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Transcription:

Efficient and precisely tailored

This is what we stand for. You want to implement your machine and plant concepts efficiently and easily or optimise eistin concepts to reduce costs? Then, Lenze is the partner you are looin for. For more than 60 years, drive and automation systems have been our core competence.

Lenze about us We can offer you automation solutions includin control, visualisation and drive technoloy from a sinle source. Our drive systems will improve the performance of your machines. From project plannin to commissionin, we have the now-how, whilst our international sales and service networ can provide you with epert help and advice at any time. Cut your process costs and increase your ability to compete. Let us analyse your drive technoloy tass and support you with made-to-measure solutions. We can tae an interated approach to projects thans to the scalability of our products and the scope of the overall portfolio. We can et the best from your machines and systems.

L-force Your future is our drive Demands are increasin all the time. In future, ey challenes will lie in the areas of cost efficiency, time-savin and quality improvements. Faster project plannin and commissionin, improved performance and increased fleibility in production are epected. New ideas are therefore needed for the machines of the future. Lenze has risen to this challene and, with L-force, we can now not only offer you an innovative family of drive and automation products, but also a new, comprehensive portfolio of solutions. Driven by innovation new ideas that open up new opportunities Always on the looout. Our idea of innovation is strivin for better solutions for our customers every sinle day. Driven by fleibility Hih deree of scalability for individual solutions Scalability is an important aspect of the L- force philosophy. Performance, scope of functions, software, service provisions and aftersales care Lenze will provide you with eactly the combination you require. Driven by usability Simple solutions, even for comple applications We always focus on the user. Therefore, when we developed L-force, we made sure that people with sufficient practical eperience were involved, riht from the start. Driven by compatibility Universal products and solutions There is no need to waste time looin for suitable components and the riht interfaces. With L-force, every element is perfectly matched. Our drive is "rihtsized" the perfect solution for your application We call it Rihtsizin: Optimise your processes with the new three-phase AC motors from Lenze and increase your added value.

Contents L-force 3-ph. AC motors General information Product ey 9 Product information 10 List of abbreviations 11 Standards and operatin conditions 12 Drive dimensionin Dimensionin3 Torque deratin at low motor frequencies 13 Three-phase AC motor versions 14 Assinment of motor to frequency inverter 18 Rated frequency Hz 18 Rated frequency 87 Hz 19 Rated frequency 120 Hz 20 Rated data Standard efficiency 21 Rated frequency Hz 21 Rated frequency 60 Hz 23 Rated frequency 87 Hz 25 Hih efficiency (IE2) 26 Rated frequency Hz 26 Rated frequency 60 Hz 27 Rated frequency 87 Hz 28 Frequency inverter optimised 29 Rated frequency 120 Hz 29 Permissible radial and aial forces 30 Averae speed 2000 r/min 30 Averae speed 30 r/min 32 5

Contents L-force 3-ph. AC motors Accessories Motor connection 33 Cable lands on terminal bo 33 Motor terminal bo with ICN connector 34 Motor terminal bo with HAN-10 E connector 35 Motor terminal bo with HAN modular connector 35 Connector for feedbac 36 ICN connector for blower 37 Sprin-applied brae 38 Features 38 Motor brae assinment 38 Brae connection 41 Permissible friction enery 43 Brae data, reduced brain torque 44 Brae data, standard brain torque 46 Brae data, increased brain torque 48 Separate fan Blower data Hz Blower data 60 Hz 51 Feedbac 52 Resolver 52 Incremental encoder and SinCos absolute value encoder 53 Thermal sensor 54 TKO thermal contacts 54 PTC thermistor 54 KTY continuous temperature sensor 55 6

Contents L-force 3-ph. AC motors Dimensions MDEMA 56 Desin B3 56 Desin B5 58 Desin B14 60 MDFMA 62 Desin B3 62 Desin B5 64 Desin B14 66 MHEMA 68 Desin B3 68 Desin B5 70 Desin B14 72 MHFMA 74 Desin B3 74 Desin B5 76 Desin B14 78 MFEMA 80 Desin B3 80 Desin B5 82 Desin B14 84 MFFMA 86 Desin B3 86 Desin B5 88 Desin B14 90 Motor connection 92 Motor terminal bo with ICN connector 92 Motor terminal bo with HAN-10E / HAN-Modular connector 93 ICN connector for blower 94 Brae motor with manual release lever MD MA (IE1) MH MA (IE2) MF MA 97 8200 motec frequency inverter 98 Rated frequency Hz 98 Rated frequency 87 Hz 99 7

Contents L-force 3-ph. AC motors Surface and corrosion protection OKS-G (primed) 101 OKS-S 101 OKS-M 101 OKS-L 101 Structure of surface coatin02 Lenze world-wide 106 8

General information Product ey Three-phase AC motors 9

General information Product information For a lon time now, three-phase AC motors from Lenze have been established in virtually all industrial sectors. Based on our many years of eperience in the field of drive and automation technoloy, we have developed motors, which will ensure that your demands in terms of productivity, quality and availability are perfectly met. Three-phase AC motors from the L-force series are primarily characterised by their comprehensive modularity. The wide variety of options allows you to precisely adjust the drive characteristics in line with your application. We call this Rihtsizin. The motors are available in three versions: ƒ L-force three-phase AC motors MD (0.12 22 W) Three-phase AC motors of efficiency class IE1 (standard efficiency) correspondin to IEC 60034-30 ƒ L-force three-phase AC motors MH (0.75 45 W) Three-phase AC motors of efficiency class IE2 (hih efficiency) correspondin to IEC 60034-30 Since the IE2 motors are produced in the same dimensions as the standard efficiency motors, it's very easy to chane between versions. ƒ L-force three-phase AC motors MF (0.55 22 W) These motors are optimised for use in an inverter operation. Benefits for you: - Up to 2 sizes smaller than standard three-phase AC motors - The motors eceed the minimum efficiency levels of efficiency class IE2 - Lare settin rane: 1:24 (no field weaenin) - Dynamic thans to a small moment of inertia ƒ 9 brae sizes each available with several brain torques can be combined with three-phase AC motors. ƒ The LonLife desin of the brae easily enables over 10 10 6 switchin cycles. ƒ For speed and position detection, a resolver and/or various incremental and absolute value encoders can be mounted. ƒ Motors are also available with plus for power connections, braes, blowers and feedbac for fast commissionin. ƒ The motor can optionally be equipped with a blower instead of an interal fan. At speeds below 20 Hz, a torque reduction is consequently not required. ƒ For drive tass in distributed applications, the motor can be supplied with the motec frequency inverter mounted on the terminal bo. ƒ Motors are available with UL/CSA, GOST, CCC and UrSepro approval. Basic versions ƒ The motors feature B3, B5 and B14 desins and dimensions standardised in line with IEC 60072-1 and/or DIN EN 347 which maes then suitable for universal use. ƒ The motor windin is inverter-compatible even in the standard version. ƒ The thermal sensors interated as standard allow for permanent temperature monitorin and are coordinated to the motor windin's temperature class F (155 C). ƒ The motors of the basic version are adapted to ambient conditions by enclosure IP55. ƒ In touh operatin conditions, the surface and corrosion protection system is provided to reliably protect the motor from corrosive media. 10

General information List of abbreviations η % η 75 % cos ϕ I N I ma J m M a M b M ma M N n N P N P ma [%] [%] [A] [A] [cm²] [] [r/min] [W] [W] Efficiency Efficiency Power factor Rated current Ma. current consumption Moment of inertia Mass Startin torque Stallin torque Ma. torque Rated torque Rated speed Rated power Ma. power input U ma U min U N, Δ U N, Y [V] [V] [V] [V] Ma. mains voltae Min. mains voltae Rated voltae Rated voltae Communauté Européenne Canadian Standards Association Deutsches Institut für Normun e.v. Electromanetic compatibility European standard International Electrotechnical Commission International Mountin Code International Protection Code National Electrical Manufacturers Association Underwriters Laboratory Listed Product Underwriters Laboratory Reconized Product Verband deutscher Eletrotechnier (Association of German Electrical Enineers) China Compulsory Certificate Certificate for Russian Federation Combined certification mars of UL for the USA and Canada Certificate for Uraine 11

General information Standards and operatin conditions Enclosure EN 60529 Enery efficiency class IEC 60034-30 IEC 60034-2-1 Approval Class Temperature class IEC/EN 60034-1; utilisation IEC/EN 60034-1; insulation system (enamelinsulated wire) Min. ambient operatin temperature Ma. ambient temperature for operation With power reduction Site altitude Amsl T opr,min [ C] IP55 IE1 IE2 Methodoloy for measurin efficiency CCC curus 1) GOST-R UrSepro B F -20 T opr,ma [ C] T opr,ma [ C] 60 H ma [m] 0 1) Motor type MD/MH: Size 225 in preparation. ƒ In the European Union, the ErP Directive stipulates minimum efficiency levels for three-phase AC motors. Geared threephase AC motors that do not conform with this Directive do not meet CE requirements and must not be mareted in the European Economic Area. For further information about the ErP Directive and the Lenze products to which it relates, please refer to the brochure entitled "International efficiency directives for three-phase AC motors". 12

Drive dimensionin Dimensionin Torque deratin at low motor frequencies Torque reduction dependin on motor frame size tain into account the thermal behaviour when operated with a frequency inverter. A = Operation with interal fan and brae B = Operation with interal fan and brae control "Holdin current reduction" ƒ The technical data listed in this cataloue for motors in inverter operation applies for operation on a Lenze frequency inverter. If you are in any doubt, please as the manufacturer of the frequency inverter whether the drive is able to operate the motor with the technical data listed (e.. settin rane, base frequency). You can use the Drive Solution Desiner for precise drive dimensionin. The Drive Solution Desiner helps you to carry out a fast and hih-quality drive dimensionin. The software includes well-founded and proven nowlede on drive applications and electro-mechanical drive components. Please contact your Lenze sales office. 13

Drive dimensionin Three-phase AC motor versions Desin Shaft journal d l Sprin-applied brae Feedbac Temperature sensor Motor connection Power connection Brae connection Blower connection Feedbac connection Temperature sensor connection Shaft bearins Colour MD -12 MD -32 MD -42 MF -32 MF -42 11 23 MD -12 MD -32 MD -42 MF -32 MF -42 14 30 Standard or LonLife desin Reduced or standard brain torque With rectifier With manual release lever Low noise B14 B3 B5 MD -12 MD -32 MD -42 MH -32 MF -32 MF -42 19 Resolver Incremental encoder Absolute value encoder (multi-turn) TKO KTY83-110 KTY84-130 PTC Terminal bo HAN modular connector HAN10E connector Connector ICN Terminal bo HAN modular connector HAN10E connector Connector ICN Terminal bo Connector ICN Terminal bo Connector ICN MD -12 MD -12 MH -12 MH -12 MF -32 24 Standard or LonLife desin Reduced, standard or increased brain torque With rectifier With manual release lever Low noise Terminal bo KTY at connector in the feedbac connection TKO or PTC at connector in the power connection Non-drive end Deep-roove ball bearin with hih-temperature resistant rease, 2 sealin discs or cover plates Primed Paint in various corrosion-protection desins in accordance with RAL colours Not coated 14

Drive dimensionin Three-phase AC motor versions Desin Shaft journal d l Sprin-applied brae Feedbac Temperature sensor Motor connection Power connection Brae connection Blower connection Feedbac connection Temperature sensor connection Shaft bearins Colour MD -12 MD -32 MH -12 MH -32 MF -12 MF -32 Standard or LonLife desin Reduced, standard or increased brain torque With rectifier With manual release lever Low noise MD -22 MH -22 B14 B3 B5 28 60 MF -22 Standard desin Reduced, standard or increased brain torque With rectifier With manual release lever Low noise Resolver Incremental encoder Absolute value encoder (multi-turn) Terminal bo HAN modular connector HAN10E connector Connector ICN Terminal bo HAN modular connector HAN10E connector Connector ICN TKO KTY83-110 KTY84-130 PTC Terminal bo Connector ICN Terminal bo Connector ICN Terminal bo KTY at connector in the feedbac connection TKO or PTC at connector in the power connection Non-drive end Terminal bo Terminal bo Terminal bo KTY at connector in the feedbac connection Deep-roove ball bearin with hih-temperature resistant rease, 2 sealin discs or cover plates Primed Paint in various corrosion-protection desins in accordance with RAL colours Not coated 15

