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

OMS/OMT/OMV Orbital Motors Technical Information … ·  · 2017-04-27151f 2324 2325 2326 2327 2328 2329 2330 2331 2348 151f 2332 2333 2334 2335 2336 2337 ... 151f 2368 2369 2370

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Page 1: OMS/OMT/OMV Orbital Motors Technical Information … ·  · 2017-04-27151f 2324 2325 2326 2327 2328 2329 2330 2331 2348 151f 2332 2333 2334 2335 2336 2337 ... 151f 2368 2369 2370

MAKING MODERN LIVING POSSIBLE

Technical Information

Orbital MotorsOMS, OMT and OMV OrbitalMotors

powersolutions.danfoss.com

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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

Technical Information OMS, OMT and OMV Orbital Motors

2 520L0407 • Rev FA • November 2014

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A wide range of Orbital MotorsCharacteristic, features and application areas of Orbital Motors....................................................................................6

Characteristic features of Danfoss Orbital Motors.......................................................................................................... 6Technical features of Danfoss Orbital Motor.....................................................................................................................6The Danfoss Orbital Motors are used in the following application areas:..............................................................7

Survey of literature with technical data on Danfoss Orbital Motors..............................................................................7

Data surveyOMS, OMT and OMV speed, torque and output................................................................................................................... 8

VersionsOMS versions................................................................................................................................................................................... 10Features available (options):...................................................................................................................................................... 10

Code numbersCode numbers.................................................................................................................................................................................11

Ordering.......................................................................................................................................................................................11

Technical DataTechnical data for OMS................................................................................................................................................................12Max. Permissible Shaft Seal Pressure...................................................................................................................................... 13Pressure Drop in Motor................................................................................................................................................................14Oil flow in drain line...................................................................................................................................................................... 14Direction of Shaft Rotation......................................................................................................................................................... 14Permissible Shaft Loads for OMS..............................................................................................................................................14

Function DiagramsFunction Diagrams........................................................................................................................................................................ 18

Shaft VersionShaft Version....................................................................................................................................................................................23Port Thread Versions ....................................................................................................................................................................27

Dimensions – European VersionStandard Flange............................................................................................................................................................................. 28

Dimensions – US VersionStandard Flange............................................................................................................................................................................. 30

Dimensions – European VersionSpecial Flange................................................................................................................................................................................. 32

Dimensions – US VersionA-2 Flange.........................................................................................................................................................................................34Magneto Flange............................................................................................................................................................................. 36SAE-B Flange....................................................................................................................................................................................38

Dimensions – European VersionWheel..................................................................................................................................................................................................40

Dimensions – US VersionWheel..................................................................................................................................................................................................42

Dimensions – European VersionShort................................................................................................................................................................................................... 44

OMSSInstalling the OMSS....................................................................................................................................................................... 45OMSS Dimensions of the Attached Component................................................................................................................45Internal Spline Data for the Component to be Attached................................................................................................ 45Drain Connection on OMSS or Attached Component......................................................................................................46

VersionsOMT Versions...................................................................................................................................................................................47

Features available (options) .................................................................................................................................................47

Code Numbers

Technical Information OMS, OMT and OMV Orbital Motors

Contents

520L0407 • Rev FA • November 2014 3

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Code numbers.................................................................................................................................................................................48Ordering.......................................................................................................................................................................................48

Technical DataTechnical data for OMT, OMTW, OMTS, OMT FX OMT FL and OMT FH...................................................................... 49Max. Permissible Shaft Seal Pressure...................................................................................................................................... 50Pressure Drop in Motor................................................................................................................................................................51Oil flow in drain line...................................................................................................................................................................... 51Direction of Shaft Rotation......................................................................................................................................................... 52Permissible Shaft Loads for OMT..............................................................................................................................................52

Function DiagramsFunction Diagrams........................................................................................................................................................................ 56

Shaft versionShaft Version....................................................................................................................................................................................59Port Thread Versions.....................................................................................................................................................................62

Dimensions – European VersionStandard Flange............................................................................................................................................................................. 63

Dimensions – US VersionStandard Flange............................................................................................................................................................................. 65

Dimensions – European VersionWheel..................................................................................................................................................................................................67

Dimensions – US VersionWheel..................................................................................................................................................................................................69

Dimensions – European VersionBrake-Wheel.....................................................................................................................................................................................71Brake-Standard............................................................................................................................................................................... 73Short................................................................................................................................................................................................... 74

OMTSInstalling the OMTS....................................................................................................................................................................... 76OMTS Dimensions of the Attached Component................................................................................................................76Internal Spline Data for the Component to be Attached................................................................................................ 77Drain Connection on OMTS or Attached Component......................................................................................................77

VersionsOMV versions...................................................................................................................................................................................79

Features available (options) .................................................................................................................................................79

Code numbersCode numbers.................................................................................................................................................................................80

Ordering.......................................................................................................................................................................................80

Technical dataTechnical data for OMV, OMVW and OMVS..........................................................................................................................81Max. permissible shaft seal pressure.......................................................................................................................................81Pressure drop in motor................................................................................................................................................................ 82Oil flow in drain line...................................................................................................................................................................... 82Direction of shaft rotation...........................................................................................................................................................83Permissible shaft loads for OMV............................................................................................................................................... 83

Function diagramsFunction diagrams.........................................................................................................................................................................86

Shaft versionShaft Version....................................................................................................................................................................................89Port thread versions......................................................................................................................................................................92

Dimensions – European versionStandard flange.............................................................................................................................................................................. 93

Technical Information OMS, OMT and OMV Orbital Motors

Contents

4 520L0407 • Rev FA • November 2014

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Dimensions – US versionStandard flange.............................................................................................................................................................................. 95SAE-C Flange....................................................................................................................................................................................97

Dimensions – European versionWheel..................................................................................................................................................................................................99

Dimensions – US versionWheel............................................................................................................................................................................................... 101

Dimensions – European versionShort ................................................................................................................................................................................................103

OMVSInstalling the OMVS.................................................................................................................................................................... 104OMVS dimensions of the attached component...............................................................................................................104Internal spline data for the component to be attached................................................................................................104Drain connection on OMVS or attached component.....................................................................................................105

Weight of motorsWeight of motors ........................................................................................................................................................................107

Technical Information OMS, OMT and OMV Orbital Motors

Contents

520L0407 • Rev FA • November 2014 5

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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 offermore than 3,000 different orbital motors, categorised in types, variants and sizes (including different shaftversions).

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) andmaximum 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 apart of the programme is characterised by motors that can be adapted to a given application. Adaptionscomprise the following variants among others:

Technical Information OMS, OMT and OMV Orbital Motors

A wide range of Orbital Motors

6 520L0407 • Rev FA • November 2014

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• 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 intomore 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.

Technical Information OMS, OMT and OMV Orbital Motors

A wide range of Orbital Motors

520L0407 • Rev FA • November 2014 7

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OMS, OMT and OMV speed, torque and output

80 100 125 160 200 250 315 400 500 160 200 250 315 400 500 315 400 500 630 800

80 100 125 160 200 250 315 400 500 160 200 250 315 400 500 315 400 500 630 800

80 100 125 160 200 250 315 400 500 160 200 250 315 400 500 315 400 500 630 800

800600400200

22000

20000

18000

16000

14000

12000

10000

8000

6000

4000

2000

2400

2200

2000

1800

1600

1400

1200

1000

800

600

400

200

80

60

40

20

605040302010

OMS OMT OMV

151-1407.11

hp kW

lbf• in

min-1

(rpm)

Nm

Max. speed

Max. Torque

Max. output

Intermittend values Continuous values

The bar diagrams above are useful for a quick selection of relevant motor size for the application. Thefinal motor size can be determined by using the function diagram for each motor size.

Technical Information OMS, OMT and OMV Orbital Motors

Data survey

8 520L0407 • Rev FA • November 2014

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• 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 ourproduction. The diagrams apply to a return pressure between 5 and 10 bar [75 and 150 psi] when usingmineral based hydraulic oil with a viscosity of 35 mm²/s [165 SUS] and a temperature of 50°C [120°F]. Forfurther 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" 520L0232.

Technical Information OMS, OMT and OMV Orbital Motors

Data survey

520L0407 • Rev FA • November 2014 9

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OMS versions

Mountingflange

Shaft Port size Europeanversion

US version Drainconnection

Check valve Main typedesignation

Standardflange

Cyl. 32 mm G 1/2 X Yes Yes OMS

Cyl. 1.25 in 7/8-14 UNF X Yes Yes OMS

Splined 1.25 in G 1/2 X Yes Yes OMS

7/8-14 UNF X Yes Yes OMS

Tapered 35 mm G 1/2 X Yes Yes OMS

Tapered 1.25 in 7/8-14 UNF X Yes Yes OMS

P.t.o. G 1/2 X Yes Yes OMS

Special flange Splined 1.25 in G 1/2 X Yes Yes OMS

A-2flange

Cyl. 1 in 7/8-14 UNF X Yes Yes OMS

Cyl. 1.25 in 7/8-14 UNF X Yes Yes OMS

Splined 1 in 7/8-14 UNF X Yes Yes OMS

Splined 1.25 in 7/8-14 UNF X Yes Yes OMS

Tapered 1.25 in 7/8-14 UNF X Yes Yes OMS

Magnetoflange

Cyl. 1 in 7/8-14 UNF X Yes Yes OMS

Cyl. 1.25 in 7/8-14 UNF X Yes Yes OMS

Splined 1 in 7/8-14 UNF X Yes Yes OMS

Splined 1.25 in 7/8-14 UNF X Yes Yes OMS

SAE B flange Splined 1.25 in 7/8-14 UNF X Yes Yes OMS

Splined 0.875 in 7/8-14 UNF X Yes Yes OMS

Wheel Cyl. 32 mm G 1/2 X Yes Yes OMSW

Cyl. 1.25 in 7/8-14 UNF X Yes Yes OMSW

Tapered 35 mm G 1/2 X Yes Yes OMSW

Tapered 1.25 in 7/8-14 UNF X Yes Yes OMSW

Short No output shaft G 1/2 X Yes Yes OMSW

Features available (options):

Speed sensor

Motor with tacho connection

High pressure shaft seal

Viton shaft seal

Painted

Ultra short

Motor with drum brake

Technical Information OMS, OMT and OMV Orbital Motors

Versions

10 520L0407 • Rev FA • November 2014

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Code numbers

CodeNumbers

Displacement [cm³]

80 100 125 160 200 250 315 400 500

151F 0500 0501 0502 0503 0504 0505 0506 0605 -

151F 2200 2201 2202 2203 2204 2205 2206 2261 2268

151F 0507 0508 0509 0510 0511 0512 0513 - -

151F 2207 2208 2209 2210 2211 2212 2213 2262 2269

151F 0514 0515 0516 0517 0518 0519 0520 - -

151F 2214 2215 2216 2217 2218 2219 2220 2264 2270

151F 0560 0561 0562 0563 0564 0565 0566 - -

151F 0542 0543 0544 0545 0546 0547 0548 - -

151F 2300 2301 2302 2303 2304 2305 2306 2307 2345

151F 2316 2317 2318 2319 2320 2321 2322 2323 2347

151F 2308 2309 2310 2311 2312 2313 2314 2315 2346

151F 2324 2325 2326 2327 2328 2329 2330 2331 2348

151F 2332 2333 2334 2335 2336 2337 2338 2339 2349

151F 2377 2378 2379 2380 2381 2382 2383 2384 2385

151F 2368 2369 2370 2371 2372 2373 2374 2375 2376

151F 2359 2360 2361 2362 2363 2364 2365 2366 2367

151F 2350 2351 2352 2353 2354 2355 2356 2357 2358

151F 2395 2396 2397 2398 2399 2400 2401 2402 2403

151F 2413 2414 2415 2416 2417 - - - -

151F 0521 0522 0523 0524 0525 0526 0527 0610 -

151F 2235 2236 2237 2238 2239 2240 2241 2265 2266

151F 0528 0529 0530 0531 0532 0533 0534 0609 -

151F 2242 2243 2244 2245 2246 2247 2248 2263 2267

151F 0535 0536 0537 0538 0539 0540 0541 0608 -

Ordering

Add the four digit prefix “151F” to the four digit numbers from the chart for complete code number.

Example:

151F0504 for an OMS 200 with standard flange, cyl. 32 mm shaft and port size G 1/2.

Orders will not be accepted without the four digit prefix.

Technical Information OMS, OMT and OMV Orbital Motors

Code numbers

520L0407 • Rev FA • November 2014 11

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Technical data for OMS

Type OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

OMSOMSWOMSS

Motor size 80 100 125 160 200 250 315 400 500

Geometric displacement cm3

[in3]80.5[4.91]

100.0[6.10]

125.7[7.67]

159.7[9.75]

200.0[12.20]

250.0[15.26]

314.9[19.22]

393.0[23.98]

488.0[29.78]

Max. speed min-1

[rpm]cont. 810 750 600 470 375 300 240 190 155

int1) 1000 900 720 560 450 360 285 230 185

Max. torque Nm[lbf·in]

cont. 240[2120]

305[2700]

375[3320]

490[4340]

610[5400]

720[6370]

825[7300]

865[7660]

850[7520]

int.1) 310[2740]

390[3450]

490[4340]

600[5310]

720[6370]

870[7700]

1000[8850]

990[8760]

990[8760]

Max. output kW[hp]

cont. 15.5[20.8]

18.0[24.1]

18.0[24.1]

16.5[22.1]

16.5[22.1]

14.5[19.4]

15.0[20.1]

11.0[14.8]

9.0[12.1]

int.1) 19.5[26.2]

22.5[30.2]

22.5[30.2]

23.0[30.8]

22.0[29.5]

18.0[24.1]

17.0[22.8]

12.5[16.8]

10.5[14.1]

Max. pressure drop bar[psi]

cont. 210[3050]

210[3050]

210[3050]

210[3050]

210[3050]

200[2900]

200[2900]

160[2320]

120[1740]

int.1) 275[3990]

275[3990]

275[3990]

260[3770]

250[3630]

250[3630]

240[3480]

190[2760]

140[2030]

peak2) 295[4280]

295[4280]

295[4280]

280[4060]

270[3920]

270[3920]

260[3770]

210[3050]

160[2320]

Max. oil flow l/min[USgal/min]

cont. 65[17.2]

75[19.8]

75[19.8]

75[19.8]

75[19.8]

75[19.8]

75[19.8]

75[19.8]

75[19.8]

int.1) 80[21.1]

90[23.8]

90[23.8]

90[23.8]

90[23.8]

90[23.8]

90[23.8]

90[23.8]

90[23.8]

Max. starting pressurewith unloaded shaft

bar[psi]

12[175]

10[145]

10[145]

8[115]

8[115]

8[115]

8[115]

8[115]

8[115]

Min. starting torque at max. press. drop cont.Nm [lbf·in]

180[1590]

230[2040]

290[2570]

370[3270]

470[4160]

560[4960]

710[6280]

710[6280]

660[5840]

at max. press. drop int.1)

Nm [lbf·in]235[2080]

300[2660]

380[3360]

460[4070]

560[4960]

700[6200]

850[7520]

840[7430]

770[6820]

Type Max. inlet pressure Max. return pressurewith drain line

OMSOMSWOMSS

bar [psi] cont. 230 [3340] 140[2030]

bar [psi] int.1) 295 [4280] 175 [2540]

bar [psi] peak2) 300 [4350] 210 [3050]

Splined 1 in Cyl. 1 in Splined 0.875 in

*Max torque for shaft type Nm[lbf·in]

cont. 360 [3190] 300 [2660] 200 [1770]

int.1) 450 [3980] 410 [3630] 200 [1770]

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.

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Max. Permissible Shaft Seal Pressure

OMS 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

151-320.10

OMS 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

– – – – Intermittent operation: the permissible values may occur for max. 10% of every minute.

Continuous operation

151-1674.10

0 100 200 300 400 500 600 700 800 max.

1500

1200

900

600

300

0

100

90

80

70

60

50

40

30

20

10

0

psi bar

P P

min-1

(rpm)

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Pressure Drop in Motor

151-1408.10

0 10 20 30 40 50 60 70 80 90 l/min

0 2 4 6 8 10 12 14 16 18 20 22 US gal/min

200

150

100

50

0

16

14

12

10

8

6

4

2

0

psi bar

∆ p ∆ p

Q

Q

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 [75-150 psi].

