 5/16-12 UN X Yes Yes OMV Tapered 60 mm G1 X Yes Yes OMV Tapered 2.25 in 1 5/16-12 UN X Yes Yes OMV SAE-C flange Cyl in 1 5/16-12 UN X Yes Yes OMV Splined in 1 5/16-12 UN X Yes Yes OMV Main type designation Wheel Cyl. 50 mm G1 X Yes Yes OMVW Tapered 60 mm G1 X Yes Yes OMVW Tapered 2.25 in 1 5/16-12 UN X Yes Yes OMVW Short No output shaft G1 X Yes Yes OMVS Features available (options) Speed sensor Motor with tacho connection Viton shaft seal Painted Ultra short 520L0407 Rev FA November

11 Code numbers Code numbers Code Numbers Displacement [cm³] B B B B B B B B B B B B Ordering Add the four digit prefix 151B to the four digit numbers from the chart for complete code number. Example: 151B3101 for an OMV 400 with standard flange, cyl. 50 mm shaft and port size G 1. Orders will not be accepted without the four digit prefix L0407 Rev FA November 2014

12 Technical data Technical data for OMV, OMVW and OMVS Type OMV OMVW OMVS OMV OMVW OMVS OMV OMVW OMVS OMV OMVW OMVS OMV OMVW OMVS Motor size Geometric displacement cm³ [in³] [19.19] [24.46] [30.49] [38.39] [48.93] Max. speed min -1 [rpm] cont int 1) Max. torque Nm [lbf in] cont. 920 [8140] 1180 [10440] 1460 [12920] 1660 [14690] 1880 [16640] int. 1) 1110 [9820] 1410 [12480] 1760 [15580] 1940 [17170] 2110 [18680] Max. output kw [hp] cont [57.0] 53.5 [71.7] 53.5 [71.7] 48.0 [64.4] 42.5 [57.0] int. 1) 51.0 [68.4] 64.0 [85.8] 64.0 [85.8] 56.0 [75.1] 48.0 [64.4] Max. pressure drop bar [psi] cont. 200 [2900] 200 [2900] 200 [2900] 180 [2610] 160 [2320] Max. oil flow Max. starting pressure with unloaded shaft Min. starting torque l/min [USgal/ min] int. 1) 240 [3480] 240 [3480] 240 [3480] 210 [3050] 180 [2610] peak 2) 280 [4060] 280 [4060] 280 [4060] 240 [3480] 210 [3050] cont. 160 [42.3] 200 [52.8] 200 [52.8] 200 [52.8] 200 [52.8] int. 1) 200 [52.8] 240 [63.4] 240 [63.4] 240 [63.4] 240 [63.4] bar [psi] 8 [116] 8 [116] 8 [116] 8 [116] 8 [116] at max. press. drop cont. Nm [lbf in] at max. press. drop int. 1) Nm [lbf in] 710 [6280] 910 [8050] 1130 [10000] 1330 [11770] 1510 [13360] 850 [7520] 1090 [9650] 1360 [12040] 1550 [13720] 1700 [15050] Type Max. inlet pressure Max. return pressure with drain line OMV OMVW OMVS bar [psi] cont. 210 [3050] 140 [2030] bar [psi] int. 1) 250 [3630] 175 [2540] bar [psi] peak 2) 300 [4350] 210 [3050] 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. For max. permissible combination of flow and pressure, see function diagram for actual motor. Max. permissible shaft seal pressure OMV with check valves and without use of drain connection: The pressure on the shaft seal never exceeds the pressure in the return line L0407 Rev FA November

13 Technical data OMV with 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 P psi P bar max. min -1 (rpm) Intermittent operation: the permissible values may occur for max. 10% of every minute. Continuous operation Pressure drop in motor psi p p bar Q l/min Q US gal/min The curve applies to an unloaded motor shaft and an oil viscosity of 35 mm²/s (165 SUS) Oil flow in drain line The table shows the max. oil flow in the drain line at a return pressure less than 5-10 bar [ psi]. Pressure drop bar [psi] Viscosity mm 2 /s [SUS] 140 [2030] 20 [100] 3.0 [0.79] 35 [165] 2.0 [0.53] 210 [3050] 20 [100] 6.0 [1.59] 35 [165] 4.0 [1.06] Oil flow in drain line l/min [US gal/min] L0407 Rev FA November 2014

