Transcript
  • MC3000 SeriesInstallation and Operation Manual

    Buy: www.ValinOnline.com | Phone 844-385-3099 | Email: [email protected]

    https://www.valinonline.com/catalog/manufacturers/lenze-americas/drives/decentralized/mc-series

  • Buy: www.ValinOnline.com | Phone 844-385-3099 | Email: [email protected]

  • 1 GENERAL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .1 PRODUCTSCOVEREDINTHISMANUAL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .2 PRODUCTCHANGES . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .3 WARRANTY . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .4 RECEIVING . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .5 CUSTOMERMODIFICATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .6 SAFETYINFORMATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1

    1 .6 .1 EXPLOSIONPROOFAPPLICATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2

    1 .6 .2 EN61800-5-1COMPLIANCE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2

    1 .6 .3 PICTOGRAPHSUSEDINTHESEINSTRUCTIONS . . . . . . . . . . . . . . . . . . . 2

    2 MC3000SPECIFICATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3

    3 MC3000MODELDESIGNATIONCODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4

    4 MC3000DIMENSIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5

    4 .1 CHASSISANDTYPE1ENCLOSED . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5

    4 .2 TYPE4,4X,AND12ENCLOSED . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7

    5 MC3000RATINGS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9

    6 THEORY . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12

    6 .1 DESCRIPTIONOFACMOTOROPERATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12

    6 .2 DRIVEFUNCTIONDESCRIPTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14

    6 .2 .1 DRIVEOPERATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14

    6 .2 .2 CIRCUITDESCRIPTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15

    6 .2 .3 MC3000INPUTSANDOUTPUTS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15

    7 INSTALLATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16

    7 .1 INSTALLATIONAFTERALONGPERIODOFSTORAGE . . . . . . . . . . . . . . . . . . . . . 17

    7 .2 EXPLOSIONPROOFAPPLICATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17

    8 INPUTACREQUIREMENTS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18

    8 .1 INPUTACPOWERREQUIREMENTS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18

    8 .1 .1 VOLTAGE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18

    8 .1 .2 SUPPLYTRANSFORMERkVARATINGS . . . . . . . . . . . . . . . . . . . . . . . . . 18

    8 .2 INPUTFUSINGANDDISCONNECTREQUIREMENTS . . . . . . . . . . . . . . . . . . . . . . . 18

    9 VOLTAGESELECTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19

    9 .1 INPUTVOLTAGERATINGS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19

    10 POWERWIRING . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20

    10 .1 WIRINGFORSINGLEPHASEORTHREEPHASEINPUT . . . . . . . . . . . . . . . . . . . . 20

    11 MC3000POWERWIRINGDIAGRAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21

    12 INITIALPOWERUP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22

    13 kEYPADCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24

    13 .1 kEYPADFUNCTIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24

    13 .2 MC3000DISPLAY . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25

    13 .2 .1 MC3000DISPLAYINSTOPMODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25

    13 .2 .2 MC3000DISPLAYINRUNMODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26

    13 .2 .3 MC3000DISPLAYINFAULTMODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27

    13 .2 .4 MC3000DISPLAYINAUXILIARYMODE . . . . . . . . . . . . . . . . . . . . . . . . . . 28

    CONTENTS

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  • 14 CONTROLWIRING . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .1 GENERAL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .1 .1 kEYPADCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .1 .2 CONTROLWIRINGVS .POWERWIRING . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .1 .3 TB-2:CIRCUITCOMMON . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .1 .4 SURGESUPPRESSIONONRELAYS . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

    14 .2 START/STOPANDSPEEDCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

    14 .2 .1 REMOTEMODESELECTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

    14 .2 .2 TWO-WIRESTART/STOPCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

    14 .2 .3 THREE-WIRESTART/STOPCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

    14 .2 .4 SPEEDREFERENCESIGNALS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

    14 .2 .5 SPEEDREFERENCESELECTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31

    14 .2 .6 ANALOGOUTPUTSIGNALS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 32

    14 .2 .7 DRIVESTATUSOUTPUTS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 32

    15 MC3000CONTROLWIRINGDIAGRAMS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 33

    15 .1 MC3000TERMINALSTRIP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 33

    15 .2 TWO-WIRESTART/STOPCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 34

    15 .3 THREE-WIRESTART/STOPCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35

    15 .4 SPEEDPOTANDPRESETSPEEDCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36

    16 PROGRAMMINGTHEMC3000DRIVE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 37

    16 .1 PROGRAMMINGTHEPARAMETERS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 37

    16 .2 PARAMETERACCESSUSINGSPEEDDIAL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 39

    17 PARAMETERMENU . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40

    18 DESCRIPTIONOFPARAMETERS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 44

    19 MC3000PIDSETPOINTCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 67

    19 .1 FEEDBACkDEVICES . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 67

    19 .2 THESYSTEM-DIRECTANDREVERSEACTING . . . . . . . . . . . . . . . . . . . . . . . . . . . 68

    19 .3 PIDCONTROL-DIRECTANDREVERSEACTING . . . . . . . . . . . . . . . . . . . . . . . . . . 68

    19 .4 SETPOINTREFERENCESOURCES . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 68

    19 .5 TUNINGTHEPIDCONTROL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69

    19 .6 MC3000DISPLAYINPIDMODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70

    20 TROUBLESHOOTING . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 71

    21 USERSETTINGRECORD . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 73

    CONTENTS

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  • M301L 1

    1 GENERAL

    1 .1 PRODUCTSCOVEREDINTHISMANUAL

    ThismanualcoverstheLenzeACTechMC3000VariableFrequencyDrive .

    1 .2 PRODUCTCHANGES

    LenzeACTechCorporationreservestherighttodiscontinueormakemodificationstothedesignofitsproductsandmanualswithoutpriornotice,andholdsnoobligationtomakemodificationstoproductssoldpreviously .LenzeACTechCorporationalsoholdsnoliabilityforlossesofanykindwhichmayresultfromthisaction .Instructionmanualswith the most up-to-date information are available for download from the LenzeAmericaswebsite.

    1 .3 WARRANTY

    LenzeACTechCorporationwarrantstheMCSeriesACmotorcontroltobefreeofdefectsinmaterialandworkmanshipforaperiodoftwoyearsfromthedateofshipmentfromLenzeAmericas'factory .AnMCSeriescontrol,oranycomponentcontainedtherein,whichundernormaluse,becomesdefectivewithinthestatedwarrantytimeperiod,shallbe returned toLenzeACTechCorporation, freightprepaid, forexamination (contactLenzeACTechCorporationforauthorizationpriortoreturninganyproduct) .LenzeACTechCorporationreservestherighttomakethefinaldeterminationastothevalidityofawarrantyclaim,andsoleobligationistorepairorreplaceonlycomponentswhichhavebeenrendereddefectiveduetofaultymaterialorworkmanship .Nowarrantyclaimwillbeacceptedforcomponentswhichhavebeendamagedduetomishandling,improperinstallation, unauthorized repair and/or alterationof theproduct, operation in excessof design specifications or other misuse, or improper maintenance . Lenze AC TechCorporationmakesnowarrantythatitsproductsarecompatiblewithanyotherequipment,ortoanyspecificapplication,towhichtheymaybeappliedandshallnotbeheldliableforanyotherconsequentialdamageorinjuryarisingfromtheuseofitsproducts .

    Thiswarrantyisinlieuofallotherwarranties,expressedorimplied.Nootherperson,firmorcorporationisauthorizedtoassume,forLenzeACTechCorporation,anyotherliabilityinconnectionwiththedemonstrationorsaleofitsproducts.

    1 .4 RECEIVING

    Inspect all cartons for damage which may have occurred during shipping . Carefullyunpackequipmentandinspectthoroughlyfordamageorshortage .Reportanydamagetocarrierand/orshortagestosupplier .Allmajorcomponentsandconnectionsshouldbeexaminedfordamageandtightness,withspecialattentiongiventoPCboards,plugs,knobsandswitches .

    1 .5 CUSTOMERMODIFICATION

    LenzeACTechCorporation, its sales representativesanddistributors,welcome theopportunitytoassistourcustomersinapplyingourproducts .Manycustomizingoptionsareavailabletoaidinthisfunction .LenzeACTechCorporationcannotassumeresponsibilityforanymodificationsnotauthorizedbyitsengineeringdepartment .

    1 .6 SAFETYINFORMATION

    SomepartsofLenzeACTechcontrollerscanbeelectricallyliveandsomesurfacescanbehot .Non-authorizedremovaloftherequiredcover,inappropriateuse,andincorrectinstallationoroperationcreatestheriskofsevereinjurytopersonneland/ordamagetoequipment .Alloperationsconcerningtransport,installation,andcommissioningaswellasmaintenancemustbecarriedoutbyqualified,skilledpersonnelwhoarefamiliarwiththe installation,assembly,commissioning,andoperationofvariable frequencydrivesandtheapplicationforwhichitisbeingused .

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  • 2 M301L

    1 .6 .1 EXPLOSIONPROOFAPPLICATIONS

    Explosionproofmotorsthatarenotratedforinverteruselosetheircertificationwhenusedforvariablespeed .Duetothemanyareasofliabilitythatmaybeencounteredwhendealingwiththeseapplications,thefollowingstatementofpolicyapplies:

    LenzeACTechCorporationinverterproductsaresoldwithnowarrantyoffitnessforaparticularpurposeorwarrantyofsuitabilityforusewithexplosionproofmotors .LenzeACTechCorporationacceptsnoresponsibilityforanydirect,incidentalorconsequentialloss,costordamagethatmayarisethroughtheuseofACinverterproductsintheseapplications .Thepurchaserexpresslyagrees toassumeall riskofany loss, costordamagethatmayarisefromsuchapplication .

    1 .6 .2 EN61800-5-1COMPLIANCE

    WARNING!Thisproductcancausead .c .currentintheprotectiveearthing(PE)conductor .Wherearesidualcurrent-operated(RCD)ormonitoring(RCM)deviceisusedforprotectionincaseofdirectorindirectcontact,onlyanRCDorRCMTypeBisallowedonthesupplysideofthisproduct .

    WARNING!LeakageCurrentmayexceed3 .5mAAC .Theminimumsizeoftheprotectiveearth(PE)conductorshallcomplywithlocalsafetyregulationsforhighleakagecurrentequipment .

    DANGER!HazardofElectricShockCapacitorsretainchargeforapproximately180secondsafterpowerisremoved .Allowatleast3minutesfordischargeofresidualchargebeforetouchingthedrive .

    NOTEControl terminalsprovidebasic isolation (insulationperEN61800-5-1, forup to300V to ground) . Protection against contact can only be ensured by additionalmeasures(e .g .supplementalinsulation) .

    WARNING!Inadomesticenvironmentthisproductmaycauseradiointerferenceinwhichcasesupplementarymitigationmeasuresmayberequired .

    1 .6 .3 PICTOGRAPHSUSEDINTHESEINSTRUCTIONS

    ThesafetyinformationprovidedinthisInstallationandOperatingmanualincludesavisualicon,aboldsignalwordandadescription .

    SignalWord!(characterizestheseverityofthedanger)Text(describesthedangerandinformsonhowtoproceed)

    Icon SignalWord Meaning ConsequencesifignoredDANGER! Hazardouselectricalvoltage Deathorsevereinjuries .

    WARNING! Potential,veryhazardoussituationsforpersonsnearmachinery .

    Riskofsevereinjurytopersonneland/ordamagetoequipment .

    STOP! Potentialdamagetomaterialandequipment .

    Damagetothecontroller/driveoritsenvironment .

    NOTE Designatesageneral,usefulnote . None .Ifobserved,thenusingthecontrollerismadeeasier .