Pressure dropbar [psi]

Viscositymm2/s [SUS]

Oil flow in drain linel/min [US gal/min]

140 [2030] 20 [100] 1.5 [0.40]

35 [165] 1.0 [0.26]

210 [3050] 20 [100] 3.0 [0.79]

35 [165] 2.0[0.53]

Direction of Shaft Rotation

Permissible Shaft Loads for OMS

Mounting flange:

Standard – A-2 – Magneto – SAE B

Shaft:

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Cyl. 32 mm – Cyl. 1.25 in – Splined 1.25 in.

Tapered 35 mm – Tapered 1.25 in – P.t.o.

151-1962.10

-20 -10 0 10 20 30 40 50 60 70 80 mm

-0.5 0 0.5 1 1.5 2 2.5 3 in

7000

6000

5000

4000

3000

2000

1000

0

30000

25000

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0

+- =5000 N=1124 lbf

Mounting flange:

Wheel

Shaft:

All shaft types

151-1964.10

0 10 20 30 40 50 60 70 80 90 100 110 mm

0 0.5 1 1.5 2 2.5 3 3.5 4 in

7000

6000

5000

4000

3000

2000

1000

0

30000

25000

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0

+- =5000 N=1124 lbf

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 fromthe 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 ratedoutput 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%.

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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The dash curve shows max. radial shaft load. Any shaft load exceeding the values shown in the curve willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Mounting flange:

Special

Shaft:

Splined 1.25 in

151-1960.10

-20 -10 0 10 20 30 40 50 60 70 80 mm

-0.5 0 0.5 1 1.5 2 2.5 3 in

7000

6000

5000

4000

3000

2000

1000

0

30000

25000

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0

+- =5000 N=1124 lbf

Mounting flange:

A-2 – Magneto

Shaft:

Cyl. 1 in – Splined 1 in

151-1961.10

-20 -10 0 10 20 30 40 50 60 mm

-0.5 0 0.5 1 1.5 2 in

4000

3000

2000

1000

0

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0

+- =5000 N=1124 lbf

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

16 520L0407 • Rev FA • November 2014

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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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Mounting flange:

SAE B

Shaft:

Splined 0.875 in

151-1963.10

-20 -10 0 10 20 30 40 50 60 mm

-0.5 0 0.5 1 1.5 2 in

4000

3000

2000

1000

0

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0

+- =5000 N=1124 lbf

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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

520L0407 • Rev FA • November 2014 17

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Function Diagrams

OMS 80lbf• in Nm

3000

2500

2000

1500

1000

500

0

325

300

275

250

225

200

175

150

125

100

75

50

25

0

0 100 200 300 400 500 600 700 800 900 1000

151-901.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=8

0 l/m

in[2

1.1

US

gal/m

in]

65 l/

min

[17.

2 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]210 bar

∆ p= 30 bar

3050 psi175 bar

2540 psi

225 bar3260 psi

250 bar3630 psi

105 bar1520 psi

∆ p=275 bar3990 psi

440 psi

2030 psi140 bar

1020 psi70 bar

N=1kW

6kW

N=18kW

75% 70%

12hp

18hp

15hp

6hp

1hp

η t =81%

78%

80%

η t =60%

9hp

15kW12kW

3kW

9kW

3hp

OMS 100lbf• in Nm

4000

3500

3000

2500

2000

1500

1000

500

0

450

400

350

300

250

200

150

100

50

0

0 50 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950

151-902.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

210 bar

∆ p= 35 bar

3050 psi175 bar

2540 psi

225 bar3260 psi

250 bar3630 psi

105 bar1520 psi

∆ p=275 bar3990 psi

510 psi

2030 psi140 bar

1020 psi70 barN=1kW

6kW

N=18kW

75%70%

12hp

18hp

15hp

6hp

1hp

η t =83%

80%

η t =60%

9hp

15kW12kW

3kW

9kW

3hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

18 520L0407 • Rev FA • November 2014

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OMS 125lbf• in Nm

4500

4000

3500

3000

2500

2000

1500

1000

500

0

500

450

400

350

300

250

200

150

100

50

0

0 50 100 150 200 250 300 350 400 450 500 550 600 650 700 750

151-903.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

210 bar

∆ p= 35 bar

3050 psi175 bar

2540 psi

225 bar3260 psi

250 bar3630 psi

105 bar1520 psi

∆ p=275 bar3990 psi

510 psi

2030 psi140 bar

1020 psi70 bar

N=1kW

6kW

N=21kW

75%70%

12hp 18hp15hp

6hp

1hp

η t =85%

80%

83%

η t =60%

9hp

15kW12kW

21hp 18kW

3kW

9kW

3hp

OMS 160lbf• in Nm

6000

5000

4000

3000

2000

1000

0

600

550

500

450

400

350

300

250

200

150

100

50

0

0 50 100 150 200 250 300 350 400 450 500 550 600

151-904.11

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

50 l/

min

[13.

2 U

S ga

l/min

]

210 bar

∆ p= 35 bar

3050 psi175 bar

2540 psi

225 bar3260 psi

160 bar2320 psi140 bar

2030 psi

∆ p=260 bar3770 psi

510 psi

1520 psi105 bar

1020 psi70 barN=1kW

6kW

N=21kW

75% 70%

12hp

18hp

15hp6hp

1hp

η t =87%

80%83%85%86%

η t =60%

9hp

15kW12kW

21hp

18kW

3kW

9kW

3hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

520L0407 • Rev FA • November 2014 19

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OMS 200lbf• in Nm

7000

6000

5000

4000

3000

2000

1000

0

750

700

650

600

550

500

450

400

350

300

250

200

150

100

50

0

0 50 100 150 200 250 300 350 400 450 500

151-905.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

210 bar

∆ p= 30 bar

3050 psi175 bar

2540 psi160 bar

2320 psi

225 bar3260 psi

∆ p=250 bar3630 psi

105 bar1520 psi

440 psi

2030 psi140 bar

1020 psi70 barN=1kW

6kW

N=21kW

75%70%

12hp

18hp

15hp

6hp

1hp

η t =88%

80%83%

85%86%

η t =60%

9hp

15kW12kW

21hp

18kW

3kW

9kW

3hp

OMS 250lbf• in Nm

8000

7000

6000

5000

4000

3000

2000

1000

0

900

800

700

600

500

400

300

200

100

0

0 50 100 150 200 250 300 350 400

151-1039.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

200 bar

∆ p= 35 bar

2900 psi175 bar

2540 psi155 bar

2250 psi

225 bar3260 psi

∆ p=250 bar3630 psi

95 bar1390 psi

125 bar1810 psi

510 psi

2030 psi140 bar

1020 psi70 barN=1kW

6kW

N=21kW

75%

70%

12hp

18hp15hp

6hp

1hp

80%83%

85%86%

η t =60%

η t =87%

9hp

15kW12kW

21hp

18kW

3kW

9kW

3hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

20 520L0407 • Rev FA • November 2014

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OMS 315lbf• in Nm

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1100

1000

900

800

700

600

500

400

300

200

100

0

0 25 50 75 100 125 150 175 200 225 250 275 300

151-906.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

200 bar

∆ p= 35 bar

2900 psi175 bar

2540 psi160 bar

2320 psi

225 bar3260 psi

∆ p=240 bar3480 psi

120 bar1740 psi

510 psi

2030 psi140 bar

1020 psi70 bar

1450 psi100 bar

N=1kW

6kW

N=18kW

75%

70%

12hp

18hp

15hp

6hp

1hp

η t =87% 80%

83%

85%

η t =60%

9hp

15kW

12kW

3kW

9kW

3hp

OMS 400lbf• in Nm

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1100

1000

900

800

700

600

500

400

300

200

100

0

0 25 50 75 100 125 150 175 200 225 250

151-1491.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

∆ p= 30 bar

175 bar2540 psi

160 bar2320 psi

105 bar1520 psi

∆ p=190 bar2760 psi

120 bar1740 psi

440 psi

2030 psi140 bar

870 psi60 bar

1160 psi80 bar

N=1kW

6kW

N=15kW

75%70%

12hp

15hp

6hp

1hp

η t =87%

80%83%

86%85%

η t =60%

9hp

12kW

3kW

9kW

3hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

520L0407 • Rev FA • November 2014 21

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OMS 500lbf• in Nm

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1100

1000

900

800

700

600

500

400

300

200

100

0

0 25 50 75 100 125 150 175 200

151-1984.10

min-1

(rpm)

10 l/

min

[2.6

US

gal/m

in]

Q=5

l/m

in[1

.3 U

S ga

l/min

]

Q=9

0 l/m

in[2

3.8

US

gal/m

in]

75 l/

min

[19.

8 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

30 l/

min

[7.9

US

gal/m

in]

50 l/

min

[13.

2 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

∆ p= 25 bar

105 bar1520 psi

∆ p=140 bar2030 psi

120 bar1740 psi

360 psi

730 psi50 bar

1160 psi80 bar

1300 psi90 bar

N=1kW

6kW

N=12kW

75% 70%

12hp6hp

1hp

η t =88%

80%

83%

86% 85%

η t =60%

9hp3kW

9kW

3hp

Explanation of function diagram use, basis and conditions, see OMS, OMT and OMV speed, torque andoutput on page 8.

Continuous range

Intermittent range (max. 10% operation every minute)

Max. permissible continuous/intermittent torque for the actual shaft version, see Technical data for OMSon page 12.

Intermittent pressure drop and oil flow must not occur simultaneously.

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

22 520L0407 • Rev FA • November 2014

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Shaft Version

R0.5 [0.020]

R0.4 [0.016]

R4 [0.16]

9.4 [0.370]7.5 [0.295]

31.75 [1.250]31.37 [1.235]

31.75 [1.250]31.37 [1.235]

43.4 [1.708]42.6 [1.678]

3.0 [0.118]2.0 [0.079] 6.40 [0.252]

6.35 [0.250]

7.962 [0.3135]7.937 [0.3125]

R0.6 [0.024]

151-876.10

45˚

45˚

D

F

B

CCC

A-A

A-A

A-A

A

A

A

A

A

A

A

E

58 [2.28]

18 [0.71]

6 [0.24]

45.5 [1.791]45.0 [1.772]

56.5 [2.224]

10.000 [0.3937]9.964 [0.3923]

5.5 [0.217]4.5 [0.177]

48.4 [1.906]47.6 [1.874]

3/8 -16 UNC

3/8 -16 UNC

min. 20 [0.78]

min. 20 [0.78]

Ø32

.018

[1.2

605]

Ø32

.002

[1.2

599]

35.0

0 [1

.378

]34

.71

[1.3

67]

M8

Ø31

.750

[1.2

500]

Ø31

.699

[1.2

480]

35.3

3 [1

.391

]35

.08

[1.3

81]

28.2

[1.1

10]

27.9

[1.0

98]

Ø25

.40

[1.0

00]

Ø25

.38

[0.9

99]

Ø35

[1.3

8]Ø

35 [1

.38]

Ø35

[1.3

8]

A: Cylindrical 32 mm shaft B: Cylindrical 1.25 in shaft C: Cylindrical 1 in shaft

D: Parallel keyA10 × 8 × 45DIN 6885Keyway deviates from standard

E: Parallel key5/16 × 5/16 × 11/4 inSAE J744Keyway deviates from standard

F: Parallel key1/4 × 1/4 × 11/4 inB.S. 46Keyway deviates from standard

Technical Information OMS, OMT and OMV Orbital Motors

Shaft Version

520L0407 • Rev FA • November 2014 23

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43.4 [1.709]42.6 [1.677]

22.3 [0.878]21.7 [0.854]

min. 14 [0.55]

R2 [0.08]

¼ -20 UNC-2B *6.275 [0.2470]*6.200 [0.2441]

*21.54 [0.848]*21.40 [0.843]

6x60˚

1[0.04]x45˚

35 [1.38]32 [1.26]

48.4 [1.906]47.6 [1.874]

58 [2.28]

18 [0.71]

6 [0.24]

38 [1.50]36 [1.42]

min. 20 [0.78]

3/8 -16 UNCR0.4 [0.016]

R0.4 [0.016]

151-1912.11

Ø35

[1.3

8]Ø

35 [1

.38]

Ø35

[1.3

8]

Ø25

.348

[0.9

979]

Ø25

.298

[0.9

960]

Ø31

.750

[1.2

500]

Ø31

.725

[1.2

490]

M8

Ø31

.750

[1.2

500]

Ø31

.725

[1.2

490]

45˚

45˚

45˚

E

D

F

A-A

A-A

A-A

A

A

A

A

A

A

D. Involute splined shaftANS B92.1 - 1970 standardFlat root side fitPitch 12/24Teeth 14Major dia. 1.25 inPressure angle 30°

US versionE: Involute splined shaftANS B92.1 - 1970 standardFlat root side fitPitch 12/24Teeth 14Major dia. 1.25 inPressure angle 30°

F: Splined shaftSAE 6 B (B.S. 2059)Straight-sided, bottom fitting, deep.Fit 2Nom. size 1 in*Deviates from SAE 6 B (B.S. 2059)

Technical Information OMS, OMT and OMV Orbital Motors

Shaft Version

24 520L0407 • Rev FA • November 2014

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31.75 [1.250]31.37 [1.235]35.6 [1.402]34.4 [1.354]

7.960 [0.3134]7.940 [0.3126]

54.3 [2.138]53.7 [2.114]

12.7 [0.500]

5 [0.20]

58 [2.28]

13.5 [0.531]12.5 [0.492]

33.2 [1.307]32.8 [1.291]

R2.5 [0.098]

20 [0.79]

13 [0.51] 6.00 [0.236]5.97 [0.235]

36 [1.42]

R4 [0.16]

4 [0.16]

151-1915.10

Ø35

[1.3

8]Ø

35 [1

.38]

Ø35

[1.3

8]

Ø4

[0.1

5]

17.1

6 [0

.676

]16

.94

[0.6

77]

Ø31

.775

[1.2

510]

Ø31

.725

[1.2

490]

Ø18

.6 [0

.732

18.4

[0.7

24]

Ø22

.1 [0

.870

21.9

[0.8

62]

19.1

.[0.7

52]

19.0

[0.7

48]

M20

x1.5

[0.5

91]

Ø4.

5 [0

.177

]

Ø44

[1.7

3]

45˚

H

G

I

A-A

A-A

A-A

O

M

N

L

J K

A

A

A

A

A

A

G. Involute splined shaftANS B92.1 - 1970 standardFlat root side fitPitch 16/32Teeth 13

K: DIN 937Across flats: 41 mmTightening torque:200 ± 10 Nm [1770 ±85 lbf·in]

Technical Information OMS, OMT and OMV Orbital Motors

Shaft Version

520L0407 • Rev FA • November 2014 25

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Major dia. 0.875 inPressure angle 30°

H: Tapered 35 mm shaft(ISO/R775)

J: Taper 1:10

L: Parallel keyB6 × 6 × 20DIN 6885Keyway deviates from standard

M: 1 - 20 UNEFAcross flats 1 7/16 inTightening torque:200 ± 10 Nm (1770 ±85 lbf·in)

I: Tapered 1 1/4 in shaft N: Cone 1:8SAE J501

O: Parallel key5/16 × 5/16 × 1 1/4SAE J501Keyway deviates from standard

100 [3.94]

R5 [0.20]

R0.5 [0.020] R6.7 [0.267]

7 [0.28]

77 [3.03]75 [2.95]

38.25 [1.506]37.75 [1.486]

28.14 [1.108]27.89 [1.098]

8.64 [0.340]

8.53 [0.336]

151-1948.10

29.5

[1.1

61]

29.3

[1.1

54]

Ø34

.85

[1.3

72]

Ø34

.73

[1.3

67]

Ø40

[1.5

7]

45˚

60˚

J

A-AA

A

J. P.t.o. shaft

DIN 9611 Form 1

(ISO/R500 without pin hole)

** Deviates from DIN 9611

Technical Information OMS, OMT and OMV Orbital Motors

Shaft Version

26 520L0407 • Rev FA • November 2014

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Port Thread Versions

A

B

C

D

G H

E F

151-1971.11

min

. 12

[0.4

7]

min

. 12

[0.4

7]m

in. 1

6.7

[0.6

57]

min

. 16

[0.6

3]

Ø34.4 [1.354]Ø34.0 [1.339]

Ø21.4 [0.843]Ø21.0 [0.827]

A: G main portsE: ISO 228/1 - G1/2 O-ring boss port

B: UNF main portsF: 7/8 - 14 UNF

C: G drain portG: ISO 228/1 - G1/4 O-ring boss port

D: UNF drain portH: 7/16 - 20 UNF

Technical Information OMS, OMT and OMV Orbital Motors

Shaft Version

520L0407 • Rev FA • November 2014 27

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Standard Flange

Ø82.55 [3.250]Ø82.50 [3.248]