Drive dimensionin Three-phase AC motor versions Desin Shaft journal d l Sprin-applied brae Feedbac Temperature sensor Motor connection Power connection Brae connection Blower connection Feedbac connection Temperature sensor connection Shaft bearins Colour MD -12 MD -22 MH -12 MH -22 Terminal bo HAN modular connector Connector ICN Terminal bo HAN modular connector Connector ICN 38 80 MF -12 MF -22 MF -32 B3 B5 Standard desin Reduced, standard or increased brain torque With rectifier With manual release lever Low noise Resolver Incremental encoder Absolute value encoder (multi-turn) TKO KTY83-110 KTY84-130 PTC Terminal bo Connector ICN Terminal bo Connector ICN Terminal bo HAN modular connector Terminal bo HAN modular connector Terminal bo KTY at connector in the feedbac connection TKO or PTC at connector in the power connection Non-drive end MD -22 MD -32 MH -22 MH -32 42 110 Drive end Deep-roove ball bearin with hih-temperature resistant rease, 2 sealin discs or cover plates Primed Paint in various corrosion-protection desins in accordance with RAL colours Not coated 16

Drive dimensionin Three-phase AC motor versions Desin Shaft journal d l Sprin-applied brae Feedbac Temperature sensor Motor connection Power connection Brae connection Blower connection Feedbac connection Temperature sensor connection Shaft bearins Colour MD 180-12 MD 180-32 MH 180-12 MH 180-32 48 110 MH 200-32 B3 B5 55 110 Standard desin Reduced, standard or increased brain torque With rectifier With manual release lever Low noise Resolver Incremental encoder Absolute value encoder (multi-turn) TKO KTY83-110 KTY84-130 PTC Terminal bo Terminal bo Terminal bo Connector ICN Terminal bo Connector ICN Terminal bo Drive end MH 225-12 MH 225-22 60 1 Deep-roove ball bearin with hih-temperature resistant rease, 2 sealin discs or cover plates Primed Paint in various corrosion-protection desins in accordance with RAL colours Not coated 17

Drive dimensionin Assinment of motor to frequency inverter Rated frequency Hz ƒ Decentralised frequency inverter 8200 motec (E82MV) ƒ Inverter Drives 8 frequency inverter (E84AV) Rated power Product ey Motor Inverter P N [W] 0.12 MD -12 0.18 0.25 0.37 0.55 0.75 1.10 1. MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MH -32 MH -12 MH -32 E82MV251_2B E82MV371_2B E82MV551_4B E82MV751_4B E82MV152_4B E84AV 2512 0 E84AV 3714 0 E84AV 5514 0 E84AV 7514 0 E84AV 4 0 E84AV 1524 0 2.20 3.00 4.00 MD -12 MD -32 MD -22 MH -12 MH -32 MH -22 E82MV222_4B E82MV302_4B E82MV2_4B E84AV 2224 0 E84AV 3024 0 E84AV 3024 S E84AV 24 0 5. MD -12 MH -12 E82MV552_4B E84AV 5524 0 7. MD -22 MH -22 E82MV752_4B E84AV 7524 0 11.0 MD -22 MH -22 E84AV 1134 0 15.0 MD -32 MH -32 E84AV 1534 0 18.5 MD 180-12 MH 180-12 E84AV 1834 0 22.0 MD 180-32 MH 180-32 E84AV 2234 0 30.0 MH 200-32 E84AV 3034 0 37.0 45.0 MH 225-12 MH 225-22 E84AV 3734 0 E84AV 4534 0 18

Drive dimensionin Assinment of motor to frequency inverter Rated frequency 87 Hz Rated power Product ey Motor Inverter P N [W] 0.21 MD -12 0.33 0.45 0.66 1.00 1.35 2.00 2.70 3.90 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MH -32 MH -12 MH -32 MH -12 E82MV551_4B E82MV751_4B E82MV152_4B E82MV222_4B E82MV222_4B E82MV302_4B E82MV2_4B E84AV 5514 0 E84AV 7514 0 E84AV 4 0 E84AV 1524 0 E84AV 2224 0 E84AV 3024 0 E84AV 3024 S E84AV 24 0 5. MD -32 MH -32 E82MV552_4B E84AV 5524 0 7.10 MD -22 MH -22 E82MV752_4B E84AV 7524 0 9.70 MD -12 MH -12 E84AV 1134 0 13.2 MD -22 MH -22 E84AV 1534 0 19.3 MD -22 MH -22 E84AV 2234 0 26.4 32.4 MD -32 MD 180-12 MH -32 MH 180-12 E84AV 3034 0 E84AV 4534 0 19

Drive dimensionin Assinment of motor to frequency inverter Rated frequency 120 Hz Rated power P N [W] 0.55 0.75 1.10 1. 2.20 3.00 4.00 5. 7. 11.0 15.0 18.5 22.0 Motor MF -32 MF -42 MF -32 MF -42 MF -32 MF -42 MF -32 MF -12 MF -32 MF -22 MF -12 MF -22 MF -32 Product ey Inverter E84AV 5514 0 E84AV 7514 0 E84AV 4 0 E84AV 1524 0 E84AV 2224 0 E84AV 3024 0 E84AV 3024 S E84AV 24 0 E84AV 5524 0 E84AV 7524 0 E84AV 1134 0 E84AV 1534 0 E84AV 1834 0 E84AV 2234 0 20

Rated data Standard efficiency Rated frequency Hz P U 2) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MD -12 MD -22 [W] 0.12 0.18 0.25 0.25 0.37 0.55 0.55 0.75 1.10 1.10 1. 2.20 3.00 4.00 5. 7. [r/min] 1425 1365 1370 1370 1410 15 1390 1410 1390 1390 1410 14 1430 14 14 1455 [V] 3) 3) [A] 0.85 1.00 1. 1.30 1.60 2. 2. 3.30 4.80 4.80 6.60 9.20 12.5 16.1 20.2 11.7 28.6 16.5 [V] [A] 0.49 0.58 0.82 0.75 0. 1. 1. 1.90 2.80 2.80 3.80 5.30 7.20 9.30 11.7 16.5 3.10 2.70 2.90 2.90 3.30 3. 3.80 4.60 4. 4.10 4.80 6.00 4.60 6.20 4.00 5.90 M N M a M b cos ϕ η 75 % η % J 1) ) MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MD -12 MD -22 0.80 1.26 1.74 1.74 2.51 3.74 3.80 5.10 7. 7.56 10.1 14.6 20.5 26.3 36.2 49.2 2. 2. 3.80 3.10 4.76 7.85 6.80 11.0 16.5 15.5 23.7 38.0 43.0 70.0 2.64 2.61 4.10 3.10 5.81 9.12 7.20 12.1 18.4 16.0 27.1 44.0.0.0 110 1 0.56 0.70 0.67 0.75 0.77 0.77 0.80 0.80 0.80 0.81 0.76 0.73 0.75 0.73 0.75 0.76 [%] 58.0 63.0 65.0 65.0 73.0 74.0 70.0 73.0 77.0 75.0 78.0 83.0 83.0 85.0 86.0 87.0 [%] 63.0 64.0 66.0 66.0 73.0 74.0 70.0 74.0 77.0 75.0 79.0 84.0 83.0 86.0 86.0 88.0 [cm²] 3.30 3.30 3.70 8.30 10.7 12.8 16.9 26.0 26.0 23.2 28.4 61.0 61.0 107 188 336 [] 4.10 4.10 4. 5.80 5.80 6. 10.0 11.0 11.0 12.0 15.0 31.0 56.0 66.0 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at Hz include voltae values of Δ V. For motor sizes -12 to 180-32, the necessary voltae must also be indicated. 3) Star/delta start-up at V possible. 21

Rated data Standard efficiency P U 2) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MD -22 MD -32 MD 180-12 MD 180-32 [W] 11.0 15.0 18.5 22.0 [r/min] 1460 1460 0 1465 [V] 3) 3) 3) 3) [A] 36.5 21.0 48.4 27.8 57.8 32.8 67.4 38.8 [V] [A] 21.0 27.8 32.8 38.8 7.00 7.10 6.80 7.30 M N M a M b cos ϕ η 75 % η % J 1) ) MD -22 MD -32 MD 180-12 MD 180-32 71.9 98.1 120 144 1 214 260 330 204 288 313 360 0.85 0.87 0.90 0.90 [%] 89.2 89.7 90.7 91.2 [%] 89.0 90.0 90.5 91.0 [cm²] 610 7 13 15 [] 110 130 165 175 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at Hz include voltae values of Δ V. For motor sizes -12 to 180-32, the necessary voltae must also be indicated. 3) Star/delta start-up at V possible. 22

Rated data Standard efficiency Rated frequency 60 Hz P U 2) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MD -12 MD -22 [W] 0.14 0.22 0.31 0.31 0.45 0.68 0.68 0.92 1.30 1.30 1.80 2.60 3.60 4.80 6.60 9.00 [r/min] 1725 1665 1670 1670 1710 1705 1690 1710 1690 1690 1710 17 1730 17 17 1755 [V] 277 277 277 277 277 277 277 277 277 277 277 277 277 277 277 480 3) 277 480 3) [A] 0.85 1.00 1. 1.30 1.60 2. 2. 3.30 4.80 4.80 6.60 9.20 12.5 16.1 20.2 11.7 28.6 16.5 [V] 480 480 480 480 480 480 480 480 480 480 480 480 480 480 480 480 [A] 0.49 0.58 0.82 0.75 0. 1. 1. 1.90 2.80 2.80 3.80 5.30 7.20 9.30 11.7 16.5 3.10 2.70 2.90 2.90 3.30 3. 3.80 5.10 5.00 4.10 5.30 6.60 5.20 6. 4.20 6. M N M a M b cos ϕ η 75 % η % J 1) ) MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MD -12 MD -22 0.80 1.30 1.80 1.74 2.51 3.74 3.80 5.10 7. 7.56 10.1 14.6 20.5 26.4 36.2 49.2 2. 2. 3.90 3. 4.80 8.00 8.10 11.6 17.8 21.8 24.7 38.0 43.0 58.0 2.60 2.60 4.20 4.20 5.80 9.30 9.10 13.3 21.0 23.1 30.2 47.0 54.0 102 115 0.56 0.70 0.67 0.75 0.77 0.77 0.80 0.80 0.80 0.80 0.74 0.73 0.75 0.73 0.79 0.75 [%] 58.0 63.0 64.0 65.0 74.0 76.0 74.0 79.0 79.0 79.0 80.0 84.0 87.0 86.0 87.0 88.0 [%] 63.0 64.0 66.0 66.0 73.0 74.0 75.0 79.0 79.0 79.0 82.0 85.0 88.0 87.0 88.0 88.0 [cm²] 3.30 3.30 3.70 8.30 10.7 12.8 16.9 26.0 26.0 23.2 28.4 61.0 61.0 107 188 336 [] 4.10 4.10 4. 5.80 5.80 6. 10.0 11.0 11.0 12.0 15.0 31.0 56.0 66.0 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at 60 Hz include voltae values of Δ 277 V. For motor sizes -12 to 180-32, the necessary voltae must also be indicated. 3) Star/delta start-up at 480 V possible. 23

Rated data Standard efficiency P U 2) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MD -22 MD -32 MD 180-12 MD 180-32 [W] 13.2 18.0 22.2 26.4 [r/min] 0 0 1770 5 [V] 277 480 3) 277 480 3) 277 480 3) 277 480 3) [A] 36.5 21.0 48.4 27.8 57.8 32.8 67.4 38.8 [V] 480 480 480 480 [A] 21.0 27.8 32.8 38.8 7.00 7.10 6.80 7.30 M N M a M b cos ϕ η 75 % η % J 1) ) MD -22 MD -32 MD 180-12 MD 180-32 71.9 98.1 120 144 1 214 260 330 204 288 313 360 0.85 0.87 0.90 0.90 [%] 90.1 90.6 91.5 92.0 [%] 89.0 90.0 90.5 91.0 [cm²] 610 7 13 15 [] 110 130 165 175 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at 60 Hz include voltae values of Δ 277 V. For motor sizes -12 to 180-32, the necessary voltae must also be indicated. 3) Star/delta start-up at 480 V possible. 24