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  • M301L 3

    2 MC3000SPECIFICATIONS

    StorageTemperature -20 to70 C

    AmbientOperatingTemperature Chassis -10 to55 C(With2 .5,6,and8kHzcarrier, Type1(IP31) -10 to50 Cderateforhighercarriers) Type4(IP65) -10 to40 C Type12(IP54) -10 to40 C

    AmbientHumidity Lessthan95%(non-condensing)

    Altitude 3300feet(1000m)abovesealevel withoutderating

    InputLineVoltages 240/120Vac,240/200Vac, 480/400Vac,and590/480Vac

    InputVoltageTolerance +10%,-15%

    InputFrequencyTolerance 48to62Hz

    OutputWaveForm SineCodedPWM

    OutputFrequency 0-120Hz

    CarrierFrequency 2 .5kHzto14kHz

    FrequencyStability +0 .00006%/ C

    ServiceFactor 1 .00

    Efficiency >97%throughoutspeedrange

    PowerFactor(displacement) >0 .96

    OverloadCurrentCapacity 150%ofoutputratingfor60seconds 180%ofoutputratingfor30seconds

    SpeedReferenceFollower 0-10VDC,4-20mA

    ControlVoltage 15VDC

    AnalogOutputs 0-10VDC,or2-10VDC Proportionaltospeedandload

    DigitalOutputs FormCrelay:2Aat28VDCor120Vac Open-collectoroutputs:40mAat30VDC

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  • 4 M301L

    3 MC3000MODELDESIGNATIONCODE

    ThemodelnumberofanMC3000Seriesdrivegivesafulldescriptionofthebasicdriveunit(seeexamplebelow) .

    EXAMPLE:M3450BP

    (MC3000,480Vac,5HP,Type1Enclosure,withaRemotekeypadAssembly)

    M3 4 50 B P

    Series:

    M3 = M3000 Series Variable Speed AC Motor DriveInput Voltage:

    1 = 240/120 Vac (For 110, 115, 120, 230 and 240 Vac; 50 or 60 Hz)

    2 = 240/200 Vac (For 208, 230, and 240 Vac; 50 or 60 Hz)4 = 480/400 Vac (For 380, 415, 440, 460 and 480 Vac; 50 or 60 Hz)5 = 590/480 Vac (For 440, 460, 480, 575 and 600 Vac; 50 or 60 Hz)

    Rating:03 = ¼ HP (0.18 kW) 50 / 51 = 5 HP (3.7 kW) 300 = 30 HP (22 kW)05 = ½ HP (0.37 kW) 75 = 7½ HP (5.5 kW) 400 = 40 HP (30 kW)10 = 1 HP (0.75 kW) 100 = 10 HP (7.5 kW) 500 = 50 HP (37.5 kW)15 = 1½ HP (1.1 kW) 150 = 15 HP (11 kW) 600 = 60 HP (45 kW)20 = 2 HP (1.5 kW) 200 = 20 HP (15 kW)30 = 3 HP (2.2 kW) 250 = 25 HP (18.5 kW)

    Input Phase:S = Single phase input only.

    No character indicates three phase input onlyEnclosure Type:

    A = Chassis - Open Enclosure with Cover RemovedB = NEMA 1 - General Purpose, ventedC = NEMA 4 - Water-tight and Dust-tightD = NEMA 12 - Oil-tight and Dust-tightE = NEMA 4X - Water-tight, Dust-tight, and Corrosion Resistant (Stainless Steel)

    Standard Options:H = Additional Form C Relay circuit boardJ = Dynamic Braking circuit boardK = Dynamic Braking & Additional Form C Relay board (not available on all HP sizes - consult factory)

    No character when this type of option is not specifiedInterface Options:

    P = Remote keypad assemblyNo character when this type of option is not specified

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  • M301L 5

    4 MC3000DIMENSIONS

    4 .1 CHASSISANDTYPE1ENCLOSEDD

    H

    V

    1 .00"

    RT

    MountingTabDetail

    Dia .Slot

    R

    W

    P

    N

    Q Q SDia .

    SDia .

    ConduitHoles:

    0 .88"Dia .

    W UIFW<7 .86"T=0 .20"U=0 .34"V=0 .19"

    IFW=10 .26"T=0 .28"U=0 .44"V=0 .24"

    HP (kW)

    INPUT VOLTAGE MODEL H W D N P Q R S

    0.25(0.18) 240 / 120 M3103S 7.50 4.70 3.33 2.35 1.60 1.37 5.50 0.88

    0.5(0.37)

    240 / 120 M3105S 7.50 6.12 3.63 3.77 1.80 1.37 5.50 0.88240 M3205S 7.50 4.70 3.63 2.35 1.90 1.37 5.50 0.88

    240/200 M3205 7.50 4.70 3.63 2.35 1.90 1.37 5.50 0.88

    1(0.75)

    240 / 120 M3110S 7.50 6.12 4.22 3.77 2.40 1.37 5.50 0.88240 M3210S 7.50 4.70 4.33 2.35 2.60 1.37 5.50 0.88

    240 / 200 M3210 7.50 4.70 4.33 2.35 2.60 1.37 5.50 0.88480 / 400 M3410 7.50 4.70 3.63 2.35 1.90 1.37 5.50 0.88

    590 M3510 7.50 4.70 3.63 2.35 1.90 1.37 5.50 0.88

    1.5(1.1)

    240/120 M3115S 7.50 6.12 4.22 3.77 2.40 1.37 5.50 0.88240 M3215S 7.50 6.12 4.22 3.77 2.40 1.37 5.50 0.88

    240/200 M3215 7.50 4.70 4.33 2.35 2.60 1.37 5.50 0.88

    2(1.5)

    240 M3220S 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88240 / 200 M3220 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88480/400 M3420 7.50 6.12 4.22 3.77 2.40 1.37 5.50 0.88

    590 M3520 7.50 6.12 4.22 3.77 2.40 1.37 5.50 0.88

    3(2.2)

    240 M3230S 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88240 / 200 M3230 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88480 / 400 M3430 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88

    590 M3530 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88

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  • 6 M301L

    HP (kW)

    INPUT VOLTAGE MODEL H W D N P Q R S

    5(3.7)

    240 / 200 M3250 7.88 7.86 5.94 5.13 3.95 1.50 5.88 1.13480 / 400 M3450 7.50 6.12 5.12 3.77 3.30 1.37 5.50 0.88

    590 M3551 7.88 7.86 5.94 5.13 3.95 1.50 5.88 1.13

    7.5(5.5)

    240 / 200 M3275 9.38 7.86 6.84 3.93 4.19 2.00 5.88 1.13480 / 400 M3475 9.38 7.86 6.25 5.13 3.95 1.50 7.38 1.13

    590 M3575 9.38 7.86 6.25 5.13 3.95 1.50 7.38 1.13

    10(7.5)

    240 / 200 M32100 11.25 7.86 6.84 3.93 4.19 2.00 7.75 1.38480 / 400 M34100 9.38 7.86 6.84 3.93 4.19 2.00 5.88 1.13

    590 M35100 9.38 7.86 7.40 3.93 4.19 2.00 5.88 1.13

    15(11)

    240/200 M32150 12.75 7.86 6.84 3.93 4.19 2.00 9.25 1.38480/400 M34150 11.25 7.86 6.84 3.93 4.19 2.00 7.75 1.38

    590 M35150 12.75 7.86 6.84 3.93 4.19 2.00 9.25 1.38

    20(15)

    240 / 200 M32200 12.75 10.26 7.74 5.13 5.00 2.50 9.25 1.38480/400 M34200 12.75 7.86 6.84 3.93 4.19 2.00 9.25 1.38

    590 M35200 12.75 7.86 7.40 3.93 4.19 2.00 9.25 1.38

    25(18.5)

    240 / 200 M32250 15.75 10.26 8.35 5.13 5.00 2.50 12.25 1.38480/400 M34250 12.75 10.26 7.74 5.13 5.00 2.50 9.25 1.38

    590 M35250 12.75 10.26 7.74 5.13 5.00 2.50 9.25 1.38

    30(22)

    240 / 200 M32300 15.75 10.26 8.35 5.13 5.00 2.50 12.25 1.38480/400 M34300 12.75 10.26 7.74 5.13 5.00 2.50 9.25 1.38

    590 M35300 12.75 10.26 8.25 5.13 5.00 2.50 9.25 1.38

    40(30)

    480/400 M34400 15.75 10.26 8.35 5.13 5.00 2.50 12.25 1.38590 M35400 15.75 10.26 8.35 5.13 5.00 2.50 12.25 1.38

    50(37.5)

    480/400 M34500 19.75 10.26 8.55 5.13 5.75 2.50 16.25 1.75590 M35500 19.75 10.26 8.55 5.13 5.75 2.50 16.25 1.75

    60(45)

    480/400 M34600 19.75 10.26 8.55 5.13 5.75 2.50 16.25 1.75590 M35600 19.75 10.26 8.55 5.13 5.75 2.50 16.25 1.75

    DIMENSIONS-CHASSISANDTYPE1ENCLOSED(continued)

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  • M301L 7

    4 .2 TYPE4,4X,AND12ENCLOSED

    1 .00"

    W

    H

    RT

    D

    MountingTabDetail

    V

    Dia .Slot

    ConduitHoles:

    SDia .0 .88"Dia .SDia .

    N

    P

    Q Q

    R

    W

    UIFW<7 .86"T=0 .20"U=0 .34"V=0 .19"

    IFW>10 .26"T=0 .28"U=0 .44"V=0 .24"

    HP (kW)

    INPUT VOLTAGE MODEL H W D N P Q R S

    0.25(0.18) 240 / 120 M3103S 7.88 6.12 3.63 3.06 2.00 1.37 5.88 0.88

    0.5(0.37)

    240 / 120 M3105S 7.88 7.86 3.75 4.80 2.10 1.37 5.88 0.88240 M3205S 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88

    240/200 M3205 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88

    1(0.75)

    240 / 120 M3110S 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88240 M3210S 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88

    240 / 200 M3210 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88480 / 400 M3410 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88

    590 M3510 7.88 6.12 4.35 3.06 2.70 1.37 5.88 0.88

    1.5(1.1)

    240/120 M3115S 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88240 M3215S 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88

    240/200 M3215 7.88 6.12 5.25 3.06 3.60 1.37 5.88 0.88

    2(1.5)

    240 M3220S 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88240 / 200 M3220 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88480/400 M3420 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88

    590 M3520 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88

    3(2.2)

    240 M3230S 7.88 7.86 5.90 4.80 4.25 1.37 5.88 0.88240 / 200 M3230 7.88 7.86 5.90 4.80 4.25 1.37 5.88 0.88480 / 400 M3430 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88

    590 M3530 7.88 7.86 4.90 4.80 3.25 1.37 5.88 0.88

    5(3.7)

    240 / 200 M3250 9.75 10.26 7.20 5.13 5.25 2.00 7.75 1.13480 / 400 M3450 7.88 7.86 5.90 4.80 4.25 1.37 5.88 0.88

    590 M3550 7.88 7.86 5.90 4.80 4.25 1.37 5.88 0.88

    7.5(5.5)

    240 / 200 M3275 11.75 10.26 8.35 5.13 5.75 2.00 9.75 1.13480 / 400 M3475 9.75 10.26 7.20 5.13 5.25 2.00 7.75 1.13

    590 M3575 9.75 10.26 7.20 5.13 5.25 2.00 7.75 1.13

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  • 8 M301L

    HP (kW)

    INPUT VOLTAGE MODEL H W D N P Q R S

    10(7.5)

    240 / 200 M32100 13.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38480 / 400 M34100 11.75 10.26 8.35 5.13 5.75 2.00 9.75 1.13

    590 M35100 11.75 10.26 8.35 5.13 5.75 2.00 9.75 1.13

    15(11)

    240/200 M32150 15.75 10.26 8.35 5.13 5.75 2.00 13.75 1.38480/400 M34150 13.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    590 M35150 13.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    20(15)

    240 / 200 M32200* 15.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38480/400 M34200 15.75 10.26 8.35 5.13 5.75 2.00 13.75 1.38

    590 M35200 15.75 10.26 8.35 5.13 5.75 2.00 13.75 1.38

    25(18.5)

    240 / 200 M32250* 20.25 10.26 8.35 5.13 5.75 2.00 16.25 1.38480/400 M34250* 15.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    590 M35250* 15.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    30(22)

    240 / 200 M32300* 20.25 10.26 8.35 5.13 5.75 2.00 16.25 1.38480/400 M34300* 15.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    590 M35300* 15.75 10.26 8.35 5.13 5.75 2.00 11.75 1.38

    40(30)

    480/400 M34400* 20.25 10.26 8.35 5.13 5.75 2.00 16.25 1.38590 M35400* 20.25 10.26 8.35 5.13 5.75 2.00 16.25 1.38

    50(37.5)

    480/400 M34500* 21.00 13.72 8.35 5.13 6.10 2.00 16.25 1.38590 M35500* 21.00 13.72 8.35 5.13 6.10 2.00 16.25 1.38

    60(45)

    480/400 M34600* 21.00 13.72 8.35 5.13 6.10 2.00 16.25 1.38590 M35600* 21.00 13.72 8.35 5.13 6.10 2.00 16.25 1.38

    *Models available in NEMA 12 only

    DIMENSIONS-TYPE4,4X,AND12ENCLOSED(continued)

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  • M301L 9

    5 MC3000RATINGS

    ThefollowingtablesindicatetheinputandoutputratingsoftheMC3000Seriesdrive .