14 Technical data Direction of shaft rotation Permissible shaft loads for OMV Mounting flange: Standard Shaft: All shaft types P rad. P rad. lbf N P max. =15000 N =3372 lbf mm in Mounting flange: Wheel Shaft: All shaft types 520L0407 Rev FA November

15 Technical data P rad. P rad. lbf N P max. =15000 N =3372 lbf mm in The output shaft runs in tapered roller bearings that permit high axial and radial forces The permissible radial load on the shaft is shown for an axial load of 0 N as a function of the distance from the mounting flange to the point of load application. The curve is based on B10 bearing life (2000 hours or 12,000,000 shaft revolutions at 100 min -1 ) at rated output torque, when mineral-based hydraulic oil with a sufficient content of anti-wear additives, is used. For 3,000,000 shaft revolutions or 500 hours increase these shaft loads with 52%. The dash curve shows max. radial shaft load. Any shaft load exceeding the values shown in the curve will involve a risk of breakage. Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearing dimensioning" in the technical information "General Orbital motors" 520L0232. Mounting flange: SAE-C Shaft: All shaft types L0407 Rev FA November 2014

16 Technical data P rad. P rad. lbf N A B B P max. =10000 N =2248 lbf A mm in A: Cyl in shaft B: Splined in shaft The output shaft runs in tapered roller bearings that permit high axial and radial forces. The permissible radial load on the shaft is shown for an axial load of 0 N as a function of the distance from the mounting flange to the point of load application. The curve is based on B10 bearing life (2000 hours or 12,000,000 shaft revolutions at 100 min -1 ) at rated output torque, when mineral-based hydraulic oil with a sufficient content of anti-wear additives, is used. For 3,000,000 shaft revolutions or 500 hours increase these shaft loads with 52%. The dash curve shows max. radial shaft load. Any shaft load exceeding the values shown in the curve will involve a risk of breakage. Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearing dimensioning" in the technical information "General Orbital motors" 520L L0407 Rev FA November

17 Function diagrams Function diagrams lbf in Nm OMV 315 Q=10 l/min [2.6 US gal/min] 25 l/min [6.6 US gal/min] 50 l/min [13.2 US gal/min] N=5kW 5hp 75 l/min [19.8 US gal/min] 10kW 10hp 20hp 100 l/min [26.4 US gal/min] 30hp 20kW 125 l/min [33.0 US gal/min] η t =87% 85% 80% η t =70% 150 l/min [39.6 US gal/min] 30kW 160 l/min [42.2 US gal/min] N=50kW 40kW 50hp 40hp Q=200 l/min [52.8 US gal/min] p=240 bar 3480 psi 200 bar 2900 psi 170 bar 2540 psi 140 bar 2030 psi 105 bar 1520 psi 70 bar 1020 psi p= 35 bar 510 psi min -1 (rpm) lbf in Nm 1600 OMV 400 Q=10 l/min [2.6 US gal/min] 25 l/min [6.6 US gal/min] 50 l/min [13.2 US gal/min] 75 l/min [19.8 US gal/min] 100 l/min [26.4 US gal/min] 125 l/min [33.0 US gal/min] 150 l/min [39.6 US gal/min] 175 l/min [46.2 US gal/min] 200 l/min [52.8 US gal/min] Q=240 l/min [63.4 US gal/min] hp 10hp 30hp 20hp η t =88% N=5kW 40hp 87% 85% 10kW 80% η t =70% 50hp 20kW 40kW 30kW N=50kW p=240 bar 3480 psi 200 bar 2900 psi 175 bar 2540 psi 140 bar 2030 psi 105 bar 1520 psi 70 bar 1020 psi p= 35 bar 510 psi min -1 (rpm) L0407 Rev FA November 2014