Rated data Standard efficiency Rated frequency 87 Hz P N n N M N M ma U N, Δ ± 10 % I N, Δ cos ϕ η 75 % η % J 1) ) [W] [r/min] [V] [A] [%] [%] [cm²] [] MD -12 0.21 2535 0.80 1.60 0.85 0.55 61.0 68.0 3.30 4.10 MD -32 0.33 2475 1.26 5.00 1.00 0.65 68.0 70.0 3.30 4.10 MD -42 0.45 2480 1.74 7.00 1. 0.63 66.0 69.0 3.70 4. MD -12 0.45 2480 1.74 7.00 1.30 0.74 66.0 68.0 8.30 5.80 MD -32 0.66 2520 2.51 10.0 1.60 0.72 76.0 78.0 10.7 5.80 MD -42 1.00 2515 3.74 15.0 2. 0.74 79.0 80.0 12.8 6. MD -12 1.00 20 3.80 15.0 2. 0.78 72.0 72.0 16.9 10.0 MD -32 1.35 2520 5.10 20.0 3.30 0.80 75.0 77.0 26.0 11.0 MD -42 2.00 20 7. 30.0 4.80 0.80 81.0 82.0 26.0 11.0 MD -12 2.00 20 7.56 30.0 4.80 0.78 77.0 77.0 23.2 12.0 MD -32 2.70 2520 10.1.0 6.70 0.73 83.0 85.0 28.4 15.0 MD -12 3.90 25 14.6 60.0 9.20 0.71 87.0 88.0 61.0 MD -32 5. 25 20.5 80.0 12.5 0.73 87.0 88.0 61.0 MD -22 7.10 2560 26.3 105 16.1 0.71 87.0 88.0 107 31.0 MD -12 9.70 2560 36.2 145 20.1 0.78 90.0 90.0 188 56.0 MD -22 13.2 2565 49.2 200 28.6 0.75 90.0 90.0 336 66.0 MD -22 19.3 2565 71.9 280 36.5 0.85 91.7 90.0 610 110 MD -32 26.4 2565 98.1 390 48.4 0.86 91.9 92.0 7 130 MD 180-12 MD 180-32 32.4 38.7 2575 2560 120 144 480 572 57.8 67.4 0.89 0.89 92.8 92.8 92.0 92.0 13 15 165 175 1) Without accessories 25

Rated data Hih efficiency (IE2) Rated frequency Hz P U -1) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 MH -12 MH -22 MH -22 MH -32 MH 180-12 MH 180-32 MH 200-32 MH 225-12 MH 225-22 [W] 0.75 1.10 1. 2.20 3.00 4.00 5. 7. 11.0 15.0 18.5 22.0 30.0 37.0 45.0 [r/min] 1410 1430 1435 1445 1445 1455 0 1460 0 0 5 0 1465 1483 1480 [V] 3) 3) 3) 3) 3) 3) 3) 3) 3) [A] 3.10 4.60 5.80 8.60 12.1 14.5 20.6 11.9 27.0 15.6 37.7 21.8.3 29.1 58.8 34.0 68.9 39.8 93.8 53.9 113 137 [V] [A] 1.80 2.70 3.30 5.00 7.00 8. 11.9 15.6 21.8 29.1 34.0 39.8 53.9 65.0 79.0 5.00 5. 6.30 6.00 6. 6.00 6.10 8. 8.00 8.20 8. 7.80 7.00 7. 7.60 M N M a M b cos ϕ η % η 75 % η % J 1) ) MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 MH -12 MH -22 MH -22 MH -32 MH 180-12 MH 180-32 MH 200-32 MH 225-12 MH 225-22 5.08 7.35 10.0 14.5 19.8 26.3 35.7 49.1 71.5 97.4 120 143 1 238 290 12.0 20.3 33.0 48.0 67.0 81.0 90.0 110 164 224 359 469 620 698 12.1 24.2 34.0 55.0 76.0 108 175 243 292 371 372 469 620 669 0.84 0.76 0.76 0.80 0.73 0.80 0.77 0.79 0.82 0.82 0.86 0.87 0.87 0.87 0.88 [%] 74.9 77.4 82.2 85.4 83.8 86.3 88.2 87.6 89.4 90.2 90.8 91.4 91.9 94.0 93.7 [%] 79.6 81.6 83.4 86.7 85.6 88.2 89.3 88.9 90.0 90.8 91.4 92.0 92.5 94.6 94.5 [%] 79.6 82.0 82.8 86.3 85.5 88.3 89.2 88.7 89.8 90.6 91.2 91.6 92.3 94.3 94.3 [cm²] 28.0 32.0 61.0 66.0 135 290 336 570 760 1390 14 18 4610 5300 [] 11.0 16.0 18.0 26.5 38.0 59.0 66.0 109 124 175 180 315 3 415 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at Hz include voltae values of Δ V. For motor sizes -12 to 200-32, the necessary voltae must also be indicated. 3) Star/delta start-up at V possible. 26

Rated data Hih efficiency (IE2) Rated frequency 60 Hz P U -1) N n N N, Δ I N, Δ U N, Y ± 10 % I N, Y I a / I N ± 10 % MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 MH -12 MH -22 MH -22 MH -32 MH 180-12 MH 180-32 MH 200-32 MH 225-12 MH 225-22 [W] 0.92 1.30 1.80 2.60 3.60 4.80 6.60 9.00 13.2 18.0 22.2 26.4 45.0 54.0 [r/min] 1710 1730 1735 1745 1745 1755 1770 0 1770 1770 1775 1770 5 1783 1780 [V] 277 277 277 277 277 277 277 480 3) 277 480 3) 277 480 3) 277 480 3) 277 480 3) 277 480 3) 277 480 3) 277 480 3) 277 480 3) [A] 3.10 4.60 5.80 8.60 12.1 14.5 20.6 11.9 27.0 15.6 37.7 21.8.3 29.1 58.8 34.0 68.9 39.8 93.8 53.9 113 137 [V] 480 480 480 480 480 480 480 480 480 480 480 480 480 480 480 [A] 1.80 2.70 3.30 5.00 7.00 8. 11.9 15.6 21.8 29.1 34.0 39.8 53.9 65.0 79.0 5. 5.80 6.70 6. 7.00 6. 6. 9.10 8.60 9.10 8.90 8.20 7. 7. 7.60 M N M a M b cos ϕ η % η 75 % η % J 1) ) MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 MH -12 MH -22 MH -22 MH -32 MH 180-12 MH 180-32 MH 200-32 MH 225-12 MH 225-22 5.14 7.18 9.91 14.2 19.7 26.1 35.6 48.8 71.2 97.1 119 142 1 241 290 12.6 22.0 35.0 52.0 73.0 90.0 97.0 120 171 243 370 413 487 620 698 13.3 26.0 37.0 60.0 84.0 110 120 192 256 301 382 384 604 620 669 0.84 0.76 0.76 0.80 0.73 0.80 0.77 0.79 0.81 0.82 0.86 0.87 0.87 0.87 0.88 [%] 77.3 80.4 82.3 85.7 84.7 87.4 89.0 88.2 90.6 91.4 92.0 92.1 93.1 94.2 94.1 [%] 82.5 84.0 84.3 87.5 87.8 89.5 89.5 89.5 91.2 92.0 92.6 93.2 93.7 94.8 94.8 [%] 82.5 84.0 84.0 87.5 87.5 89.5 90.3 89.5 91.0 92.4 92.4 93.0 93.5 94.8 94.7 [cm²] 28.0 32.0 61.0 66.0 135 290 336 570 760 1390 14 18 4610 5300 [] 11.0 16.0 18.0 26.5 38.0 59.0 66.0 109 124 175 180 315 3 415 1) Without accessories 2) Operation at 87 Hz is possible with 4-pole motors whose ratins at 60 Hz include voltae values of Δ 277 V. For motor sizes -12 to 200-32, the necessary voltae must also be indicated. 3) Star/delta start-up at 480 V possible. 27

Rated data Hih efficiency (IE2) Rated frequency 87 Hz P N n N M N M ma U N, Δ ± 10 % I N, Δ cos ϕ η % η 75 % η % J m [W] [r/min] [V] [A] [%] [%] [%] [cm²] [] MH -32 1.35 2520 5.12 20.0 3.10 0.84 76.9 81.6 83.5 28.0 11.0 MH -12 2.00 25 7.52 30.0 4.60 0.78 82.0 84.9 86.5 32.0 16.0 MH -32 2.70 2545 10.1.0 5.80 0.76 82.8 85.5 86.0 18.0 MH -12 3.90 2555 14.6 60.0 8.60 0.83 87.4 89.6 90.0 61.0 MH -32 5. 2555 20.2 80.0 12.1 0.76 84.3 87.9 88.5 66.0 26.5 MH -22 7.10 2565 26.4 106 14.5 0.83 87.9 90.2 90.9 135 38.0 MH -12 9.70 2580 35.9 144 20.6 0.82 89.6 91.4 91.8 290 59.0 MH -22 13.2 2570 49.1 1 27.0 0.82 88.3 90.1 90.7 336 66.0 MH -22 19.4 2580 71.8 287 37.7 0.81 89.4 91.0 91.6 570 109 MH -32 26.4 2580 97.7 391.3 0.81 89.4 91.0 91.6 760 124 MH 180-12 32.5 2585 120 480 58.8 0.86 90.9 92.2 92.8 1390 175 MH 180-32 38.7 2580 143 573 68.9 0.87 91.7 92.9 93.4 14 180 MH 225-12 MH 225-22 64.0 78.0 2593 2590 236 288 920 11 113 137 0.87 0.85 93.1 93.0 94.4 94.3 94.8 94.7 4610 5300 3 415 1) Without accessories 28

Rated data Frequency inverter optimised Rated frequency 120 Hz MF -32 MF -42 MF -32 MF -42 MF -32 MF -42 MF -32 MF -12 MF -32 MF -22 MF -12 MF -22 MF -32 P N n N U N, Δ I N, Δ U N, Y ± 10 % ± 10 % [W] [r/min] [V] [A] [V] 0.55 34 200 3.20 345 0.75 3 210 4.00 370 1.10 3490 200 5. 345 1. 34 205 6.80 360 2.20 30 200 9.10 345 3.00 3480 210 11.4 370 4.00 3480 370 5. 3525 3 7. 3515 375 11.0 3530 370 15.0 3560 370 18.5 3560 360 22.0 35 380 I N, Y [A] 1.80 2.30 3.20 3.90 5.30 6.60 8. 12.9 15.9 23.5 31.2 39.0 44.5 M N M ma cos ϕ η 75 % η % J 1) ) [%] [%] [cm²] [] MF -32 1.53 6.00 0.68 75.0 75.0 3.70 4. MF -42 2.11 8.00 0.69 79.6 79.6 3.70 4. MF -32 3.01 12.0 0.77 81.4 81.4 12.8 6. MF -42 4.15 16.0 0.80 82.8 82.8 12.8 6. MF -32 6.00 0.86 84.3 84.3 28.0 11.0 MF -42 8.20 32.0 0.86 85.5 85.5 28.0 11.0 MF -32 10.9 44.0 0.85 87.0 86.6 32.0 18.0 MF -12 14.9 60.0 0.81 87.9 87.7 61.0 26.5 MF -32 20.3 80.0 0.81 88.9 88.7 61.0 26.5 MF -22 29.7 120 0.78 89.8 89.8 107 38.0 MF -12.3 0.84 88.9 90.6 336 66.0 MF -22 49.6 200 0.84 89.9 91.2 336 66.0 MF -32 59.2 2 0.83 90.5 91.6 336 66.0 1) Without accessories 29