56 [2.20]

48 [1.89]

1 [0

.04]

x45˚

max. 128 [5.04]

max. 105 [4.13]

106.8 [4.205]106.0 [4.173]

max. 131 [5.157]

40 [1

.57]

6.35

[0.2

50]

5.85

[0.2

30]

66.5

[2.6

18]

64.5

[2.5

39]

Ø20

[0.7

9]

18 [0

.71]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1809.10

max. 52 [2.05] max. 54 [2.13]

Ø13.5 [0.531]

Rmin. 14 [0.55]

R13 [0.51]

R20 [0.78]

C

D

E

L L 1

L 2L 3

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 13 mm [0.51 in] deep

E: G 1⁄2; 15 mm [0.59 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

28 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 167 [6.57] 14.0 [0.551] 124 [4.88]

OMS 100 170 [6.69] 17.4 [0.685] 127 [5.00]

OMS 125 175 [6.89] 21.8 [0.858] 132 [5.20]

OMS 160 181 [7.13] 27.8 [1.094] 138 [5.43]

OMS 200 188 [7.40] 34.8 [1.370] 145 [5.71]

OMS 250 196 [7.72] 43.5 [1.713] 153 [6.02]

OMS 315 208 [8.19] 54.8 [2.157] 165 [6.50]

OMS 400 221 [8.70] 68.4 [2.693] 178 [7.01]

Output shaft L3 mm [in]

All shafts except P.t.o. shaft max 67 [2.64]

min 65 [2.56]

P.t.o. shaft max 109 [4.29]

min 107 [4.21]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

520L0407 • Rev FA • November 2014 29

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Standard Flange

max. 131 [5.16]

106.8 [4.205]106.0 [4.173]

Ø82.55 [3.250]Ø82.50 [3.248]

56 [2.20]

1 [0

.04]

x45˚

max. 105 [4.13]

max. 126 [4.96]

18 [0

.71]

66.5

[2.6

18]

64.5

[2.5

39]

Ø21

[0.8

3]

Ø13.5 [0.531]

6.35

[0.2

50]

5.85

[0.2

30]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

max. 52 [2.05] max. 54 [2.13]

40 [1.57]

151-1972.10

C

D

E

L L 1

L 3L 2

C: Drain connection7⁄16 - 20 UNF;12 mm [0.47 in] deepO-ring boss port

D: M10; 13 mm [0.51 in] deep E: 7⁄8 - 14 UNF;16.7 mm [0.657 in] deepO-ring boss port

Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 167 [6.57] 14.0 [0.551] 124 [4.88]

OMS 100 170 [6.69] 17.4 [0.685] 127 [5.00]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

30 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 125 175 [6.89] 21.8 [0.858] 132 [5.20]

OMS 160 181 [7.13] 27.8 [1.094] 138 [5.43]

OMS 200 188 [7.40] 34.8 [1.370] 145 [5.71]

OMS 250 196 [7.72] 43.5 [1.713] 153 [6.02]

OMS 315 208 [8.19] 54.8 [2.157] 165 [6.50]

OMS 400 221 [8.70] 68.4 [2.693] 178 [7.01]

OMS 500 221 [8.70] 68.4 [2.693] 178 [7.01]

Output shaft L3 mm [in]

Cyl.1.25 inSplined 1.25 in

max 57 [2.24]

min 55 [2.17]

Tapered 1.25 in max 67 [2.64]

min 65 [2.56]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 31

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Special Flange

Ø82.55 [3.250]Ø82.50 [3.248]

56 [2.20]

48 [1.89]

1 [0

.04]

x45˚

max

. 103

[4.0

6]

max. 103 [4.06]

Ø106.8 [4.205]

Ø106.0 [4.173]

Ø11

.5 [0

.453

]

6.35

[0.2

50]

5.85

[0.2

30]

78.5

[3.0

91]

76.5

[3.0

12]

Ø20

[0.7

9]

58 [2

.28]

55 [2

.17]

53 [2

.09]

18 [0

.71]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1810.10

max. 52 [2.05] max. 54 [2.13]

R10 [0.39]

C

D

E

L L 1

L 2

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 13 mm [0.51 in] deep

E: G 1⁄2; 15 mm [0.59 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

32 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 178 [7.01] 14.0 [0.551] 136 [5.35]

OMS 100 182 [7.17] 17.4 [0.685] 140 [5.51]

OMS 125 186 [7.32] 21.8 [0.858] 144 [5.67]

OMS 160 192 [7.56] 27.8 [1.094] 150 [5.91]

OMS 200 199 [7.83] 34.8 [1.370] 157 [6.18]

OMS 250 208 [8.19] 43.5 [1.713] 166 [6.54]

OMS 315 219 [8.62] 54.8 [2.157] 177 [6.97]

OMS 400 232 [9.13] 68.4 [2.693] 190 [7.48]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

520L0407 • Rev FA • November 2014 33

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A-2 FlangeØ88.55 [3.250]Ø82.50 [3.248]

Ø13.5 [0.531]

56 [2.20]

1 [0

.04]

x45˚

106.

8 [4

.205

]10

6.0

[4.1

73]

max

. 131

[5.1

6]

max. 126 [4.96]

18 [0

.71]

66.5

[2.6

18]

64.5

[2.5

39]

Ø21

[0.8

3]

6.35

[0.2

50]

5.85

[0.2

30]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1979.10

max. 52 [2.05] max. 54 [2.13]

40 [1.57]

C

D

E

L L 1

L 3L 2

C: Drain connection7⁄16 - 20 UNF;12 mm [0.47 in] deepO-ring boss port

D: M10; 13 mm [0.51 in] deep

E: 7⁄8 - 14 UNF;16.7 mm [0.657 in] deepO-ring boss port

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

34 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 167 [6.57] 14.0 [0.551] 124 [4.88]

OMS 100 170 [6.69] 17.4 [0.685] 127 [5.00]

OMS 125 175 [6.89] 21.8 [0.858] 132 [5.20]

OMS 160 181 [7.13] 27.8 [1.094] 138 [5.43]

OMS 200 188 [7.40] 34.8 [1.370] 145 [5.71]

OMS 250 196 [7.72] 43.5 [1.713] 153 [6.02]

OMS 315 208 [8.19] 54.8 [2.157] 165 [6.50]

OMS 400 221 [8.70] 68.4 [2.693] 178 [7.01]

OMS 500 221 [8.70] 68.4 [2.693] 178 [7.01]

Output shaft L3 mm [in]

Cyl.1 inSplined 1 in

max 52 [2.05]

min 50 [1.97]

Cyl.1.25 inSplined 1.25 in

max 57 [2.24]

min 55 [2.17]

Tapered 1.25 in max 67 [2.64]

min 65 [2.56]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 35

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Magneto Flange

Ø88.55 [3.250]Ø82.50 [3.248]

Ø13.5 [0.531]

6xØ20 [0.79]

56 [2.20]

0.3

[0.0

12]x

45˚

106.

8 [4

.205

]10

6.0

[4.1

73]

max

. 136

[5.3

5]

18.9

[0.7

44]

2.6

[0.1

02]

70 [2

.75]

68 [2

.68]

Ø21

[0.8

3]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1980.10

max. 52 [2.05]

22.5˚ 22.5˚

max. 54 [2.13]

C

D

E

L L 1

L 3L 2

C: Drain connection7⁄16 - 20 UNF;12 mm [0.47 in] deepO-ring boss port

D: M10; 13 mm [0.51 in] deep E: 7⁄8 - 14 UNF;16.7 mm [0.657 in] deepO-ring boss port

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

36 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 171 [6.73] 14.0 [0.551] 128 [5.04]

OMS 100 174 [6.85] 17.4 [0.685] 131 [5.16]

OMS 125 179 [7.05] 21.8 [0.858] 136 [5.35]

OMS 160 185 [7.28] 27.8 [1.094] 142 [5.59]

OMS 200 192 [7.56] 34.8 [1.370] 149 [5.87]

OMS 250 200 [7.87] 43.5 [1.713] 157 [6.18]

OMS 315 212 [8.35] 54.8 [2.157] 169 [6.65]

OMS 400 225 [8.86] 68.4 [2.693] 182 [7.17]

OMS 500 225 [8.86] 68.4 [2.693] 182 [7.17]

Output shaft L3 mm [in]

Cyl.1 inSplined 1 in

max 49 [1.93]

min 47 [1.85]

Cyl.1.25 inSplined 1.25 in

max 54 [2.13]

min 52 [2.05]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 37

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SAE-B Flange

Ø101.60 [4.000]Ø101.55 [3.998]

Ø56.5 [2.224]Ø55.5 [2.185]

Ø14.3 [0.570]

56 [2.20]

1 [0

.04]

x45˚

146.

05 [5

.750

]

max

. 174

[6.8

5]

Rmin

. 14

[0.5

5]R1

0 [0

.39]

max. 126 [4.96]

18 [0

.71]

66.5

[2.6

18]

64.7

[2.5

47]

Ø21

[0.8

3]

9.7

[0.3

82]

9.3

[0.3

66]

3.5

[0.1

38]

3.3

[0.1

30]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

max. 52 [2.05] max. 54 [2.13]

40 [1.57]

151-1981.10

C

D

E

L L 1

L 3L 2

C: Drain connection7⁄16 - 20 UNF;12 mm [0.47 in] deepO-ring boss port

E: 7⁄8 - 14 UNF;16.7 mm [0.657 in] deepO-ring boss port

D: M10; 13 mm [0.51 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

38 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMS 80 167 [6.57] 14.0 [0.551] 124 [4.88]

OMS 100 170 [6.69] 17.4 [0.685] 127 [5.00]

OMS 125 175 [6.89] 21.8 [0.858] 132 [5.20]

OMS 160 181 [7.13] 27.8 [1.094] 138 [5.43]

OMS 200 188 [7.40] 34.8 [1.370] 145 [5.71]

OMS 250 196 [7.72] 43.5 [1.713] 153 [6.02]

OMS 315 208 [8.19] 54.8 [2.157] 165 [6.50]

OMS 400 221 [8.70] 68.4 [2.693] 178 [7.01]

OMS 500 221 [8.70] 68.4 [2.693] 178 [7.01]

Output shaft L3 mm [in]

Splined 1.25 in max 57 [2.24]

min 55 [2.17]

Splined 0.875 in max 42 [1.65]

min 40 [1.57]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 39

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Wheel

Ø125.000 [4.9213]Ø124.937 [4.9188] max. Ø73 [2.87]

16˚

56 [2.20]

48 [1.89]

1 [0

.04]

x45˚

max

. 139

[5.4

6]

max. 139 [5.46]

160.4 [6.315]

159.6 [6.283]

Ø13

.5 [0

.531

]

R6 [0

.24]

28.5

[1.1

2]

9 [0

.35]

7 [0

.28]

Ø20

[0.7

9]

58 [2

.28]

43.9

[1.7

38]

42.5

[1.6

73]

104

[4.0

9]10

2 [4

.02]

16 [0

.63]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1812.10

max. 52 [2.05] max. 54 [2.13]

R12 [0.47]

C

D

E

L

L 1L 2

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 13 mm [0.51 in] deep

E: G 1⁄2; 15 mm [0.59 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

40 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMSW 80 129 [5.08] 14.0 [0.551] 87 [3.43]

OMSW 100 132 [5.20] 17.4 [0.685] 90 [3.54]

OMSW 125 137 [5.39] 21.8 [0.858] 95 [3.74]

OMSW 160 143 [5.63] 27.8 [1.094] 101 [3.98]

OMSW 200 150 [5.91] 34.8 [1.370] 108 [4.25]

OMSW 250 158 [6.22] 43.5 [1.713] 116 [4.57]

OMSW 315 170 [6.69] 54.8 [2.157] 128 [5.04]

OMSW 400 183 [7.20] 68.4 [2.693] 142 [5.59]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

520L0407 • Rev FA • November 2014 41

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Wheel

Ø127.05 [5.000]Ø126.95 [4.998]

max. Ø73 [2.87]

16˚

56 [2.20]

1 [0

.04]

x45˚

max

. 139

[5.4

6]

max. 139 [5.46]

Ø161.9 [6.374]

Ø13

.5 [0

.531

]8

[0.3

1] R6 [0

.24]

28.5

[1.1

2]

16 [0

.63]

Ø21

[0.8

3]

5.6

[0.2

2]4.

4 [0

.17]

27.6

[1.0

47]

26.4

[1.0

39]

22.6

[0.8

90]

21.4

[0.8

50]

R1 [0

.04]

16.3 [0.642]15.7 [0.618]

16.3 [0.642]15.7 [0.618]

21.3 [0.839]20.7 [0.815]

21.3 [0.839]20.7 [0.815]

R18 [0.71]

70 [2.76]

max. 103 [4.06]

151-1982.10

max. 52 [2.05] max. 54 [2.13]

R12 [0.47]

C

D

E

L L 1

L 3L 2

C: Drain connection7⁄16 - 20 UNF;12 mm [0.47 in] deepO-ring boss port

D: M10; 13 mm [0.51 in] deep E: 7⁄8 - 14 UNF;16.7 mm [0.657 in] deepO-ring boss port

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

42 520L0407 • Rev FA • November 2014

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Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMSW 80 130 [5.12] 14.0 [0.551] 88 [3.46]

OMSW 100 133 [5.24] 17.4 [0.685] 91 [3.58]

OMSW 125 138 [5.43] 21.8 [0.858] 96 [3.78]

OMSW 160 144 [5.67] 27.8 [1.094] 102 [4.02]

OMSW 200 151 [5.94] 34.8 [1.370] 109 [4.29]

OMSW 250 159 [6.26] 43.5 [1.713] 117 [4.61]

OMSW 315 171 [6.73] 54.8 [2.157] 129 [5.08]

OMSW 400 184 [7.24] 68.4 [2.693] 142 [5.59]

OMSW 500 184 [7.24] 68.4 [2.693] 142 [5.59]

Output shaft L3 mm [in]

Cyl.1.25 in max 94 [3.70]

min 92 [3.62]

Tapered 1.25 in max 104 [4.09]

min 102 [4.02]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 43

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Short

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 13 mm [0.51 in] deep E: G 1⁄2; 15 mm [0.59 in] deep

Type Lmax mm [in] L1 mm [in] L2 mm [in]

OMSS 80 124 [4.88] 14.0 [0.551] 83 [3.27]

OMSS 100 128 [5.04] 17.4 [0.685] 86 [3.39]

OMSS 125 132 [5.20] 21.8 [0.858] 90 [3.54]

OMSS 160 138 [5.43] 27.8 [1.094] 96 [3.78]

OMSS 200 145 [5.71] 34.8 [1.370] 103 [4.06]

OMSS 250 154 [6.06] 43.5 [1.713] 112 [4.41]

OMSS 315 165 [6.50] 54.8 [2.157] 123 [4.84]

OMSS 400 179 [7.05] 68.4 [2.693] 137 [5.39]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

44 520L0407 • Rev FA • November 2014

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Installing the OMSS

The cardan shaft of the OMSS motor acts as an “output shaft”. Because of the movement of the shaft, noseal 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 attachedcomponent receive oil and are adequately lubricated. To ensure that the spline connection receivessufficient oil, a conical sealing ring between the shaft of the attached component and the motorintermediate plate is recommended. This method is used in the OMS.

The conical sealing ring (code. no. 633B9023) is supplied with the motor.

To ensure that oil runs to the bearings and other parts of the attached component, the stop plate musthave a hole in it (see fig. below).

We recommend an O-ring between motor and attached component. The O-ring (code no. 151F1033) issupplied with the motor. If motor and attached component have been separated, remember to refillbefore starting up. Fill the oil through the drain connection.

OMSS Dimensions of the Attached Component

2.35 [0.093]2.25 [0.089]

0.25 [0.010]

0.1˚

8.4 [0.331]8.0 [0.315]27.3 [1.075]

26.7 [1.051]

33 [1.30]31 [1.22]

52.3 [2.059]51.7 [2.035]

6.2 [0.244]5.8 [0.228]

16.5 [0.650]15.5 [0.610]

34.2 [1.346]33.8 [1.331]

28 [1.10]26 [1.02]

151-873.10

15 [0.59]

min

. Ø4

[0.1

6]

Ø10

0 [3

.94]

min

. Ø40

[1.5

7]

Ø10

8.0

[4.2

52]

Ø10

7.6

[4.2

36]

Ø35

.5 [1

.398

34.5

[1.3

58]

Ø29

.5 [1

.161

28.5

[1.1

22]

Ø40

.5 [1

.594

40.3

[1.5

87]

Ø61

.5 [2

.421

60.5

[2.3

82]

CA

B

E

D

F

KK

K

G H

A: O-ring: 100 × 3 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: M10; min. 15 mm [0.59 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 motorcardan shaft (see drawing below).