18 Function diagrams lbf in Nm 1800 OMV 500 Q=10 l/min [2.6 US gal/min] 25 l/min [6.6 US gal/min] 50 l/min [13.2 US gal/min] 75 l/min [19.8 US gal/min] 100 l/min [26.4 US gal/min] 125 l/min [33.0 US gal/min] 150 l/min [39.6 US gal/min] 175 l/min [46.2 US gal/min] 200 l/min [52.8 US gal/min] Q=240 l/min [63.4 US gal/min] hp 40hp 30kW N=60kW 50kW 60hp 40kW p=240 bar 3480 psi 200 bar 2900 psi 175 bar 2540 psi 140 bar 2030 psi N=5kW η t =88% 87% 85% 80% η t =70% 20hp 10kW 10hp 5hp 20kW 30hp 105 bar 1520 psi 70 bar 1020 psi p= 35 bar 510 psi min -1 (rpm) OMV 630 lbf in Nm 2000 Q=10 l/min [2.6 US gal/min] 25 l/min [6.6 US gal/min] 50 l/min [13.2 US gal/min] 75 l/min [19.8 US gal/min] 100 l/min [26.4 US gal/min] 125 l/min [33.0 US gal/min] 150 l/min [39.6 US gal/min] 175 l/min [46.2 US gal/min] 200 l/min [52.8 US gal/min] Q=240 l/min [63.4 US gal/min] N=60kW p=210 bar 3050 psi N=5kW 10kW η t =89% 87% 85% 80% η t =70% 30kW 20kW 10hp 5hp 30hp 20hp 40kW 50hp 40hp 50kW 60hp 180 bar 2610 psi 150 bar 2180 psi 120 bar 1740 psi 90 bar 1300 psi 60 bar 870 psi p= 30 bar 440 psi min -1 (rpm) L0407 Rev FA November

19 Function diagrams lbf in Nm 2250 OMV 800 Q = 10 l/min 2.6 US gal/min 25 l/min 6.6 US gal/min 50 l/min 13.2 US gal/min 75 l/min 19.8 US gal/min 100 l/min 26.4 US gal/min 125 l/min 33.0 US gal/min 150 l/min 39.6 US gal/min 175 l/min 46.2 US gal/min 200 l/min 52.8 US gal/min Q = 240 l/min 63.4 US gal/min p=180 bar 2610 psi 160 bar 2320 psi 130 bar 1890 psi 100 bar 1450 psi 75 bar 1090 psi 50 bar 730 psi p=25bar 360 psi min -1 (rpm) P Explanation of function diagram use, basis and conditions, see OMS, OMT and OMV speed, torque and output on page 8. Continuous range Intermittent range (max. 10% operation every minute) Intermittent pressure drop and oil flow must not occur simultaneously L0407 Rev FA November 2014

20 Shaft version Shaft Version 82 [3.23] 26 [1.02] 9.5 [0.374] 60 R0.5 [0.020] A M12 A-A A B C Ø60 [2.36] Ø60 [2.36] Ø60 [2.36] [2.776] 70.0 [2.756] 79 [3.11] R0.5 [0.020] R0.5 [0.020] A 82.2 [3.236] 81.8 [3.220] min. 20 [0.78] 57.5 [2.264] 56.9 [2.240] A A 99.2 [3.906] 98.8 [3.890] 13.1 [0.516] 10.9 [0.429] A Ø [1.9692] Ø [1.9686] 5.5 [0.217] 4.5 [0.177] 3/8-16 UNC Ø57.15 [2.250] Ø57.10 [2.248] min. 26 [1.02] ½ -20 UNF [2.250] [2.248] 53.5 [2.106] 53.2 [2.094] [2.477] [2.467] [2.478] [2.467] [0.5512] [0.5495] A-A [0.501] [0.500] A-A D E A 70.4 [2.772] 70.2 [2.763] [0.501] [0.500] F A: Cylindrical 50 mm shaft B: Cylindrical 2.25 in shaft for OMV with standard mounting flange C: Cylindrical 2.25 in shaft for OMV with mounting flange SAE-C D: Parallel key A ; DIN 6885 Keyway deviates from standard E: Parallel key 1/2 1/2 2 1 / 4 in; B.S. 46 Keyway deviates from standard F: Parallel key 1/2 1/2 2 1 / 4 in; B.S. 46 Keyway deviates from standard 520L0407 Rev FA November