Rated data Permissible radial and aial forces Averae speed 2000 r/min Application of force at l/2 Bearin service life L 10 00 h 20000 h 30000 h 000 h F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] 600-600 300 470-480 180 410-430 120 3-370 70 7-800 470 590-630 300 510-5 220 430-470 1 0-1 580 770-860 3 670-760 2 570-6 1 10-1 630 8-920 390 730-800 280 620-690 1490-1490 910 1190-1 580 10-1010 430 890-860 270 22-2330 13 1790-1830 8 1570-0 610 1330-1360 370 3300-21 1190 26-1670 710 2320-14 480 1970-1210 2 37-2700 1520 3000-2130 0 26-1830 670 22-14 360 180 5620-3270 1790-2580 0 30-2210 790 3375-17 420 200 5620-3270 1790-2580 0 30-2210 790 3375-17 420 225 5200-3 3900 3900-2 2900 3300-1300 2 26-0 1800 ƒ The values for the bearin service life L 10 refer to an averae speed of 2000 r/min. Dependin on the ambient temperatures, the service life of the bearins is also reduced by the rease lifetime. ƒ Data for aial forces relate to the maimum radial force with the correspondin bearin service life. 30

Rated data Permissible radial and aial forces Application of force at l Bearin service life L 10 00 h 20000 h 30000 h 000 h F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] -600 300 370-480 180 320-430 120 300-370 70 680-800 470 5-630 300 470-5 220-470 1 880-1 580 700-860 3 610-760 2 520-6 1 9-1 630 7-920 390 660-800 280 560-690 13-1490 910 1-1 580 9-1010 430 800-860 270 20-2330 13 1620-1830 8 1420-0 610 1210-1360 370 3020-21 1190 2420-1670 710 2120-14 480 1800-1210 2 3410-2700 1520 2730-2130 0 2-1830 670 20-14 360 180 45-3270 1790 36-2580 0 3200-2210 790 2730-17 420 200 45-3270 1790 36-2580 0 3200-2210 790 2730-17 420 225 4800-3 3900 3600-2 2900 3000-1300 2 2-0 1800 ƒ The values for the bearin service life L 10 refer to an averae speed of 2000 r/min. Dependin on the ambient temperatures, the service life of the bearins is also reduced by the rease lifetime. ƒ Data for aial forces relate to the maimum radial force with the correspondin bearin service life. 31

Rated data Permissible radial and aial forces Averae speed 30 r/min Application of force at l/2 Bearin service life L 10 00 h 20000 h 30000 h 000 h F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] 0-430 270-330 180 3-290 1 290-2 90 610-580 2 490-490 130 430-430 80 360-360 30 800-790 280 6-6 130 560-570 60 480-0 0 880-830 310 700-670 1 610-600 70 520-520 0 0-1060 480 0-8 2 870-7 1 7-630 1870-1680 700 10-10 360 1310-1190 200 1110-1030 27-1 4 2200-1 130 1700-980 20 Application of force at l Bearin service life L 10 00 h 20000 h 30000 h 000 h F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ F rad F a,- F a,+ [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] [N] 460-410 260 370-320 170 320-280 130 270-2 80 570-560 4-4 120-70 330-3 20 730-7 2 580-610 510-5 790-790 270 630-6 120 5-570 0-0 420 900-800 210 790-700 120 670-600 20 1690-0 610 13-1280 300 1190-11 1 0-0 0 2520-1300 330 2020-1020 60 1300-0 0 ƒ The values for the bearin service life L 10 refer to an averae speed of 30 r/min. Dependin on the ambient temperatures, the service life of the bearins is also reduced by the rease lifetime. ƒ Data for aial forces relate to the maimum radial force with the correspondin bearin service life. 32

Accessories Motor connection MD/MH three-phase AC motors are desined for operation on a fied mains and for inverter operation. For operation at Hz, the motors should be operated in a Δconnection at V or in a star connection at V. For inverter operation, the base frequency has been set at 87 Hz at a rated voltae of V in a Δconnection. In the standard version, the motors are connected in the terminal bo. As an option, the motors are also available with the plu-in connectors described on the followin paes as lon as the permissible ratins are not eceeded. MF three-phase AC motors are desined eclusively for inverter operation. At a base frequency of 120 Hz, the rated voltae has been set to appro. 200 V in a delta connection (up to 2.2 W) and appro. 3 V in a star connection. Cable lands on terminal bo Motor type M MAXX M MABR M MARS M MAIG M MAAG M MABS M MABI M MABA P 1 P 2 P 3 P 4 P 6 P 1 P 2 P 3 P 4 P 6 180 200 225 1) M161.5 M201.5 M251.5 M1.5 M121.5 M201.5 M251.5 M321.5 M161.5 M631.5 M201.5 M1.5 M161.5 M121.5 M161.5 M251.5 M1.5 M121.5 M321.5 M161.5 M631.5 M201.5 M1.5 M161.5 M121.5 M161.5 1) The cable lands P1... P4 are only arraned at the bottom. 33

Accessories Motor connection Motor terminal bo with ICN connector The connectors can be rotated throuh 270 and fitted with a bayonet fiin. As the connector fiin is also compatible with conventional union nuts, eistin matin connectors can continue to be used without difficulty. The motor connection is determined in the terminal bo and must be checed before commissionin. Desin Number of power contacts Number of earthin contacts Number of sinallin contacts Brae/rectifier supply voltae TKO thermal contacts supply voltae Ma. current Socet identifier for Lenze system cables Counter plu I ma [A] ICN 6-pole M04 3 1 2 20.0 ICN 8-pole 2 M08 34

Accessories Motor connection Motor terminal bo with HAN-10 E connector In the case of the rectanular HAN-10E plu-in connectors, all si ends of the three windin phases are taen out to the power contacts. The motor circuit is therefore determined in the matin connector. Desin Number of power contacts Number of earthin contacts Number of sinallin contacts Brae/rectifier supply voltae TKO thermal contacts supply voltae Ma. current Socet identifier for Lenze system cables Counter plu I ma [A] HAN-10E 6 1 2 2 16.0 H10... H13 Motor terminal bo with HAN modular connector The connector is available with two different power modules (16 A or A), dependin on the rated motor current. The motor connection is determined in the terminal bo and must be checed before commissionin. Desin Number of power contacts Number of earthin contacts Number of sinallin contacts Brae/rectifier supply voltae Rectifier DC switchin contacts supply voltae TKO thermal contacts supply voltae Ma. current Socet identifier for Lenze system cables Counter plu HAN modular 3 1 2 2 2 I ma [A] 16.0.0 H07... H15 35

Accessories Motor connection Connector for feedbac ICN connector All encoder systems (apart from IG128-24V-H) are also available with an ICN connector fied to the motor terminal bo for eceptionally fast commissionin. The connectors are fitted with a bayonet fiin, which is also compatible with conventional union nuts. Eistin matin connectors can therefore continue to be used without difficulty. Desin Number of sinallin contacts Codin Socet identifier for Lenze system cables Counter plu [ ] Resolver 0 F05 12 Incremental encoder SinCos absolute value encoder 20 F06 Connector for IG128-24V-H As a standard this incremental encoder is equipped with a connection cable of about 0.5 m lenth and with a common industry standard M12 connector at its end. Desin Number of sinallin contacts Codin [ ] Incremental encoder IG128-24V-H 4 0 36

Accessories Motor connection ICN connector for blower The blower is also optionally available with an ICN connector fied to the terminal bo of the blower for eceptionally fast commissionin. The connectors are fitted with a bayonet fiin, which is also compatible with conventional union nuts. Eistin counter plus can therefore continue to be used without difficulty. Desin Number of power contacts Number of earthin contacts Socet identifier for Lenze system cables Counter plu Blower 1-ph L04 6 1 Blower 3-ph L06 37

Accessories Sprin-applied brae Features and assinments Three-phase AC motors can be fitted with a sprin-applied brae. This is activated after the supply voltae is switched off (closed-circuit principle). For optimum adjustment of the brae motor to the application, a rane of brain torques and control versions is available for every motor frame size. For applications with very hih operatin frequencies the brae is also available in a LonLife version, with reinforced mechanical brae components. Features Versions Control ƒ Standard ƒ DC supply 1 10 6 Repeatin switchin cycles ƒ AC supply via rectifier in the terminal bo 1 10 6 Reversin switchin cycles ƒ LonLife Enclosure 10 10 6 Repeatin switchin cycles ƒ Without manual release IP55 15 10 6 Reversin switchin cycles ƒ With manual release IP54 Motor brae assinment Friction linin ƒ Non-asbestos, low wearin Options ƒ Manual release ƒ UL/CSA approval ƒ Noise-reduced Desin Standard LonLife Size Rated torque Size Rated torque Brae Brae MD -12 MD -32 MD -42 MF -32 MF -42 MD -12 MD -32 MF -32 MD -42 MF -42 MD -12 MD -32 MH -32 MF -32 MD -42 MF -42 06 06 06 06 08 06 06 08 08 08 08 10 08 08 10 10 M 2. 4.00 2. 4.00 3. 2. 4.00 3. 8.00 3. 8.00 7.00 3. 8.00 7.00 16.0 06 06 08 06 08 08 08 10 08 10 10 M 4.00 4.00 3. 4.00 3. 8.00 8.00 7.00 8.00 7.00 16.0 38

Desin LonLife Standard Rated torque Size Rated torque Size Brae Brae M M 8.00 7.00 08 10 3. 8.00 7.00 08 08 10 MD -12 MD -32 MH -12 16.0 10 16.0 10 MH -32 23.0 10 MF -32 16.0 14.0 10 12 7.00 16.0 10 10 MD -12 MH -12 32.0 12 14.0 12 MF -12 32.0 12 7.00 16.0 10 10 MD -32 MH -32 14.0 12 MF -32 32.0 12 46.0 12 14.0 32.0 12 12 MD -22 MH -22 35.0 14 MF -22 60.0 14 35.0 60.0 14 14 MD -12 MH -12 60.0 16 MF -12 80.0 16 35.0 60.0 14 14 MD -22 MH -22 60.0 16 MF -22 80.0 16 MF -32 16 60.0 80.0 16 16 MD -22 MH -22 80.0 18 1 18 80.0 1 18 18 MD -32 MH -32 200 18 80.0 1 18 18 MD 180-12 MH 180-12 145 20 260 20 80.0 1 18 18 MD 180-32 MH 180-32 145 20 260 20 315 20 39 Accessories Sprin-applied brae

Accessories Sprin-applied brae Desin Standard LonLife Size Rated torque Size Rated torque Brae Brae MH 200-32 MH 225-12 MH 225-22 18 18 20 20 20 20 25 25 25 25 25 25 25 M 80.0 1 145 260 315 265 490 265 490 600 M

Accessories Sprin-applied brae Brae connection Direct connection without rectifier If the brae is activated directly without a rectifier, a freewheelin diode or a spar suppressor is required to protect aainst induction peas. ƒ Supply voltaes DC 24 V DC 180 V DC 205 V Connection via mains voltae with brae rectifier If the brae is not directly supplied with DC voltae, a rectifier is required. This is included in the scope of supply and is located in the terminal bo of the motor. The rectifier converts the AC voltae of the connection into DC voltae. The followin rectifiers are available: Half-wave rectifier, 6-pole ƒ Ratio of supply voltae to brae coil voltae = 2.22 ƒ Approved by UL/CSA ƒ Supply voltaes AC V AC 277 V AC V AC 460 V AC 480 V Bride rectifier, 6-pole ƒ Ratio of supply voltae to brae coil voltae = 1.11 ƒ Supply voltae AC V 41

Accessories Sprin-applied brae Bride/half-wave rectifier, 6-pole ƒ Ratio of supply voltae to brae coil voltae up to overecitation time = 1.11 beyond overecitation time = 2.22 Supply voltaes: ƒ AC V ƒ AC 277 V ƒ AC V Durin the switchin operation the bride/half-wave rectifier functions as a bride rectifier for the overecitation time t ü and then as a half-wave rectifier. This combination optimises the performance of the brae dependin on the assinment of brae coil voltae and supply voltae: ƒ Short-time overecitation of the brae coil Activatin the brae coil for the overecitation time t ü with twice the rated voltae allows the disenaement time to be reduced. The brae opens more quicly and wear on the friction linin is reduced. These features mae this activation version particularly suitable for liftin applications. It is therefore only available in combination with a brae with increased brain torque. ƒ Holdin current reduction (cold brae) By reducin the holdin current, the bride/half-wave rectifier is able to reduce the power input to the open brae. As the brae heats up less, this type of activation is nown as "cold brae". 42

Accessories Sprin-applied brae Permissible friction enery Q =Switchin enery per switchin cycle S h =Operatin frequency Brae size = 06... 25 43

