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Geared servo motors MCA asynchronous servo motor - g500-H helical gearbox Project planning EN

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  • Geared servo motorsMCA asynchronous servo motor - g500-H helical gearbox

    Project planning EN

  • InhaltAbout this document 5

    Document description 5Further documents 5Notations and conventions 6

    Product information 7Product description 7Identification of the products 8Features 9The modular system 10

    Information on project planning 16Safety instructions 17

    Basic safety instructions 17Application as directed 17Foreseeable misuse 17Residual hazards 18

    Drive dimensioning 19Final configuration 26

    Environmental conditions 27Free spaces 29

    Information on mechanical installation 34Important notes 34Transport 34Installation 34

    Information on electrical installation 35Important notes 35Preparation 35

    Technical data 36Notes regarding the given data 36Standards and operating conditions 37

    Conformities/approvals 37Protection of persons and device protection 37EMC data 37Environmental conditions 37

    Data overview 38Radial forces and axial forces 48Selection tables 51

    Inverter mains connection400 V,Self-ventilated 52Inverter mains connection400 V,Forced-ventilated 76

    Dimensions 98Basic dimensions 98Additional lengths 224

    Weights 226Basic weights 226Additional weights 227

    Inhalt

    3

  • Product extensions 228Motor connection 228

    Connection via terminal box 228Connection via ICN connector 232

    Brakes 235Permanent magnet brakes 237

    Feedback 238Resolver 239Incremental encoder 240Absolute value encoder 240

    Blower 241Temperature monitoring 241

    Thermal detectors PT1000 241

    Product codes 242

    Motor data 244Rated data 244

    Inverter mains connection400 V, Self-ventilated 244Inverter mains connection400 V, Forced-ventilated 247

    Torque characteristics 249

    Appendix 259Good to know 259

    Approvals/directives 259Operating modes of the motor 260Enclosures 261

    Inhalt

    4

  • About this document

    Document descriptionThis document addresses to all persons who want to carry out any configurations with theproducts described.

    The data and information compiled in this document serve to support you in the dimensioningand selection processes and in carrying out the electrical and mechanical installation. You willreceive information regarding product extensions and accessories. The document includes safety instructions which must be observed. All persons working on and with the drives must have the documentation at hand during

    work and observe the information and notes relevant for it. The documentation must always be complete and in a perfectly readable state.

    NOTICEPlease observe the notes in the following chapters! Safety instructions ^ 17 Information on mechanical installation ^ 34 Information on electrical installation ^ 35

    Further documents

    Information and tools with regard to the Lenze products can be found on theInternet:http://www.lenze.com Download

    About this documentFurther documents

    5

    http://www.lenze.com

  • Notations and conventionsThis document uses the following conventions to distinguish different types of information:

    Numeric notation Decimal separator Point The decimal point is always used.

    Example: 1234.56Warning UL warning UL Are used in English and French. UR warning URText Programs Software

    Example: Engineer, EASY StarterIcons Page reference Reference to another page with additional information

    Example: 16 = see page 16 Documentation reference , Reference to another documentation with additional information

    Example: , EDKxxx = see documentation EDKxxx

    Layout of the safety instructions

    DANGER!This note refers to an imminent danger which, if not avoided, may result in death or seriousinjury.

    WARNING!This note refers to a danger which, if not avoided, may result in death or serious injury.

    CAUTION!This note refers to a danger which, if not avoided, may result in minor or moderate injury.

    NOTICEThis note refers to a danger which, if not avoided, may result in damage to material assets.

    About this documentNotations and conventions

    6

  • Product information

    Product descriptionIn combination with servo motors, our helical gearboxes form a compact and powerful driveunit. Numerous options at the input and output end provide for the drive to be exactly adap-ted to your application.

    The robust helical gearboxes feature high permissible radial forces, closely stepped ratios anda low backlash. They are available in a 2-stage and 3-stage design with an output torque of upto 3000 Nm and a ratio of up to i= 370.

    Designs Fine-scaling of size/torque provides for an optimum machine adaptation Standardised shaft and flange dimensions for an easy machine integration High efficiency

    Asynchronous servo motors as a basis for geared motorsIn a power range of 0.8 to 20.3 kW, Lenze offers servo motors with a scalable modular design.

    The drives are designed for the open-loop or closed-loop controlled servo inverter operation.

    These motors feature a high dynamic performance and a wide speed setting range.

    Customer benefit High dynamic performance thanks to low moments of inertia High efficiency Wide speed setting range Field weakening operation usable Space-saving thanks to compact direct attachment to Lenze gearboxes Can be used universally for a wide range of machine tasks due to the market-oriented

    modular system

    Fig. 1: MCA13I asynchronous servo motor - g500-H450 helical gearbox

    Product informationProduct description

    7

  • Identification of the products

    Gearbox product nameGearbox type Product series Type Rated torque Nm Gearbox

    Helical gearbox g500 - H

    45 g500-H45100 g500-H100140 g500-H140210 g500-H210320 g500-H320450 g500-H450600 g500-H600850 g500-H850

    1500 g500-H15003000 g500-H3000

    Servo motor product name MotorExample MCA 10 I 40 -

    Meaning Variant Product family MCA Size 10 13 14 17 19 21 Overall length I ... X Rated speed rpm x 100 16 ... 42 Mains voltage 3 x 400 V, IP54/IP65 -

    Product informationIdentification of the products

    8

  • FeaturesMotor connectionPowerBrake

    (depending on the mounting position)Oil level check

    (depending on the mounting position)Oil drain plug

    (depending on the mounting position)Oil filler plug

    (depending on the mounting position)Ventilation

    Housing type

    Output flange

    Output shaft

    Temperature monitoring

    Permanent magnet brake

    Feedback

    Motor connectionFeedbackTemperature monitoring

    Cooling

    Product informationFeatures

    9

  • The modular system

    Values printed in bold are standard designs. Values that are not printed in boldare potential extensions, some of them including a surcharge.

    Geared motors up to 450 NmGearbox g500-H100 g500-H140 g500-H210 g500-H320 g500-H450Min. motor assignment MCA10 MCA10 MCA10 MCA10 MCA10Max. motor assignment MCA13 MCA13 MCA14 MCA17 MCA19Technical data Max. output torque Nm 100 140 210 320 450 Min. drive torque Nm 0.8 0.8 0.8 0.8 0.8 Max. drive torque Nm 6.3 6.3 12.0 21.5 36.0Mounting position Standard A/B/C/D/E/F Combined AEFColour Primed

    Painted in RAL coloursSurface and corrosion protection OKS-G

    Different types of OKSOutput shaft Solid shaft with featherkey mm 20 x 40 25 x 50 25 x 50 30 x 60 30 x 60

    35 x 70 Solid shaft without keyway mm 20 x 40 25 x 50 25 x 50 30 x 60 35 x 70 Shaft material Steel

    Stainless steel Shaft sealing ring material NBR

    FKM (Viton) Output shaft bearing Normal

    ReinforcedGearbox version

    With foot (VBR)With foot and centering (VAR)With foot and output flange (VAK)With centering (VCR)With output flange (VCK)With output flange (VCP)

    Output flange mm 120/140/160 120/140/160 120/140160/200

    160/200 160/200/250

    Lubricant Synthetic oilFood-compatible oil

    Cooling Self-ventilated Forced-ventilatedMotor connection Connectors

    Terminal boxPermanent magnet holding brake Without

    Brake design: StandardFeedback Resolver

    Absolute value encoderIncremental encoder

    Temperature monitoring Thermal detectors PT1000

    Product informationThe modular system

    10

  • Geared motors 600 Nm to 3000 NmGearbox g500-H600 g500-H850 g500-H1500 g500-H3000Min. motor assignment MCA10 MCA10 MCA10 MCA14Max. motor assignment MCA19 MCA19 MCA19 MCA19Technical data Max. output torque Nm 600 850 1500 3000 Min. drive torque Nm 0.8 0.8 0.8 5.4 Max. drive torque Nm 36 36 36 36Mounting position Standard A/B/C/D/E/F Combined Colour Primed

    Painted in RAL coloursSurface and corrosion protection OKS-G

    Different types of OKSOutput shaft Solid shaft with featherkey mm 35 x 70

    40 x 8040 x 80 50 x 100 60 x 120

    Solid shaft without keyway mm 35 x 70 40 x 80 50 x 100 60 x 120 Shaft material Steel

    Stainless steel Shaft sealing ring material NBR

    FKM (Viton) Output shaft bearing Normal

    ReinforcedGearbox version With foot (VBR)

    With foot and centering (VAR)With foot and output flange (VAK)With centering (VCR)With output flange (VCK)

    Output flange mm 200/250 250/300 250/300/350 300/350/450Lubricant Synthetic oil

    Food-compatible oilCooling Self-ventilated

    Forced-ventilatedMotor connection Connectors

    Terminal boxPermanent magnet holding brake Without

    Brake design: StandardFeedback Resolver

    Absolute value encoderIncremental encoder

    Temperature monitoring Thermal detectors PT1000

    Product informationThe modular system

    11

  • Models at the output

    Please observe the available gearbox designs on ^ 10 and ^ 11!

    Solid shaft, with foot

    Without centring (VBR) With centring (VAR) Flange with through holes (VAK)

    Solid shaft, without foot

    With centering (VCR) Flange with through holes (VCK) Reinforced flange with through holes (VCP)

    VCP (reinforced flange) is suitable for absorbing high radial and axial forces^ 48.

    Product informationThe modular system

    12

  • Models at the outputMotor connection

    Connectors Terminal box

    Cooling: self-ventilated

    Resolver Resolver and brake Absolute value/incrementalencoder

    Absolute value/incrementalencoder and brake

    Cooling: forced ventilated

    Resolver Resolver and brake Absolute value/incrementalencoder

    Absolute value/incrementalencoder and brake

    Product informationThe modular system

    13

  • Mounting positions

    Geared motors

    In the following graphics, the connector in position 2 is colour-coded. If themounting position (A F) changes, the connector positions or terminal boxpositions (2 5) are rotated accordingly.

    To reduce the number of different versions, the gearboxes can also be ordered with combinedmounting positions: g500-H100 ... H450 in AEF mounting position

    A

    B

    C

    D

    E F

    Product informationThe modular system

    14

  • Connector/terminal box

    The connector or terminal box position (2 ... 5) must be given as a function ofthe mounting position.

    4

    5

    2

    3

    Product informationThe modular system

    15

  • Information on project planningIn order to carry out an accurate drive dimensioning process, you can use our configuring soft-ware, the Drive Solution Designer.

    With the Drive Solution Designer you can carry out the drive dimensioning process quickly andwith top quality. The software contains profound and proven expertise with regard to driveapplications and mechatronic drive components.

    Please refer to your competent Lenze sales company.

    Information on project planning

    16

  • Safety instructionsDisregarding the following basic safety measures and safety information may lead to severepersonal injury and damage to property!

    Observe all specifications of the corresponding documentation supplied. This is the precondi-tion for safe and trouble-free operation and for obtaining the product features specified.

    Please observe the specific safety information in the other sections!

    Basic safety instructions

    Personnel

    The product must only be used by qualified personnel. IEC 60364 or CENELEC HD 384 definethe skills of these persons: They are familiar with installing, mounting, commissioning, and operating the product. They have the corresponding qualifications for their work. They know and can apply all regulations for the prevention of accidents, directives, and

    laws applicable at the place of use.

    Process engineeringThe procedural notes and circuit details described are only proposals. It is up to the user tocheck whether they can be adapted to the particular applications. Lenze does not take anyresponsibility for the suitability of the procedures and circuit proposals described.

    The procedural notes and circuit details described in this document are only proposals. It is upto the user to check whether they can be adapted to the particular applications. Lenze doesnot take any responsibility for the suitability of the procedures and circuit proposals descri-bed.

    Application as directed The product must only be actuated under the operating conditions and power limits speci-

    fied in this documentation. The product meets the protection requirements of 2014/35/EU: Low-Voltage Directive. The product is not a machine in terms of 2006/42/EC: Machinery Directive. Commissioning or starting the operation as directed of a machine with the product is not

    permitted until it has been ensured that the machine meets the regulations of the ECDirective 2006/42/EC: Machinery Directive; observe EN 602041.

    Commissioning or starting operation as directed is only permissible if the EMC Directive2014/30/EU is complied with.

    The product is not a household appliance, but is only designed as a component for com-mercial or professional use in terms of EN 6100032.

    The product can be used according to the technical data if drive systems have to complywith categories according to EN 618003.

    In residential areas, the product may cause EMC interferences. The operator is responsiblefor taking interference suppression measures.

    Do not use the built-in brakes as fail-safe brakes. Disruptive factors that cannot be influ-enced may cause the braking torque to be reduced.

    The product must only be actuated with inverters.

    Foreseeable misuse Actuate directly on the mains voltage Use in potentially explosive areas Use in aggressive environments Use under water Use under radiation Use in generator mode

    Information on project planningSafety instructions

    Foreseeable misuse

    17

  • Residual hazardsEven if notes given are taken into consideration and protective measures are implemented,the occurrence of residual risks cannot be fully prevented.