Material:

Case hardening steel with a tensile strength corresponding at least to 20 MoCr4 (900 N/mm2) or SAE8620.

Hardening specification:

Technical Information OMS, OMT and OMV Orbital Motors

OMSS

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• On the surface: HV = 750 ± 50

• 7 ± 2 mm under the surface: HV = 560

Internal involute spline data; Standard ANS B92.1-1970, class 5 (corrected m · X = 0.8; m = 2.1166)

Flat root side fit mm in

Number of teeth z 12 12

Pitch DP 12/24 12/24

Pressure angle 30° 30°

Pitch dia. D 25.4 1.0

Major dia. Dri 28.00–0.1 1.10 0–0.004

Form dia. (min.) Dfi 27.6 1.09

Minor dia. Di 23.00+0.033 0.90550

+0.0013

Space width (circular) Lo 4.308±0.020 0.1696±0.0008

Tooth thickness (circular) So 2.341 0.09217

Fillet radius Rmin. 0.2 0.008

Max. measurementbetween pins*

l 17.620+0.15 0.7000

–0.006

Pin dia. d 4.835±0.001 0.1903±0.00004

* Finished dimensions (when hardened)

dl

D

DriDi

Dfi

So

Lo

Rmin

151-874.10

Drain Connection on OMSS or Attached Component

A drain line ought to be used when pressure in the return line can exceed the permissible pressure on theshaft 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 motorand attached component.

The drain line must be led to the tank in such a way that there is no risk of the motor and attachedcomponent being drained of oil when at rest.

The maximum pressure in the drain line is limited by the attached component and its shaft seal.

Technical Information OMS, OMT and OMV Orbital Motors

OMSS

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OMT Versions

Mountingflange

Shaft Port size European version

USversion

Drainconnection

Check valve Lowpressurerelease

Highpressurerelease

Main typedesignation

Standardflange

Cyl. 40 mm G 3/4 X Yes Yes OMT

Cyl. 1.5 in 1 1/16-12 UN X Yes Yes OMT

Splined 1.5 in G 3/4 X Yes Yes OMT

1 1/16-12 UN X Yes Yes OMT

Tapered 45 mm G 3/4 X Yes Yes OMT

Tapered 1.75 in 1 1/16-12 UN X Yes Yes OMT

P.t.o. G 3/4 X Yes Yes OMT

Wheel Cyl. 40 mm G 3/4 X Yes Yes OMTW

Tapered 45 mm G 3/4 X Yes Yes OMTW

Tapered 1.75 in 1 1/16-12 UN X Yes Yes OMTW

Brake-wheel Wheel bolt flange G 3/4 X Yes No X OMT FX

Thread hole flange G 3/4 X Yes No X OMT FX

Brake-standard

Cyl. 40 mm G 3/4 X Yes No X OMT FL

Splined 1.5 in G 3/4 X Yes No X OMT FL

Cyl. 40 mm G 3/4 X Yes No X OMT FH

Splined 1.5 in G 3/4 X Yes No X OMT FH

Short No output shaft G 3/4 X Yes Yes OMTS

Features available (options)

Speed sensor

Motor with tacho connection

Viton shaft seal

Painted

Ultra short

Technical Information OMS, OMT and OMV Orbital Motors

Versions

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Code numbers

CodeNumbers

Displacement [cm3]

160 200 250 315 400 500

151B 3000 3001 3002 3003 3004 3005

151B 2050 2051 2052 2053 2054 2055

151B 3006 3007 3008 3009 3010 3011

151B 2056 2057 2058 2059 2060 2061

151B 3012 3013 3014 3015 3016 3017

151B 2062 2063 2064 2065 2066 2067

151B 3018 3019 3020 3021 3022 3023

151B 3024 3025 3026 3027 3028 3029

151B 3030 3031 3032 3033 3034 3035

151B 2080 2081 2082 2083 2084 2085

151B 3207 3208 3209 3210 3211 3212

151B 3200 3201 3202 3203 3204 3205

151B 4000 4001 4002 4003 4004 4005

151B 4007 4008 4009 4010 4011 4012

151B 4021 4022 4023 4024 4025 4026

151B 4028 4029 4030 4031 4032 4033

151B 3036 3037 3038 3039 3040 3041

Ordering

Add the four digit prefix “151B” to the four digit numbers from the chart for complete code number.

Example:

151B3002 for an OMT 250 with standard flange, cyl. 40 mm shaft and port size G 3/4.

Orders will not be accepted without the four digit prefix.

Technical Information OMS, OMT and OMV Orbital Motors

Code Numbers

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Technical data for OMT, OMTW, OMTS, OMT FX OMT FL and OMT FH

Type OMTOMTWOMTSOMT FXOMT FLOMT FH

OMTOMTWOMTSOMT FXOMT FLOMT FH

OMTOMTWOMTSOMT FXOMT FLOMT FH

OMTOMTWOMTSOMT FXOMT FLOMT FH

OMTOMTWOMTSOMT FXOMT FLOMT FH

OMTOMTWOMTSOMT FXOMT FLOMT FH

Motor size 160 200 250 315 400 500

Geometric displacement cm3

[in3]161.1[9.83]

201.4[12.29]

251.8[15.37]

326.3[19.91]

410.9[25.07]

523.6[31.95]

Max. speed min-1

[rpm]cont. 625 625 500 380 305 240

int1) 780 750 600 460 365 285

Max. torque Nm[lbf·in]

cont. 470[4160]

590[5220]

730[6460]

950[8410]

1080[9560]

1220[10800]

int.1) 560[4960]

710[6280]

880[7790]

1140[10090]

1260[11150]

1370[12130]

Max. output kW[hp]

cont. 26.5[35.5]

33.5[44.9]

33.5[44.9]

33.5[44.9]

30.0[40.2]

26.5[35.5]

int.1) 32.0[42.9]

40.0[53.6]

40.0[53.6]

40.0[53.6]

35.0[46.9]

30.0[40.2]

Max. pressure drop bar[psi]

cont. 200[2900]

200[2900]

200[2900]

200[2900]

180[2610]

160[2320]

int.1) 240[3480]

240[3480]

240[3480]

240[3480]

210[3050]

180[2610]

peak2) 280[4060]

280[4060]

280[4060]

280[4060]

240[3480]

210[3050]

Max. oil flow l/min[USgal/min]

cont. 100[26.4]

125[33.0]

125[33.0]

125[33.0]

125[33.0]

125[33.0]

int.1) 125[33.0]

150[39.6]

150[39.6]

150[39.6]

150[39.6]

150[39.6]

Max. starting pressurewith unloaded shaft

bar[psi]

10[145]

10[145]

10[145]

10[145]

10[145]

10[145]

Min. starting torque at max. press. drop cont.Nm [lbf·in]

340[3010]

430[3810]

530[4690]

740[6550]

840[7430]

950[8410]

at max. press. drop int.1)

Nm [lbf·in]410[3630]

520[4600]

630[5580]

890[7880]

970[8590]

1060[9380]

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.

Type Max. inlet pressure Max. return pressure withdrain line

OMT, OMTW, OMTS, OMTFX, OMT FL, OMT FH

bar[psi]

cont. 210[3050]

140[2030]

bar[psi]

int.1) 250[3630]

175[2540]

bar[psi]

peak2) 300[4350]

210[3050]

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

520L0407 • Rev FA • November 2014 49

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Brake motors

Type Max. presssure in drainline3)

Holding torque4) Brake-release pressure3) Max pressure in brakeline

OMT FX, OMT FL 5 bar[70 psi]

1200 Nm[10620 lbf·in]

12 bar[170 psi]

30 bar[440 psi]

OMT FH 5 bar[70 psi]

1200 Nm[10620 lbf·in]

30 bar[440 psi]

280 bar[4060 psi]

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.

3) Brake motors must always have a drain line. The brake-release pressure is the difference between thepressure in the brake line and the pressure in the drain line.

4) For the supply of motors with holding torques higher than those stated, please contact the DanfossSales Organization.

For max. permissible combination of flow and pressure, see function diagram for actual motor.

Max. Permissible Shaft Seal Pressure

OMT with check valves and without use of drain connection:

The pressure on the shaft seal never exceeds the pressure in the return line

151-320.10

OMT with check valves and with drain connection:

The shaft seal pressure equals the pressure on the drain line.

OMT FX, OMT FL and OMT FH must always be fitted with drain line.

Max. pressure in drain line is 5 bar [75 psi]

151-1405.10

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Max. return pressure without drain line or max. pressure in the drain line

– – – – Intermittent operation: the permissible values may occur for max. 10% of every minute.

Continuous operation

151-1674.10

0 100 200 300 400 500 600 700 800 max.

1500

1200

900

600

300

0

100

90

80

70

60

50

40

30

20

10

0

psi bar

P P

min-1

(rpm)

Pressure Drop in Motor

151-1409.10

0 20 40 60 80 100 120 140 l/min

0 4 8 12 16 20 24 28 32 36 US gal/min

200

150

100

50

0

16

14

12

10

8

6

4

2

0

psi bar

∆ p ∆ p

Q

Q

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 [75-150 psi].

Pressure dropbar [psi]

Viscositymm2/s [SUS]

Oil flow in drain linel/min [US gal/min]

140[2030]

20 [100] 2.5 [0.66]

35 [165] 1.5 [0.40]

210[3050]

20 [100] 5.0 [1.32]

35 [165] 3.0 [0.79]

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Direction of Shaft Rotation

B BA A

151-1050.10

Permissible Shaft Loads for OMT

Mounting flange:

Standard

Shaft:

All shaft types

151-1967.10

-60 -40 -20 0 20 40 60 80 100 120 140 mm

-2 -1.5 -1 -0.5 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 in

14000

12000

10000

8000

6000

4000

2000

0

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.

0+- =10000 N

=2248 lbf

Mounting flange:

Wheel

Shaft:

All shaft types

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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151-1970.10

0 20 40 60 80 100 120 140 160 mm

0 1 2 3 4 5 6 in

14000

12000

10000

8000

6000

4000

2000

0

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.0

+- =10000 N=2248 lbf

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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Mounting flange:

Brake-wheel

Shaft:

All shaft types

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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151-1966.10

0 20 40 60 80 100 120 140 mm

0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 in

5500

5000

4500

4000

3500

3000

2500

2000

1500

1000

500

0

25000

20000

15000

10000

5000

0

lbf N

Prad. Prad.

Pmax.0+-

=5000 N=1124 lbf

Pmax. =7000 N=1574 lbf

Mounting flange:

Brake-standard

Shaft:

All shaft types

151-1968.10

-80 -60 -40 -20 0 20 40 60 80 100 120 mm

-3 -2.5 -2 -1.5 -1 -0.5 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 in

14000

12000

10000

8000

6000

4000

2000

0

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.

0+- =10000 N

=2248 lbf

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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Technical Information OMS, OMT and OMV Orbital Motors

Technical Data

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Function Diagrams

OMT 160lbf• in Nm

5500

5000

4500

4000

3500

3000

2500

2000

1500

1000

500

0

600

550

500

450

400

350

300

250

200

150

100

50

0

0 100 200 300 400 500 600 700 800

151-493.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

Q=1

25 l/

min

[33.

0 U

S ga

l/min

]

40 l/

min

[10.

6 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 40 bar

2900 psi

160 bar2320 psi

∆ p=240 bar3480 psi

580 psi

1740 psi

120 bar

1160 psi

80 barN=5kW

10kW

N=35kW

85%

80%

30hp

35hp

15hp10hp

5hp

η t =86%

η t =70%

25hp

15kW

30kW

20kW

25kW

20hp

OMT 200lbf• in Nm

6500

6000

5500

5000

4500

4000

3500

3000

2500

2000

1500

1000

500

0

750

700

650

600

550

500

450

400

350

300

250

200

150

100

50

0

0 50 100 150 200 250 300 350 400 450 500 550 600 650 700 750

151-494.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

40 l/

min

[10.

6 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 40 bar

2900 psi

160 bar2320 psi

∆ p=240 bar3480 psi

580 psi

1740 psi120 bar

1160 psi80 bar

N=5kW

10kW

N=40kW

85%

80%

30hp

35hp

15hp

10hp

5hp

η t =88%

87%

η t =70%

25hp15kW

30kW

40hp

35kW

20kW

25kW

20hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

56 520L0407 • Rev FA • November 2014

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OMT 250lbf• in Nm

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

900

800

700

600

500

400

300

200

100

0

0 50 100 150 200 250 300 350 400 450 500 550 600

151-495.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

125

l/min

[33.

0 U

S ga

l/min

]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]Q

=150

l/m

in[3

9.6

US

gal/m

in]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]

40 l/

min

[10.

6 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 40 bar

2900 psi

160 bar2320 psi

∆ p=240 bar3480 psi

580 psi

1740 psi120 bar

1160 psi80 barN=5kW

10kW

N=40kW

85%

80%

30hp

40hp35hp

15hp

10hp

5hp

η t =87%

η t =70%

25hp15kW

35kW30kW

20kW

25kW

20hp

OMT 315lbf• in Nm

11000

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1200

1100

1000

900

800

700

600

500

400

300

200

100

0

0 50 100 150 200 250 300 350 400 450 500

151-869.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

125

l/min

[33.

0 U

S ga

l/min

]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]

40 l/

min

[10.

6 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 40 bar

2900 psi

160 bar2320 psi

∆ p=240 bar3480 psi

580 psi

1740 psi

120 bar

1160 psi

80 barN=5kW

10kW

N=40kW

85% 80%

87%

30hp

40hp

35hp15hp

10hp

5hp

η t =88%

η t =70%

25hp15kW

35kW

30kW

20kW

25kW

20hp

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

520L0407 • Rev FA • November 2014 57

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OMT 400lbf• in Nm

12000

11000

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1300

1200

1100

1000

900

800

700

600

500

400

300

200

100

0

0 25 50 75 100 125 150 175 200 225 250 275 300 325 350 375

151-1058.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

∆ p= 30 bar

150 bar2180 psi

∆ p=210 bar3050 psi

180 bar2610 psi

440 psi

870 psi60 bar

1300 psi90 bar

1740 psi120 bar

N=2.5kW

N=30kW

30hp

2.5hp

η t =89%

80%

87%

85%

η t =70%

25hp

25kW

20hp

20kW

15hp

15kW10hp 10kW

5hp 5kW

OMT 500lbf• in Nm

12500

10000

7500

5000

2500

0

1500

1250

1000

750

500

250

0

0 25 50 75 100 125 150 175 200 225 250 275 300

151-1116.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

Q=1

50 l/

min

[39.

6 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

20 l/

min

[5.3

US

gal/m

in]

40 l/

min

[10.

6 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

80 l/

min

[21.

1 U

S ga

l/min

]

60 l/

min

[15.

9 U

S ga

l/min

]

∆ p= 30 bar

140 bar2030 psi

∆ p=180 bar2610 psi

160 bar2320 psi

440 psi

870 psi60 bar

1300 psi90 bar

1740 psi120 bar

N=2.5kW

N=30kW30hp

2.5hp

η t =90%

87%85%

η t =80%

25hp

25kW

20hp

20kW

15hp

15kW10hp 10kW

5hp

5kW

Explanation of function diagram use, basis and conditions, see OMS, OMT and OMV speed, torque andoutput on page 8.

Continuous range

Intermittent range (max. 10% operation every minute)

Intermittent pressure drop and oil flow must not occur simultaneously.