21 Shaft version 82[3.23] 26 [1.02] [0.374] R0.5 [0.020] A M12 A-A D Ø60 [2.36] [2.1250] [2.1240] A 58 [2.28] 56 [2.20] 82.2 [3.236] 81.8 [3.220] min. 20 [0.78] 45 R0.5 [0.020] A 3/8-16 UNC A-A E F Ø60 [2.36] Ø60 [2.36] [3.028] 76.5 [3.011] R0.5 [0.020] A 57 [2.24] 55 [2.17] A min. 26 [1.02] Ø [2.1250] Ø [2.1240] ½ -20 UNF Ø [2.1249] Ø [2.1242] A-A A 56.3 [2.217] 55.3 [2.177] D: Involute splined shaft ANS B standard Flat root side fit Pitch 8/16; Teeth 16 Major dia in Pressure angle 30 US Version E: Involute splined shaft for OMV with standard mounting flange ANS B standard Flat root side fit Pitch 8/16; Teeth 16 Major dia in Pressure angle 30 US Version F: Involute splined shaft for OMV with mounting flange SAE-C ANS B standard Flat root side fit Pitch 8/16; Teeth 16 Major dia in Pressure angle L0407 Rev FA November 2014

22 Shaft version I A J 23 [0.91] 7 [0.28] A-A G Ø60 [2.36] Ø8 [0.31] Ø9 [0.35] M42x3 [0.12] Ø78 [3.07] [1.270] [1.262] A 70 [2.76] 40.5 [1.594] 40.0 [1.575] 6 [0.24] [0.6299] [0.6282] K 105 [4.13] 45 L A M 16 [0.63] 4.5 [0.177] A-A H Ø60 [2.36] Ø4 [0.16] Ø57.20 [2.252] Ø57.10 [2.248] A 7.29 [0.287]* 7.19 [0.283] 51.1 [2.012] 50.5 [1.988] 73.6 [2.898] 72.4 [2.850] [3.953] 99.6 [3.921] [0.5633] [0.5625] N G: Tapered 60 mm shaft (ISO/R775) I: Taper 1:10 H: Tapered 2.25 in shaft J: DIN 937 Across flats: 65 mm Tightening torque: 750 ±50 Nm [6640 ±440 lbf in] M: 11/2-18 UNEF Across flats: 23/8 in Tightening torque: 750 ±50 Nm [6640 ±440 lbf in] K: Parallel key B DIN 6885 Keyway deviates from standard N: Parallel key 9/16 9/16 2 in B.S. 46 Keyway deviates from standard L: Cone 1:8 SAE J L0407 Rev FA November

23 Shaft version Port thread versions B A E Ø41.5 [1.634] Ø41.0 [1.614] F min. 18 [0.67] min. 19 [0.75] C D G min. 12 [0.47] H min. 13 [0.51] A: G main ports E: ISO 228/1 - G1 O-ring boss port C: G drain port G: ISO 228/1 - G1/4 O-ring boss port B: UN main ports F: 1 5/16-12 UN D: UNF drain port H: 9/16-18 UNF L0407 Rev FA November 2014