    The user must take the residual hazards mentioned into consideration in the risk assessmentfor his/her machine/system.

    If the above is disregarded, this can lead to severe injuries to persons and damage to prop-erty!

    Protection of persons The product does not provide safety-related functions.

    - A higher-level safety system must be implemented.- Additional monitoring and protective equipment complying with the safety regulations

    applicable in each case must be used. The power terminals may carry voltage in the switched-off state or when the motor is

    stopped.- Before working, check whether all power terminals are deenergised.

    Voltages may occur on the drive components (e.g. capacitive, caused by inverter supply).- Careful earthing in the marked positions of the components must be carried out.

    Risk of burns may be caused by hot surfaces!- Provide for a protection against accidental contact.- Use the personal protective equipment or wait until the components have cooled

    down completely!- Prevent contact with flammable substances.

    There is a risk of injury due to rotating parts.- Before working on the drive system, ensure that the motor is at a standstill.

    There is a danger of unintentional starting or electrical shocks! Installed brakes are no fail-safe brakes.

    - The torque may be reduced by disruptive factors that cannot be influenced such asingressing oil.

    Motor protection Design with plug:

    - Never disconnect the plug when energised! Otherwise, the plug can be destroyed.- Switch off power supply and disable inverter prior to disconnecting the plug.

    Installed thermal detectors are no full protection for the machine.- If required, limit the maximum current. Parameterise the inverter so that it will be

    switched off after seconds of operation with I > Irated , especially if there is the dangerof blocking.

    - The installed overload protection does not prevent an overload under any conditions. The fuses are no motor protection.

    - Use a current-dependent motor protection switch.- Use the built-in thermal detectors.

    Too high torques cause a fraction of the motor shaft.- The maximum torques according to catalogue must not be exceeded.

    Lateral forces from the motor shaft may occur.- Align the shafts of motor and driven machine exactly to each other.

    Information on project planningSafety instructionsResidual hazards

    18

  • Drive dimensioning

    NOTICEThe dimensioning is suitable for the operating modes S1, S2, S3 and S6

    The following 3 elements are taken into consideration in the dimensioning process :

    Drive functionOn the basis of the values required for the process that are specified, a drive is selected, forwhich all operating points are within the speed-torque characteristic curve of the motor.

    As a result, a motor with a suitable speed with an inverter with a sufficient maximum currentis selected. Further limits (maximum speed, installation height...) are specified in tables.

    Mechanical strengthOn the basis of the forces and torques which build, a drive is selected that has a sufficientmechanic strength (endurance strength for the periodically occurring torques and fatiquestrength for the sporadically occurring torques).

    Thermal dimensioningFor the inverter, the thermal dimensioning process is carried out on the basis of the continu-ous inverter current or on the basis of the continuous torque from the motor-inverter combi-nation, which can be reached.

    The motor is thermally dimensioned on the basis of the mean speed and the effective torque.

    The thermal dimensioning of the gearbox is based on the medium speed and the permanenttorque of the motor/gearbox combination. The thermal limit speed is to be understood as arecommendation.

    The mean speed of the drive should not exceed the values specified.

    If dimensioning processes are complex or reach limit loads, please refer to yourLenze branch office

    Information on project planningDrive dimensioning

    19

  • Operation chart S1 operation S2,S3 and S6 operation

    Check operating conditions

    Define required input variables

    Determine correction factor Operating modes and operating time Operating modes and operating time Ambient temperature and installation height Ambient temperature and installation height Mounting position Mounting position Mean speed utilisation Mean speed

    Determine gearbox on the basis of the acting forces

    Determine gearbox efficiency

    Determine required gearbox load capacity

    Calculate required drive power

    Check and select geared motor

    Check servo motor based on the motor torque characteristic

    Final configuration

    Check operating conditionsCheckApprovalsConformity declarationsSupply voltageEnclosureAmbient temperatureSurface protection

    4Conformities/approvals ^ 374Environmental conditions ^ 27

    Information on project planningDrive dimensioning

    20

  • Define required input variablesNecessary input variables Note Symbol UnitOperating time / day BD hMean speed utilisation of the geared motor Relating to the load speed nL %

    Ambient temperature TU C

    Site altitude Amsl H mRadial force Frad N

    Axial force Fax N

    Transmission element at the output Gear wheels, sprockets Effective diameter of the transmission element dw mm

    Load torque Only with S1, S2, S3, and S6 operating modes ML Nm

    Load speed Only with S1, S2, S3, and S6 operating modes nL rpm

    Short-time maximum torque Emergency off, quick stop, occasional high startingduty

    ML,max Nm

    Runtime with maximum torque tL %

    Determine correction factorOperating modes S1, S2, S3, S6, and operating time

    Operating mode S1 Operating mode S2 Operating mode S3 Operating mode S6ED kL ED kL ED kL ED kL% min % %

    100 1.0 10 1.4 - 1.5 15 1.4 - 1.5 15 1.5 - 1.630 1.15 - 1.2 25 1.3 - 1.4 25 1.4 - 1.560 1.07 - 1.1 40 1.15 - 1.2 40 1.3 - 1.490 1.0 - 1.05 60 1.05 - 1.1 60 1.15 - 1.2

    4Operating modes of the motor ^ 260

    Ambient temperature and installation heightAmbient temperature Installation height amsl

    < 1000 m < 2000 mCorrection factor

    TU kH kH 20 C 1.10 1.0430 C 1.05 1.0040 C 1.00 0.9550 C 0.80 0.7660 C 0.60 0.57

    Mounting positionGearbox Mounting position

    A B C D E FCorrection factor

    kE kE kE kE kE kEg500-H 1.00 0.80 0.80 0.70 1.00 1.00g500-S 1.00 0.80 0.85 0.70 0.90 0.80g500-B 1.00 0.80 0.80 0.70 0.80 0.80

    4Mounting positions ^ 14

    Information on project planningDrive dimensioning

    21

  • Mean speed utilisationDaily operating time

    Mean speed utilisation

    relating to the load speed nL100 % 80 % 60 % 50 % 25 %

    Correction factorkN kN kN kN kN

    1.0 h 1.29 1.33 1.38 1.42 1.552.0 h 1.15 1.20 1.25 1.29 1.423.0 h 1.08 1.12 1.17 1.21 1.344.0 h 1.02 1.06 1.12 1.15 1.295.5 h 0.96 1.00 1.06 1.09 1.228.0 h 0.89 0.93 0.99 1.02 1.15

    12.0 h 0.81 0.85 0.91 0.94 1.0816.0 h 0.76 0.80 0.85 0.89 1.0222.0 h 0.71 0.76 0.81 0.85 0.9824.0 h 0.68 0.72 0.78 0.81 0.94

    Mean speedOperating mode S2 Operating mode S3 Operating mode S6

    ED kM ED kM ED kMmin % %] 10 0.16 15 0.15 15

    1.0030 0.50 25 0.25 2560

    1.0040 0.40 40

    90 60 0.60 60

    Determine product on the basis of the forcesTransmission element Gear wheels Sprockets Toothed belt pulleys Narrow V-belt ( depending on the pre-loading)

    ( depending on thepreloading)

    Additional radial force factor fz

    17 teeth = 1.0 20 teeth = 1.0 With belt tightener= 2.0 -2.5

    1.5 - 2.0

    < 17 teeth = 1.15 < 20 teeth = 1.25 Without belt tightener= 2.5- 3.0

    < 13 teeth = 1.4 Calculation Check

    Radial force Frad N

    = L,max zradM f

    F 2000dw

    Frad fw x Frad,max

    Axial force Fax N Fax Frad,maxx 0.5

    dw Effective diameter of transmission element

    4Radial forces and axial forces ^ 48

    Determine gearbox efficiencyGearbox Gearbox efficiency

    c1g500-H 2-stage 0.96 3-stage 0.95

    Information on project planningDrive dimensioning

    22

  • Determination of the required gearbox load capacityDefine the required load factor at runtime tLRuntime tL 10 % Take the load factor k from diagram into account

    Runtime tL > 10 % Take intensity kI from calculation into account

    Calculate intensity no alternating load kI = ML,max / ML kI =

    at alternating load kI = ML,max / ML x 1.4 kI =

    Load factor k

    0 1 2 3 4 5 6 7 8 9 10 %1.0

    1.5

    2.0

    2.5

    3.0

    3.5

    4.0

    4.5

    1.3 1.21.51.71.92.12.32.52.72.93.13.33.53.73.94.14.34.54.7

    1.41.61.82.02.22.42.62.83.03.23.43.63.84.04.24.44.6

    24 h 16 h 8 h

    k = 5I

    k = 4I

    k = 3I

    k = 2I

    I

    II

    III

    IV

    tL

    k

    Information on project planningDrive dimensioning

    23

  • Operating mode S1Calculation of the required drive power Calculation Result UnitOutput torque Mr ML / (kL x kH) Mr = Nm

    Output speed nr nL / kE nr = rpm

    Drive power Pr Mr x nr / 9549 pr = kW

    Check geared servo motor and determine from the selection table Check Selection UnitDrive power P1 Pr p1 = kW

    Output torque M2 ML M2 = Nm

    Output speed n2,th nL n2,th = rpm

    Load capacity of the geared motor c kc kI

    c =

    Short-time maximum torque no alternating load M2,max ML,max M2,max = Nm

    at alternating load M2,max x 1.5 ML,max M2,max = Nm

    Ratio i = Geared motor g500-....

    4Selection tables ^ 51Order data Ratio i Geared motorExample 4.600 g500-H100 MCS06C40Example 4.600 g500-H100 MCA10I40

    Information on project planningDrive dimensioning

    24

  • Operating modes S2, S3, and S6Calculation of the required drive power Calculation Result UnitOutput torque Mr ML/ (kL x kH) Mr = Nm

    Output speed nr (nL x kM) / (kE x kN) nr = rpm

    Drive power Pr Mr x nr / 9549 pr = kW

    Check geared servo motor and determine from the selection table Check Selection UnitDrive power P1 Pr p1 = kW

    Output torque M2 ML M2 = Nm

    Output speed n2 nL n2 = rpm

    Load capacity of the geared motor c kc kI

    c =

    Short-time maximum torque no alternating load M2,max ML,max M2,max = Nm

    at alternating load M2,max x 1.5 ML,max M2,max = Nm

    Ratio i = Geared motor g500-....

    4Selection tables ^ 51Check servo motor based on the motor torque characteristicGearbox efficiency G = c1 - (c - 1) x 0.01 G =

    All operating points ( )

    n [r/min]

    M [N

    m]

    i x nL ML / (i x G )

    Below the maximum torque character-istic of the servo motor-inverter combi-nation, taking ML,max into consideration

    Thermally effective operating point ( ) (i x nLx kM) / (kE x kN) ML / (kLx kH x i x G )

    Below the S1 torque characteristic ofthe servo motor

    4Torque characteristics ^ 249Order data Ratio i Geared motorExample 4.600 g500-H100 MCS06C40Example 4.600 g500-H100 MCA10I40

    Information on project planningDrive dimensioning

    25

  • Final configuration CheckConnection dimensions Output shaft

    Output flange/footMounting position Geared motor

    Connector/terminal boxDriven shaft/output flange

    Product extensions Torque plateShaft coverConnector/terminal boxBrakeFeedbackTemperature monitoring

    More information about the final configuration:

    4The modular system ^ 104Product extensions ^ 228

    Information on project planningFinal configuration

    26

  • Environmental conditions

    Surface and corrosion protectionDepending on the ambient conditions, the surface and corrosion protection system (calledOKS) offers tailor-made solutions for optimum protection.

    Various surface coatings ensure that the motors operate reliably even at high air humidity, inoutdoor installation or in the presence of atmospheric impurities. Any colour from the "RALClassic" collection can be chosen for the top coat.

    The OKS-XL (extra Large) version requires a check by your responsible Lenze sub-sidiary.