Accessories Sprin-applied brae Brae data, reduced brain torque ƒ Please enquire for brain torques and maimum switchin wor values not listed here. Size Coil power Brain torque 0 1200 10 1800 3000 3600 Maimum switchin enery 0 1200 10 1800 3000 3600 Transition operatin frequency Moment of inertia Mass P in M B M B M B M B M B M B M B Q E Q E Q E Q E Q E Q E Q E S hü J m [W] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [1/h] [cm²] [] 06 0.020 2. 2.30 2.30 2.20 2.10 2.00 2.00 3.00 3.00 3.00 3.00 3.00 3.00 3.00 79.0 0.015 0.90 08 0.025 3. 3.10 3.10 3.00 2.90 2.80 2.70 7. 7. 7. 7. 7. 7. 7..0 0.061 1. 10 0.030 7.00 6.10 6.00 5.80 5.70 5.30 5.20 12.0 12.0 12.0 12.0 12.0 12.0 12.0.0 0.20 2.60 12 0.0 14.0 12.0 12.0 11.0 11.0 10.0 10.0 1) 7.00 1) 30.0 0.45 4.20 14 0.0 35.0 30.0 29.0 28.0 28.0 26.0 1) 30.0 30.0 30.0 30.0 30.0 18.0 1) 28.0 0.63 5.80 16 0.055 60.0.0 48.0 47.0 46.0 43.0 1) 11.0 1) 27.0 1. 8.70 18 0.085 80.0 65.0 63.0 61.0 60.0 1) 60.0 60.0 60.0 60.0 1) 20.0 2.90 12.6 20 0.10 145 115 109 1) 80.0 80.0 80.0 1) 19.0 7.30 19.5 25 0.11 265 203 199 193 1) 120 120 120 1) 15.0 20.0 31.0 1) In the reion of the load limit the value for friction enery Q BW can be reduced to %. 44

Accessories Sprin-applied brae Activation via half-wave or bride rectifier Size Friction enery Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] 06 08 113 210 11.0 14.0 13.0 10.0 35.0 37.0 10 264 20.0 17.0 37.0 57.0 12 706 21.0 19.0.0 65.0 14 761 37.0 22.0 59.0 148 16 6 53.0 30.0 83.0 169 18 1542 32.0 20.0 52.0 20 2322 47.0 207 25 3522 264 120 384 269 Activation via bride/half-wave rectifier Desin Size Friction enery Overecitation time Min. rest time Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t ü t t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] [ms] [ms] 06 113 12.0 14.0 26.0 35.0 Holdin current reduction (cold brae) 08 10 12 14 16 18 210 264 706 761 6 1542 300 1300 900 3900 22.0 35.0 49.0 61.0 114 83.0 16.0 30.0 45.0 37.0 65.0 52.0 38.0 66.0 93.0 97.0 180 134 37.0 57.0 65.0 148 169 20 2322 126 269 3 207 25 3522 304 138 443 269 ƒ The brae response and application times are uide values. The enaement time is 10 times loner with AC-side switchin. With the maimum air ap the disenaement time t 2 dependin on the brae and control is up to 4 times loner than the disenaement time with the rated air ap. 45

Accessories Sprin-applied brae Brae data, standard brain torque ƒ Please enquire for brain torques and maimum switchin wor values not listed here. Size Coil power Brain torque 0 1200 10 1800 3000 3600 Maimum switchin enery 0 1200 10 1800 3000 3600 Transition operatin frequency Moment of inertia Mass P in M B M B M B M B M B M B M B Q E Q E Q E Q E Q E Q E Q E S hü J m [W] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [1/h] [cm²] [] 06 0.020 4.00 3.70 3.60 3. 3. 3.20 3.20 3.00 3.00 3.00 3.00 3.00 3.00 3.00 79.0 0.015 0.90 08 0.025 8.00 7.20 7.00 6.80 6.70 6.30 6.10 7. 7. 7. 7. 7. 7. 7..0 0.061 1. 10 0.030 16.0 14.0 14.0 13.0 13.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0.0 0.20 2.60 12 0.0 32.0 27.0 27.0 26.0 26.0 23.0 1) 7.00 1) 30.0 0.45 4.20 14 0.0 60.0 51.0.0 48.0 47.0 44.0 1) 30.0 30.0 30.0 30.0 30.0 18.0 1) 28.0 0.63 5.80 16 0.055 80.0 66.0 65.0 63.0 61.0 57.0 1) 11.0 1) 27.0 1. 8.70 18 0.085 1 121 118 115 1) 60.0 60.0 60.0 60.0 1) 20.0 2.90 12.6 20 0.10 260 206 201 1 1) 80.0 80.0 80.0 1) 19.0 7.30 19.5 25 0.11 307 300 291 1) 120 120 120 1) 15.0 20.0 31.0 1) In the reion of the load limit the value for friction enery Q BW can be reduced to %. 46

Accessories Sprin-applied brae Activation via half-wave or bride rectifier Size Friction enery Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] 06 08 85.0 15.0 13.0 16.0 28.0 31.0 45.0 57.0 10 12 14 264 530 571 28.0 17.0 19.0 25.0 47.0 53.0 42.0 76.0 115 210 16 6 27.0 30.0 57.0 220 18 1542 33.0 45.0 78.0 270 20 2322 65.0 165 3 25 3522 110 120 390 Activation via bride/half-wave rectifier Desin Size Friction enery Overecitation time Min. rest time Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t ü t t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] [ms] [ms] 06 85.0 16.0 14.0 30.0 45.0 Holdin current reduction (cold brae) 08 10 12 14 16 18 264 530 571 6 1542 300 1300 900 3900 25.0 31.0 48.0 33.0 58.0 80.0 27.0 21.0 43.0 49.0 64.0 109 52.0 90.0 82.0 122 189 57.0 76.0 115 210 220 270 20 2322 102 157 259 3 25 3522 154 168 322 390 ƒ The brae response and application times are uide values. The enaement time is 10 times loner with AC-side switchin. With the maimum air ap the disenaement time t 2 dependin on the brae and control is up to 4 times loner than the disenaement time with the rated air ap. 47

Accessories Sprin-applied brae Brae data, increased brain torque ƒ Please enquire for brain torques and maimum switchin wor values not listed here. Size Coil power Brain torque 0 1200 10 1800 3000 3600 Maimum switchin enery 0 1200 10 1800 3000 3600 Transition operatin frequency Moment of inertia Mass P in M B M B M B M B M B M B M B Q E Q E Q E Q E Q E Q E Q E S hü J m [W] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [KJ] [1/h] [cm²] [] 10 0.030 23.0 20.0 20.0 19.0 19.0 17.0 17.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0.0 0.20 2.60 12 0.0 46.0 39.0 39.0 38.0 37.0 34.0 33.0 1) 7.00 1) 30.0 0.45 4.20 14 0.0 75.0 64.0 62.0 60.0 59.0 55.0 1) 30.0 30.0 30.0 30.0 30.0 18.0 1) 28.0 0.63 5.80 16 0.055 83.0 81.0 78.0 77.0 71.0 1) 11.0 1) 27.0 1. 8.70 16 0.055 103 101 98.0.0 89.0 1) 11.0 1) 27.0 1. 8.70 18 0.085 200 162 153 1 1) 60.0 60.0 60.0 60.0 1) 20.0 2.90 12.6 20 0.10 315 249 244 237 1) 80.0 80.0 80.0 1) 19.0 7.30 19.5 20 0.10 317 309 300 1) 80.0 80.0 80.0 1) 19.0 7.30 19.5 25 0.11 490 376 367 356 1) 120 120 120 1) 15.0 20.0 31.0 25 0.11 600 461 449 436 1) 120 120 120 1) 15.0 20.0 31.0 1) In the reion of the load limit the value for friction enery Q BW can be reduced to %. Activation via half-wave or bride rectifier Size Friction enery Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] 10 198 10.0 19.0 29.0 109 12 14 353 253 16.0 11.0 25.0 41.0 193 308 16 563 241 22.0 17.0 30.0 52.0 47.0 297 435 18 578 45.0 69.0 356 20 15 580 46.0 17.0 146 117 378 470 25 2465 19 77.0 38.0 120 197 451 532 48

Accessories Sprin-applied brae Activation via bride/half-wave rectifier Desin Size Friction enery Overecitation time Min. rest time Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t ü t t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] [ms] [ms] 10 12 198 353 300 900 27.0 44.0 43.0 68.0 70.0 109 193 Holdin current reduction (cold brae) 14 16 18 20 253 563 241 578 15 580 1300 3900 17.0 41.0 21.0 60.0 69.0 17.0 37.0 55.0 37.0 113 148 54.0 97.0 57.0 173 217 334 308 297 435 356 378 470 25 2465 19 123 85.0 190 270 313 355 451 532 Desin Size Friction enery Overecitation time Min. rest time Delay time Enain Rise time Brain torque Enaement time Disenaement time Q BW t ü t t 11 t 12 t 1 t 2 [MJ] [ms] [ms] [ms] [ms] [ms] [ms] 10 12 264 706 300 900 29.0 54.0 53.0 87.0 82.0 141 53.0 81.0 14 761 31.0 68.0 99.0 117 Over-ecitation 16 18 20 6 1542 2322 1300 3900 70.0 46.0 86.0 103 55.0 93.0 83.0 222 319 163 129 246 325 374 141 168 151 167 25 3522 171 135 266 430 437 565 184 204 ƒ The brae response and application times are uide values. The enaement time is 10 times loner with AC-side switchin. With the maimum air ap the disenaement time t 2 dependin on the brae and control is up to 4 times loner than the disenaement time with the rated air ap. 49

Accessories Separate fan ƒ The blower terminal bo is available in positions 2, 3 and 5. Blower data Hz Number of phases 1 Connection method U min [V] U ma [V] 277 P ma [W] 0.027 I ma [A] Δ 200 303 0.12 3 0.028 Y 346 525 0.070 1 277 0.027 Δ 200 303 0.11 3 0.031 Y 346 525 0.060 1 3 1 Δ Y 200 346 220 277 303 525 277 0.029 0.031 0.065 0.11 0.10 0.11 0.060 Δ 200 303 0.38 3 0.091 Y 346 525 0.22 1 220 277 0.066 Δ 200 303 0.37 3 0.091 Y 346 525 0.22 1 220 277 0. Δ 200 303 0.35 3 0.097 Y 346 525 0.20 1 277 0.098 Δ 200 303 0.58 3 0.12 Y 346 525 0.33 1 Δ 200 303 0.25 0.87 3 Y 346 525 0. 277 0.29 0.28 0.28 0. 0.97 m [] 2.00 2.10 2.30 2.70 3.00 3.10 4.20 6.20

Accessories Separate fan Number of phases 1 Connection method U min [V] U ma [V] 277 P ma [W] I ma [A] 180 Δ 200 303 0.87 3 Y 346 525 0. 0.25 1 277 0.97 200 Δ 200 303 0.87 225 3 Y Δ Y 346 200 346 525 525 0.28 0.17 0.97 0. 1.10 0.35 m [] 8.00 15.0 Blower data 60 Hz Number of phases 1 Connection method U min [V] U ma [V] 277 P ma [W] 0.032 I ma [A] Δ 220 332 0.10 3 0.028 Y 380 575 0.060 1 277 0.033 Δ 220 332 0.10 3 0.029 Y 380 575 0.060 1 277 0.037 Δ 220 332 0.10 3 0.034 Y 380 575 0.060 1 277 0.065 0.25 220 Δ 332 0.33 3 0.077 Y 380 575 0.19 1 277 0.075 0.30 220 Δ 332 0.31 3 0.087 Y 380 575 0.18 1 277 0.094 0.37 220 Δ 332 0.31 3 0.10 Y 380 575 0.18 1 Δ 220 332 0.15 0.44 180 200 225 3 Y Δ Y Δ Y Δ Y Δ Y 380 220 380 220 380 220 380 220 380 277 575 332 575 332 575 332 575 575 0.36 0.28 0.26 0.12 0.12 0.14 0.57 0.25 0.93 0.56 0.93 0.56 0.93 0.56 0.76 0.43 m [] 2.00 2.10 2.30 2.70 3.00 3.10 4.20 6.20 8.00 15.0 51