24 Dimensions European version Standard flange Ø [6.2992] Ø [6.2967] Ø146.4 [5.764] Ø145.0 [5.710] Ø83 [3.27] L 2 40 [1.57] L [2.36] 11 [0.43] 20 [0.79] C 2 [0.08]x45 R1.6 [0.063] 69 [2.72] 39.4 [1.551] 38.6 [1.520] 8 [0.31] L 24.6 [0.969] 23.4 [0.921] 14.0 [0.551] 13.0 [0.512] 14.0 [0.551] 13.0 [0.512] D 23.9 [0.941] 22.9 [0.902] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 23.9 [0.941] 22.9 [0.902] 14.0 [0.551] 13.0 [0.512] 14.0 [0.551] 13.0 [0.512] E max. 76 [2.99] max. 77 [3.03] max. 81 [3.19] 120 [4.72] max. 149 [5.87] Ø200.4 [7.890] Ø199.6 [7.858] max. 179 [7.05] L 1 R16 [0.63] Ø18 [0.71] max. 179 [7.05] C: Drain connection G 1 4; 12 mm [0.47 in] deep D: M12; 12 mm [0.47 in] deep E: G 1; 18 mm [0.71 in] deep Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [8.46] 22.0 [0.866] 160 [6.30] 520L0407 Rev FA November

25 Dimensions European version Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [8.74] 29.0 [1.142] 167 [6.57] OMV [9.05] 37.0 [1.457] 175 [6.89] OMV [9.45] 47.5 [1.870] 186 [7.32] OMV [10.00] 61.5 [2.421] 200 [7.87] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions Output shaft L 3 mm [in] Cyl. 50 mm Splined in 82 [3.23] Tapered 60 mm 105 [4.13] L0407 Rev FA November 2014

26 Dimensions US version Standard flange Ø [6.2992] Ø [6.2967] Ø146.3 [5.760] Ø145.7 [5.736] Ø90 [3.54] Ø88 [3.46] 40 [1.57] L2 L [0.08]x45 R1.6 [0.063] 39.4 [1.551] 38.6 [1.520] max. 76 [2.99] 60 [2.36] 11 [0.43] 20 [0.79] C 77 [3.03] 69 [2.72] D 24.6 [0.969] 23.4 [0.921] 25.3 [0.996] 24.7 [0.972] 120 [4.72] 25.3 [0.996] 24.7 [0.972] max. 77 [3.03] max. 83 [3.27] max. 149 [5.87] Ø200.4 [7.890] Ø199.6 [7.858] max. 179 [7.05] L L1 R16 [0.63] Ø18 [0.71] max. 179 [7.05] C: Drain connection UNF; 13 mm [0.51 in] deep O-ring boss port D: UN; 19 mm [0.75 in] deep O-ring boss port Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [8.46] 22.0 [0.866] 160 [6.30] OMV [8.74] 29.0 [1.142] 167 [6.57] 520L0407 Rev FA November

27 Dimensions US version Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [9.05] 37.0 [1.457] 175 [6.89] OMV [9.45] 47.5 [1.870] 186 [7.32] OMV [10.00] 61.5 [2.421] 200 [7.87] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions Output shaft L 3 mm [in] Cyl in Splined in 82 [3.23] Tapered 2.25 in 100 [3.94] L0407 Rev FA November 2014

28 Dimensions US version SAE-C Flange Ø [5.000] Ø [4.998] 16.1 [0.634] 13.7 [0.539] L [0.543] 13.2 [0.520] 21.0 [0.827] 19.6 [0.772] 71.0 [2.795] 81.5 [3.209] max. 76 [2.99] max. 77 [3.03] max. 83 [3.27] Ø162.3 [6.390] Ø161.5 [6.358] max. 147 [5.79] 24.0 [0.945] 85.5 [3.366] C L1 L L3 D 25 [0.98] max. 121 [4.76] max. 149 [5.87] 25 [0.98] R16 [0.63] Ø17.7 [0.697] Ø17.3 [0.681] max. 147 [5.79] C: Drain connection UNF; 13 mm [0.51 in] deep O-ring boss port D: UN; 19 mm [0.75 in] deep O-ring boss port Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [9.41] 22.0 [0.866] 185 [7.28] 520L0407 Rev FA November

29 Dimensions US version Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMV [9.69] 29.0 [1.142] 192 [7.56] OMV [10.00] 37.0 [1.457] 200 [7.87] OMV [10.43] 47.5 [1.870] 211 [8.31] OMV [10.98] 61.5 [2.421] 225 [8.86] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions Output shaft L 3 mm [in] Cyl in 99 [3.90] Splined in 76.7 [3.02] L0407 Rev FA November 2014