    NOTE: Theoutputcurrentratingsarebasedonoperationatcarrierfrequenciesof8kHzandbelow .Atfullambienttemperature,operationatcarrierfrequenciesabove8kHzrequiresderatingthedrivebymultiplyingtheoutputcurrentratingbythefollowingfactors:0 .94at10kHz,0 .89at12kHz,and0 .83at14kHz .RefertoParameter23-CARRIERinSection18-DESCRIPTIONOFPARAMETERS .

    M3100 SERIES RATINGS

    MODELINPUT OUTPUT

    (200/240 Vac, 50 - 60 Hz) (0 - 200/230 Vac)

    MODEL NUMBER1

    FOR MOTORSRATED INPUT

    PHASE

    NOMINALCURRENT2

    (AMPS)POWER(KVA)

    NOMINALCURRENT(AMPS)

    POWER(KVA)HP kW

    M3103S 0.25 0.18 1 6.0 / 3.0 0.7 1.4 0.56

    M3105S 0.5 0.37 1 9.2 / 4.6 1.1 2.2 0.88

    M3110S 1 0.75 1 16.2 / 8.1 1.9 4.0 1.6

    M3115S 1.5 1.1 1 21 / 10.4 2.5 5.2 2.11RefertoSection3formodelnumberbreakdown .2RefertoSection8forrecommendedfusetype .

    M3200 SERIES RATINGS

    MODELINPUT OUTPUT

    (200/240 Vac, 50 - 60 Hz) (0 - 200/230 Vac)

    MODEL NUMBER1

    FOR MOTORSRATED INPUT

    PHASE

    NOMINALCURRENT2

    (AMPS)POWER(KVA)

    NOMINALCURRENT(AMPS)

    POWER(KVA)HP kW

    M3205S 0.5 0.37 1 5.8 / 5.0 1.2 2.5 / 2.2 0.9

    M3205 0.5 0.37 3 3.1 / 2.7 1.1 2.5 / 2.2 0.9

    M3210S 1 0.75 1 10.3 / 9.0 2.2 4.6 / 4.0 1.6

    M3210 1 0.75 3 5.5 / 4.8 2.0 4.6 / 4.0 1.6

    M3215S 1.5 1.1 1 13.3 / 11.6 2.8 6.0 / 5.2 2.1

    M3215 1.5 1.1 3 7.1 / 6.2 2.6 6.0 / 5.2 2.1

    M3220S 2 1.5 1 17.1 / 14.9 3.6 7.8 / 6.8 2.7

    M3220 2 1.5 3 9.3 / 8.1 3.4 7.8 / 6.8 2.7

    M3230S 3 2.2 1 24 / 21 5.0 11.0 / 9.6 3.8

    M3230 3 2.2 3 13.0 / 11.3 4.7 11.0 / 9.6 3.8

    M3250 5 3.7 3 20 / 17.7 7.4 17.5 / 15.2 6.1

    M3275 7.5 5.5 3 30 / 26 10.6 25 / 22 8.8

    M32100 10 7.5 3 37 / 32 13.2 32 / 28 11.2

    M32150 15 11 3 55 / 48 19.8 48 / 42 16.7

    M32200 20 15 3 70 / 61 25.3 62 / 54 21.5

    M32250 25 18.5 3 89 / 77 32.0 78 / 68 27.1

    M32300 30 22 3 104 / 90 37.6 92 / 80 31.91RefertoSection3formodelnumberbreakdown .2RefertoSection8forrecommendedfusetype .

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  • 10 M301L

    M3400 SERIES RATINGS

    MODELINPUT OUTPUT

    (400/480 Vac, 50 - 60 Hz) (0 - 400/460 Vac)

    MODEL NUMBER1

    FOR MOTORSRATED

    INPUT PHASE

    NOMINALCURRENT2

    (AMPS)POWER(KVA)

    NOMINALCURRENT(AMPS)

    POWER(KVA)HP kW

    M3410 1 0.75 3 2.8 / 2.4 2.0 2.3 / 2.0 1.6

    M3420 2 1.5 3 4.7 / 4.1 3.4 3.9 / 3.4 2.7

    M3430 3 2.2 3 6.6 / 5.7 4.7 5.5 / 4.8 3.8

    M3450 5 3.7 3 10.2 / 8.9 7.3 8.7 / 7.6 6.1

    M3475 7.5 5.5 3 14.7 / 12.8 10.6 12.6 / 11.0 8.8

    M34100 10 7.5 3 18.3 / 15.9 13.2 16.0 / 14.0 11.2

    M34150 15 11 3 28 / 24 19.8 24 / 21 16.7

    M34200 20 15 3 36 / 31 25.3 31 / 27 21.5

    M34250 25 18.5 3 44 / 38 31.9 39 / 34 27.1

    M34300 30 22 3 52 / 45 37.6 46 / 40 31.9

    M34400 40 30 3 68 / 59 49.0 60 / 52 41.4

    M34500 50 37.5 3 85 / 74 61.5 75 / 65 51.8

    M34600 60 45 3 100 / 87 72.3 88 / 77 61.3

    1RefertoSection3formodelnumberbreakdown .2RefertoSection8forrecommendedfusetype .

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  • M301L 11

    M3500 SERIES RATINGS

    MODELINPUT OUTPUT

    (480/590 Vac, 50 - 60 Hz) (0 - 460/575 Vac)

    MODEL NUMBER1

    FOR MOTORSRATED

    INPUT PHASE

    NOMINALCURRENT2

    (AMPS)POWER(KVA)

    NOMINALCURRENT(AMPS)

    POWER(KVA)HP kW

    M3510 1 0.75 3 1.9 / 1.9 1.9 1.6 / 1.6 1.6

    M3520 2 1.5 3 3.3 / 3.3 3.4 2.7 / 2.7 2.7

    M3530 3 2.2 3 4.6 / 4.6 4.7 3.9 / 3.9 3.9

    M3550/51 5 3.7 3 7.1 / 7.1 7.3 6.1 / 6.1 6.1

    M3575 7.5 5.5 3 10.5 / 10.5 10.7 9.0 / 9.0 8.8

    M35100 10 7.5 3 12.5 / 12.5 12.8 11.0 / 11.0 11.0

    M35150 15 11 3 19.3 / 19.3 19.7 17.0 / 17.0 16.9

    M35200 20 15 3 25 / 25 25.4 22 / 22 21.5

    M35250 25 18.5 3 31 / 31 31.2 27 / 27 26.9

    M35300 30 22 3 36 / 36 37.1 32 / 32 31.9

    M35400 40 30 3 47 / 47 47.5 41 / 41 40.8

    M35500 50 37.5 3 59 / 59 60.3 52 / 52 51.8

    M35600 60 45 3 71 / 71 72.5 62 / 62 61.7

    1RefertoSection3formodelnumberbreakdown .2RefertoSection8forrecommendedfusetype .

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  • 12 M301L

    6 THEORY

    6 .1 DESCRIPTIONOFACMOTOROPERATION

    ThreephaseACmotorsarecomprisedoftwomajorcomponents,thestatorandtherotor .Thestatorisasetofthreeelectricalwindingsheldstationaryinthemotorhousing .Therotorisametalcylinder,fixedtothemotordriveshaft,whichrotateswithinthestator .ThearrangementofthestatorcoilsandthepresenceofthreephaseACvoltagegiverisetoarotatingmagneticfieldwhichdrivestherotor .Thespeedatwhichthemagneticfieldrotatesisknownasthesynchronousspeedofthemotor .Synchronousspeedisafunctionofthefrequencyatwhichthevoltageisalternatingandthenumberofpolesinthestatorwindings .

    Thefollowingequationgivestherelationbetweensynchronousspeed,frequency,andthenumberofpoles:

    Ss=120f/p

    Where: Ss= Synchronousspeed(rpm) f= frequency(Hz) p= numberofpoles

    Inthreephaseinductionmotorstheactualshaftspeeddiffersfromthesynchronousspeedasloadisapplied .Thisdifferenceisknownas“slip” .Slipiscommonlyexpressedasapercentageofsynchronousspeed .Atypicalvalueisthreepercentatfullload .

    Thestrengthofthemagneticfieldinthegapbetweentherotorandstatorisproportionaltotheamplitudeofthevoltageatagivenfrequency .Theoutputtorquecapabilityofthemotor is, therefore,a functionof theappliedvoltageamplitudeatagiven frequency .Whenoperatedbelowbase (rated) speed,ACmotors run in the rangeof “constanttorque” .Constant torqueoutput is obtainedbymaintaininga constant ratiobetweenvoltageamplitude(Volts)andfrequency(Hertz) .For60Hzmotorsratedat230,460,and575Vac,commonvaluesforthisV/Hzratioare3 .83,7 .66,and9 .58respectively .OperatingwiththeseV/Hzratiosgenerallyyieldsoptimumtorquecapability .Operatingatlowerratiovaluesresultsinlowertorqueandpowercapability .Operatingathigherratiovalueswillcausethemotortooverheat .Moststandardmotorsarecapableofprovidingfulltorqueoutputfrom3to60Hz .However,atlowerspeeds,wheremotorcoolingfansbecomelesseffective,supplementalcoolingmaybeneededtooperateat full torqueoutputcontinuously .

    Ifthefrequencyappliedtothemotorisincreasedwhilethevoltageremainsconstant,torque capability will decrease as speed increases . This will cause the horsepowercapabilityofthemotortoremainapproximatelyconstant .Motorsruninthismodewhenoperated above base speed, where drive output voltage is limited by the input linevoltage .Thisoperatingrangeisknownasthe“constanthorsepower”range .Thetypicalmaximumrangeforconstanthorsepowerisabout2 .3to1(60to140Hz) .ThediagrambelowdepictsthecharacteristicsofatypicalACinductionmotorwitha60Hzbasespeed .

    WARNING!

    Consultmotormanufacturer beforeoperatingmotor and/or drivenequipmentabovebasespeed .

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  • M301L 13

    CONSTANTTORQUE CONSTANT HP

    TORQUE HORSEPOWER

    HORS

    EPOW

    ER

    TORQUE

    FREQUENCY(Hz)

    TO

    RQ

    UE

    (%

    )

    20 40 60 80 100 120

    150

    130

    110

    90

    70

    50

    30

    10

    6 .1 .1 VARIABLETORQUEVS .CONSTANTTORQUE

    Variablefrequencydrives,andtheloadstheyareappliedto,cangenerallybedividedinto twogroups:constant torqueandvariable torque .Constant torque loads include:vibratingconveyors,punchpresses,rockcrushers,machinetools,andjustabouteveryotherapplicationthat isnotconsideredvariabletorque .Variabletorqueloadsincludecentrifugalpumpsandfans,whichmakeupthemajorityofHVACapplications .

    Variabletorqueloadsaregovernedbytheaffinitylaws,whichdefinetherelationshipsbetween speed, flow, torque and horsepower . The diagram below illustrates theserelationships:

    0%

    25%

    50%

    75%

    100%

    100%75%50%25%0%

    %SPEED

    %TOR

    QUE

    %HOR

    SEPO

    WER

    %FLO

    W

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  • 14 M301L

    “Variabletorque”referstothefactthatthetorquerequiredvarieswiththesquareofthespeed .Also,thehorsepowerrequiredvarieswiththecubeofthespeed,resultinginalargereductioninhorsepowerforevenasmallreductioninspeed .Itiseasilyseenthatsubstantialenergysavingscanbeachievedbyreducingthespeedofafanorpump .Forexample,reducingthespeedto50%resultsina50HPmotorhavingtoproduceonly12 .5%ofratedhorsepower,or6 .25HP .Variabletorquedrivesusuallyhavealowoverloadcapacity(110%-120%for60seconds),becausevariabletorqueapplicationsrarelyexperienceoverloadconditions .Tooptimizeefficiencyandenergysavings,variabletorquedrivesareusuallyprogrammedtofollowavariableV/Hzratio .