Accessories Feedbac Tailored to meet the requirements of the various applications and necessary accuracies, the followin feedbac systems are available. ƒ The three-phase AC motors with resolver, incremental encoder or SinCos absolute value encoders cannot be used for speed-dependent safety functions in conjunction with the SM 301 safety module. Resolver Stator-fed resolver with two stator windins offset by 90 and one rotor windin with transformer windin. Product ey Accuracy Absolute positionin Ma. input voltae DC Ma. input frequency Ratio Stator / rotor Rotor impedance Stator impedance Impedance Min. insulation resistance At DC 0 V Number of pole pairs U in,ma f in,ma Z ro Z so Z rs R ± 5 % ['] [V] [Hz] [Ω] [Ω] [Ω] [Ω] RS1-10... 10 1 revolution 10.0 4.00 0.30 51 + j90 102 + j1 44 + j76 10.0 1 52

Accessories Feedbac Incremental encoder and SinCos absolute value encoder Encoder type Product ey Encoder type Pulses Output sinals Interfaces Absolute revolutions Accuracy Min. input voltae DC Ma. input voltae DC Ma. current consumption Limit frequency Inverter assinment U in,min U in,ma I ma f ma ['] [V] [V] [A] [Hz] IG128-24V-H 128 A, B trac -22.5... 22.5 26.0 0.0 30.0 E84AVSC E84AVHC HTL incremental IG512-24V-H 512 HTL 8.00 IG1024-24V-H 1024 30.0 E84AVHC IG2048-24V-H 2048 0-2... 2 0.15 IG512-5V-T 512 TTL incremental IG1024-5V-T 1024 TTL 4.75 5.25 300 E84AVTC E94A ECS EVS93 IG2048-5V-T 2048 SinCos absolute value AM1024-8V-H 1024 1 Vss Multiturn Hiperface -0.8... 0.8 7.00 12.0 0. 200 Frequency inverter ƒ Inverter Drives 8 StateLine (E84AVSC) ƒ Inverter Drives 8 HihLine (E84AVHC) ƒ Inverter Drives 8 TopLine (E84AVTC) Servo inverter ƒ Servo Drives 9 (E94A) ƒ 9300 servo inverter (EVS93) ƒ ECS servo system (ECS) 53

Accessories Thermal sensor The thermal sensors are interated in the windins. The use of an additional motor protection switch is recommended. TKO thermal contacts Function Operatin temperature Min. reset temperature Ma. reset temperature Ma. input current Ma. input voltae AC T T min T ma I in,ma U in,ma -5... 5 NC contact [ C] 1 [ C] 90.0 [ C] 135 [A] 2. [V] 2 PTC thermistor Function Operatin temperature 155 C Rated resistance -20 C 1 C Standard 2 T R N R N R N -5... 5 Sudden chane in resistance [ C] 1 [Ω] 5 [Ω] 30.0 [Ω] 2 DIN 44 DIN VDE 0660 Part 303 54

Accessories Thermal sensor KTY continuous temperature sensor Function Rated resistance Ma. input current 25 C 1 C 170 C 25 C 170 C KTY83-110 KTY84-130 Continuous resistance chane Continuous resistance chane R N [Ω] 0 603 R N [Ω] 2225 1334 R N [Ω] 2471 1482 I in,ma [A] 0.010 0.010 I in,ma [A] 0.002 0.002 ƒ If the detector is supplied with a measured current of 1 ma, the above relationship between the temperature and the resistance applies. 55

Dimensions MDEMA Desin B3 Motor type MDEMAXX MDEMABR 215 246 272 311 382 392 497 123 139 156 218 258 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 271 297 345 373 463 479 576 123 139 154 218 258 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 180 598 1) 703 310 210 65.0 1) 313 210 65.0 642 2) 226 127 747 2) 671 348 75.0 784 351 75.0 226 127 1) -22 2) -32 56

Dimensions MDEMA Motor type MDEMARS MDEMAIG MDEMAAG MDEMABS MDEMABI MDEMABA 255 297 369 392 463 472 599 123 139 178 1 220 261 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 318 341 383 410 483 512 621 123 139 156 218 258 109 133 142 168 187 17.0 13.0 28.0 35.0 37.0 51.0 136 103 180 681 1) 789 313 210 65.0 1) 313 210 65.0 725 2) 226 127 833 2) 7 351 75.0 863 351 75.0 226 127 d d d 2 l l 1 l 2 t u 180 j6 11 14 19 24 28 6 38 42 48 M4 M5 M6 M8 M10 M12 M16 23 30 60 80 110 3.5 4.0 5.0 16 22 32 70 12.5 16.0 21.5 27.0 31.0 41.0 45.0 51.5 4.0 5.0 6.0 8.0 10.0 12.0 14.0 b 7 i 4 b 5 e 5 h c 5 s 5 1 190 216 45 56 63 70 89 80 90 1 178 120 134 154 174 223 260 63 71 80 90 10.0 10.5 13.0 15.0 14.0 18.0 7.0 10.0 12.0 180 254 279 108 121 210 1) 254 2) 241 3) 279 4) 305 3 180 22.0 23.0 14.5 1) -22 2) -32 3) 180-12 4) 180-32 57

Dimensions MDEMA Desin B5 Motor type MDEMAXX MDEMABR 215 246 272 311 382 392 497 123 139 156 218 258 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 271 297 345 373 463 479 576 123 139 154 218 258 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 180 598 1) 703 310 210 65.0 1) 313 210 65.0 642 2) 226 127 747 2) 671 348 75.0 784 351 75.0 226 127 1) -22 2) -32 58

Dimensions MDEMA Motor type MDEMARS MDEMAIG MDEMAAG MDEMABS MDEMABI MDEMABA 255 297 369 392 463 472 599 123 139 178 1 220 261 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 318 341 383 410 483 512 621 123 139 156 218 258 109 133 142 168 187 17.0 13.0 28.0 35.0 37.0 51.0 136 103 180 681 1) 789 313 210 65.0 1) 313 210 65.0 725 2) 226 127 833 2) 7 351 75.0 863 351 75.0 226 127 1) -22 2) -32 d d d 2 l l 1 l 2 t u 180 j6 11 14 19 24 28 6 38 42 48 M4 M5 M6 M8 M10 M12 M16 23 30 60 80 110 3.5 4.0 5.0 16 22 32 70 12.5 16.0 21.5 27.0 31.0 41.0 45.0 51.5 4.0 5.0 6.0 8.0 10.0 12.0 14.0 Flane size 180 FF115 FF130 FF165 FF215 FF265 FF300 a 2 b 2 c 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 1 115 3.0 23 10 10.0 110 130 30 200 130 11 165 3.5 12.0 2 180 15 215 4.0 14.5 60 300 20 265 80 3 2 13 300 5.0 18.5 110 59

Dimensions MDEMA Desin B14 Motor type MDEMAXX MDEMABR 215 246 272 311 382 392 123 139 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 271 297 345 373 463 479 123 139 154 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 Motor type MDEMARS MDEMAIG MDEMAAG MDEMABS MDEMABI MDEMABA 255 297 369 392 463 472 123 139 178 1 220 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 318 341 383 410 483 512 123 139 156 218 109 133 142 168 17.0 13.0 28.0 35.0 37.0 136 103 60

Dimensions MDEMA d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 M4 M5 M6 M8 M10 23 30 60 3.5 4.0 5.0 16 22 32 12.5 16.0 21.5 27.0 31.0 4.0 5.0 6.0 8.0 Flane size FT75 FT85 FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 90 60 75 M510 23 2.5 105 70 85 M610 30 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 61

Dimensions MDFMA Desin B3 Motor type MDFMAXX MDFMABR 3 4 m 2 3 4 m 2 345 373 123 138 109 118 17.0 23.5 136 103 115 122 12 385 410 123 138 109 118 17.0 23.5 136 103 115 122 12 156 25.0 13 455 156 25.0 13 434 491 494 218 137 29.0 38.0 152 121 141 1 162 22 487 552 575 218 137 29.0 38.0 152 121 141 1 162 22 612 257 187 51.0 182 32 698 257 187 51.0 182 32 747 777 1) 791 309 210 65.0 226 127 209 31 1) 821 309 210 65.0 226 127 209 31 2) 2) 180 820 348 75.0 886 348 75.0 1) -22 2) -32 62

Motor type MDFMABS MDFMARS MDFMABI MDFMAIG MDFMABA MDFMAAG m 2 4 3 m 2 4 3 12 115 103 136 17.0 109 123 385 12 115 103 136 17.0 109 123 345 122 13.0 133 138 410 122 23.5 118 138 373 13 142 156 455 13 121 152 25.0 156 22 141 28.0 487 22 141 29.0 137 434 1 35.0 552 1 491 162 37.0 168 218 575 162 38.0 218 575 32 182 51.0 187 257 698 32 182 51.0 187 257 698 31 209 127 226 65.0 210 309 835 1) 31 209 127 226 65.0 210 309 822 1) 877 2) 866 2) 75.0 348 946 75.0 348 886 180 u t l 2 l 1 l d 2 d d 6 j6 4.0 12.5 16 3.5 23 M4 11 5.0 16.0 22 4.0 30 M5 14 6.0 21.5 32 M6 19 8.0 27.0 5.0 M8 24 31.0 60 M10 28 10.0 41.0 70 80 M12 38 12.0 45.0 110 M16 42 14.0 51.5 48 180 s 5 c 5 h e 5 b 5 i 4 b 7 7.0 10.0 63 120 80 10.5 71 134 90 45 10.0 13.0 80 154 90 174 56 1 12.0 15.0 1 63 14.0 223 70 190 18.0 260 178 89 216 14.5 22.0 305 210 1) 108 254 254 2) 23.0 180 3 241 3) 121 279 180 279 4) -22 1) -32 2) 180-12 3) 180-32 4) 63 Dimensions MDFMA

Dimensions MDFMA Desin B5 Motor type MDFMAXX MDFMABR 3 4 m 2 3 4 m 2 345 373 123 138 109 118 17.0 23.5 136 103 115 122 12 385 410 123 138 109 118 17.0 23.5 136 103 115 122 12 156 25.0 13 455 156 25.0 13 434 491 494 218 137 29.0 38.0 152 121 141 1 162 22 487 552 575 218 137 29.0 38.0 152 121 141 1 162 22 612 257 187 51.0 182 32 698 257 187 51.0 182 32 747 777 1) 791 309 210 65.0 226 127 209 31 1) 821 309 210 65.0 226 127 209 31 2) 2) 180 820 348 75.0 886 348 75.0 1) -22 2) -32 64

Motor type MDFMABS MDFMARS MDFMABI MDFMAIG MDFMABA MDFMAAG m 2 4 3 m 2 4 3 12 115 103 136 17.0 109 123 385 12 115 103 136 17.0 109 123 345 122 13.0 133 138 410 122 23.5 118 138 373 13 142 156 455 13 121 152 25.0 156 22 141 28.0 487 22 141 29.0 137 434 1 35.0 552 1 491 162 37.0 168 218 575 162 38.0 218 575 32 182 51.0 187 257 698 32 182 51.0 187 257 698 31 209 127 226 65.0 210 309 835 1) 31 209 127 226 65.0 210 309 822 1) 877 2) 866 2) 75.0 348 946 75.0 348 886 180-22 1) -32 2) u t l 2 l 1 l d 2 d d 6 j6 4.0 12.5 16 3.5 23 M4 11 5.0 16.0 22 4.0 30 M5 14 6.0 21.5 32 M6 19 8.0 27.0 5.0 M8 24 31.0 60 M10 28 10.0 41.0 70 80 M12 38 12.0 45.0 110 M16 42 14.0 51.5 48 180 Flane size i 2 s 2 f 2 e 2 c 2 b 2 a 2-0.6... 0.5 j6 23 10.0 3.0 115 10 1 FF115 30 3.5 130 110 FF130 12.0 165 11 130 200 FF165 60 14.5 4.0 215 15 180 2 FF215 80 265 20 300 FF265 110 18.5 5.0 300 13 2 3 FF300 180 65 Dimensions MDFMA