30 Dimensions European version Wheel Ø [7.0866] Ø [7.0841] Ø146.4 [5.764] Ø145.0 [5.710] Ø83 [3.27] Ø148.0 [5.827] Ø147.9 [5.823] 20 [0.79] 108 [4.25] 3.6[0.142] 79 [3.11] 24.6 [0.969] 23.4 [0.921] 14.0 [0.551] 13.0 [0.512] 8 [0.31] 10 [0.39] 22 [0.87] L L [0.551] 13.0 [0.512] R1.2 [0.047] R1.2 [0.047] max [4.240] 33 2 [0.08]x45 D L [0.941] 22.9 [0.902] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 23.9 [0.941] 22.9 [0.902] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 14.0 [0.551] 13.0 [0.512] 14.0 [0.551] 13.0 [0.512] E max. 76 [2.99] C max. 77 [3.03] 85 [3.35] max. 81 [3.19] 120 [4.72] Ø224.3 [8.831] Ø223.7 [8.807] max. 198 [7.80] L 3 max. 149 [5.87] Ø [7.6378] Ø [7.6350] Ø18 [0.71] R16 [0.63] max. 198 [7.80] C: Drain connection G 1 4; 12 mm [0.47 in] deep D: M12; 12 mm [0.47 in] deep E: G 1; 18 mm [0.71 in] deep 520L0407 Rev FA November

31 Dimensions European version Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMVW [5.75] 22.0 [0.866] 92 [3.62] OMVW [6.02] 29.0 [1.142] 99 [3.90] OMVW [6.34] 37.0 [1.457] 107 [4.21] OMVW [6.77] 47.5 [1.870] 118 [4.65] OMVW [7.28] 61.5 [2.421] 132 [5.20] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions Output shaft L 3 mm [in] Cyl. 50 mm 82 [3.23] Tapered 60 mm 105 [4.13] L0407 Rev FA November 2014

32 Dimensions US version Wheel Ø [7.0866] Ø [7.0841] Ø146.3 [5.760] Ø145.7 [5.736] Ø90 [3.54] Ø88 [3.46] Ø148.0 [5.827] Ø147.9 [5.823] [4.25] [3.953] 99.6 [3.921] L 79 [3.11] 20 [0.79] 10 [0.39] 3.6 [0.142] 24.6 [0.969] 23.4 [0.921] 22 [0.87] 2 [0.08]x45 L2 L [0.996] 24.7 [0.972] 120 [4.72] max. 149 [5.87] Ø [7.6378] Ø [7.6350] 25.3 [0.996] 24.7 [0.972] max. 76 [2.99] R1.2 [0.047] R1.2 [0.047] D 8 [0.31] C max. 77 [3.03] 85 [3.35] max. 83 [3.27] Ø224.3 [8.831] Ø223.7 [8.807] max. 198 [7.80] max [4.240] R16 [0.63] Ø18 [0.71] max. 198 [7.80] C: Drain connection UNF; 13 mm [0.51 in] deep O-ring boss port D: UN; 19 mm [0.75 in] deep O-ring boss port Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMVW [5.79] 22.0 [0.866] 92 [3.62] OMVW [6.06] 29.0 [1.142] 99 [3.90] 520L0407 Rev FA November

33 Dimensions US version Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMVW [6.38] 37.0 [1.457] 107 [4.21] OMVW [6.77] 47.5 [1.870] 118 [4.65] OMVW [7.36] 61.5 [2.421] 132 [5.20] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions L0407 Rev FA November 2014