    Surface and corrosionprotection

    Applications Product

    g500-H45 ... H450g500-S130 ... S660g500-B45 ... B450

    g500-H600 ... H3000g500-S950 ... S4500g500-B600 ... B4300

    OKS-G (primed) Dependent on subsequent top coat applied Standard StandardOKS-S (small) Standard applications

    Internal installation in heated buildings Air humidity up to 90%

    Optional Optional

    OKS-M (medium) Internal installation in non-heated buildings Covered, protected external installation Air humidity up to 95 %

    Optional Optional

    OKS-L (large) External installation Air humidity above 95 % Chemical industrial plants Food industry

    OKS-XL (extra Large) External installation Air humidity above 95 % Chemical industrial plants Food industry Coastal areas with moderate salinity

    Surface and corrosionprotection

    Corrosivity category Surface coating Colour Coating thickness

    DIN EN ISO 12944-2 Design OKS-G (primed) 2K PUR priming coat 60 ... 90 mOKS-S (small) Comparable to C1 2K-PUR top coat

    Standard: RAL 7012 Optional: RAL Classic

    80 ... 120 mOKS-M (medium) Comparable to C2 2K PUR priming coat

    2K-PUR top coat110 ... 160 m

    OKS-L (large) Comparable to C3 140 ... 200 m

    OKS-XL (extra Large) Comparable to C4 2K-EP priming coat (two times) 2K-PUR top coat 160 ... 240 m

    Information on project planningFinal configuration

    Environmental conditions

    27

  • Lubricants

    In case of ambient temperatures < -20 C or > +40 C, please contact yourresponsible Lenze sales company

    The following gearboxes are lubricated for life: g500-H45 g500-H100 g500-H140

    Recommended lubricants:

    Lubricant CLP HC 220 CLP HC 320 CLP HC 220USDA H1

    Specification Synthetic oil (polyalfaolefins basis)Changing interval Operating hours 25000 25000 16000 Not later than after 4 years 4 years 3 years At an oil temperature of 70 ... 80 CFuchs Renolin Unisyn

    CLP 220XT 220

    Renolin UnisynCLP 320XT 320

    Cassida FluidGL 220

    Klber KlbersynthGEM4-220 N

    KlbersynthGEM4-320 N

    Klberoil4 UH1-220 N

    Shell Shell OmalaS4 GX HD 220

    Shell OmalaS4 GX HD 320

    Information on project planningFinal configurationEnvironmental conditions

    28

  • Free spaces

    Ventilation

    No ventilation is required for the gearboxes g500-H100 H210. From g500-H320 onwards, the gearboxes are supplied with breather elementsas standard.

    Gearbox in combined mounting positionTo reduce the number of different versions, the gearboxes can also be ordered with combinedmounting positions: g500-H100 ... H450 in AEF mounting position

    In these gearboxes, the lubricant amount has been optimised for the use in dif-ferent mounting positions. If required, the breather elements are looselyenclosed and must be mounted before commissioning depending on themounting position.

    Information on project planningFinal configuration

    Free spaces

    29

  • g500-H210 ... H450Mounting position A Mounting position B Mounting position C

    Filling and ventilation

    +

    +

    +

    Check

    Drain

    Information on project planningFinal configurationFree spaces

    30

  • Mounting position D Mounting position E Mounting position FFilling and ventilation

    +

    +

    +

    Check

    Drain

    g500-H210 g500-H320

    g500-H450

    Information on project planningFinal configuration

    Free spaces

    31

  • g500-H600 ... H3000Mounting position A Mounting position B Mounting position C

    Filling and ventilation

    +

    +

    +

    Check

    Drain

    Information on project planningFinal configurationFree spaces

    32

  • Mounting position D Mounting position E Mounting position FFilling and ventilation

    + + +

    Check

    Drain

    Information on project planningFinal configuration

    Free spaces

    33

  • Information on mechanical installation

    Important notes You must install the product according to specifications in the chapter "standard and oper-

    ating" conditions.

    4Standards and operating conditions ^ 37 The technical data and the data regarding the supply conditions can be found on the

    nameplate and in this documentation.

    Observe the information relating to the surface and corrosion protection.4Environmental conditions ^ 27

    Ambient media especially chemically aggressive ones may damage shaft sealing rings,lacquers and plastics. If required, contact your responsible Lenze subsidiary.

    NOTICEBearing damage caused by unbalance!

    Shafts with keyway are balanced with a half featherkey! Balance transmission elements with a half featherkey!

    Transport Ensure appropriate handling. Make sure that all component parts are safely mounted. Secure or remove loose compo-

    nent parts. Only use safely fixed transport aids (e.g. eye bolts or support plates). Do not damage any components during the transport. Avoid electrostatic discharge on electronic components and contacts. Avoid impacts. Check the carrying capacity of the hoists and load handling devices. The weights can be

    obtained from the shipping documents. Secure the load against tipping and falling down. Standing under a suspended load is forbidden.

    Installation Avoid resonances with the rotational frequency and double mains frequency. The mounting surfaces must be plane, torsionally rigid and free from vibrations. The mounting areas must be suited to absorb the forces and torques generated during

    operation. Ensure an unhindered ventilation. For versions with a fan, keep a minimum distance of 10 % from the outside diameter of the

    fan cover in intake direction.

    Information on mechanical installationInstallation

    34

  • Information on electrical installation

    Important notes

    DANGER!Hazardous voltage!

    On the power connections even when disconnected from the mains: residual voltage >60 V! Disconnect the product from the mains and wait until the motor is at a standstill. Make sure that the product is safely isolated from supply!

    When working on energised products, comply with the applicable national accident pre-vention regulations.

    Carry out the electrical installation in compliance with the relevant regulations (e.g. cablecross-sections, fuses, PE connection).

    The manufacturer of the system or machine is responsible for adherence to the limitsrequired in connection with EMC legislation.

    Preparation

    The notes for the electrical connection can be found in

    in the terminal box (if motors with a terminal box are used).

    the connection plan (if motors with connectors are used).

    EMC-compliant wiring

    The EMC-compliant wiring is described in detail in the documentation of theLenze inverters.

    Information on electrical installationPreparation

    35

  • Technical data

    Notes regarding the given data

    Catalogue dataThe power values, torques and speeds indicated in the catalogue are rounded values andapply to Operating time per day = 8 hrs (100 % ED) Duty class up to 10 switching operations per hr TU = 40 C Site altitude 1000 m above sea level The selection tables indicate the mechanically permissible power levels and torques. The ratings apply to the operating mode S1 (acc. to EN 60034).

    NOTICEIn case of other operating conditions, the achievable values can differ for those mentioned. In case of extreme operating conditions, please contact your responsible Lenze sales com-

    pany.

    Thermal power limitThe thermal power limit, defined by the heat balance, limits the permissible permanent gear-box power. It is affected by: the churning losses in the lubricant. These are determined by the mounting position and

    the circumferential speed of the gears the load and the speed the ambient conditions: temperature, air circulation, input or dissipation of heat via shafts

    and the foundations.

    NOTICEA thermal check with the Drive Solution Designer (DSD) contacting the Lenze office responsi-ble for you is required if the input speed n1 > 1500 rpm is exceeded in case of the gearbox ratios given in the follow-

    ing. The drive speeds given in the following are exceeded as a function of the mounting position.

    Temporarily up to 5 min, 30 % higher speeds are permissible.

    Gearbox Ratio ig500-H850 ... H3000 10

    Motor Mounting position A Mounting position B, E, F Mounting position C, D MCA10 to 14 4000 r/min 3500 rpm 3000 r/minMCA17 ... 21 3000 r/min 2600 rpm 1500 r/min

    Possible ways of extending the application area Shaft sealing ring made of FKM material/Viton (option) Reducing the lubricant amount (after consultation with Lenze) Cooling the geared motor by means of air convection on the machine/ system

    Technical dataNotes regarding the given data

    36

  • Standards and operating conditions

    Conformities/approvalsConformity CE 2014/35/EU Low-Voltage Directive 2014/30/EU EMC Directive (reference: CE-typical drive system) EAC TR TC 004/2011 Eurasian conformity: safety of low voltage equipment TP TC 020/2011 Eurasian conformity: electromagnetic compatibility of technical

    meansApproval cURus UL 1004-1

    UL 1004-6for USA and Canada (requirements of the CSA 22.2 No.100)Industrial Control Equipment, Lenze File No. E210321

    UkrSepro for Ukraine

    Protection of persons and device protectionEnclosure IP54 EN 60034-5 Self-ventilated: MCA10 ... MCA21

    Forced ventilated: MCA13 ... MCA21 IP65 EN 60034-5 Self-ventilated: MCA10 ... MCA21Temperature class F (155 C) EN 60034-1 Max. voltage load Limit curve A IEC/TS 60034-25:2007 IVIC C/B/B@500V IEC 60034-18-41

    EMC dataNoise emission EN 60034-1 A final overall assessment of the drive system is indispensableNoise immunity EN 60034-1 A final overall assessment of the drive system is indispensable

    Environmental conditionsClimate 1K3 (-20 C ... +60 C) EN 60721-3-1 Storage, < 3 months 1K3 (-20 C ... +40 C) EN 60721-3-1 Storage, > 3 months 2K3 (-20 C ... +70 C) EN 60721-3-2 Transport 3K3 ( 0 C ... -+40 C) EN 60721-3-3 operationSite altitude 0 1000 m a.m.s.l. Without power reduction 1000 4000 m a.m.s.l. Reduce rated output current by 5 %/1000 m

    Technical dataStandards and operating conditions

    Environmental conditions

    37

  • Data overviewThe following tables contain the most important data of the gearbox with the attachablemotors of a geared motor.

    The data given for speed, torque and power are valid if the input speed n1= 1400 rpm Application factor c= 1.0

    The data for the max. radial force refer to gearbox design: with foot (VBR) output shaft bearing: normal bearing Application factor c= 1.3Further designs4Radial forces and axial forces ^ 48

    In order to calculate the exact ratio, the number of teeth zg (driven) can be divided by thenumber of teeth zt (driving). These are rounded values.

    The rated torque can be gathered from the last digits of the product name z.B.g500-H100 (100 Nm).

    g500-H100, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW417 62 2.79 3.354 161 48 1180 29 1.70 2.20304 72 2.37 4.600 23 5 1340 28 0.80 2.20271 75 2.19 5.167 31 6 1410 25 0.80 2.20238 81 2.08 5.887 989 168 1480 27 0.80 2.20217 83 1.95 6.440 161 25 1540 27 0.80 2.20198 86 1.83 7.086 248 35 1600 24 0.80 2.20170 92 1.69 8.214 115 14 1700 27 0.80 2.20154 96 1.60 9.068 1333 147 1770 24 0.80 2.20139 99 1.49 10.063 161 16 1850 27 0.80 2.20123 100 1.33 11.360 284 25 1940 22 0.80 2.20111 100 1.19 12.653 620 49 2030 24 0.80 1.7097 100 1.04 14.490 710 49 2150 22 0.80 1.7090 100 0.97 15.500 31 2 2210 23 0.80 1.7079 100 0.85 17.750 71 4 2330 22 0.80 1.7072 100 0.78 19.486 682 35 2430 23 0.80 0.8063 100 0.68 22.314 781 35 2560 22 0.80 0.8056 100 0.60 25.095 527 21 2590 23 0.80 0.8049 100 0.53 28.738 1207 42 2620 22 0.80 0.80

    Technical dataData overview

    38

  • g500-H140, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW429 82 3.79 3.267 49 15 1750 25 1.70 2.20313 94 3.17 4.480 112 25 2000 24 1.70 2.20244 103 2.71 5.733 86 15 2180 24 1.70 2.20223 105 2.53 6.272 784 125 2260 23 1.70 2.20193 106 2.20 7.269 189 26 2370 18 0.80 2.20175 117 2.21 8.000 8 1 2430 24 0.80 2.20155 117 1.96 9.029 316 35 2540 19 0.80 2.20143 125 1.93 9.800 49 5 2630 23 0.80 2.20121 128 1.67 11.554 3397 294 2800 18 0.80 2.20111 132 1.58 12.640 316 25 2880 18 0.80 2.20100 136 1.47 13.957 4536 325 2950 17 0.80 2.2087 140 1.31 16.122 790 49 3050 18 0.80 2.2079 140 1.19 17.802 1620 91 3150 18 0.80 1.7071 140 1.07 19.750 79 4 3210 18 0.80 1.7064 140 0.97 21.808 567 26 3300 17 0.80 1.7056 140 0.85 24.829 869 35 3,400 18 0.80 0.8051 140 0.77 27.415 1782 65 3520 17 0.80 0.8044 140 0.66 31.976 1343 42 3630 18 0.80 0.8040 140 0.60 35.308 459 13 3700 17 0.80 0.80

    g500-H210, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW413 126 5.62 3.389 61 18 1980 23 1.40 3.90301 143 4.65 4.648 488 105 2250 23 1.40 3.90251 159 4.30 5.583 67 12 2400 19 1.40 3.90224 158 3.82 6.250 25 4 2500 18 1.40 3.90183 172 3.39 7.657 268 35 2680 19 1.40 3.90163 171 3.01 8.571 60 7 2780 18 1.40 3.90143 182 2.81 9.799 2881 294 2960 18 1.40 3.90131 189 2.66 10.720 268 25 3030 18 1.40 3.90117 186 2.34 12.000 12 1 3200 17 0.80 3.90102 201 2.22 13.673 670 49 3350 18 0.80 3.9092 200 1.97 15.306 750 49 3470 17 0.80 2.3084 210 1.89 16.750 67 4 3590 18 0.80 2.3075 210 1.69 18.750 75 4 3720 17 0.80 2.3064 210 1.46 21.802 2747 126 3870 18 0.80 2.2057 210 1.30 24.405 1025 42 3900 17 0.80 2.2052 210 1.17 27.119 1139 42 3900 17 0.80 2.2046 210 1.05 30.357 425 14 3900 17 0.80 1.7040 210 0.90 35.095 737 21 3900 17 0.80 0.8036 210 0.81 39.286 275 7 4020 16 0.80 0.8033 183 0.65 42.593 5963 140 4100 17 0.80 0.8029 206 0.65 47.679 1335 28 4220 16 0.80 0.80