Dimensions MDFMA Desin B14 Motor type MDFMAXX MDFMABR 3 4 m 2 3 4 m 2 345 373 434 491 494 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 385 410 455 487 552 575 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 Motor type MDFMARS MDFMAIG MDFMAAG MDFMABS MDFMABI MDFMABA 3 4 m 2 3 4 m 2 345 373 434 491 575 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 385 410 455 487 552 575 123 138 156 218 109 133 142 168 17.0 13.0 28.0 35.0 37.0 136 103 115 122 141 1 162 12 13 22 66

Dimensions MDFMA d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 M4 M5 M6 M8 M10 23 30 60 3.5 4.0 5.0 16 22 32 12.5 16.0 21.5 27.0 31.0 4.0 5.0 6.0 8.0 Flane size FT75 FT85 FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 90 60 75 M510 23 2.5 105 70 85 M610 30 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 67

Dimensions MHEMA Desin B3 Motor type MHEMAXX MHEMABR 272 156 25.0 345 154 25.0 331 137 29.0 399 137 29.0 382 1) 152 121 463 1) 397 2) 489 2) 436 218 38.0 526 218 38.0 497 258 187 51.0 576 258 187 51.0 152 121 180 200 225 598 3) 642 4) 671 728 1 310 348 351 447 210 348 65.0 75.0 68.0 226 354 127 204 703 3) 747 4) 784 841 1074 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 1) -12 2) -32 3) -22 4) -32 68

Dimensions MHEMA Motor type MHEMARS MHEMAIG MHEMAAG MHEMABS MHEMABI MHEMABA 369 25.0 383 156 142 418 178 137 29.0 436 28.0 463 1) 1 152 121 479 1) 35.0 478 2) 494 2) 516 220 38.0 556 218 168 37.0 599 261 187 51.0 621 258 187 51.0 180 200 225 681 3) 725 4) 7 807 10 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 789 3) 833 4) 863 920 1153 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 d d d d 2 l l 1 l 2 t u 180 200 225 j6 19 24 28 6 38 42 48 m6 55 60 M6 M8 M10 M12 M16 M20 60 80 110 1 4.0 5.0 32 70 130 21.5 27.0 31.0 41.0 45.0 51.5 59.0 64.0 6.0 8.0 10.0 12.0 14.0 16.0 18.0 b 7 i 4 b 5 e 5 h c 5 s 5 1 190 216 56 63 70 89 1 178 154 174 223 260 80 90 13.0 15.0 14.0 18.0 10.0 12.0 180 200 225 254 279 318 356 108 121 133 149 210 3) 254 4) 241 5) 279 6) 305 286 7) 311 8) 305 3 4 180 200 225 22.0 23.0 32.0 34.0 14.5 18.5 1) -12 2) -32 3) -22 4) -32 5) 180-12 6) 180-32 7) 225-12 8) 225-22 69

Dimensions MHEMA Desin B5 Motor type MHEMAXX MHEMABR 272 156 25.0 345 154 25.0 331 137 29.0 399 137 29.0 382 1) 152 121 463 1) 397 2) 489 2) 436 218 38.0 526 218 38.0 497 258 187 51.0 576 258 187 51.0 152 121 180 200 225 598 3) 642 4) 671 728 1 310 348 351 447 210 348 65.0 75.0 68.0 226 354 127 204 703 3) 747 4) 784 841 1074 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 1) -12 2) -32 3) -22 4) -32 70

Dimensions MHEMA Motor type MHEMARS MHEMAIG MHEMAAG MHEMABS MHEMABI MHEMABA 369 25.0 383 156 142 418 178 137 29.0 436 28.0 463 1) 1 152 121 479 1) 35.0 478 2) 494 2) 516 220 38.0 556 218 168 37.0 599 261 187 51.0 621 258 187 51.0 180 200 225 681 3) 725 4) 7 807 10 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 789 3) 833 4) 863 920 1153 313 351 447 210 348 65.0 75.0 68.0 226 354 127 204 1) -12 2) -32 3) -22 4) -32 d d d d 2 l l 1 l 2 t u 180 200 225 j6 19 24 28 6 38 42 48 m6 55 60 M6 M8 M10 M12 M16 M20 60 80 110 1 4.0 5.0 32 70 130 21.5 27.0 31.0 41.0 45.0 51.5 59.0 64.0 6.0 8.0 10.0 12.0 14.0 16.0 18.0 Flane size 180 200 225 FF165 FF215 FF265 FF300 FF3 FF a 2 b 2 b 2 c 2 e 2 f 2 s 2 i 2 j6 h6-0.6... 0.5 200 130 11 165 3.5 12.0 2 180 15 215 4.0 14.5 60 300 20 265 80 3 2 13 300 300 17 3 5.0 18.5 110 4 3 18 1 71

Dimensions MHEMA Desin B14 Motor type MHEMAXX MHEMABR 272 156 25.0 345 154 25.0 331 137 29.0 399 137 29.0 382 1) 152 121 463 1) 397 2) 489 2) 436 218 38.0 526 218 38.0 152 121 Motor type MHEMARS MHEMAIG MHEMAAG MHEMABS MHEMABI MHEMABA 369 25.0 383 156 142 418 178 137 29.0 436 28.0 463 1) 1 152 121 479 1) 35.0 478 2) 494 2) 516 220 38.0 556 218 168 37.0 1) -12 2) -32 72

Dimensions MHEMA d d d 2 l l 1 l 2 t u j6 19 24 28 6 M6 M8 M10 60 4.0 5.0 32 21.5 27.0 31.0 6.0 8.0 Flane size FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 73

Dimensions MHFMA Desin B3 Motor type MHFMAXX MHFMABR 3 4 m 2 3 4 m 2 460 491 1) 6 2) 156 137 25.0 29.0 152 121 141 1 13 22 455 513 552 1) 567 2) 156 137 25.0 29.0 152 121 141 1 13 22 180 200 225 538 612 747 3) 791 4) 820 883 1175 218 257 309 348 351 447 187 210 348 38.0 51.0 65.0 75.0 68.0 226 354 127 204 162 182 209 32 31 106 619 698 777 3) 821 4) 886 943 1175 218 257 309 348 351 447 187 210 348 38.0 51.0 65.0 75.0 68.0 226 354 127 204 162 182 209 32 31 106 1) -12 2) -32 3) -22 4) -32 74

Motor type MHFMABS MHFMARS MHFMABI MHFMAIG MHFMABA MHFMAAG m 2 4 3 m 2 4 3 13 142 156 455 13 121 152 25.0 156 22 141 28.0 513 22 141 29.0 137 460 1 35.0 552 1) 1 491 1) 567 2) 6 2) 162 37.0 168 218 619 162 38.0 218 619 32 182 51.0 187 257 698 32 182 51.0 187 257 698 31 209 127 226 65.0 210 309 835 3) 31 209 127 226 65.0 210 309 822 3) 877 4) 866 4) 75.0 348 946 75.0 348 886 180 106 351 3 106 351 943 200 204 354 68.0 348 447 1175 204 354 68.0 348 447 1175 225 u t l 2 l 1 l d 2 d d d m6 6 j6 6.0 21.5 32 4.0 M6 19 8.0 27.0 5.0 M8 24 31.0 60 M10 28 10.0 41.0 70 80 M12 38 12.0 45.0 110 M16 42 14.0 51.5 48 180 16.0 59.0 M20 55 200 18.0 64.0 130 1 60 225 s 5 c 5 h e 5 b 5 i 4 b 7 10.0 13.0 80 154 90 174 56 1 12.0 15.0 1 63 14.0 223 70 190 18.0 260 178 89 216 14.5 22.0 305 210 3) 108 254 254 4) 23.0 180 3 241 5) 121 279 180 279 6) 18.5 32.0 200 305 133 318 200 34.0 225 4 286 7) 149 356 225 311 8) 180-12 5) -12 1) 180-32 6) -32 2) 225-12 7) -22 3) 225-22 8) -32 4) 75 Dimensions MHFMA

Dimensions MHFMA Desin B5 Motor type MHFMAXX MHFMABR 3 4 m 2 3 4 m 2 460 491 1) 6 2) 156 137 25.0 29.0 152 121 141 1 13 22 455 513 552 1) 567 2) 156 137 25.0 29.0 152 121 141 1 13 22 180 200 225 538 612 747 3) 791 4) 820 883 1175 218 257 309 348 351 447 187 210 348 38.0 51.0 65.0 75.0 68.0 226 354 127 204 162 182 209 32 31 106 619 698 777 3) 821 4) 886 943 1175 218 257 309 348 351 447 187 210 348 38.0 51.0 65.0 75.0 68.0 226 354 127 204 162 182 209 32 31 106 1) -12 2) -32 3) -22 4) -32 76

Motor type MHFMABS MHFMARS MHFMABI MHFMAIG MHFMABA MHFMAAG m 2 4 3 m 2 4 3 13 142 156 455 13 121 152 25.0 156 22 141 28.0 513 22 141 29.0 137 460 1 35.0 552 1) 1 491 1) 567 2) 6 2) 162 37.0 168 218 619 162 38.0 218 619 32 182 51.0 187 257 698 32 182 51.0 187 257 698 31 209 127 226 65.0 210 309 835 3) 31 209 127 226 65.0 210 309 822 3) 877 4) 866 4) 75.0 348 946 75.0 348 886 180 106 351 3 106 351 943 200 204 354 68.0 348 447 1175 204 354 68.0 348 447 1175 225-22 3) -12 1) -32 4) -32 2) u t l 2 l 1 l d 2 d d d m6 6 j6 6.0 21.5 32 4.0 M6 19 8.0 27.0 5.0 M8 24 31.0 60 M10 28 10.0 41.0 70 80 M12 38 12.0 45.0 110 M16 42 14.0 51.5 48 180 16.0 59.0 M20 55 200 18.0 64.0 130 1 60 225 Flane size i 2 s 2 f 2 e 2 c 2 b 2 b 2 a 2-0.6... 0.5 h6 j6 12.0 3.5 165 11 130 200 FF165 60 14.5 4.0 215 15 180 2 FF215 80 265 20 300 FF265 110 18.5 5.0 300 13 2 3 FF300 180 3 17 300 FF3 200 1 18 3 4 FF 225 77 Dimensions MHFMA

Dimensions MHFMA Desin B14 Motor type MHFMAXX MHFMABR 3 4 m 2 3 4 m 2 460 491 1) 6 2) 156 137 25.0 29.0 152 121 141 1 13 22 455 513 552 1) 567 2) 156 137 25.0 29.0 152 121 141 1 13 22 538 218 38.0 162 619 218 38.0 162 Motor type MHFMARS MHFMAIG MHFMAAG MHFMABS MHFMABI MHFMABA 3 4 m 2 3 4 m 2 460 491 1) 6 2) 156 137 25.0 29.0 152 121 141 1 13 22 455 513 552 1) 567 2) 156 142 28.0 35.0 141 1 13 22 619 218 38.0 162 619 218 168 37.0 162 1) -12 2) -32 78

Dimensions MHFMA d d d 2 l l 1 l 2 t u j6 19 24 28 6 M6 M8 M10 60 4.0 5.0 32 21.5 27.0 31.0 6.0 8.0 Flane size FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 79

Desin B3 Motor type MFEMABR MFEMAXX 103 136 17.0 109 123 255 103 136 17.0 109 123 215 23.5 118 139 297 23.5 118 139 246 121 152 25.0 154 345 121 152 25.0 156 272 29.0 137 399 29.0 137 327 458 382 38.0 218 479 38.0 218 392 51.0 187 258 576 51.0 187 258 497 Motor type MFEMABS MFEMARS MFEMABI MFEMAIG MFEMABA MFEMAAG 103 136 17.0 109 123 318 103 136 17.0 109 123 255 13.0 133 139 338 23.5 118 139 297 142 156 383 121 152 25.0 369 28.0 436 29.0 137 178 418 35.0 479 1 463 37.0 168 218 9 38.0 220 472 51.0 187 258 621 51.0 187 261 599 80 Dimensions MFEMA

Dimensions MFEMA d d d 2 l l 1 l 2 t u j6 6 11 M4 23 3.5 16 12.5 4.0 14 19 M5 M6 30 4.0 22 32 16.0 21.5 5.0 6.0 24 M8 27.0 28 M10 60 5.0 31.0 8.0 38 M12 80 70 41.0 10.0 b 7 i 4 b 5 e 5 h c 5 s 5 45 80 90 120 134 63 71 10.0 10.5 7.0 1 56 154 174 80 90 13.0 10.0 190 63 70 1 223 15.0 14.0 12.0 216 89 178 260 18.0 81