    Theterm“constanttorque”isnotentirelyaccurateintermsoftheactualtorquerequiredforanapplication .Manyconstant torqueapplicationshave reciprocating loads, suchasvibratingconveyorsandpunchpresses,wheretherotationalmotionofthemotorisbeingconvertedtoalinearmotion .Insuchcases,thetorquerequiredcanvarygreatlyatdifferentpointsinthecycle .Forconstanttorqueloads,thisfluctuationintorqueisnotadirectfunctionofspeed,asitiswithavariabletorqueload .Asaresult,constanttorquedrivestypicallyhaveahighoverloadrating(150%for60seconds)inordertohandlethehigherpeaktorquedemands .Toachievemaximumtorque,constanttorquedrivesfollowaconstantV/Hzratio .

    BothMCSeriesproductlines(MC1000andMC3000)havefulloverloadcapacity(150%for60seconds,180%for30seconds),sothateitheronecanbeusedforeithertypeofapplication .TheV/Hzratiocanalsobechangedtooptimizeperformanceforeithertypeofapplication .

    6 .2 DRIVEFUNCTIONDESCRIPTION

    TheMCSeriesisa16bitmicroprocessorbased,keypadprogrammable,variablespeedACmotordrive .Therearefourmajorsections:aninputdiodebridgeandfilter,apowerboard,acontrolboard,andanoutputintelligentpowermodule .

    6 .2 .1 DRIVEOPERATION

    IncomingAC line voltage is converted to apulsatingDCvoltageby the input diodebridge .TheDCvoltageissuppliedtothebusfiltercapacitorsthroughachargecircuitwhichlimitsinrushcurrenttothecapacitorsduringpower-up .ThepulsatingDCvoltageisfilteredbythebuscapacitorswhichreducestheripplelevel .ThefilteredDCvoltageenterstheinvertersectionofthedrive,composedofsixoutputintelligentinsulatedgatebi-polartransistors(IGBTs)whichmakeupthethreeoutputlegsofthedrive .EachleghasoneintelligentIGBTconnectedtothepositivebusvoltageandoneconnectedtothenegativebusvoltage .Alternatelyswitchingoneachleg,theintelligentIGBTproducesanalternatingvoltageoneachofthecorrespondingmotorwindings .Byswitchingeachoutput intelligent IGBTataveryhigh frequency (knownas thecarrier frequency) forvaryingtimeintervals,theinverterisabletoproduceasmooth,threephase,sinusoidaloutputcurrentwavewhichoptimizesmotorperformance .

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  • M301L 15

    6 .2 .2 CIRCUITDESCRIPTION

    Thecontrolsectionconsistsofacontrolboardwitha16bitmicroprocessor,keypadanddisplay .Driveprogrammingisaccomplishedviathekeypadortheserialcommunicationsport .Duringoperationthedrivecanbecontrolledviathekeypad,bycontroldeviceswiredtothecontrolterminalstrip,orbythetheserialcommunicationsport .ThePowerBoardcontainsthecontrolandprotectioncircuitswhichgovernthesixoutputIGBTs .ThePowerBoardalsocontainsachargingcircuitforthebusfiltercapacitors,amotorcurrentfeedbackcircuit,avoltagefeedbackcircuit,andafaultsignalcircuit .Thedrivehasseveralbuiltinprotectioncircuits .Theseincludephase-to-phaseandphase-to-groundshortcircuitprotection,highandlowlinevoltageprotection,protectionagainstexcessiveambienttemperature,andprotectionagainstcontinuousexcessiveoutputcurrent .Activationofanyofthesecircuitswillcausethedrivetoshutdowninafaultcondition .

    6 .2 .3 MC3000INPUTSANDOUTPUTS

    Thedrivehastwoanaloginputs(0-10VDCand4-20mA)thatcanbeusedforspeedreference,PIDsetpointreference,orPIDfeedback .Aspeedpotentiometer(10,000ohm)canbeusedwiththe0-10VDCinput .

    Therearealsotwoanalogoutputs:oneisproportionaltospeed(frequency),andtheotherisproportionaltoload .

    Thedrivehasthreeprogrammableoutputsforstatusindication:oneFormCrelayandtwoopen-collectoroutputs .

    RefertoSections14-CONTROLWIRINGand15-CONTROLWIRINGDIAGRAMSformoreinformation .

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  • 16 M301L

    7 INSTALLATION

    WARNING!

    Drives must NOT be installed where subjected to adverseenvironmental conditions! Drives must not be installed wheresubjectedtocombustible,oily,orhazardousvaporsordust;excessivemoistureordirt;strongvibration;excessiveambienttemperatures .ConsultLenzeACTechformoreinformationonthesuitabilityofadrivetoaparticularenvironment .

    Thedriveshouldbemountedonasmoothverticalsurfacecapableofsafelysupportingtheunitwithoutvibrating .TheLCDdisplayhasanoptimumfieldofview,thisshouldbeconsideredwhendeterminingthemountingposition .

    Chassismodelsmustbeinstalledinanelectricalenclosurethatwillprovidecompletemechanicalprotectionandmaintainuniforminternaltemperaturewithinthedrive’sambientoperatingtemperaturerating .AlldrivemodelsMUSTbemountedinaverticalpositionforproperheatsinkcooling .

    Maintainaminimumspacingaroundthedriveasfollows:

    SPACING REQUIREMENTS

    HPSPACING

    INCHES mm

    0.25 - 5 2 50

    7.5 - 25 4 100

    30 - 60 6 150

    AlldrivemodelsMUSTbemounted inaverticalpositionforproperheatsinkcooling .Fansorblowersshouldbeusedtoinsurepropercoolingintightquarters .Donotmountdrivesaboveotherdrivesorheatproducingequipmentthatwouldimpedethecoolingofthedrive .Notetheambientoperatingtemperatureratingsforeachdrivemodel .

    Ifitisnecessarytodrillorcutthedriveenclosureorpanel,extremecaremustbetakentoavoiddamagingdrivecomponentsorcontaminatingthedrivewithmetalfragments(whichcauseshortingofelectricalcircuits) .Coverdrivecomponentswithacleanclothtokeepoutmetalchipsandotherdebris .Useavacuumcleanertocleandrivecomponentsafterdrilling,evenifchipsdonotappeartobepresent .Donotattempttousepositiveairpressuretoblowchipsoutofdrive,asthis tendsto lodgedebrisunderelectroniccomponents .Contaminatingthedrivewithmetalchipscancausedrivefailureandwillvoidthewarranty .

    TheMC3000SeriesisULapprovedforsolidstatemotoroverloadprotection .Therefore,aseparatethermaloverloadrelayisnotrequiredforsinglemotorapplications .Inapplicationswhereonedriveisoperatingmorethanonemotor,aseparatethermaloverloadrelayisrequiredforeachmotorperNEC .

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  • M301L 17

    7 .1 INSTALLATIONAFTERALONGPERIODOFSTORAGE

    WARNING!

    Severedamagetothedrivecanresultifit isoperatedafteralongperiodofstorageorinactivitywithoutreformingtheDCbuscapacitors!

    If inputpowerhasnotbeenappliedto thedrive foraperiodof timeexceedingthreeyears(duetostorage,etc),theelectrolyticDCbuscapacitorswithinthedrivecanchangeinternally,resultinginexcessiveleakagecurrent .Thiscanresultinprematurefailureofthecapacitorsifthedriveisoperatedaftersuchalongperiodofinactivityorstorage .

    Inordertoreformthecapacitorsandpreparethedriveforoperationafteralongperiodof inactivity,apply inputpower to thedrive for8hoursprior toactuallyoperating thedrive/motorsystem .

    7 .2 EXPLOSIONPROOFAPPLICATIONS

    Explosionproofmotorsthatarenotratedforinverteruselosetheircertificationwhenusedforvariablespeed .Duetothemanyareasofliabilitythatmaybeencounteredwhendealingwiththeseapplications,thefollowingstatementofpolicyapplies:

    "LenzeACTechCorporationinverterproductsaresoldwithnowarrantyoffitnessforaparticularpurposeorwarrantyofsuitabilityforusewithexplosionproofmotors .LenzeACTechCorporationacceptsnoresponsibilityforanydirect,incidentalorconsequentialloss,cost,ordamagethatmayarisethroughtheuseofitsACinverterproductsintheseapplications .Thepurchaserexpresslyagrees toassumeall riskofany loss,cost,ordamagethatmayarisefromsuchapplication ."

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  • 18 M301L

    8 INPUTACREQUIREMENTS

    WARNING!

    Hazard of electrical shock! Disconnect incoming power and waitthreeminutesbeforeservicing thedrive .Capacitors retainchargeafterpowerisremoved .

    8 .1 INPUTACPOWERREQUIREMENTS

    8 .1 .1 VOLTAGE

    Theinputvoltagemustmatchthedrive’snameplatevoltagerating .Voltagefluctuationmustnotvarybygreaterthan10%overvoltageor15%undervoltage .

    NOTE

    Driveswith dual rated input voltagemust beprogrammed for thepropersupplyvoltage-seeParameter0-LINEVOLTSinSection18-DESCRIPTIONOFPARAMETERS .

    TheULfileforthisdriveshowsthatitissuitableforuseonacircuitcapableofdeliveringnotmorethan200,000RMSsymmetricalamperes,atthedrive’sratedvoltage .TheCSAfileidentifiesashort-circuitwithstandratingof5,000RMSsymmetricalamperesatthedrivesratedvoltage .

    Threephasevoltage imbalancemustbe less than2 .0%phase tophase .Excessivephasetophaseimbalancecancauseseveredamagetothedrive’spowercomponents .

    Motorvoltageshouldmatchlinevoltageinnormalapplications .Thedrive’smaximumoutputvoltagewillequaltheinputvoltage .Useextremecautionwhenusingamotorwithavoltageratingwhichisdifferentfromtheinputlinevoltage .

    8 .1 .2 SUPPLYTRANSFORMERkVARATINGS

    IfthekVAratingoftheACsupplytransformerisgreaterthantentimestheinputkVAratingofthedrive,adriveisolationtransformer,ora2-3%inputlinereactor(alsoknownasachoke)mustbeadded .

    8 .2 INPUTFUSINGANDDISCONNECTREQUIREMENTS

    AcircuitbreakeroradisconnectswitchwithfusesmustbeprovidedinaccordancewiththeNationalElectricCode(NEC)andalllocalcodes .

    TheMC3000driveiscapableofwithstandingupto150%currentoverloadfor60seconds .Selectafuseormagnetictripcircuitbreakerratedat1 .5timestheinputcurrentratingofthedrive(theminimumsizeshouldbe10amps,regardlessofinputcurrentrating) .RefertoSection5–MC3000RATINGS .

    Minimumvoltageratingoftheprotectiondeviceshouldbe250Vacfor240/120Vacand240/200Vacrateddrives,and600Vacfor480/400Vacand590/480Vacdrives .

    Currentlimitingtypefusesshouldbeusedwheninputfusingisrequired .Selectfuseswith low I2T values, ratedat200,000AIC .Recommended fusesareBussman typekTk-R,JJNorJJS .Similarfuseswithequivalentratingsbyothermanufacturersmayalsobeacceptable .

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  • M301L 19

    9 VOLTAGESELECTION

    9 .1 INPUTVOLTAGERATINGS

    M3100Seriesdrivesareratedfor240/120Vac,50-60Hzinput .Thedrivewillfunctionwithinputvoltageof120Vac(+10%,-15%)at48to62Hzwhenwiredfor120Vacinput,orwithinputvoltageof240Vac(+10%,-15%),at48to62Hz,whenwiredfor240Vacinput .

    M3200Seriesdrivesareratedfor240/200Vac,50-60Hzinput .Thedrivewillfunctionwithinputvoltagesof200to240Vac(+10%,-15%),at48to62Hz .