Technical Information OMS, OMT and OMV Orbital Motors

Function Diagrams

58 520L0407 • Rev FA • November 2014

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Shaft Version

82 [3.23]

26 [1.02]9.5 [0.374]

M12

12.000 [0.4724]11.957 [0.4707]

5.5 [0.217]4.5 [0.177]

3/8 -16 UNC

9.545 [0.3758]9.525 [0.3750]

57.5 [2.264]56.9 [2.240]

11.5 [0.453]9.3 [0.366]

70.5 [2.776]70.0 [2.756]

82.2 [3.236]81.8 [3.220]

min. 20 [0.78]

R0.5 [0.020]

R0.5 [0.020]

151-1032.10

Ø40

.018

[1.5

755]

Ø40

.002

[1.5

749]

43.0

0 [1

.693

]42

.71

[1.6

81]

Ø38

.10

[1.5

00]

Ø38

.05

[1.4

98]

42.4

0 [1

.669

]42

.14

[1.6

59]

Ø45

[1.7

7]Ø

45 [1

.77]

45˚

45˚

D

C

A-A

A-A

A

A

A

A

A

B

A: Cylindrical 40 mm shaft C: Parallel keyA12 × 8 × 70DIN 6885Keyway deviates from standard

B: Cylindrical 1.5 in shaft D: Parallel key3/8 × 3/8 × 21/4 inB.S. 46Keyway deviates from standard

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

520L0407 • Rev FA • November 2014 59

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82.2 [3.236]81.8 [3.220]

82 [3.23]

26 [1.02]

9.5 [0.374]

M12

58 [2.28]56 [2.20]

58 [2.28]56 [2.20]

min. 20 [0.78]

3/8 -16 UNC

R0.5 [0.020]

R0.5 [0.020]

151-1916.10

Ø45

[1.7

7]

Ø38

.100

[1.5

000]

Ø38

.075

[1.4

990]

Ø38

.100

[1.5

000]

Ø38

.075

[1.4

990]

Ø45

[1.7

7]

45˚

45˚

D

C

A-A

A-A

A

A

A

A

C. Involute splined shaftANS B92.1 - 1970 standardFlat root side fitPitch 12/24Teeth 17Major dia. 1.50 inPressure angle 30°

US versionD. Involute splined shaftANS B92.1 - 1970 standardFlat root side fitPitch 12/24Teeth 17Major dia. 1.50 inPressure angle 30°

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

60 520L0407 • Rev FA • November 2014

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102 [4.02]

80.8 [3.181]80.0 [3.150]

4.5 [0.177]

59.00 [2.323]57.80 [2.276]

32.1 [1.264]31.5 [1.240]

16 [0.63]

34 [1.34] 4 [0.16]12.000 [0.4724]11.957 [0.4707]54 [2.13] 22 [0.87]

82 [3.23]

11.150 [0.4390]11.130 [0.4382]

R5 [0.20]

R0.5 [0.020] R6.7 [0.267]

7 [0.28]

77 [3.03]75 [2.95]

38.25 [1.506]37.75 [1.486]

28.14 [1.108]**27.89 [1.098]

8.64 [0.340]

8.53 [0.336]

151-1917.10

29.5

[1.1

61]

29.3

[1.1

54]

Ø34

.85

[1.3

72]

Ø34

.73

[1.3

67]

5.71

[0.2

25]

5.61

[0.2

21]

Ø4

[0.1

6]Ø

6 [0

.24]

Ø7

[0.2

8]M

30x2

24.1

5 [0

.951

]23

.95

[0.9

43]

Ø56

[2.2

0]

Ø45

[1.7

7]

Ø45

[1.7

7]

Ø45

[1.7

7]

45˚

60˚

H

E

I

K L

J

M

F

GGG

A-A

A-A

A-A

A

A

A

A

A

AAA

E: Tapered 45 mm shaft(ISO/R775)

F: Tapered 1.75 in shaft H: Taper 1:10 K: Cone 1:8SAE J501

G. P.t.o. shaftDIN 9611 Form 1 (ISO/R500 without pin hole)** Deviates from DIN9611

I: DIN 937Across flats: 46 mmTightening torque: 500 ± 30 Nm[4430 ±270 lbf·in]

J: Parallel keyB12 × 8 × 28DIN 6885Keyway deviates fromstandard

L: 1 1/4 - 18 UNEFAcross flats 2 3/16 inTightening torque: 500 ±10Nm (4425 ±90 lbf·in)

M: Parallel key7/16 × 7/16 × 1 1/4B.S. 46Keyway deviates fromstandard

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

520L0407 • Rev FA • November 2014 61

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Port Thread Versions

A

B

C D

G H

E F

151-1977.11

min

. 13

[0.5

1]

min

. 12

[0.4

7]

min

. 18

[0.6

7]

min

. 19

[0.7

5]

Ø41.5 [1.634]Ø41.0 [1.614]

A: G main portsE: ISO 228/1 - G3/4O-ring boss port

B: UN main portsF: 1 1/16 - 12 UN

C: G drain portG: ISO 228/1 - G1/4O-ring boss port

D: UNF drain portH: 9/16 - 18 UNF

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

62 520L0407 • Rev FA • November 2014

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Standard Flange

Ø123.8 [4.874]Ø122.2 [4.811]

Ø125.000 [4.9213]Ø124.937 [4.9188]

Ø73 [2.87]Ø71 [2.80]

18 [0

.71]

23.6

[0.9

29]

22.4

[0.8

82]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

R1.6

[0.0

63]

R12

[0.4

7]Ø

14 [0

.55]

Ø160.4

[6.31

5]

Ø159.6

[6.28

3]

31 [1

.22]

60 [2

.36]

32 [1

.26] 9

[0.3

5] 22.4

[0.8

82]

max

. 69

[2.7

2]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

max. 67 [2.64]

72 [2.83]64 [2.52]

max. 71 [2.80]

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

max. 143 [5.63]

max

. 143

[5.6

3]

151-889.11

100 [3.94]

max. 128 [5.04]

C

E

D

L L 1

L 2

L 3

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 10 mm [0.39 in] deep E: G 3⁄4; 17 mm [0.67 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

520L0407 • Rev FA • November 2014 63

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMT 160 190 [7.48] 16.5 [0.650] 140 [5.51]

OMT 200 195 [7.68] 21.5 [0.846] 145 [5.71]

OMT 250 201 [7.91] 27.8 [1.094] 151 [5.94]

OMT 315 211 [8.31] 37.0 [1.457] 161 [6.34]

OMT 400 221 [8.70] 47.5 [1.870] 171 [6.73]

OMT 500 235 [9.25] 61.5 [2.421] 185 [7.28]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Output shaft L3 mm [in]

All shafts except P.t.o. shaft max. 82 [3.23]

P.t.o. shaft max. 102 [4.02]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

64 520L0407 • Rev FA • November 2014

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Standard Flange

Ø127.00 [5.000]Ø126.95 [4.998]

Ø123.8 [4.874]Ø122.2 [4.811]

Ø86.5 [3.406]Ø85.5 [3.366]

73.7 [2.902]71.5 [2.815]

64.5 [2.539]63.5 [2.500]

33.1

5 [1

.305

]30

.85

[1.2

15]

18 [0

.71]

23.6

[0.9

29]

22.4

[0.8

82]

60 [2

.36]

R0.8

[0.0

03]

max

. 69

[2.7

2]

Ø162.3

[6.39

0]

Ø161.5

[6.35

8]

9 [0

.35] 22

.4 [0

.882

]

31 [1

.22]

max. 75 [2.95]max. 67 [2.64]

R12.

5 [0

.492

14 [0

.55]

max

. 143

[5.6

3]

151-889.11.22

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

100 [3.94]

max. 128 [5.04]

C

D

L L 1

L 2L 3

max. 143 [5.63]

C: Drain connection 9⁄16 - 18 UNF; 13 mm [0.51 in] deep O-ring boss port

D: 1 1⁄16 - 12 UN; 19 mm [0.75 in] deep O-ring boss port

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

520L0407 • Rev FA • November 2014 65

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMT 160 190 [7.48] 16.5 [0.650] 140 [5.51]

OMT 200 195 [7.68] 21.5 [0.846] 145 [5.71]

OMT 250 201 [7.91] 27.8 [1.094] 151 [5.94]

OMT 315 211 [8.31] 37.0 [1.457] 161 [6.34]

OMT 400 221 [8.70] 47.5 [1.870] 171 [6.73]

OMT 500 235 [9.25] 61.5 [2.421] 185 [7.28]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Output shaft L3 mm [in]

Cyl. 1.5 inSplined 1.5 in

82 [3.23]

Tapered 1.75 in 80.4 [3.17]

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

66 520L0407 • Rev FA • November 2014

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Wheel

Ø126.25 [4.970]Ø123.75 [4.872]

Ø123.8 [4.874]Ø122.2 [4.811]

Ø172.000 [6.7717]Ø171.937 [6.7692]

Ø160.000 [6.2992]Ø159.937 [6.2967]

Ø73 [2.87]Ø71 [2.80]

2 [0

.08]

x45˚

4 [0

.16]

18 [0

.71]

7 [0

.28]

23.6

[0.9

29]

22.4

[0.8

82]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

99 [3

.90]

78.2

[3.0

79]

82 [3

.23]

R1.2

[0.0

47]

R1.2

[0.0

47]

45˚

Ø200.4

[7.89

0]

Ø199.6

[7.85

8]

8 [0

.31]

90.3

[3.5

55]

98.2

[3.8

66]

max

. 69

[2.7

2]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

max. 67 [2.64]

75 [2.95]

max. 71 [2.80]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

R16

[0.6

3]Ø

18 [0

.71]

max

. 180

[7.0

9]

max. 180 [7.09]

151-897.12

100 [3.94]

max. 128 [5.04]

C

E

D

L

L 1L 2

C: Drain connectionG 1⁄4; 12 mm [0.47 in] deep

D: M10; 10 mm [0.39 in] deep E: G 3⁄4; 17 mm [0.67 in] deep

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Dimensions – European Version

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Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMTW 160 123 [4.84] 16.5 [0.650] 73 [2.87]

OMTW 200 128 [5.04] 21.5 [0.846] 78 [3.07]

OMTW 250 134 [5.28] 27.8 [1.094] 84 [3.31]

OMTW 315 144 [5.67] 37.0 [1.457] 94 [3.70]

OMTW 400 154 [6.06] 47.5 [1.870] 104 [4.09]

OMTW 500 168 [6.61] 61.5 [2.421] 118 [4.65]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

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Wheel

Ø160.000 [6.2992]Ø159.937 [6.2967]

Ø126.25 [4.970]Ø123.75 [4.872]

Ø123.8 [4.874]Ø122.2 [4.811]

Ø73 [2.87]Ø71 [2.80]

80.8

[3.1

81]

80.0

[3.1

50]

2 [0

.08]

x45˚

18 [0

.71]

3.5

[0.1

38]

23.6

[0.9

29]

22.4

[0.8

82]

102.

1 [4

.020

]99

.1 [3

.902

]

98.2

[3.8

66]

78.6

[3.0

94]

77.5

[3.0

51]

45˚

R1.2

[0.0

47]

90.3

[3.5

55]

R1.2

[0.0

47]

max

. 69

[2.7

2]

Ø200.4

[7.89

0]

Ø199.6

[7.85

8]

7 [0

.28]

7 [0

.28]

max. 75 [2.95]

75 [2.95]

max. 67 [2.64]

R16

[0.6

3]Ø

18 [0

.71]

max. 180 [7.09]

max

. 180

[7.0

9]

151-897.11.22

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

100 [3.94]

max. 128 [5.04]

Ø172.000 [6.7717]Ø171.937 [6.7692]

C

D

L

L 1L 2

C: Drain connection9⁄16 - 18 UNF;13 mm [0.51 in] deepO-ring boss port

D: 1 1⁄16 - 12 UN;19 mm [0.75 in] deepO-ring boss port

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMTW 160 123 [4.84] 16.5 [0.650] 73 [2.87]

OMTW 200 128 [5.04] 21.5 [0.846] 78 [3.07]

OMTW 250 134 [5.28] 27.8 [1.094] 84 [3.31]

OMTW 315 144 [5.67] 37.0 [1.457] 94 [3.70]

OMTW 400 154 [6.06] 47.5 [1.870] 104 [4.09]

OMTW 500 168 [6.61] 61.5 [2.421] 118 [4.65]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US Version

70 520L0407 • Rev FA • November 2014

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Brake-Wheel

5x72

˚4x

90˚

10x3

23.3

[0.9

17]

22.7

[0.8

94]

11.1

[0.4

37]

10.9

[0.4

29]

13 [0

.51]

12 [0

.47]

13 [0

.51]

12 [0

.47]

Ø200.4 [7.890]

Ø199.6 [7.858]

max. 232 [9.13]

5.2

[0.2

05]

4.8

[0.1

89]

12.2

[0.4

80]

11.8

[0.4

65]

111.

4 [4

.386

]11

0.6

[4.3

54]

7.2

[0.2

83]

6.8

[0.2

68]

10.2

[0.4

02]

9.8

[0.3

86]

115.

4 [4

.543

]11

4.6

[4.5

12]

13.2

[0.5

20]

12.8

[0.5

04]

4.2

[0.1

65]

3.8

[0.1

50]

35 [1

.38]

67 [2

.64]

75 [2.95]

Ø201 [7.91]

Ø120.0 [4.724]Ø119.6 [4.709]

Ø76.0 [2.992]Ø75.8 [2.984]

Ø180.00 [7.087]Ø179.6 [7.074]

Ø95.8 [3.772]Ø95.6 [3.764]

71

[2.8

0]

Ø22

[0.8

7]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

Ø172.00 [6.772]Ø171.94 [6.769]

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

23.1 [0.909]22.9 [0.902]

Ø140.0 [5.512]Ø139.6 [5.496]

Ø100.0 [3.937]Ø99.6 [3.921]

151-1443.11

100 [3.94]128 [5.04]

H

G

I

C

F

E D

L m

ax. 1

L m

ax. 2

L 1

L 2

C: Brake-release port G 1/4; 12 mm[0.47 in] deep (BS/ISO 228/1)

D: Drain connection G 1/4; 12 mm[0.47 in] deep

E: G 3/4; 17 mm [0.67 in] deep F: 4 × M12; 27 mm [1.06 in] deep

G: 10 × M12 H: Wheel bolts 5 × M14 × 1.5 I: M10; 10 mm [0.39 in] deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

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Type Lmax 1mm [in] Lmax 2 mm [in] L1* mm [in] L2 mm [in]

OMT 160 FX 223 [8.78] 227 [8.94] 16.5 [0.650] 62 [2.45]

OMT 200 FX 228 [8.98] 232 [9.13] 21.5 [0.846] 67 [2.65]

OMT 250 FX 234 [9.21] 238 [9.37] 27.8 [1.094] 74 [2.89]

OMT 315 FX 243 [9.57] 247 [9.72] 37.0 [1.457] 83 [3.26]

OMT 400 FX 254 [10.00] 258 [10.16] 47.5 [1.870] 93 [3.67]

OMT 500 FX 268 10.55] 272 10.71] 61.5 [2.421] 107 [4.22]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

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Dimensions – European Version

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Brake-Standard

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

12 [0.47]

100 [3.94]

max. 128 [5.04]

Ø160.4 [6.315]Ø159.6 [6.283]

max. 147.3 [5.799]

max

. 147

.3 [5

.799

]

max. Ø187 [7.36]

max. 171 [6.73]

82 [3

.23]

32 [1

.26]

60 [2

.36]

104

[4.0

9]

12 [0

.47]

Ø14

[0.5

5]

31.5

[1.2

40]

max

. 170

[6.6

9]

18 [0

.71]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

13.0

[0.5

12]

12.0

[0.4

72]

23.6

[0.9

29]

22.4

[0.8

82]

13.0

[0.5

12]

12.0

[0.4

72]

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

151-1453.10

max. 71 [2.80]max. 67 [2.64]

90.5 [3.563]

85.8 [3.378]

R1.6 [0.063]

Ø125.000 [4.9213]Ø124.937 [4.9188]

Ø123.5 [4.862]Ø122.5 [4.823]

Ø86.2 [3.406]Ø85.5 [3.366]

C

FD

E

LL 1

L 2

C: G 3/4; 17 mm [0.67 in]deep (BS/ISO 228/1)

D: Drain connection G 3/8;14 mm [0.55 in] deep

E: Brake-release port G 1/4;12 mm [0.47 in] deep

F: M10; 10 mm [0.39 in]deep

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMT 160 FL/FH 228 8.98] 16.5 0.650] 178 7.01]

OMT 200 FL/FH 233 [9.17] 21.5 0.846] 183 7.20]

OMT 250 FL/FH 239 [9.41] 27.8 [1.094] 189 7.44]

OMT 315 FL/FH 248 9.76] 37.0 1.457] 199 [7.83]

OMT 400 FL/FH 259 10.20] 47.5 1.870] 209 [8.23]

OMT 500 FL/FH 273 [10.75] 61.5 2.421] 223 [8.78]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Short

Ø125.000 [4.9213]Ø124.937 [4.9188]

Ø14 [0.55]

max. Ø186 [7.32]

42 [1.65] 50 [1.97]

Ø6 [0.24]

Ø6 [0.24]

Ø160.4 [6.315]Ø159.6 [6.283]

28 [1

.10]

max

. 69

[2.7

2]

22 [0

.87]

1 [0

.04]

x45˚

23.6

[0.9

26]

22.4

[0.8

82]

13 [0

.512

]12

[0.4

72]

13 [0

.512

]12

[0.4

72]

13 [0

.512

]12

[0.4

72]

13 [0

.512

]12

[0.4

72]

R1 [0

.04]

18 [0

.71]

31 [1

.22]

max. 71 [2.80]max. 67 [2.64]

8 [0.31]

8 [0

.31]

28 [1.10]

151-898.11

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

22.1 [0.870]21.1 [0.831]

20.3 [0.799]19.7 [0.776]

20.3 [0.799]19.7 [0.776]

100 [3.94]

max. 128 [5.04]

C

E

D

L

L 1L 2

C: Drain connection G 1⁄4; 12 mm [0.47 in] deep

D: M10; 10 mm [0.39 in] deep E: G 3⁄4; 17 mm [0.67 in] deep

Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMTS 160 146 [5.75] 16.5 [0.650] 96 [3.78]

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Dimensions – European Version

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMTS 200 151 [5.94] 21.5 [0.846] 101 [3.98]

OMTS 250 157 [6.18] 27.8 [1.094] 107 [4.21]

OMTS 315 166 [6.54] 37.0 [1.457] 116 [4.57]

OMTS 400 177 [6.97] 47.5 [1.870] 127 [5.00]

OMTS 500 191 [7.52] 61.5 [2.421] 142 [5.59]* The gearwheel set is 3.5 mm [0.138 in] wider across the rollers than the L1 dimensions

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European Version

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Installing the OMTS

The cardan shaft of the OMTS motor acts as an “output shaft”. Because of the movement of the shaft, noseal 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 attachedcomponent receive oil and are adequately lubricated. To ensure that the spline connection receivessufficient oil, a conical sealing ring between the shaft of the attached component and the motorintermediate plate is recommended. This method is used in the OMT.