Dimensions MFEMA Desin B5 Motor type MFEMAXX MFEMABR 215 246 123 139 109 118 17.0 23.5 136 103 255 297 123 139 109 118 17.0 23.5 136 103 272 156 25.0 345 154 25.0 327 382 137 29.0 152 121 399 458 137 29.0 152 121 392 218 38.0 479 218 38.0 497 258 187 51.0 576 258 187 51.0 82

Dimensions MFEMA Motor type MFEMARS MFEMAIG MFEMAAG MFEMABS MFEMABI MFEMABA 255 297 369 418 463 472 599 123 139 178 1 220 261 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 318 338 383 436 479 9 621 123 139 156 218 258 109 133 142 168 187 17.0 13.0 28.0 35.0 37.0 51.0 136 103 d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 38 M4 M5 M6 M8 M10 M12 23 30 60 80 3.5 4.0 5.0 16 22 32 70 12.5 16.0 21.5 27.0 31.0 41.0 4.0 5.0 6.0 8.0 10.0 Flane size FF115 FF130 FF165 FF215 FF265 a 2 b 2 c 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 1 115 3.0 23 10 10.0 110 130 30 200 130 11 165 3.5 12.0 2 180 15 215 4.0 14.5 60 300 20 265 80 83

Dimensions MFEMA Desin B14 Motor type MFEMAXX MFEMABR 215 246 272 327 382 392 123 139 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 255 297 345 399 458 479 123 139 154 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 Motor type MFEMARS MFEMAIG MFEMAAG MFEMABS MFEMABI MFEMABA 255 297 369 418 463 472 123 139 178 1 220 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 318 338 383 436 479 9 123 139 156 218 109 133 142 168 17.0 13.0 28.0 35.0 37.0 136 103 84

Dimensions MFEMA d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 M4 M5 M6 M8 M10 23 30 60 3.5 4.0 5.0 16 22 32 12.5 16.0 21.5 27.0 31.0 4.0 5.0 6.0 8.0 Flane size FT75 FT85 FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 90 60 75 M510 23 2.5 105 70 85 M610 30 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 85

Dimensions MFFMA Desin B3 Motor type MFFMAXX MFFMABR 3 4 m 2 3 4 m 2 345 373 460 491 494 612 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 385 410 455 513 552 575 698 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 Motor type MFFMARS MFFMAIG MFFMAAG MFFMABS MFFMABI MFFMABA 3 4 m 2 3 4 m 2 345 373 460 491 575 698 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 385 410 455 513 552 575 698 123 138 156 218 257 109 133 142 168 187 17.0 13.0 28.0 35.0 37.0 51.0 136 103 115 122 141 1 162 182 12 13 22 32 86

Dimensions MFFMA d d d 2 l l 1 l 2 t u j6 6 11 M4 23 3.5 16 12.5 4.0 14 19 M5 M6 30 4.0 22 32 16.0 21.5 5.0 6.0 24 M8 27.0 28 M10 60 5.0 31.0 8.0 38 M12 80 70 41.0 10.0 b 7 i 4 b 5 e 5 h c 5 s 5 45 80 90 120 134 63 71 10.0 10.5 7.0 1 56 154 174 80 90 13.0 10.0 190 63 70 1 223 15.0 14.0 12.0 216 89 178 260 18.0 87

Dimensions MFFMA Desin B5 Motor type MFFMAXX MFFMABR 3 4 m 2 3 4 m 2 345 373 460 491 494 612 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 385 410 455 513 552 575 698 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 Motor type MFFMARS MFFMAIG MFFMAAG MFFMABS MFFMABI MFFMABA 3 4 m 2 3 4 m 2 345 373 460 491 575 698 123 138 156 218 257 109 118 137 187 17.0 23.5 25.0 29.0 38.0 51.0 136 152 103 121 115 122 141 1 162 182 12 13 22 32 385 410 455 513 552 575 698 123 138 156 218 257 109 133 142 168 187 17.0 13.0 28.0 35.0 37.0 51.0 136 103 115 122 141 1 162 182 12 13 22 32 88

Dimensions MFFMA d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 38 M4 M5 M6 M8 M10 M12 23 30 60 80 3.5 4.0 5.0 16 22 32 70 12.5 16.0 21.5 27.0 31.0 41.0 4.0 5.0 6.0 8.0 10.0 Flane size FF115 FF130 FF165 FF215 FF265 a 2 b 2 c 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 1 115 3.0 23 10 10.0 110 130 30 200 130 11 165 3.5 12.0 2 180 15 215 4.0 14.5 60 300 20 265 80 89

Dimensions MFFMA Desin B14 Motor type MFFMAXX MFFMABR 3 4 m 2 3 4 m 2 345 373 460 491 494 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 385 410 455 513 552 575 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 Motor type MFFMARS MFFMAIG MFFMAAG MFFMABS MFFMABI MFFMABA 3 4 m 2 3 4 m 2 345 373 460 491 575 123 138 156 218 109 118 137 17.0 23.5 25.0 29.0 38.0 136 152 103 121 115 122 141 1 162 12 13 22 385 410 455 513 552 575 123 138 156 218 109 133 142 168 17.0 13.0 28.0 35.0 37.0 136 103 115 122 141 1 162 12 13 22 90

Dimensions MFFMA d d d 2 l l 1 l 2 t u j6 11 14 19 24 28 6 M4 M5 M8 M10 23 30 60 3.5 4.0 5.0 16 22 12.5 16.0 27.0 31.0 4.0 5.0 8.0 Flane size FT75 FT85 FT FT130 FT115 a 2 b 2 e 2 f 2 s 2 i 2 j6-0.6... 0.5 90 60 75 M510 23 2.5 105 70 85 M610 30 120 80 3.0 M612 110 130 3.5 M814 1 115 3.0 M816 FT130 110 130 3.5 M814 M816 60 91

Dimensions Motor connection Motor terminal bo with ICN connector The followin connector positions are possible: ƒ power connection (A) in position 5 and feedbac connection (B) in position 3 Only the feedbac connection (B) in position 3 or 5 is available for the followin motors: ƒ motor type MD/MH and motor frame size... 180 ƒ power connection (A) in position 3 and feedbac connection (B) in position 5 ƒ motor type MF and motor frame size... Motor type M MAXX M MARS M MAIG M MAAG M MABR M MABS M MABI M MABA 7 8 z 1, ma 180 200 225 109 118 137 187 210 348 17.0 23.5 25.0 29.0 38.0 51.0 65.0 75.0 68.0 136 152 226 354 103 121 127 204 16 23 27 83 109 166 200 328 43 41 71 65 51 92

Dimensions Motor connection Motor terminal bo with HAN-10E / HAN-Modular connector The connection position for the connector is shown in position 1. Positions 3 and 5 are also possible. Motor type M MAXX M MABR 4 120 129 138 143 154 164 m 5 118 n 5 102 2 41 3 1) 233 48 18 120 180 47 248 72 42 1) In the case of the B5 type of motor construction, it is not possible to connect the plu-in connector at position 3 or 5. 11 16 18 22 29 28 4 12 17 26 30 37 36 93

Dimensions Motor connection ICN connector for blower ƒ The blower terminal bo is available in positions 2, 3 and 5. ƒ In addition, the cover of the blower terminal bo (includin connectors) can be rotated proressively throuh 90 if necessary. 94

Dimensions Brae motor with manual release lever MD MA (IE1) Brae 180 06 06 08 08 10 08 10 10 12 12 14 14 16 16 18 18 20 5 178 205 206 224 239 238 251 305 307 320 323 6 5 9 5 546 Δ 29 29 27 27 28 27 28 28 37 37 41 41 55 55 59 59 74 h 5 107 107 116 116 116 161 161 1 1 2 2 279 279 319 d 12 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 The followin combinations with the manual release lever and motor connection in the same position are not possible: ƒ HAN connector with connection in position 1 ƒ motec inverter ƒ Terminal boes for motor sizes,, for brae and feedbac (M MA BR/BS/BA/BI)

Dimensions Brae motor with manual release lever MH MA (IE2) Brae 1) 2) 180 200 225 08 10 08 10 10 12 10 12 12 14 14 16 16 18 18 20 18 20 25 5 224 239 264 277 305 307 320 322 320 323 6 5 9 5 546 597 603 757 Δ 27 28 27 28 28 37 28 37 37 41 41 55 55 59 59 74 59 74 103 h 5 116 116 161 161 161 1 1 2 2 279 279 319 279 319 445 d 12 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 1) -12 2) -32 The followin combinations with the manual release lever and motor connection in the same position are not possible: ƒ HAN connector with connection in position 1 ƒ motec inverter ƒ Terminal boes for motor sizes, for brae and feedbac (M MA BR/BS/BA/BI)

Dimensions Brae motor with manual release lever MF MA Brae 06 06 08 08 10 08 10 10 12 12 14 14 16 5 178 205 206 224 239 264 277 305 307 320 323 6 Δ 29 29 27 27 28 27 28 28 37 37 41 41 55 h 5 107 107 116 116 116 161 161 1 1 2 d 12 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 13.0 The followin combinations with the manual release lever and motor connection in the same position are not possible: ƒ HAN connector with connection in position 1 ƒ motec inverter ƒ Terminal boes for motor sizes,, for brae and feedbac (M MA BR/BS/BA/BI) 97

Dimensions 8200 motec frequency inverter Rated frequency Hz Motor Product ey Inverter MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MD -12 MD -22 MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 MH -12 MH -22 E82MV251_2B E82MV371_2B E82MV551_4B E82MV751_4B E82MV152_4B E82MV222_4B E82MV302_4B E82MV2_4B E82MV552_4B E82MV752_4B 5 171 180 228 223 239 244 255 271 281 300 5 28 32 20 30 29 33 14 16 41 190 202 325 138 103 138 156 211 98

Dimensions 8200 motec frequency inverter Rated frequency 87 Hz Motor Product ey Inverter MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -42 MD -12 MD -32 MD -12 MD -32 MD -22 MH -32 MH -12 MH -32 MH -12 MH -32 MH -22 E82MV551_4B E82MV751_4B E82MV152_4B E82MV222_4B E82MV302_4B E82MV2_4B E82MV552_4B E82MV752_4B 5 216 228 244 239 244 260 271 281 5 16 20 29 33 7 14 16 202 325 156 211 99

Dimensions

Surface and corrosion protection For optimum protection of three-phase AC motors aainst ambient conditions, the surface and corrosion protection system (OKS) offers tailor-made solutions. Various surface coatins ensure that the motors operate reliably even at hih air humidity, in outdoor installation or in the presence of atmospheric impurities. Any colour from the RAL Classic collection can be chosen for the top coat. The threephase AC motors are also available unpainted (no surface and corrosion protection). OKS-G (primed) Applications ƒ Dependent on subsequent top coat applied Measures ƒ One-component primin coat (rey) OKS-S Applications ƒ Standard applications ƒ Indoor installation in heated buildins ƒ Air humidity up to 90% Measures ƒ Surface coatin in accordance with corrosivity class C1 (in accordance with EN 12944-2) OKS-M Applications ƒ Indoor installation in unheated buildins ƒ Outdoor installation in covered, protected area ƒ Air humidity up to % Measures ƒ Surface coatin in accordance with corrosivity class C2 (in accordance with EN 12944-2) OKS-L Applications ƒ Outdoor installation ƒ Air humidity over % ƒ Chemical industrial plants ƒ Food industry Measures ƒ Surface coatin complies with corrosivity class C3 (in accordance with EN 12944-2) ƒ Additional primin coat on fan cover and B-end shield ƒ Galvanised bolts ƒ Cable lands with sealin rins ƒ Corrosion-resistant brae with seal, non-rustin friction plate and chrome-plated armature plate (on request) Optional measures ƒ Sealed recesses on motor (on request) A blower cannot be used in combination with OKS-L. 101

Surface and corrosion protection Structure of surface coatin 102

Surface and corrosion protection 103

Surface and corrosion protection 104

Surface and corrosion protection 105

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