34 Dimensions European version Short 8 [0.31] 1 [0.04]x45 28 [1.10] Ø [5.5118] Ø [5.5093] L L [0.969] 23.4 [0.921] 20 [0.79] 14.0 [0.551] 13.0 [0.512] 82 [3.23] 58 [2.28] Ø14 [0.55] Ø6 [0.24] 28 [1.10] 14.0 [0.551] 13.0 [0.512] D L [0.941] 22.9 [0.902] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 23.9 [0.941] 22.9 [0.902] 25.3 [0.996] 24.7 [0.972] 23.9 [0.941] 22.9 [0.902] R1 [0.04] 14.0 [0.551] 13.0 [0.512] 14.0 [0.551] 13.0 [0.512] E max. 76 [2.99] 22 [0.87] 35 [1.38] C max. 77 [3.03] max. 81 [3.19] 8 [0.31] 120 [4.72] max. 149 [5.87] max. Ø207 [8.15] Ø180.4 [7.102] Ø179.6 [7.071] C: Drain connection G 1 4; 12 mm [0.47 in] deep D: M12; 12 mm [0.47 in] deep E: G 1; 18 mm [0.71 in] deep Type L max mm [in] L * 1 mm [in] L 2 mm [in] OMVS [6.73] 22.0 [0.866] 117 [4.61] OMVS [7.05] 29.0 [1.142] 124 [4.88] OMVS [7.32] 37.0 [1.457] 132 [5.20] OMVS [7.76] 47.5 [1.870] 143 [5.63] OMVS [8.31] 61.5 [2.421] 157 [6.18] * The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions 520L0407 Rev FA November

35 OMVS Installing the OMVS The cardan shaft of the OMVS motor acts as an output shaft. Because of the movement of the shaft, no seal can be fitted at the shaft output. Internal oil leakage from the motor will therefore flow into the attached component. During start and operation it is important that the spline connection and the bearings in the attached component receive oil and are adequately lubricated. To ensure that the spline connection receives sufficient oil, a conical sealing ring between the shaft of the attached component and the motor intermediate plate is recommended. This method is used in the OMV. The conical sealing ring (code. no. 633B9021) is supplied with the motor. To ensure that oil runs to the bearings and other parts of the attached component, the stop plate must have a hole in it (see fig. below). We recommend an O-ring between motor and attached component. The O-ring (code no. 151B1041) is supplied with the motor. If motor and attached component have been separated, remember to refill before starting up. Fill the oil through the drain connection. OMVS dimensions of the attached component min. Ø6 [0.24] G H 32.5 [1.280] 31.5 [1.240] 2.35 [0.093] 2.25 [0.089] max. 2 [0.08] K 76.3 [3.004] 75.7 [2.980] K K 0.25 [0.010] 0.1 F Ø46.2 [1.819] Ø45.8 [1.803] min. 5 [0.2] 9.5 [0.374] 8.5 [0.335] 53.3 [1.098] 52.7 [2.075] Ø56.3 [2.217] Ø55.5 [2.165] min. Ø60 [2.36] Ø [5.5143] Ø [5.5118] Ø147.9 [5.823] Ø147.7 [5.815] Ø102 [4.02] Ø100 [3.94] R D A B 6 [0.24] 4 [0.16] E 8.4 [0.331] 7.6 [0.299] 20.5 [0.807] 19.5 [0.768] 28.7 [1.130] 26.3 [1.035] C Ø61.2 [2.409] Ø61.0 [2.402] Ø71 [2.80] Ø69 [2.72] A: O-ring: mm B: External drain channel C: Drain connection G 1 4; 12 mm [0.47 in] deep D: Conical seal ring E: Internal drain channel F: M12; min. 18 mm [0.71 in] deep G: Oil circulation hole H: Hardened stop plate Internal spline data for the component to be attached The attached component must have internal splines corresponding to the external splines on the motor cardan shaft (see drawing below). Material: L0407 Rev FA November 2014