The conical sealing ring (code. no. 633B9022) is supplied with the motor.

To ensure that oil runs to the bearings and other parts of the attached component, the stop plate musthave a hole in it (see fig. below).

We recommend an O-ring between motor and attached component. The O-ring (code no. 151B1040) issupplied with the motor. If motor and attached component have been separated, remember to refillbefore starting up. Fill the oil through the drain connection.

OMTS Dimensions of the Attached Component

2.35 [0.093]2.25 [0.089]

0.25 [0.010]

0.1˚

2.5 [0.098]1.5 [0.059]

25.5 [1.004]24.5 [0.965]

46.3 [1.823]45.7 [1.799]

69.4 [2.732]68.6 [2.701]

11.4 [0.449]11.0 [0.433]

8.2 [0.323]7.8 [0.307]

18.5 [0.728]17.5 [0.689]

30 [1.181]29 [1.142]

151-452.10

min. 5 [0.2]

min

. Ø6

[0.2

4]

Ø12

5.06

3 [4

.923

7]Ø

125.

000

[4.9

212]

min

. Ø55

[2.1

7]

Ø13

3.0

[5.2

36]

Ø13

2.6

[5.2

20]

Ø51

.5 [2

.028

50.5

[1.9

88]

39.5

[1.5

55]

38.5

[1.5

16]

Ø88

.5 [3

.484

87.5

[3.4

45]

Ø53

.5 [2

.106

53.5

[2.0

98]

Ø63

.5 [2

.500

62.5

[2.4

61]

CA

B

ED

F

KK

K

GH

A: O-ring: 125 × 3 mm B: External drain channel

C: Drain connectionG 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

Technical Information OMS, OMT and OMV Orbital Motors

OMTS

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Internal Spline Data for the Component to be Attached

The attached component must have internal splines corresponding to the external splines on the motorcardan shaft (see drawing below).

Material:

Case hardening steel with a tensile strength corresponding at least to 20 MoCr4 (900 N/mm2) or SAE8620.

Hardening specification:• On the surface: HV = 750 ± 50

• 7 ± 2 mm under the surface: HV = 560

Internal involute spline data; Standard ANS B92.1-1970, class 5 (corrected m · X = 1; m = 2.1166)

Flat root side fit mm in

Number of teeth z 16 16

Pitch DP 12/24 12/24

Pressure angle 30° 30°

Pitch dia. D 33.8656 1.3333

Major dia. Dri 38.40+0.4 1.51180

+0.0157

Form dia. (min.) Dfi 37.6 1.4803

Minor dia. Di 32.1500+ 0.04 1.26570

+ 0.00157

Space width (circular) Lo 4.516±0.037 0.1777±0.0014

Tooth thickness (circular) So 2.170 0.0854

Fillet radius Rmin. 0.5 0.02

Max. measurement between pins* l 26.90+ 0.1 1.0590

+0.004

Pin dia. d 4.834±0.001 0.1903±0.00004

* Finished dimensions (when hardened)

dl

D

Dri

Di Dfi

So

Lo

Rmin

151-455.10

Drain Connection on OMTS or Attached Component

A drain line ought to be used when pressure in the return line can exceed the permissible pressure on theshaft seal of the attached component.

The drain line can be connected at two different points:

1) at the motor drain connection

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OMTS

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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 motorand attached component.

The drain line must be led to the tank in such a way that there is no risk of the motor and attachedcomponent being drained of oil when at rest.

The maximum pressure in the drain line is limited by the attached component and its shaft seal.

Technical Information OMS, OMT and OMV Orbital Motors

OMTS

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OMV versions

Mountingflange

Shaft Port size Europeanversion

US version Drainconnection

Check valve Main typedesignation

Standard flange Cyl. 50 mm G1 X Yes Yes OMV

Cyl. 2.25 in 1 5/16-12 UN X Yes Yes OMV

Splined 2.125 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. 2.25 in 1 5/16-12 UN X Yes Yes OMV

Splined 2.125 in 1 5/16-12 UN X Yes Yes OMV

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

Technical Information OMS, OMT and OMV Orbital Motors

Versions

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Code numbers

CodeNumbers

Displacement [cm³]

315 400 500 630 800

151B 3100 3101 3102 3103 3104

151B 2150 2151 2152 2153 2154

151B 3105 3106 3107 3108 3109

151B 2155 2156 2157 2158 2159

151B 3110 3111 3112 3113 3114

151B 2160 2161 2162 2163 2164

151B 2183 2184 2185 2186 2187

151B 2188 2189 2190 2191 2192

151B 3115 3116 3117 3118 3119

151B 3120 3121 3122 3123 3124

151B 2170 2171 2172 2173 2174

151B 3125 3126 3127 3128 3129

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.

Technical Information OMS, OMT and OMV Orbital Motors

Code numbers

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Technical data for OMV, OMVW and OMVS

Type OMVOMVWOMVS

OMVOMVWOMVS

OMVOMVWOMVS

OMVOMVWOMVS

OMVOMVWOMVS

Motor size 315 400 500 630 800

Geometric displacement cm³ [in³] 314.5 [19.19] 400.9 [24.46] 499.6 [30.49] 629.1 [38.39] 801.8 [48.93]

Max. speed min-1 [rpm] cont. 510 500 400 315 250

int1) 630 600 480 380 300

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. 42.5 [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]

int.1) 240 [3480] 240 [3480] 240 [3480] 210 [3050] 180 [2610]

peak2) 280 [4060] 280 [4060] 280 [4060] 240 [3480] 210 [3050]

Max. oil flow l/min[USgal/min]

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]

Max. starting pressurewith unloaded shaft

bar [psi] 8 [116] 8 [116] 8 [116] 8 [116] 8 [116]

Min. starting torque at max. press. drop cont.Nm [lbf·in]

710 [6280] 910 [8050] 1130 [10000] 1330 [11770] 1510 [13360]

at max. press. drop int.1)

Nm [lbf·in]850 [7520] 1090 [9650] 1360 [12040] 1550 [13720] 1700 [15050]

Type Max. inlet pressure Max. return pressure withdrain line

OMVOMVWOMVS

bar [psi] cont. 210 [3050] 140 [2030]

bar [psi] int.1) 250 [3630] 175 [2540]

bar [psi] peak2) 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

151-320.10

Technical Information OMS, OMT and OMV Orbital Motors

Technical data

520L0407 • Rev FA • November 2014 81

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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

– – – – Intermittent operation: the permissible values may occur for max. 10% of every minute.

Continuous operation

151-1673.10

0 100 200 300 400 500 600 max.

1500

1200

900

600

300

0

100

90

80

70

60

50

40

30

20

10

0

psi bar

P P

min-1

(rpm)

Pressure drop in motor

151-1410.10

0 20 40 60 80 100 120 140 160 180 200 l/min

0 5 10 15 20 25 30 35 40 45 50 US gal/min

200

150

100

50

0

16

14

12

10

8

6

4

2

0

psi bar

∆ p ∆ p

Q

Q

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 [75-150 psi].

Pressure dropbar [psi]

Viscositymm2/s [SUS]

Oil flow in drain linel/min [US gal/min]

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]

Technical Information OMS, OMT and OMV Orbital Motors

Technical data

82 520L0407 • Rev FA • November 2014

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Direction of shaft rotation

Permissible shaft loads for OMV

Mounting flange:

Standard

Shaft:

All shaft types

151-1973.10

-80 -60 -40 -20 0 20 40 60 80 100 120 mm

-3 -2.5 -2 -1.5 -1 -0.5 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 in

16000

14000

12000

10000

8000

6000

4000

2000

0

70000

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.0

+- =15000 N=3372 lbf

Mounting flange:

Wheel

Shaft:

All shaft types

Technical Information OMS, OMT and OMV Orbital Motors

Technical data

520L0407 • Rev FA • November 2014 83

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151-1969.10

0 20 40 60 80 100 120 140 160 180 200 mm

0 1 2 3 4 5 6 7 in

16000

14000

12000

10000

8000

6000

4000

2000

0

70000

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.0

+- =15000 N=3372 lbf

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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Mounting flange:

SAE-C

Shaft:

All shaft types

Technical Information OMS, OMT and OMV Orbital Motors

Technical data

84 520L0407 • Rev FA • November 2014

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151-1965.10

-80 -60 -40 -20 0 20 40 60 80 100 120 mm

-3 -2.5 -2 -1.5 -1 -0.5 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 in

14000

12000

10000

8000

6000

4000

2000

0

60000

50000

40000

30000

20000

10000

0

lbf N

Prad. Prad.

Pmax.0

+- =10000 N=2248 lbfA

A

B

B

A: Cyl. 2.25 in shaft

B: Splined 2.125 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 fromthe 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 ratedoutput 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 willinvolve a risk of breakage.

Bearing life calculations can be made using the explanation and formula provided in the chapter "Bearingdimensioning" in the technical information "General Orbital motors" 520L0232.

Technical Information OMS, OMT and OMV Orbital Motors

Technical data

520L0407 • Rev FA • November 2014 85

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Function diagrams

OMV 315lbf• in Nm

11000

10000

9000

8000

7000

6000

5000

4000

3000

2000

1000

0

1200

1100

1000

900

800

700

600

500

400

300

200

100

0

0 50 100 150 200 250 300 350 400 450 500 550 600 650

151-870.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

25 l/

min

[6.6

US

gal/m

in]

Q=2

00 l/

min

[52.

8 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

50 l/

min

[13.

2 U

S ga

l/min

]

75 l/

min

[19.

8 U

S ga

l/min

]

160

l/min

[42.

2 U

S ga

l/min

]

150

l/min

[39.

6 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 35 bar

2900 psi170 bar

2540 psi

140 bar2030 psi

∆ p=240 bar3480 psi

510 psi

1520 psi105 bar

1020 psi

70 bar

N=5kW 10kW

N=50kW

85%

80%

30hp

40hp

50hp

10hp5hpη t =87%

η t =70%

40kW30kW

20kW20hp

OMV 400lbf• in Nm

14000

12000

10000

8000

6000

4000

2000

0

1600

1400

1200

1000

800

600

400

200

0

0 50 100 150 200 250 300 350 400 450 500 550 600

151-871.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

25 l/

min

[6.6

US

gal/m

in]

Q=2

40 l/

min

[63.

4 U

S ga

l/min

]

50 l/

min

[13.

2 U

S ga

l/min

]

75 l/

min

[19.

8 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

150

l/min

[39.

6 U

S ga

l/min

]

175

l/min

[46.

2 U

S ga

l/min

]

200

l/min

[52.

8 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 35 bar

2900 psi

140 bar2030 psi

175 bar2540 psi

∆ p=240 bar3480 psi

510 psi

1520 psi105 bar

1020 psi70 bar

N=5kW10kW

N=50kW

87%

85%

80%

30hp 50hp

10hp

5hp

η t =88%

η t =70%

40hp

30kW

20kW

40kW

20hp

Technical Information OMS, OMT and OMV Orbital Motors

Function diagrams

86 520L0407 • Rev FA • November 2014

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OMV 500lbf• in Nm

16000

14000

12000

10000

8000

6000

4000

2000

0

1800

1600

1400

1200

1000

800

600

400

200

0

0 50 100 150 200 250 300 350 400 450 500

151-872.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

25 l/

min

[6.6

US

gal/m

in]

Q=2

40 l/

min

[63.

4 U

S ga

l/min

]

50 l/

min

[13.

2 U

S ga

l/min

]

75 l/

min

[19.

8 U

S ga

l/min

]

125

l/min

[33.

0 U

S ga

l/min

]

150

l/min

[39.

6 U

S ga

l/min

]

175

l/min

[46.

2 U

S ga

l/min

]

200

l/min

[52.

8 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

200 bar

∆ p= 35 bar

2900 psi

140 bar2030 psi

175 bar2540 psi

∆ p=240 bar3480 psi

510 psi

1520 psi105 bar

1020 psi70 bar

N=5kW10kW

N=60kW

87%

85%

80%

30hp

50hp60hp

10hp

5hp

η t =88%

η t =70%

40hp

50kW

30kW

20kW

40kW

20hp

OMV 630lbf• in Nm

17500

15000

12500

10000

7500

5000

2500

0

2000

1750

1500

1250

1000

750

500

250

0

0 25 50 75 100 125 150 175 200 225 250 275 300 325 350 375 400

151-879.10

min-1

(rpm)

Q=1

0 l/m

in[2

.6 U

S ga

l/min

]

Q=2

40 l/

min

[63.

4 U

S ga

l/min

]

75 l/

min

[19.

8 U

S ga

l/min

]

25 l/

min

[6.6

US

gal/m

in]

125

l/min

[33.

0 U

S ga

l/min

]

100

l/min

[26.

4 U

S ga

l/min

]

50 l/

min

[13.

2 U

S ga

l/min

]

150

l/min

[39.

6 U

S ga

l/min

]

175

l/min

[46.

2 U

S ga

l/min

]

200

l/min

[52.

8 U

S ga

l/min

]

150 bar

∆ p= 30 bar

2180 psi

120 bar1740 psi

180 bar2610 psi

∆ p=210 bar3050 psi

90 bar1300 psi

440 psi

870 psi60 bar

N=5kW

20kW

N=60kW

40hp

50hp

20hp

5hp

80%85%

87%

η t =70%

η t =89% 30hp

50kW40kW 60hp

10kW

30kW

10hp

Technical Information OMS, OMT and OMV Orbital Motors

Function diagrams

520L0407 • Rev FA • November 2014 87

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P301 250

OMV 800

Q =

10

l/min

125

l/min

100

l/min

75 l/

min

50 l/

min

25 l/

min

150

l/min

175

l/min

200

l/min

Q =

240

l/m

in

2.6

US

gal/m

in

6.6

US

gal/m

in

13.2

US

gal/m

in

19.8

US

gal/m

in

26.4

US

gal/m

in

33.0

US

gal/m

in

39.6

US

gal/m

in

46.2

US

gal/m

in

52.8

US

gal/m

in

63.4

US

gal/m

in

p=180 bar

p=25bar

160 bar

130 bar

2610 psi

2320 psi

1890 psi

1450 psi

1090 psi

730 psi

360 psi

100 bar

75 bar

50 bar

0 25 50 75 100 125 150 175 200 225 250 275 300

20000

17500

15000

12500

10000

7500

5000

2500

0

2250

2000

1750

1500

1250

1000

750

500

250

0

Nmlbf•in

min-1

(rpm)

Explanation of function diagram use, basis and conditions, see OMS, OMT and OMV speed, torque andoutput on page 8.

Continuous range

Intermittent range (max. 10% operation every minute)

Intermittent pressure drop and oil flow must not occur simultaneously.