    M3400Seriesdrivesareratedfor480/400Vac,50-60Hzinput .Thedrivewillfunctionwithinputvoltagesof400to480Vac(+10%,-15%),at48to62Hz .

    M3500Seriesdrivesareratedfor590/480Vac,50-60Hzinput .Thedrivewillfunctionwithinputvoltagesof480to590Vac(+10%,-15%),at48to62Hz .

    Toselecttheproperinputvoltageon240/200VAC30-60Hpmodels,400/480VAC75-150Hpand480/590VAC75-150HpmodelsthePL2plugmustbeinthecorrectposition .PL2islocatedeitheratthelowerrightcorner,orupperrightcornerofthepowerboard,dependingonhorsepower .ThePL2plugisusedtoselectthecorrectinputvoltage .PlugPL2intothetopandmiddlepinstoselect240,480,or590VACorthemiddleandbottompinstoselect200,400,or480 .

    NOTE:Inadditiontothevoltageplugselection,Parameter0–LINEVOLTSmustalsobeprogrammedforthepropervoltage .RefertoSection18-DESCRIPTIONOFPARAMETERS .

    VoltageSelectionPlug(PL2)

    MODELCODE

    120014001500

    200V400V480V

    240V480V590V

    240 / 480 / 590 Vac INPUT

    MODELCODE

    120014001500

    200V400V480V

    240V480V590V

    200 / 400 / 480 Vac INPUT

    PL2 PL2

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  • 20 M301L

    10 POWERWIRING

    WARNING!

    Hazard of electrical shock! Disconnect incoming power and waitthreeminutesbeforeservicing thedrive .Capacitors retainchargeafterpowerisremoved .

    Notethedriveinputandoutputcurrentratingsandcheckapplicableelectricalcodesforrequiredwiretypeandsize,groundingrequirements,overcurrentprotection,andincomingpowerdisconnect,beforewiringthedrive .Sizeconservativelytominimizevoltagedrop .

    InputfusingandapowerdisconnectswitchorcontactorMUSTbewiredinserieswithterminalsL1,L2,andL3(L1andL2ifinputissinglephase) .IfonehasnotbeensuppliedbyLenzeACTechCorporation,adisconnectmeansmustbewiredduringinstallation .Thisdisconnectmustbeused topowerdown thedrivewhenservicing,orwhen thedriveisnottobeoperatedforalongperiodoftime,butshouldnotbeusedtostartandstopthemotor .

    Repetitivecyclingofadisconnectorinputcontactor(morethanonceeverytwominutes)maycausedamagetothedrive.

    10 .1 WIRINGFORSINGLEPHASEORTHREEPHASEINPUT

    Ifthedriveisnameplatedfor240/120Vacsinglephaseinput,wiretheinputtoterminalsL1andNandjumperterminalsL1toL2for120Vacinputvoltage,orwiretoterminalsL1andL2(donotwiretoN)for240Vacinputvoltage .RefertoSection11-MC3000POWERWIRINGDIAGRAM .

    Ifthedriveisnameplatedforthreephaseinputonly,wiretheinputtoterminalsL1,L2,andL3 .

    Allthreepoweroutputwires,fromterminalsT1,T2,andT3tothemotor,mustbekepttightlybundledandruninaseparateconduitawayfromallotherpowerandcontrolwiring .

    Itisnotrecommendedtoinstallcontactorsordisconnectswitchesbetweenthedriveandmotor .Operatingsuchdeviceswhilethedriveisrunningcanpotentiallycausedamagetothedrive'spowercomponents .Ifsuchadeviceisrequired,itshouldonlybeoperatedwhenthedriveisinaSTOPstate .Ifthereispotentialforthedevicetobeopenedwhilethedriveisrunning,thedrivemustbeprogrammedforCOASTTOSTOP(seeParameter26-STOP),andanauxiliarycontactonthedevicemustbeinterlockedwiththedrive'sruncircuit .Thiswillgivethedriveastopcommandatthesametimethedeviceopens,andwillnotallowthedrivetostartagainuntilthedeviceisclosed .

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  • M301L 21

    11 MC3000POWERWIRINGDIAGRAM

    T1 T2 T3 L1 L2 L3

    FUSEDINPUTVOLTAGE

    GNDGND

    GND

    DISCONNECTMEANS

    (REQUIRED)THREEPHASEACMOTOR

    240VacSINGLEPHASEINPUT

    WIRINGDIAGRAM

    120VacSINGLEPHASEINPUT

    WIRINGDIAGRAM

    L1 L2 N

    L1 L2 N

    WARNING!

    DoNOTconnectincomingACpowertooutputterminalsT1,T2orT3 .Severedamagetothedrivewillresult .

    INSTALL,WIRE,ANDGROUNDINACCORDANCEWITHALLAPPLICABLECODES .

    NOTES:1 . Wirethemotorforthepropervoltagepertheoutputratingofthedrive .Motorwires

    MUSTberuninaseparatesteelconduitawayfromcontrolwiringandincomingACpowerwiring .

    2 . DonotinstallcontactorsbetweenthedriveandthemotorwithoutconsultingLenzeACTechformoreinformation .Failuretodosomayresultindrivedamage .

    3 . Remove any existing, and do not install, power factor correction capacitorsbetweenthedriveandthemotor .Failuretodosowillresultindrivedamage .

    4 . UseonlyULandCSAlistedandapprovedwire .5 . Minimumwirevoltageratings:300Vfor120,200and240Vacsystems,and600

    Vfor400,480,and590Vacsystems .6 . Wiregaugemustbebasedonaminimumof125%of the rated input/output

    currentofthedrive,andaminimum75 Cinsulationrating .Usecopperwireonly .7 . WireandgroundinaccordancewithNECorCEC,andallapplicablelocalcodes .

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  • 22 M301L

    12 INITIALPOWERUP

    WARNING!

    Hazard of electrical shock! Disconnect incoming power and waitthreeminutesbeforeservicing thedrive .Capacitors retainchargeafterpowerisremoved .

    Beforeattemptingtooperatethedrive,motor,anddrivenequipmentbesureallprocedurespertainingtoinstallationandwiringhavebeenproperlyfollowed .

    WARNING!

    Severedamagetothedrivecanresultifit isoperatedafteralongperiodofstorageorinactivitywithoutreformingtheDCbuscapacitors!

    If inputpowerhasnotbeenappliedto thedrive foraperiodof timeexceedingthreeyears(duetostorage,etc),theelectrolyticDCbuscapacitorswithinthedrivecanchangeinternally,resultinginexcessiveleakagecurrent .Thiscanresultinprematurefailureofthecapacitorsifthedriveisoperatedaftersuchalongperiodofinactivityorstorage .

    Inordertoreformthecapacitorsandpreparethedriveforoperationafteralongperiodof inactivity,apply inputpower to thedrive for8hoursprior toactuallyoperating thedrive/motorsystem .

    Disconnectthedrivenloadfromthemotor .Verifythatthedriveinputterminals(L1,L2,andL3)arewiredtotheproperinputvoltageperthenameplateratingofthedrive .

    WARNING!

    DoNOTconnectincomingACpowertooutputterminalsT1,T2orT3 .Severedamagetothedrivewillresult .

    Energizetheincomingpowerline .TheLCDdisplayshouldlightandflash“TESTING”andthenshowthevoltageandhorsepowerratingofthedrive .Thedisplayshouldthenshow“STOP20 .00HZ”whichindicatesthatthedriveisinaSTOPcondition,andthespeedsetpointis20 .00Hz:

    STOP > 20.00 HZ

    Ifthedisplaydoesnotappear,removetheincomingpower,waitthreeminutesforthebuscapacitorstodischarge,andverifycorrectinstallationandwiring .Ifthewiringiscorrect,re-applyincomingpowerandnotethedisplayfordrivestatus .Ifthedisplaystilldoesnotappearcallthefactoryforassistance .

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  • M301L 23

    Ifthedrivepowersupcorrectly,followtheproceduregivenbelowtocheckthemotorrotation:

    1 . VerifythatthereisawirejumperbetweenterminalsTB-1andTB-2ontheMainControlBoard .Thedriveshouldhavethis jumper fromthefactory . If it isnotpresent,addone,otherwisethedrivewillnotstart .

    2 . Usethekeytodecreasethespeedsetpointtotheminimumvalueallowed(0 .50HzifParameter10-MINFRQhasnotbeenchanged) .

    3 . PresstheSTARTkey .ThedriveshouldindicateRUN,butifthespeedsetpointis0 .50Hz,themotormaynotrotate .Pressthekeyto increasethespeedsetpointuntilthemotorstartstorotate .

    4 . Ifthemotorisrotatinginthewrongdirection,presstheSTOPkeyandremovepowerfromthedrive .Waitthreeminutesforthebuscapacitorstodischarge,andswapanytwoofthemotorwiresconnectedtoT1,T2,andT3 .

    NOTE1: The drive is phase insensitive with respect to incoming line voltage .Therefore,tochangethemotorrotation,thephasesmustbeswappedatthedriveoutputterminalsoratthemotor .

    NOTE2: Ifthedrive'sdisplayisblankwhenpowerisapplied,andthedriveisequippedwithfansatthebottomoftheheatsink,makesurethefansarespinningandarefreeofanyobstruction .Ifanyofthefansarecloggedwithdebris,itwillcauseablankdisplaywhenpowerisapplied .

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  • 24 M301L

    13 KEYPADCONTROL

    Thedrivecanbeoperatedinanumberofdifferentways:keypad(LOCAL),controldeviceswiredtotheterminalstrip(REMOTE),serialcommunications(SERIAL),orcombinationsofeach .Thedriveshouldfirstbeoperatedfromthekeypadduringinitialstart-up .RefertoSections14-CONTROLWIRING,and18-DESCRIPTIONOFPARAMETERSforinformationonremoteoperation .

    13 .1 kEYPADFUNCTIONS

    START/STOP Tostartthedrive,presstheSTARTkey .Tostopthedrive,presstheSTOPkey .NOTE1: AjumpermayneedtobeinstalledbetweenTB-1and

    TB-2 inorder toSTART thedrive inLOCALmode(refertoParameter30-CONTROL) .

    NOTE2: TheSTOPkeyisactiveinbothLOCALandREMOTEmodes .

    SPEEDSETPOINT Toincreasethespeedsetpoint,pressthekey .Todecreasethespeedsetpoint,pressthekey .NOTE: Theandkeysareonlyactiveifanotherspeed

    referencesourceisnotselected .

    LOCAL/REMOTE To toggle between LOCAL and REMOTE mode, press theLOCAL/REMOTEkeytoselectthedesiredmode,andthenpresstheENTERkeywithinthreesecondstoconfirmthechange .NOTE: Parameter30-CONTROLmustbesettokEYPAD

    orkEYPAD2forthiskeytobeactive .

    AUTO/MANUAL TotogglebetweenAUTOMATIC(terminalstrip)andMANUAL(keypad) speed control, press the AUTO/MAN key to selectthedesiredmode,andthenpresstheENTERkeywithinthreesecondstoconfirmthechange .NOTE: Parameter28-AUTO/MANmustbesettoA/MLOC

    orA/MSPDforthiskeytobeactive .RefertoSection14-CONTROLWIRINGforinformationonautomaticspeedreferencesources .

    FAULTRESET Use theSTOPkey to reseta fault . If the fault conditionhaspassed,pressingtheSTOPkeywillclearthefaultandreturnthedrivetoaSTOPcondition .NOTE: IfanOUTPUTfaultoccurs,therewillbea30second

    delaybeforethefaultcanbeclearedusingtheSTOPkey .

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  • M301L 25

    13 .2 MC3000DISPLAY

    ThefollowingdescribesthepossibledisplayconfigurationsfortheMC3000Seriesdrivewhenoperatingasastandarddrive(withoutPIDcontrol) .RefertoSection19-MC3000PIDSETPOINTCONTROLforacompletedescriptionofdriveoperationwhenusingPIDcontrol .

    13 .2 .1 MC3000DISPLAYINSTOPMODE

    WhenthedriveisintheSTOPmode,therearethreepossibledisplays .ThefirstistheSPEEDdisplay,whichlookslikethis:

    STOP > 60.00 HZ

    DRIVESTATUS

    SPEEDSETPOINT

    SPEEDUNITS

    DIRECTION(FORWARD)

    NOTE

    RefertoParameter31-UNITSfortheSPEEDUNITSdisplayoptions .