    Technical dataData overview

    39

  • g500-H210, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW32 210 0.74 43.390 4556 105 4120 17 0.80 0.8029 210 0.66 48.571 340 7 4240 16 0.80 0.8025 210 0.58 55.529 48977 882 4350 17 0.80 0.8023 210 0.52 62.160 18275 294 4470 16 0.80 0.8020 210 0.45 71.026 62645 882 4620 17 0.80 0.8018 210 0.41 79.507 23375 294 4740 16 0.80 0.8015 210 0.35 92.205 19363 210 4800 17 0.80 0.80

    g500-H320, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW413 165 7.37 3.389 61 18 2180 20 2.10 6.90301 189 6.14 4.648 488 105 2460 20 1.40 6.90230 227 5.65 6.083 73 12 2670 16 1.40 6.90203 218 4.77 6.910 539 78 2800 15 1.40 6.90168 249 4.51 8.343 292 35 2950 16 1.40 6.90148 238 3.80 9.477 616 65 3100 15 1.40 6.90131 265 3.75 10.677 3139 294 3250 16 1.40 6.90120 271 3.51 11.680 292 25 3330 16 1.40 4.10115 254 3.16 12.128 473 39 3360 15 1.40 4.10106 262 2.98 13.268 4312 325 3440 15 1.40 4.1094 294 2.98 14.898 730 49 3600 15 1.40 4.1083 281 2.51 16.923 220 13 3760 15 1.40 4.1077 313 2.59 18.250 73 4 3870 15 1.40 3.9068 299 2.18 20.731 539 26 4020 15 0.80 3.9059 320 2.04 23.754 2993 126 4210 15 0.80 2.2052 320 1.79 26.983 3157 117 4420 15 0.80 2.2047 320 1.64 29.548 1241 42 4540 15 0.80 2.2042 320 1.44 33.564 1309 39 4750 15 0.80 2.2037 251 0.99 38.238 803 21 4970 15 0.80 0.8032 285 0.99 43.436 1694 39 5190 14 0.80 0.8030 218 0.71 46.407 6497 140 5310 15 0.80 0.8027 248 0.71 52.715 6853 130 5550 14 0.80 0.80

    Technical dataData overview

    40

  • g500-H320, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW30 320 1.04 47.276 4964 105 5350 15 0.80 0.8026 320 0.91 53.703 10472 195 5570 15 0.80 0.8023 320 0.81 60.502 53363 882 5600 15 0.80 0.8020 320 0.71 68.726 8041 117 5670 15 0.80 0.8018 320 0.63 77.387 68255 882 5680 15 0.80 0.8016 320 0.56 87.906 10285 117 5700 15 0.80 0.8014 320 0.49 100.462 21097 210 5700 15 0.80 0.8012 320 0.43 114.118 22253 195 5700 15 0.80 0.80

    g500-H450, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW407 256 11.23 3.444 31 9 2550 19 3.80 13.20296 293 9.37 4.724 496 105 2850 18 2.10 13.20247 315 8.39 5.678 511 90 3010 15 2.10 13.20232 323 8.07 6.045 2666 441 3070 17 2.10 13.20212 334 7.63 6.613 496 75 3160 17 2.10 13.20180 354 6.88 7.787 584 75 3350 14 2.10 6.90159 370 6.35 8.800 44 5 3470 14 1.40 6.90141 385 5.83 9.965 3139 315 3650 14 1.40 6.90124 400 5.37 11.262 473 42 3800 14 1.40 6.90114 411 5.04 12.320 308 25 3900 13 1.40 6.90101 426 4.63 13.905 292 21 4030 14 1.40 6.9089 441 4.24 15.714 110 7 4240 13 1.40 6.9082 450 3.99 17.033 511 30 4360 14 1.40 6.9073 448 3.52 19.250 77 4 4520 13 1.40 5.2063 450 3.07 22.170 2993 135 4720 14 1.40 4.1056 450 2.71 25.056 451 18 4920 13 1.40 4.1051 450 2.47 27.578 1241 45 5090 13 1.40 3.9045 450 2.18 31.167 187 6 5280 13 1.40 3.9039 450 1.91 35.689 1606 45 5490 13 0.80 2.2035 450 1.69 40.333 121 3 5880 13 0.80 2.2032 322 1.12 43.313 6497 150 6000 13 0.80 2.2029 366 1.13 48.950 979 20 6300 13 0.80 2.2026 273 0.75 54.750 219 4 6500 13 0.80 0.8023 307 0.75 61.875 495 8 6700 13 0.80 0.80

    Technical dataData overview

    41

  • g500-H450, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW32 450 1.56 44.124 9928 225 6050 14 0.80 2.2028 450 1.38 49.867 748 15 6320 13 0.80 2.2025 450 1.22 56.469 53363 945 6550 14 0.80 2.2023 450 1.12 61.774 69496 1125 6700 14 0.80 2.2020 450 0.99 69.813 5236 75 6860 13 0.80 1.7018 450 0.88 78.794 4964 63 7000 14 0.80 1.7016 450 0.78 89.048 1870 21 7100 13 0.80 1.7015 450 0.72 96.522 8687 90 7100 14 0.80 1.7013 450 0.63 109.083 1309 12 7100 13 0.80 0.8012 450 0.57 121.342 27302 225 7100 14 0.80 0.8010 450 0.50 137.133 2057 15 7100 13 0.80 0.809 450 0.44 156.274 21097 135 7100 14 0.80 0.808 450 0.39 176.611 3179 18 7100 13 0.80 0.80

    g500-H600, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW429 240 11.09 3.267 49 15 4680 17 3.80 13.20313 297 10.01 4.480 112 25 5080 15 2.10 13.20244 339 8.93 5.733 86 15 5420 15 2.10 13.20217 404 9.45 6.456 581 90 5600 14 2.10 13.20193 435 9.07 7.250 29 4 5770 13 2.10 13.20158 487 8.31 8.853 664 75 6080 13 2.10 13.20141 510 7.74 9.943 348 35 6270 12 2.10 13.20124 537 7.16 11.330 3569 315 6490 13 2.10 13.20113 553 6.75 12.395 4648 375 6640 12 2.10 6.90101 578 6.27 13.920 348 25 6850 12 1.40 6.9089 600 5.73 15.810 332 21 7080 12 1.40 6.9079 600 5.11 17.755 870 49 7300 12 1.40 6.9072 600 4.68 19.367 581 30 7470 12 1.40 6.9064 600 4.17 21.750 87 4 7700 12 1.40 6.9056 600 3.60 25.207 3403 135 8000 12 1.40 4.1050 600 3.20 28.310 1189 42 8260 12 1.40 4.1045 600 2.89 31.356 1411 45 8480 12 1.40 3.9040 600 2.57 35.214 493 14 8500 12 1.40 3.9035 558 2.08 40.578 1826 45 8500 12 1.70 2.2031 600 1.99 45.571 319 7 8500 12 1.70 2.2028 456 1.40 49.247 7387 150 8500 12 0.80 2.2025 513 1.40 55.307 7743 140 8500 12 0.80 2.2023 371 0.90 62.250 249 4 8500 12 0.80 0.8020 418 0.90 69.911 3915 56 8500 11 0.80 0.80

    Technical dataData overview

    42

  • g500-H600, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW45 600 2.95 31.197 49136 1575 8470 13 1.40 4.1040 600 2.63 35.037 8584 245 8500 13 1.40 4.1035 600 2.31 39.925 264106 6615 8500 13 0.80 4.1032 600 2.11 43.676 49136 1125 8500 13 0.80 4.1029 600 1.88 49.051 8584 175 8500 12 0.80 4.1025 600 1.65 55.710 24568 441 8500 13 0.80 2.6022 600 1.47 62.566 21460 343 8500 12 0.80 2.3021 600 1.35 68.244 3071 45 8500 13 0.80 2.3018 600 1.20 76.643 1073 14 8500 12 0.80 2.3016 600 1.04 88.826 251822 2835 8500 13 0.80 2.2014 600 0.92 99.757 43993 441 8500 12 0.80 1.7013 600 0.83 110.491 104414 945 8500 13 0.80 1.7011 600 0.74 124.088 18241 147 8500 12 0.80 1.7010 600 0.64 142.988 135124 945 8500 13 0.80 0.809 600 0.57 160.585 23606 147 8500 12 0.80 0.808 600 0.53 173.536 273319 1575 8500 13 0.80 0.807 600 0.47 194.892 95497 490 8500 12 0.80 0.80

    g500-H850, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW445 306 14.69 3.147 1734 551 5070 16 3.80 13.20321 379 13.11 4.362 663 152 5610 15 3.80 13.20261 430 12.09 5.368 102 19 5980 14 3.80 13.20236 551 14.01 5.946 1207 203 6170 13 3.80 13.20211 578 13.13 6.644 578 87 6390 13 3.80 13.20170 615 11.28 8.241 923 112 6830 13 3.80 13.20152 649 10.65 9.208 221 24 7070 12 2.60 13.20138 667 9.93 10.143 71 7 7280 12 2.10 13.20123 696 9.26 11.360 284 25 7550 12 2.10 13.20110 725 8.62 12.693 952 75 7810 12 2.10 13.2097 758 7.91 14.490 710 49 8140 12 2.10 13.2087 792 7.39 16.190 340 21 8420 12 2.10 13.2079 814 6.93 17.750 71 4 8660 12 2.10 6.9071 833 6.35 19.833 119 6 8970 12 1.40 6.9061 850 5.56 23.103 2911 126 9400 12 1.40 6.9054 850 4.98 25.815 697 27 9730 11 1.40 6.9049 850 4.54 28.315 4757 168 10000 11 1.40 6.9044 850 4.06 31.639 1139 36 10400 11 1.40 6.9038 850 3.45 37.190 781 21 10900 11 1.40 3.9034 850 3.09 41.556 374 9 11000 11 1.40 3.9031 850 2.85 45.136 6319 140 11000 11 0.80 3.9028 850 2.55 50.433 1513 30 11000 11 0.80 3.90

    Technical dataData overview

    43

  • g500-H850, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW47 850 4.41 29.536 3692 125 10100 13 1.40 6.9042 850 3.95 33.003 12376 375 10500 12 1.40 6.9037 850 3.45 37.799 39689 1050 10900 13 1.40 5.2034 850 3.15 41.350 25844 625 11000 13 1.40 5.2030 850 2.82 46.204 86632 1875 11000 12 1.40 5.2027 850 2.47 52.743 1846 35 11000 13 1.40 5.2024 850 2.21 58.933 884 15 11000 12 1.40 5.2022 850 2.02 64.610 6461 100 11000 13 1.40 4.1019 850 1.81 72.193 10829 150 11000 12 1.40 4.1017 850 1.55 84.096 37843 450 11000 13 0.80 4.1015 850 1.39 93.966 63427 675 11000 12 0.80 2.3013 850 1.25 104.607 15691 150 11000 12 0.80 2.3012 850 1.12 116.884 26299 225 11000 12 0.80 2.3010 850 0.96 135.373 10153 75 11000 12 0.80 1.709 850 0.86 151.262 34034 225 11000 12 0.80 1.709 850 0.79 164.294 82147 500 11000 12 0.80 1.708 850 0.71 183.577 137683 750 11000 12 0.80 1.707 850 0.63 207.675 8307 40 11000 12 0.80 0.806 850 0.56 232.050 4641 20 11000 12 0.80 0.80

    Technical dataData overview

    44

  • g500-H1500, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW374 775 31.29 3.743 1647 440 8500 14 6.40 20.30294 924 29.34 4.758 2379 500 8900 13 6.40 20.30259 1021 28.57 5.400 27 5 9200 11 6.40 20.30224 1098 26.57 6.245 2623 420 9440 13 3.80 20.30204 1157 25.47 6.864 858 125 9690 11 6.40 20.30184 1217 24.22 7.592 949 125 9970 10 6.40 20.30155 1320 22.14 9.010 946 105 10500 10 3.80 20.30136 1380 20.31 10.267 154 15 10900 10 3.80 20.30123 1400 18.63 11.356 511 45 11200 10 3.80 20.30113 1420 17.36 12.362 1298 105 11400 10 3.80 20.30102 1430 15.80 13.673 4307 315 11800 10 3.80 20.3092 1440 14.36 15.156 682 45 12100 10 3.80 20.3084 1450 13.07 16.763 2263 135 12500 10 3.80 20.3068 1500 11.04 20.533 308 15 13200 10 2.10 13.2062 1500 9.98 22.711 1022 45 13600 10 2.10 13.2056 1500 9.09 24.933 374 15 13900 10 2.10 13.2051 1500 8.22 27.578 1241 45 14300 9 2.10 13.2043 1342 6.29 32.267 484 15 15000 10 1.40 6.9039 1485 6.29 35.689 1606 45 15400 9 1.40 6.9036 1364 5.26 39.160 979 25 15800 10 1.40 6.9032 1500 5.23 43.313 6497 150 16300 9 1.40 6.9028 1184 3.61 49.500 99 2 16900 10 1.40 3.9026 1309 3.61 54.750 219 4 17000 9 1.40 3.90