Technical Information OMS, OMT and OMV Orbital Motors

Function diagrams

88 520L0407 • Rev FA • November 2014

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Shaft Version

R0.5 [0.020]

R0.5 [0.020]

R0.5 [0.020]

151-878.12

60˚

60˚

60˚

D

F

B

CCC

A-A

A-A

A-AA

A

A

A

A

A

A

E

82 [3.23]

26 [1.02]

9.5 [0.374]

M12

5.5 [0.217]4.5 [0.177]

3/8 -16 UNC

70.5 [2.776]70.0 [2.756]

79 [3.11]

82.2 [3.236]81.8 [3.220]

min. 20 [0.78]

12.73 [0.501]12.70 [0.500]

12.73 [0.501]12.70 [0.500]

14.000 [0.5512]13.957 [0.5495]

70.4 [2.772]70.2 [2.763]

min. 26 [1.02]

½ -20 UNF

99.2 [3.906]98.8 [3.890]

13.1 [0.516]10.9 [0.429]

57.5 [2.264]56.9 [2.240]

57.1

5 [2

.250

]57

.10

[2.2

48]

Ø57

.15

[2.2

50]

Ø57

.10

[2.2

48]

62.9

3 [2

.478

]62

.66

[2.4

67]

53.5

[2.1

06]

53.2

[2.0

94]

Ø50

.018

[1.9

692]

Ø50

.002

[1.9

686]

62.9

2 [2

.477

]62

.66

[2.4

67]

Ø60

[2.3

6]Ø

60 [2

.36]

Ø60

[2.3

6]

A: Cylindrical 50 mm shaft B: Cylindrical 2.25 in shaft for OMV with standardmounting flange

C: Cylindrical 2.25 in shaft for OMV withmounting flange SAE-C

D: Parallel keyA14 × 9 × 70; DIN 6885Keyway deviates from standard

E: Parallel key1/2 × 1/2 × 21/4 in; B.S. 46Keyway deviates from standard

F: Parallel key1/2 × 1/2 × 21/4 in; B.S. 46Keyway deviates from standard

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

520L0407 • Rev FA • November 2014 89

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57 [2.24]55 [2.17]

76.9 [3.028]76.5 [3.011]

min. 26 [1.02]

½ -20 UNF

56.3 [2.217]55.3 [2.177]

R0.5 [0.020]

R0.5 [0.020]

82.2 [3.236]81.8 [3.220]

min. 20 [0.78]

3/8 -16 UNC

R0.5 [0.020]

82[3.23]

26 [1.02]

9.5 [0.374]

M12

58 [2.28]56 [2.20]

151-1918.10

Ø60

[2.3

6]Ø

60 [2

.36]

Ø60

[2.3

6]

53.9

75 [2

.125

0]53

.950

[2.1

240]

Ø53

.975

[2.1

250]

Ø53

.950

[2.1

240]

Ø53

.972

[2.1

249]

Ø53

.954

[2.1

242]

45˚

30˚

45˚

A-A

A-A

A-A

F

E

A

A

A

A

A

A

D

D: Involute splined shaft ANS B92.1 - 1970standardFlat root side fitPitch 8/16; Teeth 16Major dia. 2.125 inPressure angle 30°

US VersionE: Involute splined shaft for OMV with standardmounting flange ANS B92.1 - 1970 standardFlat root side fitPitch 8/16; Teeth 16Major dia. 2.125 inPressure angle 30°

US VersionF: Involute splined shaft for OMV with mountingflange SAE-C ANS B92.1 - 1970 standardFlat root side fitPitch 8/16; Teeth 16Major dia. 2.125 inPressure angle 30°

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

90 520L0407 • Rev FA • November 2014

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51.1 [2.012]

50.5 [1.988]

73.6 [2.898]72.4 [2.850]

100.4 [3.953]99.6 [3.921]

4.5 [0.177]

14.308 [0.5633]14.288 [0.5625]

16 [0.63]

40.5 [1.594]40.0 [1.575]

105 [4.13]

70 [2.76]16.000 [0.6299]15.957 [0.6282]

6 [0.24]

23 [0.91]

7 [0.28]

151-1919.10

Ø4

[0.1

6]Ø

57.2

0 [2

.252

57.1

0 [2

.248

]

7.29

[0.2

87]*

7.19

[0.2

83]

Ø60

[2.3

6]Ø

60 [2

.36]

32.2

5 [1

.270

]32

.05

[1.2

62]

M42

x3 [0

.12]

Ø9

[0.3

5]

Ø78

[3.0

7]

Ø8

[0.3

1]

45˚

H

L M

G

I J

N

K

A-A

A-A

A

A

A

A

G: Tapered 60 mm shaft (ISO/R775) I: Taper 1:10 H: Tapered 2.25 in shaft

J: DIN 937Across flats: 65 mmTightening torque: 750 ±50 Nm [6640 ±440 lbf·in]

K: Parallel key B16 × 10 × 32DIN 6885Keyway deviates from standard

L: Cone 1:8SAE J501

M: 11/2 - 18 UNEFAcross flats: 23/8 inTightening torque: 750 ±50 Nm [6640 ±440 lbf·in]

N: Parallel key9/16 × 9/16 × 2 inB.S. 46Keyway deviates from standard

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

520L0407 • Rev FA • November 2014 91

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Port thread versions

A

B

C D

G H

E F

151-1977.11

min

. 13

[0.5

1]

min

. 12

[0.4

7]

min

. 18

[0.6

7]

min

. 19

[0.7

5]

Ø41.5 [1.634]Ø41.0 [1.614]

A: G main portsE: ISO 228/1 - G1 O-ring boss port

B: UN main portsF: 1 5/16 - 12 UN

C: G drain portG: ISO 228/1 - G1/4 O-ring boss port

D: UNF drain portH: 9/16 - 18 UNF

Technical Information OMS, OMT and OMV Orbital Motors

Shaft version

92 520L0407 • Rev FA • November 2014

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Standard flange

Ø146.4 [5.764]Ø145.0 [5.710]

Ø160.000 [6.2992]Ø159.937 [6.2967]

Ø83 [3.27]

2 [0

.08]

x45˚

40 [1

.57]

60 [2

.36]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

24.6

[0.9

69]

23.4

[0.9

21]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

11 [0

.43]

R1.6

[0.0

63]

39.4

[1.5

51]

38.6

[1.5

20]

20 [0

.79]

33˚

max

. 76

[2.9

9]

Ø200.4 [7.890]

Ø199.6 [7.858]

max. 81 [3.19]max. 77 [3.03]

8 [0.31]69 [2.72]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

R16 [0.63]Ø18 [0.71]

max

. 179

[7.0

5]

max. 179 [7.05]

151-890.11

25.3 [0.996]24.7 [0.972]

25.3 [0.996]24.7 [0.972]

120 [4.72]

max. 149 [5.87]

C

E

D

L L 1

L 2L 3

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 Lmax mm [in] L1* mm [in] L2 mm [in]

OMV 315 215 [8.46] 22.0 [0.866] 160 [6.30]

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Dimensions – European version

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Type Lmax mm [in] L1* mm [in] L2 mm [in]

OMV 400 222 [8.74] 29.0 [1.142] 167 [6.57]

OMV 500 230 [9.05] 37.0 [1.457] 175 [6.89]

OMV 630 240 [9.45] 47.5 [1.870] 186 [7.32]

OMV 800 254 [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 L3 mm [in]

Cyl. 50 mm Splined 2.125 in 82 [3.23]

Tapered 60 mm 105 [4.13]

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Dimensions – European version

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Standard flange

Ø160.000 [6.2992]Ø159.937 [6.2967]

Ø146.3 [5.760]Ø145.7 [5.736]

Ø90 [3.54]Ø88 [3.46]

39.4

[1.5

51]

38.6

[1.5

20]

2 [0

.08]

x45˚

24.6

[0.9

69]

23.4

[0.9

21]

33˚

R1.6

[0.0

63]

max

. 76

[2.9

9]

Ø200.4 [7.890]

Ø199.6 [7.858]

40 [1

.57]

60 [2

.36]

11 [0

.43]

20 [0

.79]

max. 77 [3.03] max. 83 [3.27]

69 [2.72]

77 [3.03]

R16 [0.63]Ø18 [0.71]

max

. 179

[7.0

5]

max. 179 [7.05]

151-890.11.22

25.3 [0.996]24.7 [0.972]

25.3 [0.996]24.7 [0.972]

120 [4.72]

max. 149 [5.87]

C

D

L L 1

L 2L 3

C: Drain connection 9⁄16 - 18 UNF; 13 mm [0.51 in] deep O-ring boss port

D: 1 5⁄16 - 12 UN; 19 mm [0.75 in] deep O-ring boss port

Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMV 315 215 [8.46] 22.0 [0.866] 160 [6.30]

OMV 400 222 [8.74] 29.0 [1.142] 167 [6.57]

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Dimensions – US version

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Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMV 500 230 [9.05] 37.0 [1.457] 175 [6.89]

OMV 630 240 [9.45] 47.5 [1.870] 186 [7.32]

OMV 800 254 [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 L3 mm [in]

Cyl. 2.25 in Splined 2.125 in 82 [3.23]

Tapered 2.25 in 100 [3.94]

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Dimensions – US version

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SAE-C Flange

Ø127.00 [5.000]Ø126.95 [4.998]

71.0 [2.795]

81.5 [3.209]

Ø162.3 [6.390]

Ø161.5 [6.358]

max. 147 [5.79]

151-1485.10

Ø17.7 [0.697]Ø17.3 [0.681]

max. 77 [3.03] max. 83 [3.27]

16.1

[0.6

34]

13.7

[0.5

39]

13.8

[0.5

43]

13.2

[0.5

20]

21.0

[0.8

27]

19.6

[0.7

72]

max

. 76

[2.9

9]m

ax. 1

47 [5

.79]

85.5

[3.3

66]

24.0

[0.9

45]

max. 121 [4.76]

max. 149 [5.87]

25 [0.98]25 [0.98]

R16 [0.63]

C

D

L

L 1

L 2

L 3

C: Drain connection 9⁄16 - 18 UNF; 13 mm [0.51 in] deep O-ring boss port

D: 1 5⁄16 - 12 UN; 19 mm [0.75 in] deep O-ring boss port

Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMV 315 239 [9.41] 22.0 [0.866] 185 [7.28]

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Dimensions – US version

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Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMV 400 246 [9.69] 29.0 [1.142] 192 [7.56]

OMV 500 254 [10.00] 37.0 [1.457] 200 [7.87]

OMV 630 265 [10.43] 47.5 [1.870] 211 [8.31]

OMV 800 279 [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 L3 mm [in]

Cyl. 2.25 in 99 [3.90]

Splined 2.125 in 76.7 [3.02]

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Dimensions – US version

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Wheel

Ø146.4 [5.764]Ø145.0 [5.710]

Ø180.000 [7.0866]Ø179.937 [7.0841]

Ø148.0 [5.827]Ø147.9 [5.823]Ø83 [3.27]

2 [0

.08]

x45˚

24.6

[0.9

69]

23.4

[0.9

21]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

3.6[

0.14

2]

22 [0

.87]

10 [0

.39]

79 [3

.11]10

8 [4

.25]

20 [0

.79]

33˚

max

. 76

[2.9

9]

Ø224.3 [8.831]

Ø223.7 [8.807]

max. 81 [3.19]max. 77 [3.03]

8 [0

.31]

max

. 107

.7 [4

.240

]

R1.2

[0.0

47]

R1.2

[0.0

47]

85 [3.35]23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

R16 [0.63]

Ø18 [0.71]

max

. 198

[7.8

0]

max. 198 [7.80]

151-899.11

25.3 [0.996]24.7 [0.972]

25.3 [0.996]24.7 [0.972]

120 [4.72]

max. 149 [5.87]

Ø194.000 [7.6378]Ø193.928 [7.6350]

C

ED

L

L 1

L 2

L 3

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

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European version

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Type Lmax mm [in] L1 *mm [in] L2 mm [in]

OMVW 315 146 [5.75] 22.0 [0.866] 92 [3.62]

OMVW 400 153 [6.02] 29.0 [1.142] 99 [3.90]

OMVW 500 161 [6.34] 37.0 [1.457] 107 [4.21]

OMVW 630 172 [6.77] 47.5 [1.870] 118 [4.65]

OMVW 800 185 [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 L3 mm [in]

Cyl. 50 mm 82 [3.23]

Tapered 60 mm 105 [4.13]

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Dimensions – European version

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Wheel

Ø146.3 [5.760]Ø145.7 [5.736]

Ø90 [3.54]Ø88 [3.46]

100.

4 [3

.953

]99

.6 [3

.921

]

2 [0

.08]

x45˚

20 [0

.79]

3.6

[0.1

42]

24.6

[0.9

69]

23.4

[0.9

21]

10 [0

.39]

79 [3

.11]10

8 [4

.25]

22 [0

.87]

33˚

R1.2

[0.0

47]

R1.2

[0.0

47]

max

. 76

[2.9

9]

max

. 198

[7.8

0]m

ax. 1

07.7

[4.2

40]

Ø224.3 [8.831]

Ø223.7 [8.807]

8 [0

.31]

Ø148.0 [5.827]Ø147.9 [5.823]

max. 83 [3.27]max. 77 [3.03]

85 [3.35]

R16 [0.63]

Ø18 [0.71]

max. 198 [7.80]

151-899.11.22

25.3 [0.996]24.7 [0.972]

25.3 [0.996]24.7 [0.972]

120 [4.72]

max. 149 [5.87]

Ø194.000 [7.6378]Ø193.928 [7.6350]

Ø180.000 [7.0866]Ø179.937 [7.0841]

C

D

L

L 1

L 2

C: Drain connection 9⁄16 - 18 UNF; 13 mm [0.51 in] deep O-ring boss port

D: 1 5⁄16 - 12 UN; 19 mm [0.75 in] deep O-ring boss port

Type Lmax mm [in] L1 * mm [in] L2 mm [in]

OMVW 315 147 [5.79] 22.0 [0.866] 92 [3.62]

OMVW 400 154 [6.06] 29.0 [1.142] 99 [3.90]

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Dimensions – US version

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Type Lmax mm [in] L1 * mm [in] L2 mm [in]

OMVW 500 162 [6.38] 37.0 [1.457] 107 [4.21]

OMVW 630 172 [6.77] 47.5 [1.870] 118 [4.65]

OMVW 800 187 [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

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – US version

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Short

Ø140.000 [5.5118]Ø139.937 [5.5093]

82 [3.23]

Ø14 [0.55]

58 [2.28]

Ø6 [0.24]

28 [1

.10]

max

. 76

[2.9

9]22

[0.8

7]

35 [1

.38]

1 [0

.04]

x45˚

24.6

[0.9

69]

23.4

[0.9

21]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

14.0

[0.5

51]

13.0

[0.5

12]

R1 [0.04]

20 [0

.79]

max. 81 [3.19]max. 77 [3.03]

8 [0.31]

8 [0

.31]

28 [1.10]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

23.9 [0.941]22.9 [0.902]

max. Ø207 [8.15]Ø180.4 [7.102]Ø179.6 [7.071]

151-900.10

25.3 [0.996]24.7 [0.972]

25.3 [0.996]24.7 [0.972]

120 [4.72]

max. 149 [5.87]

C

ED

L

L 1L 2

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 Lmax mm [in] L1* mm [in] L2 mm [in]

OMVS 315 171 [6.73] 22.0 [0.866] 117 [4.61]

OMVS 400 179 [7.05] 29.0 [1.142] 124 [4.88]

OMVS 500 186 [7.32] 37.0 [1.457] 132 [5.20]

OMVS 630 197 [7.76] 47.5 [1.870] 143 [5.63]

OMVS 800 211 [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

Technical Information OMS, OMT and OMV Orbital Motors

Dimensions – European version

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Installing the OMVS

The cardan shaft of the OMVS motor acts as an “output shaft”. Because of the movement of the shaft, noseal 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 attachedcomponent receive oil and are adequately lubricated. To ensure that the spline connection receivessufficient oil, a conical sealing ring between the shaft of the attached component and the motorintermediate 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 musthave a hole in it (see fig. below).

We recommend an O-ring between motor and attached component. The O-ring (code no. 151B1041) issupplied with the motor. If motor and attached component have been separated, remember to refillbefore starting up. Fill the oil through the drain connection.

OMVS dimensions of the attached component

2.35 [0.093]2.25 [0.089]

0.25 [0.010]

0.1˚ 6 [0.24]4 [0.16]

32.5 [1.280]31.5 [1.240]

53.3 [1.098]52.7 [2.075]

76.3 [3.004]75.7 [2.980]

9.5 [0.374]8.5 [0.335]

8.4 [0.331]7.6 [0.299] 20.5 [0.807]

19.5 [0.768]28.7 [1.130]26.3 [1.035]

151-815.10

min. 5 [0.2]max. 2 [0.08]

min

. Ø6

[0.2

4]

Ø14

0.06

3 [5

.514

3]Ø

140.