    PressingtheENTERkeywillchangethedisplayfromtheSPEEDindicationtothe%LOADindication:

    STOP > 0% LOAD

    DRIVESTATUS

    PERCENTLOAD

    DIRECTION(FORWARD)

    PressingtheENTERkeyagainwillchangethedisplayfromthe%LOADindicationtotheVAC(motorvoltage)indication:

    STOP > 0 VAC

    DRIVESTATUS

    MOTORVOLTAGE

    DIRECTION(FORWARD)

    PressingENTERagainwillchangethedisplaybacktotheSPEEDindication .

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  • 26 M301L

    ThefollowingtableshowsthepossibleDRIVESTATUSindicationsthatcanappearonthedrivedisplay:

    DRIVE STATUS TABLE

    DISPLAY DESCRIPTION

    STOP Drive to STOP mode - No output to motor.

    RUN Drive is in RUN mode and is within + 0.3 Hz of the speed setpoint.

    FAULTDrive has shut down due to a FAULT condition. If the fault condition has passed, pressing the STOP key will clear the fault and return thedrive to the STOP mode.

    LOCK Drive is in FAULT LOCKOUT after five unsuccessful restart attempts.

    BRAKE DC BRAKE is energized.

    LIMIT Drive is in CURRENT LIMIT due to an overloaded motor, or ACCEL is set too fast.

    F DEC Drive is in DECEL FREEZE because DECEL is set too fast.

    13 .2 .2 MC3000DISPLAYINRUNMODE

    WhenthedriveisintheRUNmode,thedefaultdisplaywilllooklikethis:

    RUN > 60.00 HZ

    DRIVESTATUS

    SPEEDSETPOINT

    SPEEDUNITS

    DIRECTION(FORWARD)

    AsintheSTOPmode,theENTERkeycanbeusedtotogglethedisplayfromSPEEDto%LOADtoVAC(motorvoltage):

    RUN > 85% LOAD

    DRIVESTATUS

    PERCENTLOAD

    DIRECTION(FORWARD)

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  • M301L 27

    RUN > 460 VAC

    DRIVESTATUS

    MOTORVOLTAGE

    DIRECTION(FORWARD)

    NOTE

    DuringaccelerationanddecelerationtotheSPEEDSETPOINT,theDRIVESTATUSwillshowtheactualdrivespeed .WhentheSPEEDSETPOINTisreached,theDRIVESTATUSwillchangetoRUN(orSTOPifthedriveisdeceleratingtoaSTOP) .

    13 .2 .3 MC3000DISPLAYINFAULTMODE

    Whenthedrivetripsonafault,thedisplaywillautomaticallychangetotheFAULTdisplay,whichindicatestheFAULTMESSAGE:

    FAULT: OVERLOAD

    DRIVESTATUS

    FAULTMESSAGE

    InFAULTmode,theENTERkeywilltogglethedisplaybetweenfourscreens:FAULT,SPEED,%LOADandVAC .TheDRIVESTATUSforthesedisplayswillbeFAULT .AnexampleisshownbelowofthedriveintheFAULTmodedisplayingSPEED .

    FAULT > 60.00 HZ

    DRIVESTATUS

    SPEEDSETPOINT

    SPEEDUNITS

    DIRECTION(FORWARD)

    NOTE

    To clear a FAULT, press the STOP key, issue a remote STOPcommandatTB-1,oruseTB-13D(refertoParameter50-TB13D) .

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  • 28 M301L

    13 .2 .4 MC3000DISPLAYINAUXILIARYMODE

    IftheENTERkeyishelddown,thedisplaywillentertheauxiliarymodeandcyclebetweentwodisplays:aCONTROLdisplaythatindicatesthecontrolsource(LOCAL,REMOTE,orSERIAL),AUTOorMANUALmode,andthespeedreferencesource,andaTIMEdisplaythatindicatestotalelapsedruntime .WhentheENTERkeyisreleased,thedisplaywillreturntothepreviousscreen .Examplesoftheauxiliarymodedisplaysareshownbelow:

    CONTROLDISPLAY

    LOCAL -- AUTO -- IDC

    CONTROLSOURCE

    AUTO/MANMODE

    SPEEDREFERENCE

    SOURCE

    TIMEDISPLAY

    TIME: 487.2 HRS

    ThetablebelowshowsthepossibleSPEEDREFERENCESOURCEindicationsfortheCONTROLdisplayintheauxiliarymode:

    SPEED REFERENCE SOURCE TABLE

    DISPLAY DESCRIPTION

    KEY KEYPAD - and keys.

    VDC 0 - 10 VDC analog input at TB-5A (In PID mode, this indicates that the SETPOINT reference is a 0-10 VDC signal).

    IDC 4 - 20 mA analog input at TB-5B (In PID mode, this indicates that the SETPOINT reference is a 4-20 mA signal).

    SP#1 - SP#4 PRESET SPEED #1 - PRESET SPEED #4

    MKBMANUAL KEYBOARD - The and keys are used for speedcontrol. This occurs in PID mode when the drive is put into HAND(open-loop) mode.

    AKBAUTO KEYBOARD - The and keys are used as the PIDSETPOINT reference. This occurs in PID mode when the drive is put into AUTO (closed-loop) mode.

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  • M301L 29

    14 CONTROLWIRING

    14 .1 GENERAL

    14 .1 .1 kEYPADCONTROL

    Thedrivecanbecontrolledbythekeypadorbycontroldeviceswiredtotheterminalstrip .Thedrivewillrunfromthekeypad“outofthebox”,aslongasthefactoryjumperbetweenTB-1andTB-2ispresent,asshownbelow .Ifthejumperisnotpresent,addone,otherwisethedrivewillnotstartfromthekeypad .RefertoSection13-kEYPADCONTROL .

    FACTORYJUMPER

    1 2 5A 5B 6 10A 12A RXA TXB10B 2 13A 13B 13C 13D 14 15 2 16 17 18

    14 .1 .2 CONTROLWIRINGVS .POWERWIRING

    ExternalcontrolwiringMUSTberuninaseparateconduitawayfromallotherinputandoutputpowerwiring .Ifcontrolwiringisnotkeptseparatefrompowerwiring,electricalnoisemaybegeneratedonthecontrolwiringthatwillcauseerraticdrivebehavior .Usetwistedwiresorshieldedcablegroundedat thedrivechassisONLY .RecommendedcontrolwireisBelden8760(2-wire)or8770(3-wire),orequivalent .

    Torquethecontrolterminalsto2lb-in(0 .2Nm) .Becarefulnottoovertorquethecontrolterminals,as thiswill causedamage to the terminal strip .This isnot coveredunderwarrantyandcanonlyberepairedbyreplacingthecontrolboard .

    14 .1 .3 TB-2:CIRCUITCOMMON

    TheTB-2terminalsareusedascircuitcommonforthestart/stop,inputselect,local/remote,analoginput,andanalogoutputfunctions .TherearethreeTB-2terminalsavailableontheterminalstrip,andtheyareallinternallyconnectedtoeachotheronthemaincontrolboard .IfnecessaryTB-2maybeconnectedtochassisground .

    NOTE

    TB-2 MUST be connected to chassis ground when using serialcommunications .

    14 .1 .4 SURGESUPPRESSIONONRELAYS

    Currentandvoltagesurgesandspikesinthecoilsofcontactors,relays,solenoids,etc,nearorconnectedtothedrive,cancauseerraticdriveoperation .Therefore,asnubbercircuitshouldbeusedoncoilsassociatedwiththedrive .ForACcoils,snubbersshouldconsistofaresistorandacapacitorinseriesacrossthecoil .ForDCcoils,afree-wheelingorflybackdiodeshouldbeplacedacrossthecoil .Snubbersaretypicallyavailablefromthemanufacturerofthedevice .

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  • 30 M301L

    14 .2 START/STOPANDSPEEDCONTROL

    14 .2 .1 REMOTEMODESELECTION

    In order to respond to external START/STOP commands, the drive must be in theREMOTEmode .TheREMOTEmodecanbeselectedbyoneofthreemethodsontheMC3000drive:

    1 . ProgramParameter30-CONTROLtoREMOTE .

    2 . ProgramParameter30-CONTROLtokEYPADorkEYPAD2,whichactivatestheLOCAL/REMOTEkeyon thekeypad .Press theLOCAL/REMOTEkey toselectREMOTEmode,andthenpresstheENTERkeywithinthreeseconds .

    3 . ProgramParameter30-CONTROLtoTBSTRIP,andprogramthefunctionofterminalTB-13AorTB-13C(Parameter47or49)toLOCALSELECT .DONOTmakeacontactclosurebetweenTB-13AorTB-13CandTB-2(makingthecontactclosurewillselectLOCALmode) .

    14 .2 .2 TWO-WIRESTART/STOPCONTROL

    Atwo-wirestart/stopcircuitcanbeaccomplishedasfollows:

    1 . SelectREMOTEmode(seeabove) .

    2 . ConnectajumperbetweenTB-12AandTB-2toprovideapermanentSTARTcommandtothedrive .

    3 . WireanormallyopenmaintainedcontactbetweenTB-1andTB-2 .ClosethiscontacttoRUNthedriveandopenthiscontacttoSTOPthedrive .

    RefertothewiringdiagraminSection15 .2 .

    14 .2 .3 THREE-WIRESTART/STOPCONTROL

    Athree-wirestart/stopcircuitcanbeaccomplishedasfollows:

    1 . SelectREMOTEmode(seeabove) .

    2 . Wire a normally closed momentary STOP contact between TB-1 and TB-2 .MomentarilyopenthiscontacttoSTOPthedrive .

    3 . WireanormallyopenmomentarySTARTcontactbetweenTB-12AandTB-2 .MomentarilyclosethiscontacttoSTARTthedrive .

    RefertothewiringdiagraminSection15 .3 .

    14 .2 .4 SPEEDREFERENCESIGNALS

    Thedriveallowsforthreeanalogspeedreferenceinputs:aspeedpotentiometer(10,000Ohm),0-10VDC,or4-20mA .

    SPEEDPOT ConnectthewipertoterminalTB-5A,andconnectthehighandlowendleadstoterminalsTB-6andTB-2,respectively .

    0-10VDC WirethepositivetoterminalTB-5AandthenegativetoterminalTB-2 .TB-5Ainputimpedanceis200kilohms .

    4-20mA WirethepositivetoterminalTB-5BandthenegativetoterminalTB-2 .TB-5Binputimpedanceis100ohms .

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  • M301L 31

    14 .2 .5 SPEEDREFERENCESELECTION

    AUTO/MANvs.LOCAL/REMOTE

    FortheMC3000Seriesdrive,operatinginstandard(non-PID)mode,AUTO/MANreferstospeedcontrol,andLOCAL/REMOTEreferstoSTART/STOPcontrol .AUTOMATICandMANUALspeedcontrolselectionisaffectedbywhetherthedriveisinLOCALorREMOTEmode,asdescribedbelow .RefertoSection19-MC3000PIDSETPOINTCONTROLforacompletedescriptionofdriveoperationwhenusingthePIDcontrolfunction .

    AUTO/MANSELECTIONINLOCALMODE

    InLOCALmode (keypadstart/stopcontrol),AUTOMATICandMANUALselection isdeterminedbyParameter28-AUTO/MAN .WhenParameter28issettoA/MLOCorA/MSPD,theAUTO/MANkeyonthekeypadisactiveandcanbeusedtotogglebetweenMANUAL(keypad)andAUTOMATIC(0-10VDC,4-20mA,orpresetspeeds)speedcontrol .ThisisdonebypressingtheAUTO/MANkeytoselectthedesiredmode,andthenpressingtheENTERkeywithinthreesecondstoconfirmthechange .

    WhenAUTOMATICmodeisselected,oneoftheTB-13inputselectsmustbeprogrammedtoselectthedesiredspeedreference,andthatTB-13terminalmustbeclosedtoTB-2 .Thedrivewillthenrespondtotheautomaticspeedreference .IfthecontactclosureisnotmadebetweentheTB-13terminalandTB-2,thedrivewillremaininAUTOmode,butspeedcontrolwilldefaulttothekeypad .Therefore,iftheFormCrelayoropen-collectoroutputsaresettoindicateAUTO/MANmode,theywillstillindicateAUTOmode .