    Technical dataData overview

    45

  • g500-H1500, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW35 1500 5.68 40.517 2431 60 16000 11 2.60 7.4031 1500 5.13 44.814 16133 360 16400 10 2.60 7.4028 1500 4.61 49.867 748 15 17000 10 1.40 7.4025 1500 4.12 55.851 20944 375 17000 10 1.40 7.4023 1500 3.73 61.774 69496 1125 17000 10 1.40 7.4020 1500 3.23 71.238 1496 21 17000 10 1.40 5.2018 1500 2.92 78.794 4964 63 17000 10 1.40 5.2016 1500 2.64 87.267 1309 15 17000 10 1.40 5.2015 1500 2.38 96.522 8687 90 17000 10 1.40 5.2012 1500 2.03 113.585 15334 135 17000 10 1.40 5.2011 1500 1.83 125.632 50881 405 17000 10 1.40 4.1010 1500 1.65 139.211 12529 90 17000 10 1.40 4.109 1500 1.49 153.976 83147 540 17000 10 1.40 2.308 1500 1.26 182.844 8228 45 17000 10 0.80 2.307 1500 1.14 202.237 27302 135 17000 10 0.80 2.306 1500 1.04 221.907 16643 75 17000 10 0.80 2.306 1500 0.94 245.442 110449 450 17000 10 0.80 2.305 1500 0.82 280.500 561 2 17000 10 0.80 1.705 1500 0.74 310.250 1241 4 17000 10 0.80 1.70

    g500-H3000, 2-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW311 1360 45.71 4.496 1911 425 9600 12 11.00 20.30237 1610 41.22 5.902 301 51 10200 12 11.00 20.30221 1910 45.49 6.344 793 125 10500 10 11.00 20.30201 2025 43.91 6.968 871 125 11000 9 11.00 20.30168 2155 39.11 8.327 2623 315 11400 9 11.00 20.30153 2225 36.76 9.146 2881 315 11600 9 11.00 20.30140 2300 34.74 10.005 3752 375 12000 9 11.00 20.30121 2400 31.21 11.619 244 21 12600 9 3.80 20.30110 2475 29.30 12.762 268 21 13000 9 3.80 20.3098 2530 26.86 14.233 427 30 13400 9 6.40 20.3090 2610 25.23 15.633 469 30 13800 9 6.40 20.3075 2750 22.16 18.752 5063 270 14600 9 3.80 20.3068 2815 20.65 20.596 5561 270 15100 9 3.80 20.3061 2900 19.02 23.044 1037 45 15600 9 2.60 20.3055 2965 17.70 25.311 1139 45 16000 8 2.60 20.3047 3000 15.20 29.822 1342 45 16900 9 2.10 13.2043 3000 13.84 32.756 1474 45 17400 8 2.10 13.2039 3000 12.53 36.193 5429 150 17900 9 1.40 13.2035 3000 11.40 39.753 5963 150 18500 8 1.40 13.2031 1598 5.28 45.750 183 4 19300 9 1.40 6.9028 1755 5.28 50.250 201 4 19800 8 1.40 6.90

    Technical dataData overview

    46

  • g500-H3000, 3-stageOutput speed Max. output tor-

    queMax. drive

    powerRatio Number of teeth Max. radial force Backlash Rated power

    Standard Motorn2 M2,max P1,max i zg zt Frad,max

    20 % rpm Nm kW N arcmin kW kW30 2830 9.20 47.186 44591 945 19500 9 2.60 13.2027 2910 8.61 51.828 48977 945 20000 9 2.60 13.2026 2950 8.42 53.770 7259 135 20000 9 2.60 13.2024 3000 7.79 59.059 7973 135 20000 9 2.60 13.2022 3000 7.11 64.744 61183 945 20000 9 2.10 13.2020 3000 6.47 71.112 67201 945 20000 9 2.10 13.2018 3000 5.80 79.375 32147 405 20000 9 2.60 7.4016 3000 5.28 87.183 35309 405 20000 9 2.60 7.4013 3000 4.28 107.541 14518 135 20000 9 1.40 6.9012 3000 3.90 118.119 15946 135 20000 9 1.40 6.9011 3000 3.52 130.585 17629 135 20000 9 1.40 6.9010 3000 3.21 143.430 19363 135 20000 9 1.40 6.908 3000 2.72 168.993 22814 135 20000 9 1.40 4.108 3000 2.48 185.615 25058 135 20000 9 1.40 4.107 3000 2.24 205.096 92293 450 20000 9 1.40 4.106 3000 2.04 225.269 101371 450 20000 9 1.40 4.105 3000 1.78 259.250 1037 4 20000 9 1.40 3.905 3000 1.62 284.750 1139 4 20000 9 1.40 2.30

    Technical dataData overview

    47

  • Radial forces and axial forces

    Permissible radial forceThe calculation of the permissible radial force must take account of the additional load factorfw.

    Frad, perm = fw x Frad,max

    Permissible axial forceIf there is no radial force, the maximum axial force is 50% of the value in the table Frad,maxFax, zul = 0.5 x Frad,max.

    Application of forcesl

    x

    Fax

    Frad

    Additional load factor fw on the drive shaft

    0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1

    1.4

    1.2

    1

    0.8

    0.6

    0.4

    x/l

    fw

    Technical dataRadial forces and axial forces

    48

  • The values given in the tables refer to the centre shaft end force application point and areminimum values calculated according to the most unfavourable conditions (force applicationangle, mounting position, direction of rotation). The values were calculated with a loadcapacity of c= 1.3 and an input speed of 1400 rpm.

    In case of different operating conditions, considerably higher forces can betransmitted. Please contact Lenze.

    Max. radial force, gearbox with foot (VBR)Gearbox Output speed n2 [rpm]

    1000 630 400 250 160 100 63 40 25 16 Max. radial force Frad,max [N]

    g500-H45 300 400 600 700 800 900 1100 1400 1500 1500g500-H100 800 1000 1200 1500 1800 2100 2600 2700 2700 2700g500-H140 1000 1440 1800 2200 2500 3000 3300 3700 4100 4200g500-H210 1100 1600 2000 2400 2800 3,400 3900 3900 4400 4800g500-H320 1500 1,900 2200 2600 3000 3500 4100 4800 5600 5700g500-H450 1,900 2200 2500 3000 3500 4100 4700 5500 6600 7100g500-H600 3000 3800 4700 5400 6090 6920 7850 8500 8500 8500g500-H850 3600 4600 5600 6500 7500 8500 9500 10700 11000 11000g500-H1500 5000 6600 8000 9200 10400 12000 13700 15600 17000 17000g500-H3000 5500 7100 8700 10000 11500 13500 15600 18000 20000 20000

    Reinforced bearings

    Gearbox Output speed n2 [rpm]

    1000 630 400 250 160 100 63 40 25 16 Max. radial force Frad,max [N]

    g500-H100 1000 1200 1500 1800 2200 2700 3200 3300 3300 3300g500-H140 1300 1800 2300 2700 3100 3700 4100 4600 5100 5300g500-H210 1400 2000 2500 3000 3500 4200 4900 4900 5500 6000g500-H320 1,900 2400 2800 3300 3800 4400 5100 6000 7000 7100g500-H450 2400 2700 3200 3800 4300 5100 5900 6900 8300 8900g500-H600 4900 6300 7700 8900 9700 10400 10900 11300 11700 12000g500-H850 6300 8200 10000 11500 12600 13500 14200 14800 15200 15600g500-H1500 7100 9300 11300 13000 17000 18200 19100 19800 20500 21000g500-H3000 8200 10700 13000 15000 21000 22100 23200 24000 25000 25000

    Max. radial force, gearbox with/without foot with threaded pitch circle/flange (VAR/VCR/VAK/VCK)Gearbox Output speed n2 [rpm]

    1000 630 400 250 160 100 63 40 25 16 Max. radial force Frad,max [N]

    g500-H45 300 400 600 700 800 900 1100 1400 1500 1500g500-H100 800 1000 1200 1500 1700 1700 1700 1700 1700 1700g500-H140 1000 1400 1800 2200 2500 2600 2600 2600 2600 2600g500-H210 1200 1600 2000 2400 2800 3000 3000 3000 3000 3000g500-H320 1500 1,900 2200 2600 3000 3500 3600 3600 3600 3600g500-H450 1,900 2200 2600 3000 3500 4100 4400 4400 4400 4400g500-H600 3000 3800 4700 5400 6000 6000 6000 6000 6000 6000g500-H850 3300 4300 5300 6050 6950 7800 7800 7800 7800 7800g500-H1500 5000 6500 8000 9200 10400 10500 10500 10500 10500 10500g500-H3000 5500 7100 8700 10000 11500 12500 12500 12500 12500 12500

    Technical dataRadial forces and axial forces

    49

  • Reinforced bearings

    Gearbox Output speed n2 [rpm]

    1000 630 400 250 160 100 63 40 25 16 Max. radial force Frad,max [N]

    g500-H100 1000 1200 1500 1700 1700 1700 1700 1700 1700 1700g500-H140 1300 1800 2300 2600 2600 2600 2600 2600 2600 2600g500-H210 1400 2000 2500 3000 3000 3000 3000 3000 3000 3000g500-H320 1,900 2400 2800 3300 3600 3600 3600 3600 3600 3600g500-H450 2400 2700 3200 3800 4300 4400 4400 4400 4400 4400g500-H600 3300 4300 5200 6000 6000 6000 6000 6000 6000 6000g500-H850 4300 5600 6800 7800 7800 7800 7800 7800 7800 7800g500-H1500 5700 7500 9100 10500 10500 10500 10500 10500 10500 10500g500-H3000 6800 8900 10900 12500 12500 12500 12500 12500 12500 12500

    Max. radial force, gearbox with reinforced flange (VCP)Gearbox Output speed n2 [rpm]

    1000 630 400 250 160 100 63 40 25 16 Max. radial force Frad,max [N]

    g500-H100 1,900 2400 2900 3330 3650 3890 4060 4160 4240 4280g500-H140 3000 3500 4000 5510 5950 6270 6480 6620 6710 6770g500-H210 3,400 4000 5000 6170 6670 7060 7330 7500 7620 7700g500-H320 3900 4500 6000 7040 7690 8210 8570 8810 8970 9080g500-H450 4300 5200 6400 7810 8550 9160 9590 9880 10100 10200

    Technical dataRadial forces and axial forces

    50

  • Selection tables

    Notes on the selection tablesThe selection tables represent the available combinations of gearbox, number of stages, ratioand motor for the mounting position A. They only serve as a rough overview.

    The following legend shows the layout of the selection tables:

    Example ExplanationInverter mains connection 400 V, self-ventilated Voltag of inverter mains connection, motor cooling type0.8 kW Rated motor power

    Inverter operation Geared motor Number ofstages

    M2 n2 c M2,max n2,th J i g500- MCA

    Nm rpm Nm rpm kgcm2

    9.0 859 5.8 45.0 859 2.735 4.600 H100 10I40- 2 10.0 765 5.4 50.0 708 2.829 5.167 H100 10I40- 2 11.0 671 5.1 57.0 671 2.636 5.887 H100 10I40- 2 12.0 613 4.8 62.0 613 2.607 6.440 H100 10I40- 2

    Number of

    gear stages

    Product name of the motor Gearbox product name Ratio Moment of inertia

    With feedback, without brake

    Thermal output speed Max. permissible acceleration torque

    Inverter-dependent

    Load capacity of the gearboxc is the ratio of permissible rated torque of the gearbox to the rated torque of the motor (converted to the drivenshaft). c must always be higher than the application factor detected for the application k.