000

[5.5

118]

min

. Ø60

[2.3

6]

Ø14

7.9

[5.8

23]

Ø14

7.7

[5.8

15]

Ø56

.3 [2

.217

55.5

[2.1

65]

Ø46

.2 [1

.819

45.8

[1.8

03]

Ø10

2 [4

.02]

Ø10

0 [3

.94]

Ø61

.2 [2

.409

61.0

[2.4

02]

Ø71

[2.8

0]Ø

69 [2

.72]

CA

R

B

E

D

F

KK

K

GH

A: O-ring: 140 × 3 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 motorcardan shaft (see drawing below).

Material:

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OMVS

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Case hardening steel with a tensile strength corresponding at least to 20 MoCr4 (900 N/mm2) or SAE8620.

Hardening specification:• On the surface: HV = 750 ± 50

• 7 ± 2 mm under the surface: HV = 560

Internal involute spline data; Standard ANS B92.1-1970, class 5 (corrected m · X = 1; m = 2.54)

Flat root side fit mm in

Number of teeth

z 16 16

Pitch DP 10/20 10/20

Pressure angle 30° 30°

Pitch dia. D 40.640 1.6

Major dia. Dri 45.20+0.4 1.7800

+0.016

Form dia. (min.) Dfi 44.6 1.756

Minor dia. Di 38.50+ 0.039 1.5160

+ 0.0015

Space width (circular) Lo 5.180±0.037 0.204±0 .0015

Tooth thickness (circular) So 2.835 0.1116

Fillet radius Rmin. 0.4 0.015

Max.measurementbetween pins*

l 32.470+ 0.15 1.2780

+0.006

Pin dia. d 5.6±0.001 0.22±0.00004

* Finished dimensions (when hardened)

dl

D

DriDi

Dfi

So

Lo

Rmin

151-816.10

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 theshaft 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 motorand attached component.

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OMVS

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The drain line must be led to the tank in such a way that there is no risk of the motor and attachedcomponent being drained of oil when at rest.

The maximum pressure in the drain line is limited by the attached component and its shaft seal.

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OMVS

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Weight of motors

Code no Weight

kg [lb]

151B2050 20.0 44.1

151B2051 20.5 45.2

151B2052 21.0 46.3

151B2053 22.0 48.5

151B2054 23.0 50.7

151B2055 24.0 52.9

151B2056 20.0 44.1

151B2057 20.5 45.2

151B2058 21.0 46.3

151B2059 22.0 48.5

151B2060 23.0 50.7

151B2061 24.0 52.9

151B2062 20.0 44.1

151B2063 20.5 45.2

151B2064 21.0 46.3

151B2065 22.0 48.5

151B2066 23.0 50.7

151B2067 24.0 52.9

151B2080 22.0 48.5

151B2081 22.5 49.6

151B2082 23.0 50.7

151B2083 24.0 52.9

151B2084 25.0 55.1

151B2085 26.0 57.3

151B2150 31.8 70.1

151B2151 32.6 71.9

151B2152 33.5 73.9

151B2153 34.9 76.9

151B2154 36.5 80.5

151B2155 31.8 70.1

151B2156 32.6 71.9

151B2157 33.5 73.9

151B2158 34.9 76.9

151B2159 36.5 80.5

151B2160 31.8 70.1

151B2161 32.6 71.9

151B2162 33.5 73.9

151B2163 34.9 76.9

151B2164 36.5 80.5

Technical Information OMS, OMT and OMV Orbital Motors

Weight of motors

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Code no Weight

kg [lb]

151B2170 32.4 71.4

151B2171 33.2 73.2

151B2172 34.1 75.2

151B2173 35.5 78.3

151B2174 37.1 81.8

151B2183 30.0 66.2

151B2184 30.8 67.9

151B2185 31.7 69.9

151B2186 33.1 73.0

151B2187 34.7 76.5

151B2188 30.0 66.2

151B2189 30.8 67.9

151B2190 31.7 69.9

151B2191 33.1 73.0

151B2192 34.7 76.5

151B3000 20.0 44.1

151B3001 20.5 45.2

151B3002 21.0 46.3

151B3003 22.0 48.5

151B3004 23.0 50.7

151B3005 24.0 52.9

151B3006 20.0 44.1

151B3007 20.5 45.2

151B3008 21.0 46.3

151B3009 22.0 48.5

151B3010 23.0 50.7

151B3011 24.0 52.9

151B3012 20.0 44.1

151B3013 20.5 45.2

151B3014 21.0 46.3

151B3015 22.0 48.5

151B3016 23.0 50.7

151B3017 24.0 52.9

151B3018 20.0 44.1

151B3019 20.5 45.2

151B3020 21.0 46.3

151B3021 22.0 48.5

151B3022 23.0 50.7

151B3023 24.0 52.9

151B3024 22.0 48.5

151B3025 22.5 49.6

151B3026 23.0 50.7

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Weight of motors

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Code no Weight

kg [lb]

151B3027 24.0 52.9

151B3028 25.0 55.1

151B3029 26.0 57.3

151B3030 22.0 48.5

151B3031 22.5 49.6

151B3032 23.0 50.7

151B3033 24.0 52.9

151B3034 25.0 55.1

151B3035 26.0 57.3

151B3036 15.0 33.1

151B3037 15.5 34.2

151B3038 16.0 35.3

151B3039 17.0 37.5

151B3040 18.0 39.7

151B3041 19.0 41.9

151B3100 31.8 70.1

151B3101 32.6 71.9

151B3102 33.5 73.9

151B3103 34.9 76.9

151B3104 36.5 80.5

151B3105 31.8 70.1

151B3106 32.6 71.9

151B3107 33.5 73.9

151B3108 34.9 76.9

151B3109 36.5 80.5

151B3110 31.8 70.1

151B3111 32.6 71.9

151B3112 33.5 73.9

151B3113 34.9 76.9

151B3114 36.5 80.5

151B3115 32.4 71.4

151B3116 33.2 73.2

151B3117 34.1 75.2

151B3118 35.5 78.3

151B3119 37.1 81.8

151B3120 32.4 71.4

151B3121 33.2 73.2

151B3122 34.1 75.2

151B3123 35.5 78.3

151B3124 37.1 81.8

151B3125 22.7 50.1

151B3126 23.5 51.8

Technical Information OMS, OMT and OMV Orbital Motors

Weight of motors

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Code no Weight

kg [lb]

151B3127 24.4 53.8

151B3128 25.6 56.4

151B3129 27.7 61.1

151B3200 31.0 68.3

151B3201 31.5 69.4

151B3202 32.0 70.5

151B3203 33.0 72.8

151B3204 34.0 75.0

151B3205 35.0 77.2

151B3207 31.0 68.3

151B3208 31.5 69.4

151B3209 32.0 70.5

151B3210 33.0 72.8

151B3211 34.0 75.0

151B3212 35.0 77.2

151B4000 24.5 54.0

151B4001 25.0 55.1

151B4002 25.5 56.2

151B4003 26.5 58.4

151B4004 27.5 60.6

151B4005 28.5 62.8

151B4007 24.5 54.0

151B4008 25.0 55.1

151B4009 25.5 56.2

151B4010 26.5 58.4

151B4011 27.5 60.6

151B4012 28.5 62.8

151B4021 24.5 54.0

151B4022 25.0 55.1

151B4023 25.5 56.2

151B4024 26.5 58.4

151B4025 27.5 60.6

151B4026 28.5 62.8

151B4028 24.5 54.0

151B4029 25.0 55.1

151B4030 25.5 56.2

151B4031 26.5 58.4

151B4032 27.5 60.6

151B4033 28.5 62.8

151F0500 9.8 21.6

151F0501 10.0 22.1

151F0502 10.3 22.7

Technical Information OMS, OMT and OMV Orbital Motors

Weight of motors

110 520L0407 • Rev FA • November 2014

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Code no Weight

kg [lb]

151F0503 10.7 23.6

151F0504 11.1 24.5

151F0505 11.6 25.6

151F0506 12.3 27.1

151F0507 9.8 21.6

151F0508 10.0 22.1

151F0509 10.3 22.7

151F0510 10.7 23.6

151F0511 11.1 24.5

151F0512 11.6 25.6

151F0513 12.3 27.1

151F0514 9.8 21.6

151F0515 10.0 22.1

151F0516 10.3 22.7

151F0517 10.7 23.6

151F0518 11.1 24.5

151F0519 11.6 25.6

151F0520 12.3 27.1

151F0521 10.3 22.7

151F0522 10.5 23.1

151F0523 10.8 23.8

151F0524 11.2 24.7

151F0525 11.6 25.6

151F0526 12.1 26.7

151F0527 12.8 28.2

151F0528 10.3 22.7

151F0529 10.5 23.1

151F0530 10.8 23.8

151F0531 11.2 24.7

151F0532 11.6 25.6

151F0533 12.1 26.7

151F0534 12.8 28.2

151F0535 7.8 17.2

151F0536 8.0 17.6

151F0537 8.3 18.3

151F0538 8.7 19.2

151F0539 9.1 20.1

151F0540 9.6 21.2

151F0541 10.3 22.7

151F0542 10.2 22.5

151F0543 10.4 22.9

151F0544 10.7 23.6

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Weight of motors

520L0407 • Rev FA • November 2014 111

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Code no Weight

kg [lb]

151F0545 11.1 24.5

151F0546 11.5 25.4

151F0547 12.0 26.5

151F0548 12.7 28.0

151F0560 9.8 21.6

151F0561 10.0 22.1

151F0562 10.3 22.7

151F0563 10.7 23.6

151F0564 11.1 24.5

151F0565 11.6 25.6

151F0566 12.3 27.1

151F0605 13.1 28.9

151F0608 11.1 24.5

151F0609 13.6 30.0

151F0610 13.6 30.0

151F2200 9.8 21.6

151F2201 10.0 22.1

151F2202 10.3 22.7

151F2203 10.7 23.6

151F2204 11.1 24.5

151F2205 11.6 25.6

151F2206 12.3 27.1

151F2207 9.8 21.6

151F2208 10.0 22.1

151F2209 10.3 22.7

151F2210 10.7 23.6

151F2211 11.1 24.5

151F2212 11.6 25.6

151F2213 12.3 27.1

151F2214 9.8 21.6

151F2215 10.0 22.1

151F2216 10.3 22.7

151F2217 10.7 23.6

151F2218 11.1 24.5

151F2219 11.6 25.6

151F2220 12.3 27.1

151F2235 10.3 22.7

151F2236 10.5 23.1

151F2237 10.8 23.8

151F2238 11.2 24.7

151F2239 11.6 25.6

151F2240 12.1 26.7

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Weight of motors

112 520L0407 • Rev FA • November 2014

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Code no Weight

kg [lb]

151F2241 12.8 28.2

151F2242 10.3 22.7

151F2243 10.5 23.1

151F2244 10.8 23.8

151F2245 11.2 24.7

151F2246 11.6 25.6

151F2247 12.1 26.7

151F2248 12.8 28.2

151F2261 13.1 28.9

151F2262 13.1 28.9

151F2263 13.6 30.0

151F2264 13.1 28.9

151F2265 13.6 30.0

151F2300 9.8 21.6

151F2301 10.0 22.1

151F2302 10.3 22.7

151F2303 10.7 23.6

151F2304 11.1 24.5

151F2305 11.6 25.6

151F2306 12.3 27.1

151F2307 13.1 28.9

151F2308 9.8 21.6

151F2309 10.0 22.1

151F2310 10.3 22.7

151F2311 10.7 23.6

151F2312 11.1 24.5

151F2313 11.6 25.6

151F2314 12.3 27.1

151F2315 13.1 28.9

151F2316 9.8 21.6

151F2317 10.0 22.1

151F2318 10.3 22.7

151F2319 10.7 23.6

151F2320 11.1 24.5

151F2321 11.6 25.6

151F2322 12.3 27.1

151F2323 13.1 28.9

151F2324 9.8 21.6

151F2325 10.0 22.1

151F2326 10.3 22.7

151F2327 10.7 23.6

151F2328 11.1 24.5

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Weight of motors

520L0407 • Rev FA • November 2014 113

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Code no Weight

kg [lb]

151F2329 11.6 25.6

151F2330 12.3 27.1

151F2331 13.1 28.9

151F2332 9.8 21.6

151F2333 10.0 22.1

151F2334 10.3 22.7

151F2335 10.7 23.6

151F2336 11.1 24.5

151F2337 11.6 25.6

151F2338 12.3 27.1

151F2339 13.1 28.9

151F2345 14.0 30.9

151F2346 14.0 30.9

151F2347 14.0 30.9

151F2348 14.0 30.9

151F2349 14.0 30.9

151F2350 9.8 21.6

151F2351 10.0 22.1

151F2352 10.3 22.7

151F2353 10.7 23.6

151F2354 11.1 24.5

151F2355 11.6 25.6

151F2356 12.3 27.1

151F2357 13.1 28.9

151F2358 14.0 30.9

151F2359 9.8 21.6

151F2360 10.0 22.1

151F2361 10.3 22.7

151F2362 10.7 23.6

151F2363 11.1 24.5

151F2364 11.6 25.6

151F2365 12.3 27.1

151F2366 13.1 28.9

151F2367 14.0 30.9

151F2368 9.8 21.6

151F2369 10.0 22.1

151F2370 10.3 22.7

151F2371 10.7 23.6

151F2372 11.1 24.5

151F2373 11.6 25.6

151F2374 12.3 27.1

151F2375 13.1 28.9

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Weight of motors

114 520L0407 • Rev FA • November 2014

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Code no Weight

kg [lb]

151F2376 14.0 30.9

151F2395 9.8 21.6

151F2396 10.0 22.1

151F2397 10.3 22.7

151F2398 10.7 23.6

151F2399 11.1 24.5

151F2400 11.6 25.6

151F2401 12.3 27.1

151F2402 13.1 28.9

151F2403 14.0 30.9

151F2413 9.8 21.6

151F2414 10.0 22.1

151F2415 10.3 22.7

151F2416 10.7 23.6

151F2417 11.1 24.5

Technical Information OMS, OMT and OMV Orbital Motors

Weight of motors

520L0407 • Rev FA • November 2014 115

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Danfoss Power Solutions is a global manufacturer and supplier of high-quality hydraulic andelectronic components. We specialize in providing state-of-the-art technology and solutionsthat excel in the harsh operating conditions of the mobile off-highway market. Building onour extensive applications expertise, we work closely with our customers to ensureexceptional performance for a broad range of off-highway vehicles.

We help OEMs around the world speed up system development, reduce costs and bringvehicles to market faster.

Danfoss – Your Strongest Partner in Mobile Hydraulics.

Go to www.powersolutions.danfoss.com for further product information.

Wherever off-highway vehicles are at work, so is Danfoss. We offer expert worldwide supportfor our customers, ensuring the best possible solutions for outstanding performance. Andwith an extensive network of Global Service Partners, we also provide comprehensive globalservice for all of our components.

Please contact the Danfoss Power Solution representative nearest you.

Local address:

Danfoss Power Solutions GmbH & Co. OHGKrokamp 35D-24539 Neumünster, GermanyPhone: +49 4321 871 0

Danfoss Power Solutions ApSNordborgvej 81DK-6430 Nordborg, DenmarkPhone: +45 7488 2222

Danfoss Power Solutions (US) Company2800 East 13th StreetAmes, IA 50010, USAPhone: +1 515 239 6000

Danfoss Power Solutions(Shanghai) Co., Ltd.Building #22, No. 1000 Jin Hai RdJin Qiao, Pudong New DistrictShanghai, China 201206Phone: +86 21 3418 5200

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 toproducts 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 2014 www.danfoss.com © Danfoss A/S, 2014

Products we offer:

• Bent Axis Motors

• Closed Circuit Axial PistonPumps and Motors

• Displays

• Electrohydraulic PowerSteering

• Electrohydraulics

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• Integrated Systems

• Joysticks and ControlHandles

• Microcontrollers andSoftware

• Open Circuit Axial PistonPumps

• Orbital Motors

• PLUS+1® GUIDE

• Proportional Valves

• Sensors

• Steering

• Transit Mixer Drives

Comatrolwww.comatrol.com

Schwarzmüller-Inverterwww.schwarzmueller-inverter.com

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Valmovawww.valmova.com

Hydro-Gearwww.hydro-gear.com

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