    AUTO/MANSELECTIONINREMOTEMODE

    InREMOTEmode(terminalstripstart/stopcontrol),speedcontroliseitherselectedusingtheAUTO/MANkey(Parameter28-AUTO/MANmustbesettoA/MSPDtodothis),orbyusingtheTB-13inputselects .

    IfAUTOMATICmodeisselectedusingtheAUTO/MANkey(Parameter28-AUTO/MANmustbesettoA/MSPDtodothis),andaspeedreferenceisnotselectedusingoneoftheTB-13inputselects,thedrivewillremaininAUTOmode,butspeedcontrolwilldefaulttothekeypad .Therefore,iftheFormCrelayoropen-collectoroutputsaresettoindicateAUTO/MANmode,theywillstillindicateAUTOmode .

    IfthedriveisconfiguredtoselectAUTOMATICmodebyusingoneofthetheTB-13inputselects,closingtheTB-13terminaltoTB-2selectsAUTOMATICmode,andopeningtheTB-13terminalselectsMANUAL(keypad)mode .Therefore,iftheTB-13terminalisnotclosedtoTB-2,andtheFormCrelayoropen-collectoroutputsaresettoindicateAUTO/MANmode,theywillindicateMANUALmode .

    0-10VDCand4-20mAINPUTSIGNALS

    TB-13A,TB-13B,andTB-13Ccanallbeprogrammedtoselect0-10VDCor4-20mAinput .

    PRESETSPEEDS

    TB-13Acanbeprogrammed toselectSPEED#1,TB-13B toselectSPEED#2,andTB-13C to selectSPEED#3 .Closingany twoof these terminals toTB-2will selectSPEED#4 .RefertoParameters1-4:SPEED#1-#4inSection18-DESCRIPTIONOFPARAMETERS .

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  • 32 M301L

    MOP-MOTOROPERATEDPOT

    TB-13AandTB-13Bareusedforthisfunction,whichsetsthespeedofthedriveusingcontactswiredtotheterminalstrip .ProgramTB-13AtoselectDECFREQ,andprogramTB-13B to select INC FREQ . Closing TB-13A to TB-2 will activate the DEC FREQfunction,andwillcausethespeedsetpointtodecreaseuntilthecontactisopened .DECFREQwilloperatewhenthedriveisinRUNmodeorSTOPmode .ClosingTB-13BtoTB-2willactivatetheINCFREQfunction,andwillcausethespeedsetpointtoincreaseuntilthecontactisopened .INCFREQwillonlyoperatewhenthedriveisinRUNmode .

    NOTE

    IfTB-13A,TB-13B,andTB-13Careallprogrammedtoselectspeedreferences, and twoor threeof the terminals are closed toTB-2,the higher terminal has priority and will override the others . Forexample,ifTB-13Aisprogrammedtoselect0-10VDC,andTB-13CisprogrammedtoselectPRESETSPEED#3,closingbothterminalstoTB-2willcausethedrivetorespondtoPRESETSPEED#3,becauseTB-13CoverridesTB-13A .

    14 .2 .6 ANALOGOUTPUTSIGNALS

    Thereare two terminals thatcansupplyanalogoutputsignalsproportional tooutputfrequencyor load . TerminalTB-10Acanprovidea0-10VDCor a2-10VDCsignalproportionaltooutputfrequency,andTB-10Bcanprovidethesamesignalsproportionaltoload .The2-10VDCsignalscanbeconvertedtoa4-20mAsignalusingaresistorin series with the signal such that the total circuit resistance is 500 ohms . Refer toParameters:42-TB10AOUT,43-@TB10A,44-TB10BOUT,and45-@TB10BinSection18-DESCRIPTIONOFPARAMETERS .

    14 .2 .7 DRIVESTATUSOUTPUTS

    ThecontrolboardhasoneFormCrelayatterminalsTB-16,TB-17,andTB-18 .Contactsarerated2ampsat28VDCor120Vac .

    Therearealso twoopen-collectoroutputsat terminalsTB-14andTB-15 .Theopen-collectorcircuitisacurrent-sinkingtyperatedat30VDCand40mAmaximum .Anexternalpowersupply(30VDCmax)mustbeusedtopowertheopen-collectoroutputs .Thedrivedoesnothaveadedicatedpowersupplyfortheopen-collectoroutputs .

    TheFormCrelayandopen-collectoroutputscanbeprogrammedformanydifferentstatusindications .RefertoParameters52-TB14OUT,53-TB-15OUT,and54-RELAY .

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  • M301L 33

    15 MC3000CONTROLWIRINGDIAGRAMS

    15 .1 MC3000TERMINALSTRIP

    Shownbelowistheterminalstriponthemaincontrolboard,alongwithabriefdescriptionofthefunctionofeachterminal .Wiringshownabovetheterminalstripindicatesinternalwiringonthemaincontrolboard .

    FORM CRELAY

    1 2 5A 5B 6 10A 12A RXA TXB10B 2 13A 13B 13C 13D 14 15 2 16 17 18

    STOPCIRCUIT COM

    MON

    0-10 VDC SPEED REFERENCE INPUT

    10 VDC SUPPLY FOR SPEED POT

    0-10 OR 2-10 VDC OUTPUT: FREQUENCY

    0-10 OR 2-10 VDC OUTPUT: LOAD

    CIRCUIT COMM

    ON

    START

    TB-13A FUNCTION SELECT

    TB-13B FUNCTION SELECT

    TB-13C FUNCTION SELECT

    TB-13D FUNCTION SELECT

    OPEN-COLLECTOR OUTPUTOPEN-COLLECTOR OUTPUT

    RS-485 SERIALCOM

    MUNICATIONS

    CIRCUIT COMM

    ON

    4-20 mA SPEED REFERENCE INPUT

    TheTB-2terminalsareinternallytiedtogether

    NOTE

    The function of terminals TB-10A, TB-10B, TB-13A, TB-13B, TB-13C,TB-13D,TB-14,TB-15,TB-16,andTB-18aredependentontheprogrammingofcertainparameters .Inmostcases,thenameoftheparametermatchesthenumberof the terminal,allowingquickandeasyprogrammingoftheterminalstosuittheapplication .TheexceptionisTB-16andTB-18,whicharegovernedbyParameter54-RELAY .

    Acompletedescriptionofoperating thedrive in theREMOTEmodecanbefound inSection14 .2 .Thefollowingdiagramsprovideaquickreferencetowirethedriveforthemostcommonconfigurations .

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  • 34 M301L

    15 .2 TWO-WIRESTART/STOPCONTROL

    Shownbelowisthewiringdiagramforatypicaltwo-wirestart/stopcontrolscheme,usingonemaintainedcontact(suchasthatfromaPLC)forRUNandSTOPcommands .ClosethecontacttoRUN,andopenthecontacttoSTOP .Alsoshownisthewiringfora0-10VDCor4-20mAspeedreferencesignal .

    STOPCIRCUIT COM

    MON

    0-10 VDC INPUT4-20 m

    A INPUT

    CIRCUIT COMM

    ON

    START FORWARD

    MAINTAINEDRUN/STOPCONTACT

    1 2 5A 5B 6 10A 12A RXA TXB10B 2 13A 13B 13C 13D 14 15 2 16 17 18

    START REVERSE0-10 VDC or 4-20 mA SELECT (see Note 3)

    FWD REV(see Note 2)

    TheTB-2terminalsareinternallytiedtogether

    NOTES:

    1 . CloseTB-1toTB-2toRUN,andopentoSTOP .

    2 . IfREVERSEdirection isrequired,TB-13Cmustbeset toSTARTREVERSE(refer toParameter49-TB13C) . IfREVERSEisnotrequired,simply jumperTB-12AtoTB-2 .

    3 . ProgramTB-13A,13B,or13Ctoselecttheappropriatespeedreferencesignalthatwillcontrolthedrivespeed(refertoParameters47,48,and49) .WhenthatTB-13terminalisclosedtoTB-2,thedrivewillrespondtotheselectedspeedreferencesignal .Inthediagramabove,TB-13Aisprogrammedtoselecteithera0-10VDCor4-20mAsignal .

    4 . IfthecontactclosureisnotmadebetweenTB-13AandTB-2toselectaspeedreference,thedrivewilldefaulttokeypadspeedcontrol .

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  • M301L 35

    15 .3 THREE-WIRESTART/STOPCONTROL

    Shownbelowis thewiringdiagramfora typical three-wirestart/stopcontrolscheme,usingmomentarycontacts (suchaspushbuttons) forSTARTandSTOPcommands .Alsoshownisthewiringfora0-10VDCor4-20mAspeedreferencesignal

    STOPCIRCUIT COM

    MON

    0-10 VDC INPUT4-20 m

    A INPUT

    CIRCUIT COMM

    ON

    START FORWARD

    MOMENTARY STOP CONTACT

    1 2 5A 5B 6 10A 12A RXA TXB10B 2 13A 13B 13C 13D 14 15 2 16 17 18

    START REVERSE

    0-10 VDC or 4-20 mA SELECT (see Note 3)

    FWD REV(see Note 2)

    MOMENTARY START CONTACT

    TheTB-2terminalsareinternallytiedtogether

    NOTES:

    1 . MomentarilycloseTB-12AtoTB-2toSTART,andmomentarilyopenTB-1toTB-2toSTOP .

    2 . IfREVERSEdirection isrequired,TB-13Cmustbeset toSTARTREVERSE(refertoParameter49-TB13C) .IfREVERSEisnotrequired,connecttheothersideofthestartbuttontoTB-12A .

    3 . ProgramTB-13A,13B,or13Ctoselecttheappropriatespeedreferencesignalthatwillcontrolthedrivespeed(refertoParameters47,48,and49) .WhenthatTB-13terminalisclosedtoTB-2,thedrivewillrespondtotheselectedspeedreferencesignal .Inthediagramabove,TB-13Aisprogrammedtoselecteithera0-10VDCor4-20mAsignal .

    4 . IfthecontactclosureisnotmadebetweenTB-13AandTB-2toselectaspeedreference,thedrivewilldefaulttokeypadspeedcontrol .

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  • 36 M301L

    15 .4 SPEEDPOTANDPRESETSPEEDCONTROL

    ShownbelowisthewiringdiagramforacontrolschemethatutilizesaspeedpotandPRESETSPEEDSforspeedcontrol,andeitheratwo-wireorthree-wireSTART/STOPcircuit:

    STOPCIRCUIT COM

    MON

    0-10 VDC INPUT

    10 VDC SUPPLY

    CIRCUIT COMM

    ON

    START

    1 2 5A 5B 6 10A 12A RXA TXB10B 2 13A 13B 13C 13D 14 15 2 16 17 18

    PRESET SPEED #3

    SPEED POT(10 K)

    PRESET SPEED #1

    PRESET SPEED #2

    CIRCUIT COMM

    ON

    TheTB-2terminalsareinternallytiedtogether

    NOTES:1 . ProgramthePRESETSPEEDS(Parameters1-4)tothedesiredvalues .2 . ProgramTB-13AtoselectSPEED#1,TB-13BtoselectSPEED#2,andTB-13C

    toselectSPEED#3(seeParameters47,48and49) .3 . Toselectapresetspeed,closetheappropriatepresetspeedterminaltoTB-2 .

    ToselectSPEED#4,closeanytwoofthepresetspeedterminalstoTB-2 .4 . Forspeedpotcontrol,oneoftheTB-13terminalsneedstobeprogrammedto

    select0-10VDC .ClosetheselectedTB-13terminaltoTB-2forspeedpotcontrol .Thiswillresultinthelossofoneofthepresetspeeds .

    5 . Ifnoneofthepresetspeeds(orthespeedpot)areselectedviacontactclosures,thedrivewilldefaulttokeypadspeedcontrol .