36 OMVS Case hardening steel with a tensile strength corresponding at least to 20 MoCr4 (900 N/mm2) or SAE Hardening specification: On the surface: HV = 750 ± 50 7 ± 2 mm under the surface: HV = 560 Internal involute spline data; Standard ANS B , class 5 (corrected m X = 1; m = 2.54) Flat root side fit mm in Number of teeth z Pitch DP 10/20 10/20 Pressure angle Pitch dia. D Major dia. D ri Form dia. (min.) D fi Minor dia. D i Space width (circular) L o ± ± Tooth thickness (circular) S o Fillet radius R min Max. measurement between pins * l Pin dia. d 5.6 ± ± * Finished dimensions (when hardened) R min L o S o l d D ri D i D fi D Drain connection on OMVS or attached component A drain line ought to be used when pressure in the return line can exceed the permissible pressure on the shaft seal of the attached component. The drain line can be connected at two different points: 1) at the motor drain connection 2) at the drain connection of the attached component. If a drain line is fitted to the attached component, it must be possible for oil to flow freely between motor and attached component. 520L0407 Rev FA November

37 OMVS The drain line must be led to the tank in such a way that there is no risk of the motor and attached component being drained of oil when at rest. The maximum pressure in the drain line is limited by the attached component and its shaft seal L0407 Rev FA November 2014

38 Weight of motors Weight of motors Code no Weight kg [lb] 151B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B L0407 Rev FA November

39 Weight of motors Code no Weight kg [lb] 151B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B L0407 Rev FA November 2014

40 Weight of motors Code no Weight kg [lb] 151B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B L0407 Rev FA November

41 Weight of motors Code no Weight kg [lb] 151B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B B F F F L0407 Rev FA November 2014

42 Weight of motors Code no Weight kg [lb] 151F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F L0407 Rev FA November

43 Weight of motors Code no Weight kg [lb] 151F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F L0407 Rev FA November 2014

44 Weight of motors Code no Weight kg [lb] 151F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F L0407 Rev FA November

45 Weight of motors Code no Weight kg [lb] 151F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F L0407 Rev FA November 2014

46 Weight of motors Code no Weight kg [lb] 151F F F F F F F F F F F F F F F L0407 Rev FA November

47 Products we offer: Bent Axis Motors Closed Circuit Axial Piston Pumps and Motors Displays Electrohydraulic Power Steering Electrohydraulics Hydraulic Power Steering Integrated Systems Joysticks and Control Handles Microcontrollers and Software Open Circuit Axial Piston Pumps Orbital Motors PLUS+1 GUIDE Proportional Valves Sensors Steering Transit Mixer Drives Danfoss Power Solutions is a global manufacturer and supplier of high-quality hydraulic and electronic components. We specialize in providing state-of-the-art technology and solutions that excel in the harsh operating conditions of the mobile off-highway market. Building on our extensive applications expertise, we work closely with our customers to ensure exceptional performance for a broad range of off-highway vehicles. We help OEMs around the world speed up system development, reduce costs and bring vehicles to market faster. Danfoss Your Strongest Partner in Mobile Hydraulics. Go to for further product information. Wherever off-highway vehicles are at work, so is Danfoss. We offer expert worldwide support for our customers, ensuring the best possible solutions for outstanding performance. And with an extensive network of Global Service Partners, we also provide comprehensive global service for all of our components. Please contact the Danfoss Power Solution representative nearest you. Comatrol Schwarzmüller-Inverter Turolla Valmova Hydro-Gear Daikin-Sauer-Danfoss Local address: Danfoss Power Solutions (US) Company 2800 East 13th Street Ames, IA 50010, USA Phone: Danfoss Power Solutions GmbH & Co. OHG Krokamp 35 D Neumünster, Germany Phone: Danfoss Power Solutions ApS Nordborgvej 81 DK-6430 Nordborg, Denmark Phone: Danfoss Power Solutions (Shanghai) Co., Ltd. Building #22, No Jin Hai Rd Jin Qiao, Pudong New District Shanghai, China Phone: Danfoss can accept no responsibility for possible errors in catalogues, brochures and other printed material. Danfoss reserves the right to alter its products without notice. This also applies to products already on order provided that such alterations can be made without changes being necessary in specifications already agreed. All trademarks in this material are property of the respective companies. Danfoss and the Danfoss logotype are trademarks of Danfoss A/S. All rights reserved. 520L0407 Rev FA November Danfoss A/S, 2014

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