    = > h

    2,zul

    1,N Getr

    Mc k

    M i

    Output speed Output torque

    Technical dataSelection tables

    51

  • Inverter mains connection400 V,Self-ventilated

    0.8kWInverter operation Geared motor Number of

    stagesM2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 9.0 859 5.8 45.0 859 2.735 4.600 H100 10I40- 2

    10.0 765 5.4 50.0 708 2.829 5.167 H100 10I40- 211.0 671 5.1 57.0 671 2.636 5.887 H100 10I40- 212.0 613 4.8 62.0 613 2.607 6.440 H100 10I40- 214.0 558 4.5 69.0 553 2.685 7.086 H100 10I40- 214.0 543 5.4 71.0 504 2.905 7.269 H140 10I40- 216.0 494 5.5 78.0 494 2.611 8.000 H140 10I40- 216.0 481 4.2 80.0 481 2.548 8.214 H100 10I40- 218.0 438 4.8 88.0 438 2.742 9.029 H140 10I40- 218.0 436 4.0 88.0 436 2.605 9.068 H100 10I40- 219.0 403 4.8 95.0 403 2.555 9.800 H140 10I40- 220.0 393 3.7 98.0 393 2.513 10.063 H100 10I40- 222.0 348 3.3 100 348 2.575 11.360 H100 10I40- 222.0 342 4.1 112 342 2.640 11.554 H140 10I40- 223.0 329 5.8 116 329 2.897 12.000 H210 10I40- 225.0 313 3.9 123 313 2.610 12.640 H140 10I40- 225.0 312 3.0 100 312 2.532 12.653 H100 10I40- 227.0 289 5.5 133 289 2.775 13.673 H210 10I40- 227.0 283 3.6 135 283 2.601 13.957 H140 10I40- 228.0 273 2.6 100 273 2.529 14.490 H100 10I40- 230.0 258 4.9 149 258 2.765 15.306 H210 10I40- 230.0 255 2.4 100 255 2.502 15.500 H100 10I40- 231.0 245 3.2 140 245 2.550 16.122 H140 10I40- 233.0 236 4.7 163 236 2.692 16.750 H210 10I40- 234.0 223 2.1 100 223 2.500 17.750 H100 10I40- 235.0 222 2.9 140 222 2.545 17.802 H140 10I40- 236.0 211 4.2 182 211 2.685 18.750 H210 10I40- 238.0 203 1.9 100 203 2.469 19.486 H100 10I40- 238.0 200 2.7 140 200 2.514 19.750 H140 10I40- 240.0 191 5.4 201 191 2.721 20.731 H320 10I40- 242.0 181 3.6 210 181 2.582 21.802 H210 10I40- 242.0 181 2.4 140 181 2.511 21.808 H140 10I40- 243.0 177 1.7 100 177 2.467 22.314 H100 10I40- 246.0 166 5.0 230 166 2.609 23.754 H320 10I40- 247.0 162 3.2 210 162 2.579 24.405 H210 10I40- 248.0 159 2.1 140 159 2.477 24.829 H140 10I40- 249.0 157 1.5 100 157 2.448 25.095 H100 10I40- 252.0 146 5.0 262 146 2.600 26.983 H320 10I40- 253.0 146 3.3 210 146 2.534 27.119 H210 10I40- 253.0 144 2.2 140 144 2.474 27.415 H140 10I40- 256.0 137 1.5 100 137 2.447 28.738 H100 10I40- 257.0 134 4.6 287 134 2.552 29.548 H320 10I40- 259.0 130 2.9 210 130 2.532 30.357 H210 10I40- 262.0 124 1.9 140 124 2.453 31.976 H140 10I40- 265.0 118 4.0 320 118 2.546 33.564 H320 10I40- 268.0 113 2.5 210 113 2.485 35.095 H210 10I40- 269.0 112 1.7 140 112 2.451 35.308 H140 10I40- 269.0 111 5.4 346 111 2.644 35.689 H450 10I40- 274.0 103 2.8 251 103 2.495 38.238 H320 10I40- 276.0 101 2.3 210 101 2.483 39.286 H210 10I40- 2

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    52

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 76.0 98.9 5.7 382 98.9 3.162 39.925 H600 10I40- 378.0 97.9 5.3 391 97.9 2.638 40.333 H450 10I40- 283.0 92.7 2.0 183 92.7 2.462 42.593 H210 10I40- 283.0 91.0 1.8 210 91.0 2.527 43.390 H210 10I40- 383.0 90.4 5.2 417 90.4 3.058 43.676 H600 10I40- 384.0 91.2 3.5 322 91.2 2.579 43.313 H450 10I40- 284.0 90.9 3.1 285 90.9 2.492 43.436 H320 10I40- 284.0 89.5 3.9 422 89.5 2.760 44.124 H450 10I40- 388.0 87.5 5.9 438 87.5 2.931 45.136 H850 10I40- 290.0 85.1 2.2 218 85.1 2.470 46.407 H320 10I40- 290.0 83.6 2.9 320 83.6 2.534 47.276 H320 10I40- 393.0 82.8 2.0 206 82.8 2.461 47.679 H210 10I40- 293.0 81.3 1.9 210 81.3 2.526 48.571 H210 10I40- 394.0 80.5 5.3 469 80.5 3.050 49.051 H600 10I40- 395.0 80.7 3.5 366 80.7 2.575 48.950 H450 10I40- 295.0 79.2 3.9 450 79.2 2.756 49.867 H450 10I40- 396.0 80.2 4.4 456 80.2 2.593 49.247 H600 10I40- 298.0 78.3 5.9 489 78.3 2.922 50.433 H850 10I40- 2102 74.9 2.2 248 74.9 2.467 52.715 H320 10I40- 2103 73.6 2.6 320 73.6 2.531 53.703 H320 10I40- 3106 72.1 2.3 273 72.1 2.516 54.750 H450 10I40- 2106 71.1 1.6 210 71.1 2.488 55.529 H210 10I40- 3106 70.9 4.6 532 70.9 2.864 55.710 H600 10I40- 3107 71.4 4.4 513 71.4 2.587 55.307 H600 10I40- 2108 70.0 3.4 450 70.0 2.651 56.469 H450 10I40- 3116 65.3 2.3 320 65.3 2.493 60.502 H320 10I40- 3118 63.9 3.1 450 63.9 2.619 61.774 H450 10I40- 3119 63.5 1.5 210 63.5 2.488 62.160 H210 10I40- 3120 63.8 2.3 307 63.8 2.514 61.875 H450 10I40- 2120 63.1 4.1 598 63.1 2.859 62.566 H600 10I40- 3121 63.5 2.8 371 63.5 2.525 62.250 H600 10I40- 2130 57.9 3.8 600 57.9 2.751 68.244 H600 10I40- 3131 57.5 2.0 320 57.5 2.491 68.726 H320 10I40- 3133 56.6 2.8 450 56.6 2.617 69.813 H450 10I40- 3136 56.5 2.8 418 56.5 2.521 69.911 H600 10I40- 2136 55.6 1.3 210 55.6 2.460 71.026 H210 10I40- 3146 51.5 3.4 600 51.5 2.748 76.643 H600 10I40- 3148 51.0 1.8 320 51.0 2.462 77.387 H320 10I40- 3151 50.1 2.5 450 50.1 2.556 78.794 H450 10I40- 3152 49.7 1.1 210 49.7 2.459 79.507 H210 10I40- 3161 47.0 4.8 804 47.0 2.951 84.096 H850 10I40- 3168 44.9 1.7 320 44.9 2.461 87.906 H320 10I40- 3170 44.5 3.2 600 44.5 2.617 88.826 H600 10I40- 3170 44.4 2.4 450 44.4 2.555 89.048 H450 10I40- 3176 42.8 1.1 210 42.8 2.442 92.205 H210 10I40- 3180 42.0 4.3 850 42.0 2.949 93.966 H850 10I40- 3184 40.9 2.2 450 40.9 2.518 96.522 H450 10I40- 3191 39.6 2.9 600 39.6 2.616 99.757 H600 10I40- 3192 39.3 1.5 320 39.3 2.444 100.462 H320 10I40- 3197 38.3 1.0 210 38.3 2.442 103.214 H210 10I40- 3200 37.8 3.9 850 37.8 2.805 104.607 H850 10I40- 3208 36.2 2.0 450 36.2 2.517 109.083 H450 10I40- 3

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    53

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 211 35.7 2.6 600 35.7 2.557 110.491 H600 10I40- 3218 34.6 1.3 320 34.6 2.443 114.118 H320 10I40- 3223 33.8 3.5 850 33.8 2.803 116.884 H850 10I40- 3232 32.6 1.8 450 32.6 2.479 121.342 H450 10I40- 3237 31.8 2.3 600 31.8 2.556 124.088 H600 10I40- 3259 29.2 3.0 850 29.2 2.653 135.373 H850 10I40- 3262 28.8 1.6 450 28.8 2.478 137.133 H450 10I40- 3273 27.6 2.0 600 27.6 2.498 142.988 H600 10I40- 3289 26.1 2.7 850 26.1 2.652 151.262 H850 10I40- 3299 25.3 1.4 450 25.3 2.454 156.274 H450 10I40- 3307 24.6 1.8 600 24.6 2.498 160.585 H600 10I40- 3314 24.0 2.5 850 24.0 2.586 164.294 H850 10I40- 3332 22.8 1.7 600 22.8 2.472 173.536 H600 10I40- 3338 22.4 1.2 450 22.4 2.454 176.611 H450 10I40- 3349 21.6 3.9 1500 21.6 3.078 182.844 H1500 10I40- 3351 21.5 2.2 850 21.5 2.585 183.577 H850 10I40- 3373 20.3 1.5 600 20.3 2.471 194.892 H600 10I40- 3387 19.5 3.5 1500 19.5 3.076 202.237 H1500 10I40- 3397 19.0 2.0 850 19.0 2.520 207.675 H850 10I40- 3424 17.8 3.2 1500 17.8 2.903 221.907 H1500 10I40- 3444 17.0 1.8 850 17.0 2.520 232.050 H850 10I40- 3469 16.1 2.9 1500 16.1 2.903 245.442 H1500 10I40- 3536 14.1 2.6 1500 14.1 2.725 280.500 H1500 10I40- 3593 12.7 2.3 1500 12.7 2.725 310.250 H1500 10I40- 3

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    54

  • 1.4kWInverter operation Geared motor Number of

    stagesM2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 22.0 590 5.2 126 590 20.730 3.389 H210 14L20- 230.0 430 4.3 143 430 20.177 4.648 H210 14L20- 230.0 430 5.7 189 430 20.015 4.648 H320 14L20- 236.0 358 4.0 159 358 20.443 5.583 H210 14L20- 240.0 329 5.2 227 329 20.855 6.083 H320 14L20- 241.0 320 3.5 158 320 20.384 6.250 H210 14L20- 245.0 289 4.4 218 289 20.709 6.910 H320 14L20- 250.0 261 3.1 172 261 20.025 7.657 H210 14L20- 254.0 240 4.2 249 240 20.244 8.343 H320 14L20- 256.0 233 2.8 171 233 19.993 8.571 H210 14L20- 257.0 227 5.9 370 227 21.604 8.800 H450 14L20- 262.0 211 3.5 238 211 20.166 9.477 H320 14L20- 264.0 204 2.6 182 204 19.789 9.799 H210 14L20- 265.0 201 5.4 384 201 21.009 9.965 H450 14L20- 269.0 187 3.5 265 187 19.923 10.677 H320 14L20- 270.0 187 2.5 189 187 19.713 10.720 H210 14L20- 273.0 178 5.0 400 178 20.937 11.262 H450 14L20- 276.0 171 3.2 271 171 19.825 11.680 H320 14L20- 278.0 167 2.2 186 167 19.697 12.000 H210 14L20- 279.0 165 2.9 254 165 19.876 12.128 H320 14L20- 280.0 162 4.7 411 162 20.763 12.320 H450 14L20- 286.0 151 2.8 262 151 19.786 13.268 H320 14L20- 289.0 146 2.1 201 146 19.575 13.673 H210 14L20- 290.0 144 4.3 426 144 20.406 13.905 H450 14L20- 290.0 144 5.8 578 144 20.947 13.920 H600 14L20- 297.0 134 2.8 294 134 19.644 14.898 H320 14L20- 299.0 131 1.8 200 131 19.565 15.306 H210 14L20- 2102 127 3.9 441 127 20.369 15.714 H450 14L20- 2103 127 5.3 600 127 20.540 15.810 H600 14L20- 2109 119 1.8 210 119 19.492 16.750 H210 14L20- 2110 118 2.3 281 118 19.620 16.923 H320 14L20- 2111 117 3.7 450 117 20.149 17.033 H450 14L20- 2115 113 4.7 600 113 20.483 17.755 H600 14L20- 2119 110 2.4 313 110 19.538 18.250 H320 14L20- 2122 107 1.6 210 107 19.485 18.750 H210 14L20- 2125 104 3.3 448 104 20.125 19.250 H450 14L20- 2126 103 4.3 600 103 20.238 19.367 H600 14L20- 2129 101 5.9 833 101 21.524 19.833 H850 14L20- 2135 96.5 2.0 299 96.5 19.521 20.731 H320 14L20- 2141 92.0 3.9 600 92.0 20.200 21.750 H600 14L20- 2144 90.2 2.8 450 90.2 19.727 22.170 H450 14L20- 2150 86.6 5.1 850 86.6 20.853 23.103 H850 14L20- 2163 79.8 2.5 450 79.8 19.712 25.056 H450 14L20- 2164 79.3 3.3 600 79.3 19.779 25.207 H600 14L20- 2168 77.5 4.6 850 77.5 20.815 25.815 H850 14L20- 2179 72.5 2.5 450 72.5 19.589 27.578 H450 14L20- 2184 70.6 3.3 600 70.6 19.757 28.310 H600 14L20- 2184 70.6 4.6 850 70.6 20.341 28.315 H850 14L20- 2189 67.7 4.1 850 67.7 21.923 29.536 H850 14L20- 3200 64.1 2.7 600 64.1 20.308 31.197 H600 14L20- 3203 64.2 2.2 450 64.2 19.579 31.167 H450 14L20- 2

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    55

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 204 63.8 2.9 600 63.8 19.623 31.356 H600 14L20- 2206 63.2 4.1 850 63.2 20.316 31.639 H850 14L20- 2210 62.0 5.5 1147 62.0 21.563 32.267 H1500 14L20- 2211 60.6 3.7 850 60.6 21.901 33.003 H850 14L20- 3224 57.1 2.4 600 57.1 20.293 35.037 H600 14L20- 3229 56.8 2.6 600 56.8 19.608 35.214 H600 14L20- 2232 56.0 5.5 1269 56.0 21.525 35.689 H1500 14L20- 2235 55.3 5.7 1342 55.3 24.577 36.193 H3000 14L20- 2242 53.8 3.5 850 53.8 19.919 37.190 H850 14L20- 2242 52.9 3.2 850 52.9 21.132 37.799 H850 14L20- 3255 51.1 4.6 1166 51.1 20.937 39.160 H1500 14L20- 2256 50.1 2.1 600 50.1 19.962 39.925 H600 14L20- 3258 50.3 5.7 1474 50.3 24.508 39.753 H3000 14L20- 2265 48.4 2.9 850 48.4 20.926 41.350 H850 14L20- 3270 48.1 3.2 850 48.1 19.904 41.556 H850 14L20- 2280 45.8 2.0 600 45.8 19.858 43.676 H600 14L20- 3282 46.2 4.6 1289 46.2 20.911 43.313 H1500 14L20- 2293 44.3 2.9 850 44.3 19.731 45.136 H850 14L20- 2296 43.3 2.9 850 43.3 20.915 46.204 H850 14L20- 3297 43.7 4.6 1364 43.7 22.743 45.750 H3000 14L20- 2314 40.8 1.9 600 40.8 19.850 49.051 H600 14L20- 3319 40.1 4.7 1500 40.1 24.163 49.867 H1500 14L20- 3322 40.4 3.7 1184 40.4 20.350 49.500 H1500 14L20- 2327 39.8 4.6 1498 39.8 22.700 50.250 H3000 14L20- 2328 39.7 2.6 850 39.7 19.722 50.433 H850 14L20- 2338 37.9 2.5 850 37.9 20.469 52.743 H850 14L20- 3356 36.5 3.7 1309 36.5 20.334 54.750 H1500 14L20- 2357 35.9 1.7 600 35.9 19.664 55.710 H600 14L20- 3358 35.8 4.2 1500 35.8 23.369 55.851 H1500 14L20- 3377 33.9 2.3 850 33.9 20.463 58.933 H850 14L20- 3396 32.4 3.8 1500 32.4 23.357 61.774 H1500 14L20- 3401 32.0 1.5 600 32.0 19.659 62.566 H600 14L20- 3414 31.0 2.1 850 31.0 20.192 64.610 H850 14L20- 3437 29.3 1.4 600 29.3 19.551 68.244 H600 14L20- 3456 28.1 3.3 1500 28.1 21.991 71.238 H1500 14L20- 3462 27.7 1.8 850 27.7 20.187 72.193 H850 14L20- 3491 26.1 1.2 600 26.1 19.548 76.643 H600 14L20- 3505 25.4 3.0 1500 25.4 21.983 78.794 H1500 14L20- 3538 23.8 1.6 850 23.8 19.751 84.096 H850 14L20- 3559 22.9 2.7 1500 22.9 21.407 87.267 H1500 14L20- 3602 21.3 1.4 850 21.3 19.749 93.966 H850 14L20- 3618 20.7 2.4 1500 20.7 21.402 96.522 H1500 14L20- 3670 19.1 1.3 850 19.1 19.605 104.607 H850 14L20- 3689 18.6 4.4 3000 18.6 23.808 107.541 H3000 14L20- 3727 17.6 2.1 1500 17.6 20.875 113.585 H1500 14L20- 3748 17.1 1.1 850 17.1 19.603 116.884 H850 14L20- 3756 16.9 4.0 3000 16.9 23.800 118.119 H3000 14L20- 3804 15.9 1.9 1500 15.9 20.872 125.632 H1500 14L20- 3836 15.3 3.6 3000 15.3 22.719 130.585 H3000 14L20- 3891 14.4 1.7 1500 14.4 20.270 139.211 H1500 14L20- 3918 13.9 3.3 3000 13.9 22.714 143.430 H3000 14L20- 3986 13.0 1.5 1500 13.0 20.268 153.976 H1500 14L20- 3

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    56

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 1082 11.8 2.8 3000 11.8 21.461 168.993 H3000 14L20- 31171 10.9 1.3 1500 10.9 19.878 182.844 H1500 14L20- 31188 10.8 2.5 3000 10.8 21.457 185.615 H3000 14L20- 31295 9.9 1.2 1500 9.9 19.876 202.237 H1500 14L20- 31313 9.8 2.3 3000 9.8 20.867 205.096 H3000 14L20- 31421 9.0 1.1 1500 9.0 19.703 221.907 H1500 14L20- 31442 8.9 2.1 3000 8.9 20.865 225.269 H3000 14L20- 31572 8.1 1.0 1500 8.1 19.703 245.442 H1500 14L20- 31660 7.7 1.8 3000 7.7 20.307 259.250 H3000 14L20- 31823 7.0 1.7 3000 7.0 20.305 284.750 H3000 14L20- 3

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    57

  • 1.7kWInverter operation Geared motor Number of

    stagesM2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 13.0 1240 4.7 82.0 1090 9.202 3.267 H140 13I41- 213.0 1208 3.4 62.0 1003 8.825 3.354 H100 13I41- 217.0 904 3.9 94.0 853 8.836 4.480 H140 13I41- 218.0 880 2.9 72.0 790 8.635 4.600 H100 13I41- 218.0 871 5.7 143 778 9.277 4.648 H210 13I41- 220.0 784 2.7 75.0 622 8.729 5.167 H100 13I41- 222.0 725 5.3 159 546 9.543 5.583 H210 13I41- 222.0 706 3.3 103 706 8.659 5.733 H140 13I41- 223.0 688 2.6 81.0 688 8.536 5.887 H100 13I41- 224.0 648 4.7 158 477 9.484 6.250 H210 13I41- 224.0 646 3.1 105 646 8.609 6.272 H140 13I41- 225.0 629 2.4 83.0 629 8.507 6.440 H100 13I41- 227.0 586 5.8 215 449 9.809 6.910 H320 13I41- 227.0 572 2.3 86.0 490 8.585 7.086 H100 13I41- 228.0 557 2.7 106 442 8.805 7.269 H140 13I41- 230.0 529 4.2 172 446 9.125 7.657 H210 13I41- 231.0 506 2.7 117 506 8.511 8.000 H140 13I41- 232.0 493 2.1 92.0 493 8.448 8.214 H100 13I41- 232.0 485 5.5 249 431 9.344 8.343 H320 13I41- 233.0 473 3.7 171 390 9.093 8.571 H210 13I41- 235.0 449 2.4 117 389 8.642 9.029 H140 13I41- 235.0 447 2.0 96.0 441 8.505 9.068 H100 13I41- 237.0 427 4.7 238 368 9.266 9.477 H320 13I41- 238.0 413 2.4 125 413 8.455 9.800 H140 13I41- 238.0 413 3.4 182 368 8.889 9.799 H210 13I41- 239.0 403 1.8 99.0 403 8.413 10.063 H100 13I41- 241.0 379 4.6 265 355 9.023 10.677 H320 13I41- 242.0 378 3.3 189 345 8.813 10.720 H210 13I41- 244.0 357 1.6 100 333 8.475 11.360 H100 13I41- 245.0 351 2.1 128 349 8.540 11.554 H140 13I41- 245.0 347 4.3 271 332 8.925 11.680 H320 13I41- 247.0 338 2.9 186 302 8.797 12.000 H210 13I41- 247.0 334 3.9 254 303 8.976 12.128 H320 13I41- 249.0 320 1.9 132 320 8.510 12.640 H140 13I41- 249.0 320 1.5 100 320 8.432 12.653 H100 13I41- 251.0 305 3.7 262 285 8.886 13.268 H320 13I41- 253.0 296 2.7 201 296 8.675 13.673 H210 13I41- 254.0 291 5.7 426 285 9.506 13.905 H450 13I41- 254.0 290 1.8 136 285 8.501 13.957 H140 13I41- 256.0 280 1.3 100 269 8.429 14.490 H100 13I41- 258.0 272 3.7 294 272 8.744 14.898 H320 13I41- 259.0 265 2.4 200 265 8.665 15.306 H210 13I41- 260.0 261 1.2 100 261 8.402 15.500 H100 13I41- 261.0 258 5.2 441 249 9.469 15.714 H450 13I41- 263.0 251 1.6 140 251 8.450 16.122 H140 13I41- 265.0 242 2.3 210 242 8.592 16.750 H210 13I41- 266.0 239 3.1 281 239 8.720 16.923 H320 13I41- 266.0 238 4.9 450 238 9.249 17.033 H450 13I41- 269.0 228 1.0 100 228 8.400 17.750 H100 13I41- 269.0 228 1.5 140 228 8.445 17.802 H140 13I41- 271.0 222 3.2 313 222 8.638 18.250 H320 13I41- 2

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    58

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 73.0 216 2.1 210 216 8.585 18.750 H210 13I41- 275.0 210 4.3 448 210 9.225 19.250 H450 13I41- 275.0 209 5.7 600 209 9.338 19.367 H600 13I41- 277.0 205 1.3 140 205 8.414 19.750 H140 13I41- 280.0 195 2.7 299 195 8.621 20.731 H320 13I41- 284.0 186 5.1 600 186 9.300 21.750 H600 13I41- 285.0 186 1.8 210 186 8.482 21.802 H210 13I41- 285.0 186 1.2 140 186 8.411 21.808 H140 13I41- 286.0 183 3.8 450 183 8.827 22.170 H450 13I41- 290.0 175 6.0 717 175 9.953 23.103 H850 13I41- 292.0 171 2.5 320 171 8.509 23.754 H320 13I41- 295.0 166 1.6 210 166 8.479 24.405 H210 13I41- 297.0 162 3.3 450 162 8.812 25.056 H450 13I41- 298.0 161 4.4 600 161 8.879 25.207 H600 13I41- 2100 157 6.0 801 157 9.915 25.815 H850 13I41- 2105 150 2.5 320 150 8.500 26.983 H320 13I41- 2105 149 1.6 210 149 8.434 27.119 H210 13I41- 2107 147 3.4 450 147 8.689 27.578 H450 13I41- 2110 143 4.5 600 143 8.857 28.310 H600 13I41- 2110 143 5.8 780 143 9.441 28.315 H850 13I41- 2115 137 2.3 320 137 8.452 29.548 H320 13I41- 2118 133 1.5 210 133 8.432 30.357 H210 13I41- 2119 130 3.6 600 130 9.408 31.197 H600 13I41- 3121 130 3.0 450 130 8.679 31.167 H450 13I41- 2122 129 4.0 600 129 8.723 31.356 H600 13I41- 2123 128 5.7 850 128 9.416 31.639 H850 13I41- 2130 121 2.0 320 121 8.446 33.564 H320 13I41- 2134 116 3.2 600 116 9.393 35.037 H600 13I41- 3137 115 3.6 600 115 8.708 35.214 H600 13I41- 2139 114 2.7 450 114 8.544 35.689 H450 13I41- 2144 109 4.6 805 109 9.019 37.190 H850 13I41- 2144 107 4.2 850 107 10.232 37.799 H850 13I41- 3153 101 2.8 600 101 9.062 39.925 H600 13I41- 3157 100 2.6 450 100 8.538 40.333 H450 13I41- 2157 99.8 3.2 558 99.8 8.564 40.578 H600 13I41- 2158 97.9 3.9 850 97.9 10.026 41.350 H850 13I41- 3161 97.5 4.8 850 97.5 9.004 41.556 H850 13I41- 2167 92.7 2.6 600 92.7 8.958 43.676 H600 13I41- 3168 93.5 1.7 322 93.5 8.479 43.313 H450 13I41- 2169 91.8 1.9 450 91.8 8.660 44.124 H450 13I41- 3175 89.7 4.2 818 89.7 8.831 45.136 H850 13I41- 2177 88.9 3.1 600 88.9 8.555 45.571 H600 13I41- 2177 87.7 3.9 850 87.7 10.015 46.204 H850 13I41- 3188 82.6 2.6 600 82.6 8.950 49.051 H600 13I41- 3190 82.7 1.7 366 82.7 8.475 48.950 H450 13I41- 2191 82.2 2.2 456 82.2 8.493 49.247 H600 13I41- 2191 81.2 1.9 450 81.2 8.656 49.867 H450 13I41- 3196 80.3 3.9 850 80.3 8.822 50.433 H850 13I41- 2202 76.8 3.4 850 76.8 9.569 52.743 H850 13I41- 3213 72.7 2.3 600 72.7 8.764 55.710 H600 13I41- 3215 73.2 2.2 513 73.2 8.487 55.307 H600 13I41- 2216 71.7 1.7 450 71.7 8.551 56.469 H450 13I41- 3

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    59

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 225 68.7 3.1 850 68.7 9.563 58.933 H850 13I41- 3236 65.6 1.6 450 65.6 8.519 61.774 H450 13I41- 3239 64.7 2.1 600 64.7 8.759 62.566 H600 13I41- 3247 62.7 2.8 850 62.7 9.292 64.610 H850 13I41- 3261 59.3 1.9 600 59.3 8.651 68.244 H600 13I41- 3267 58.0 1.4 450 58.0 8.517 69.813 H450 13I41- 3272 56.9 4.5 1500 56.9 11.091 71.238 H1500 13I41- 3276 56.1 2.5 850 56.1 9.287 72.193 H850 13I41- 3293 52.8 1.7 600 52.8 8.648 76.643 H600 13I41- 3301 51.4 1.2 450 51.4 8.456 78.794 H450 13I41- 3301 51.4 4.1 1500 51.4 11.083 78.794 H1500 13I41- 3321 48.2 2.4 850 48.2 8.851 84.096 H850 13I41- 3340 45.6 1.6 600 45.6 8.517 88.826 H600 13I41- 3340 45.5 1.2 450 45.5 8.455 89.048 H450 13I41- 3359 43.1 2.1 850 43.1 8.849 93.966 H850 13I41- 3369 42.0 1.1 450 42.0 8.418 96.522 H450 13I41- 3381 40.6 1.4 600 40.6 8.516 99.757 H600 13I41- 3400 38.7 1.9 850 38.7 8.705 104.607 H850 13I41- 3417 37.1 1.0 450 37.1 8.417 109.083 H450 13I41- 3422 36.7 1.3 600 36.7 8.457 110.491 H600 13I41- 3434 35.7 3.1 1500 35.7 9.975 113.585 H1500 13I41- 3447 34.6 1.7 850 34.6 8.703 116.884 H850 13I41- 3474 32.6 1.1 600 32.6 8.456 124.088 H600 13I41- 3480 32.2 2.8 1500 32.2 9.972 125.632 H1500 13I41- 3517 29.9 1.5 850 29.9 8.553 135.373 H850 13I41- 3532 29.1 2.6 1500 29.1 9.370 139.211 H1500 13I41- 3578 26.8 1.3 850 26.8 8.552 151.262 H850 13I41- 3589 26.3 2.3 1500 26.3 9.368 153.976 H1500 13I41- 3628 24.7 1.2 850 24.7 8.486 164.294 H850 13I41- 3699 22.1 1.9 1500 22.1 8.978 182.844 H1500 13I41- 3702 22.1 1.1 850 22.1 8.485 183.577 H850 13I41- 3773 20.0 1.8 1500 20.0 8.976 202.237 H1500 13I41- 3848 18.3 1.6 1500 18.3 8.803 221.907 H1500 13I41- 3938 16.5 1.5 1500 16.5 8.803 245.442 H1500 13I41- 3

    1072 14.4 1.3 1500 14.4 8.625 280.500 H1500 13I41- 31186 13.1 1.1 1500 13.1 8.625 310.250 H1500 13I41- 3

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    60

  • 2.3kWInverter operation Geared motor Number of

    stagesM2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 18.0 1210 5.1 126 893 20.730 3.389 H210 14L41- 224.0 882 4.2 143 736 20.177 4.648 H210 14L41- 224.0 882 5.6 189 773 20.015 4.648 H320 14L41- 229.0 734 3.9 159 515 20.443 5.583 H210 14L41- 232.0 674 5.1 227 498 20.855 6.083 H320 14L41- 233.0 656 3.5 158 449 20.384 6.250 H210 14L41- 236.0 593 4.3 218 424 20.709 6.910 H320 14L41- 240.0 535 3.1 172 421 20.025 7.657 H210 14L41- 244.0 491 4.1 249 408 20.244 8.343 H320 14L41- 245.0 478 2.7 171 367 19.993 8.571 H210 14L41- 246.0 466 5.7 370 345 21.604 8.800 H450 14L41- 250.0 433 3.4 238 347 20.166 9.477 H320 14L41- 251.0 418 2.5 182 348 19.789 9.799 H210 14L41- 252.0 411 5.3 384 347 21.009 9.965 H450 14L41- 256.0 384 3.4 265 336 19.923 10.677 H320 14L41- 256.0 383 2.4 189 327 19.713 10.720 H210 14L41- 259.0 364 4.9 400 302 20.937 11.262 H450 14L41- 261.0 351 3.2 271 307 19.825 11.680 H320 14L41- 263.0 342 2.1 186 286 19.697 12.000 H210 14L41- 264.0 338 2.9 254 287 19.876 12.128 H320 14L41- 265.0 333 4.6 411 282 20.763 12.320 H450 14L41- 270.0 309 2.7 262 270 19.786 13.268 H320 14L41- 272.0 300 2.0 201 263 19.575 13.673 H210 14L41- 273.0 295 4.2 426 258 20.406 13.905 H450 14L41- 273.0 295 5.7 578 258 20.947 13.920 H600 14L41- 278.0 275 2.7 294 241 19.644 14.898 H320 14L41- 280.0 268 1.8 200 235 19.565 15.306 H210 14L41- 282.0 261 3.8 441 229 20.369 15.714 H450 14L41- 283.0 259 5.2 600 227 20.540 15.810 H600 14L41- 288.0 245 1.7 210 214 19.492 16.750 H210 14L41- 289.0 242 2.3 281 212 19.620 16.923 H320 14L41- 289.0 241 3.6 450 211 20.149 17.033 H450 14L41- 293.0 231 4.6 600 202 20.483 17.755 H600 14L41- 296.0 225 2.3 313 197 19.538 18.250 H320 14L41- 298.0 219 1.5 210 192 19.485 18.750 H210 14L41- 2101 213 3.2 448 187 20.125 19.250 H450 14L41- 2101 212 4.2 600 185 20.238 19.367 H600 14L41- 2104 207 5.7 833 181 21.524 19.833 H850 14L41- 2109 198 2.0 299 173 19.521 20.731 H320 14L41- 2114 189 3.8 600 165 20.200 21.750 H600 14L41- 2116 185 2.8 450 162 19.727 22.170 H450 14L41- 2121 178 5.0 850 155 20.853 23.103 H850 14L41- 2131 164 2.5 450 143 19.712 25.056 H450 14L41- 2132 163 3.3 600 142 19.779 25.207 H600 14L41- 2135 159 4.5 850 139 20.815 25.815 H850 14L41- 2144 149 2.5 450 130 19.589 27.578 H450 14L41- 2148 145 3.3 600 127 19.757 28.310 H600 14L41- 2148 145 4.7 850 127 20.341 28.315 H850 14L41- 2152 139 4.0 850 122 21.923 29.536 H850 14L41- 3161 131 2.7 600 115 20.308 31.197 H600 14L41- 3163 132 2.2 450 115 19.579 31.167 H450 14L41- 2

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    61

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 164 131 3.0 600 115 19.623 31.356 H600 14L41- 2166 130 4.2 850 114 20.316 31.639 H850 14L41- 2169 127 5.5 1147 111 21.563 32.267 H1500 14L41- 2170 124 3.6 850 109 21.901 33.003 H850 14L41- 3181 117 2.4 600 103 20.293 35.037 H600 14L41- 3184 116 2.6 600 102 19.608 35.214 H600 14L41- 2187 115 5.5 1269 101 21.525 35.689 H1500 14L41- 2190 113 5.8 1342 99.2 24.577 36.193 H3000 14L41- 2195 110 3.5 850 96.5 19.919 37.190 H850 14L41- 2195 109 3.1 850 95.0 21.132 37.799 H850 14L41- 3205 105 4.6 1166 91.7 20.937 39.160 H1500 14L41- 2206 103 2.1 600 89.9 19.962 39.925 H600 14L41- 3208 103 5.8 1474 90.3 24.508 39.753 H3000 14L41- 2213 99.2 2.9 850 86.8 20.926 41.350 H850 14L41- 3218 98.7 3.5 850 86.4 19.904 41.556 H850 14L41- 2225 93.9 1.9 600 82.2 19.858 43.676 H600 14L41- 3227 94.7 5.1 1289 82.9 20.911 43.313 H1500 14L41- 2236 90.8 3.2 850 79.5 19.731 45.136 H850 14L41- 2238 88.7 2.9 850 77.7 20.915 46.204 H850 14L41- 3240 89.6 5.1 1364 78.5 22.743 45.750 H3000 14L41- 2253 83.6 1.9 600 73.2 19.850 49.051 H600 14L41- 3257 82.2 4.7 1500 72.0 24.163 49.867 H1500 14L41- 3259 82.8 4.1 1184 72.5 20.350 49.500 H1500 14L41- 2263 81.6 5.1 1498 71.4 22.700 50.250 H3000 14L41- 2264 81.3 2.9 850 71.2 19.722 50.433 H850 14L41- 2272 77.7 2.5 850 68.1 20.469 52.743 H850 14L41- 3287 74.9 4.1 1309 65.6 20.334 54.750 H1500 14L41- 2287 73.6 1.7 600 64.4 19.664 55.710 H600 14L41- 3288 73.4 4.2 1500 64.3 23.369 55.851 H1500 14L41- 3304 69.6 2.3 850 60.9 20.463 58.933 H850 14L41- 3319 66.4 3.8 1500 58.1 23.357 61.774 H1500 14L41- 3323 65.5 1.5 600 57.4 19.659 62.566 H600 14L41- 3333 63.5 2.1 850 55.6 20.192 64.610 H850 14L41- 3352 60.1 1.4 600 52.6 19.551 68.244 H600 14L41- 3368 57.6 3.3 1500 50.4 21.991 71.238 H1500 14L41- 3373 56.8 1.9 850 49.7 20.187 72.193 H850 14L41- 3396 53.5 1.2 600 46.8 19.548 76.643 H600 14L41- 3407 52.0 3.0 1500 45.6 21.983 78.794 H1500 14L41- 3434 48.8 1.8 850 42.7 19.751 84.096 H850 14L41- 3450 47.0 3.0 1500 41.1 21.407 87.267 H1500 14L41- 3485 43.6 1.6 850 38.2 19.749 93.966 H850 14L41- 3498 42.5 2.7 1500 37.2 21.402 96.522 H1500 14L41- 3540 39.2 1.4 850 34.3 19.605 104.607 H850 14L41- 3555 38.1 4.9 3000 33.4 23.808 107.541 H3000 14L41- 3586 36.1 2.3 1500 31.6 20.875 113.585 H1500 14L41- 3603 35.1 1.3 850 30.7 19.603 116.884 H850 14L41- 3610 34.7 4.4 3000 30.4 23.800 118.119 H3000 14L41- 3648 32.6 2.1 1500 28.6 20.872 125.632 H1500 14L41- 3674 31.4 4.0 3000 27.5 22.719 130.585 H3000 14L41- 3718 29.5 1.9 1500 25.8 20.270 139.211 H1500 14L41- 3740 28.6 3.7 3000 25.0 22.714 143.430 H3000 14L41- 3795 26.6 1.7 1500 23.3 20.268 153.976 H1500 14L41- 3

    Technical dataSelection tablesInverter mains connection400 V,Self-ventilated

    62

  • Inverter operation Geared motor Number ofstages

    M2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 872 24.3 3.1 3000 21.2 21.461 168.993 H3000 14L41- 3944 22.4 1.4 1500 19.6 19.878 182.844 H1500 14L41- 3958 22.1 2.8 3000 19.3 21.457 185.615 H3000 14L41- 3

    1044 20.3 1.3 1500 17.8 19.876 202.237 H1500 14L41- 31058 20.0 2.6 3000 17.5 20.867 205.096 H3000 14L41- 31145 18.5 1.2 1500 16.2 19.703 221.907 H1500 14L41- 31163 18.2 2.3 3000 15.9 20.865 225.269 H3000 14L41- 31267 16.7 1.1 1500 14.6 19.703 245.442 H1500 14L41- 31338 15.8 2.0 3000 13.8 20.307 259.250 H3000 14L41- 31469 14.4 1.8 3000 12.6 20.305 284.750 H3000 14L41- 3

    Technical dataSelection tables

    Inverter mains connection400 V,Self-ventilated

    63

  • 2.6kWInverter operation Geared motor Number of

    stagesM2 n2 c M2, max n2, th J i

    Nm rpm Nm rpm kgcm 36.0 679 4.0 165 679 37.225 3.389 H320 17N23- 247.0 513 5.5 297 513 40.253 4.480 H600 17N23- 249.0 495