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  • M301L 37

    16 PROGRAMMINGTHEMC3000DRIVE

    16 .1 PROGRAMMINGTHEPARAMETERS

    TheMC3000keypadservestwopurposes:operatingthedrivewhenintheLOCALmode,andprogrammingtheparametersforparticularapplications .Thekeypadisshownbelow,alongwiththedisplaythatshouldappearwhenthedriveisfirstpoweredup:

    AUTO

    LOCAL

    STOP > 20.00 HZ

    START

    STOPENTERREMOTE

    MANPROGRUN

    Toprogramthedrive,thePROGRAMmodemustbeenteredbypressingthePROG/RUNbutton .Ifthepasswordprotectionisdisabled,pressingthePROG/RUNbuttonwillresultindirectentryintothePROGRAMmode .Ifthepasswordprotectionisenabled,thePASSWORDpromptwillappearwhenanattemptismadetoenterthePROGRAMmode .ThePASSWORDpromptappearsasfollows:

    PASSWORD 0000

    CURSOR

    Toenterthepassword,usetheUPandDOWNarrowkeystoscroll tothepasswordvalue,andthenpresstheENTERkey .

    NOTE

    Thefactorydefaultpasswordis0019 .

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  • 38 M301L

    Oncethecorrectpasswordisentered,thePROGRAMmodewillbeenteredandthefirstparameterwillbedisplayed,whichisParameter0-LINEVOLTS .Thisisshownbelow:

    LINE VOLTS AUTO

    PARAMETERNAME

    PARAMETERVALUE

    CURSOR

    Toscrollthroughtheparameters,usetheandkeysonthekeypad .Whenthedesiredparameterisfound,presstheENTERkeytoshiftthecursorfromtheparameternametotheparametervalue .Inthisexample,thecursorshiftsfromLINEVOLTStoAUTO:

    LINE VOLTS AUTO

    PARAMETERNAME

    PARAMETERVALUE

    CURSOR

    Theparametervaluecanthenbechangedusingtheandkeys .Iftheparameterhasanumericalvalue,thekeywillincreasethevalueandthekeywilldecreasethevalue .Iftheparameterhasspecificchoicesthatcanbeselected,theandkeyswillscrollthroughthelistofpossiblesettings .Whenthedesiredvalueoroptionisselected,presstheENTERkeytostorethenewsetting .IfthenewsettingisnotENTERED,itwillnottakeeffectandtheoldsettingwillstillbevalid .

    IfthePROG/RUNkeyispushedwhilethecursorishighlightingtheparametervalue,thevaluewillchangebacktotheoriginalsetting(ifithadbeenchanged,butnotENTERED),andthecursorwillshiftbacktotheparametername .PressingPROG/RUNagainwillexitthePROGRAMmode .IfthePROGRAMmodeisenteredagainwithintwominutes,thelastparameterthatwasviewed,orchanged,willcomeuponthedisplay .Aftertwominuteshaselapsed,thepasswordwillhavetobeenteredagainwhenattemptingtoaccessthePROGRAMmode .

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  • M301L 39

    16 .2 PARAMETERACCESSUSINGSPEEDDIAL

    SPEEDDIALisusedtoaccessparametersquicklyusingtheparameternumber .Onceaccessed, theparametercanbeprogrammedasdescribed inSection16 .1 .SPEEDDIALisaccessedbypressingtheAUTO/MANkeywhileinthePROGRAMmode .ThiswillactivatetheSPEEDDIALdisplayasshownbelow:

    - SPEED DIAL -

    OnceinSPEEDDIAL,theandkeyswillallowtheoperatortoscrollthroughtheparameternumbers .ThedisplaywillcontinuetoshowSPEEDDIALwhilescrollingthroughtheparameternumbers,asshownbelow:

    #11 SPEED DIAL

    Whenthedesiredparameterisreached,theSPEEDDIALdisplaywillbereplacedbytheparametername:

    #11 MAX FRQ

    Oncethedesiredparameterisdisplayedonthescreen,presstheENTERkeytodisplaytheparameternameandpresentsetting .TheparametersettingcannowbechangedbythemethoddescribedinSection16 .1 .PresstheAUTO/MANkeytoreturntoSPEEDDIAL .

    NOTE

    SPEEDDIALisonlyactiveinMC3000driveswhichhavetheModbusserialcommunicationsprotocol .UnitsthathavetheMetasysprotocoldonothavethisfeature .

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  • 40 M301L

    17 PARAMETERMENU

    PARAMETER MENU

    PARAM.NUMBER

    PARAMETERNAME

    RANGE OFADJUSTMENT

    FACTORYDEFAULT

    0 LINE VOLTSHIGHLOWAUTO

    AUTO

    1 SPEED #1 MIN FRQ - MAX FRQ 20.00 Hz

    2 SPEED #2 MIN FRQ - MAX FRQ 20.00 Hz

    3 SPEED #3 MIN FRQ - MAX FRQ 20.00 Hz

    4 SPEED #4 MIN FRQ - MAX FRQ 20.00 Hz

    5 SKIP #1 0.00 Hz - MAX FRQ 0.00 Hz

    6 SKIP #2 0.00 Hz - MAX FRQ 0.00 Hz

    7 BAND WID 0.00 - 10.00 Hz 1.00 Hz

    8 ACCEL (NOTE 1) 30.0 SEC

    9 DECEL (NOTE 1) 30.0 SEC

    10 MIN FRQ 0.00 - MAX FRQ .50 Hz

    11 MAX FRQ MIN FRQ - 120.0 Hz 60.00 Hz

    12 DC BRAKE (NOTE 1) 0.0 VDC

    13 DC TIME 0.0 - 999.9 SEC 0.0 SEC

    14 DYN BRAKE OFFON OFF

    16 CURRENT 25 - 180 % (NOTE 2) 180%

    17 MOTOR OL 25 - 100 % 100%

    18 BASE 20.00 - 360.0 Hz 60.00 Hz

    19 FX BOOST 0.0 - 30.0 % (NOTE 1)

    22 TORQUECONSTANTVARIABLE

    CT / NOCMPCONSTANT

    23 CARRIER 2.5, 6, 8, 10, 12, 14 kHz 2.5 kHz

    25 START

    NORMALPOWER UP

    AUTO 1AUTO 2AUTO 3

    NORMAL

    26 STOPCOASTRAMPRAMP2

    COAST

    NOTE1: RefertoSECTION18-DESCRIPTIONOFPARAMETERS

    NOTE2: Iflinevoltsissetto"LOW"(orsetto"AUTO"andtheinputvoltageislow),therangeis25-150% .

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  • M301L 41

    PARAMETER MENU

    PARAM.NUMBER

    PARAMETERNAME

    RANGE OFADJUSTMENT

    FACTORYDEFAULT

    28 AUTO/MAN

    A / M LOCAUTO

    MANUALA / M SPD

    A / M LOC

    30 CONTROL

    LOCALREMOTESERIALKEYPADTB STRIPKEYPAD 2

    LOCAL

    31 UNITS

    sp: HERTZ, RPM, % HZ,

    speed: HERTZ /SEC, /MIN, /HR, GPH, NONE

    pid: %, PSI, FPM, CFM, GPM, IN,FT, /SEC, /MIN, /HR, F, C, MPM,

    GPH32 HZ MULT 0.10 - 650.0 1.00

    33 UNITS DP

    XXXXXXXX.XXX.XXX.XXX.XXXX

    XXXXX

    34 LOAD MLT 95 - 139 % 100%

    35 CONTRASTLOWMEDHIGH

    MED

    36 SLEEP TH 0.00 - 360.0 Hz 0.00 Hz

    37 SLEEP DL 0.0 - 300 SEC 30.0 SEC

    38 SLEEP BW FB @ MIN - FB @ MAX 0%

    39 TB5 MIN 0.00 - 360.0 Hz 0.00 Hz

    40 TB5 MAX 0.00 - 360.0 Hz 60.00 Hz

    41 AIN FLTR 0.01 - 10.0 SEC 0.02 SEC

    42 TB10A OUTNONE0-10V2-10V

    NONE

    43 @TB10A 0.00 - 360.0 Hz 60.00 Hz

    44 TB10B OUTNONE0-10V2-10V

    NONE

    45 @TB10B 10 - 200 % 125 %

    47 TB13A

    NONE, 0-10VDC, 4-20MA,

    NONESPEED#1, LOC SEL,

    DEC FREQ

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  • 42 M301L

    PARAMETER MENU

    PARAM.NUMBER

    PARAMETERNAME

    RANGE OFADJUSTMENT

    FACTORYDEFAULT

    48 TB13B

    NONE0-10VDC4-20MA NONE

    SPEED#2INC FREQ

    49 TB13C

    NONE0-10VDC4-20MA

    SPEED#3LOC SEL

    STRT REV

    NONE

    50 TB13DEXT FAULTEXT/FAULTEXT CLEAR

    EXT FAULT

    525354

    TB14 OUTTB15 OUT

    RELAY

    NONERUN

    FAULT/FAULTLOCK

    @ SPEEDABOVE #3

    I LIMITAUT/MANFLWR PRMIN/MAX

    / MIN/MAXMIN ALR

    / MIN ALRMAX ALR

    / MAX ALRREVERSE

    SLEEPSPD=0Hz

    NONE

    55 TB5B LOSSNONEFAULTSP#4

    FAULT

    57 SERIALDISABLEDW/TIMERW/O TIMR

    DISABLE

    58 ADDRESS 1 - 247 (Modbus)1 - 255 (Metasys) 30

    61 PASSWORD 0000 - 9999 0019

    63 SOFTWARE (VIEW - ONLY) (N/A)

    64 MONITOR OFFON ON

    65 PROGRAMMAINTAINRESET 60RESET 50

    RESET 60

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  • M301L 43

    PARAMETER MENU

    PARAM.NUMBER

    PARAMETERNAME

    RANGE OFADJUSTMENT

    FACTORYDEFAULT

    66 HISTORY MAINTAINCLEAR MAINTAIN

    70 PID MODEOFF

    NORMALREVERSE

    OFF

    74 PID FB TB-5ATB-5B TB-5A

    75 FB @ MIN -32500 to 32500 0.0%

    76 FB @ MAX -32500 to 32500 100.0%

    77 P GAIN 0.0 - 999.9% 5.00%

    78 I GAIN 0.0 - 10.0 SEC 0.0 SEC

    79 D GAIN 0.0 - 10.0 SEC 0.0 SEC

    80 PID ACC 0.0 - 100.0 SEC 30.0 SEC

    81 MIN ALRM FB @ MIN - FB @ MAX 0.0%

    82 MAX ALRM FB @ MIN - FB @ MAX 0.0%

    98 LANGUAGE (NOTE 1) ENGLISH

    99 FAULT HISTORY (VIEW - ONLY) (N/A)

    NOTE1: RefertoSECTION18-DESCRIPTIONOFPARAMETERS

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  • 44 M301L

    18 DESCRIPTIONOFPARAMETERS

    0 LINEVOLTS (LINEVOLTAGE)

    Thisparametercalibratesthedriveforthecorrectinputvoltage,andcanbesettoAUTO,HIGH,orLOW .

    WhensettoAUTO,thedrivemeasurestheDCbusvoltagewhenpowerisappliedandautomaticallycalibratesitselfaccordingtothemeasuredvalue(DCbusvoltageisequaltoinputvoltagemultipliedby1 .4) .

    Thisparametercanalsobeset“manually”,usingtheHIGHorLOWsettings .Foractuallinevoltagesof220-240Vac(on240/200Vacmodels),460-480Vac(on480/400Vacmodels),or575-600Vac(on590/480Vacmodels),setthisparametertoHIGH .AlsousetheHIGHsettingfor240/120Vacsingle-phaseinputmodels .Refertothetablebelow .

    Foractuallinevoltagesof200-208Vac(on240/200Vacmodels),380-415Vac(on480/400Vacmodels),or460-480Vac(on590Vacmodels),setthisparametertoLOW .Refertothetablebelow .

    INPUT LINE VOLTAGE SELECTION

    MODEL RATED INPUTVOLTAGEINPUTPHASE

    ACTUAL INPUTVOLTAGE

    PARAM.SETTING

    M3100S 240 / 120 Vac 1 220 - 240 Vac HIGH

    240 / 120 Vac 1 110 - 120 Vac HIGH

    M3200(S) 240 Vac 1 220 - 240 Vac HIGH

    240 / 200 Vac 3 220 - 240 Vac HIGH

    240 / 200 Vac 3 200 - 208 Vac LOW

    M3400 480 / 400 Vac 3 460 - 480 Vac HIGH

    480 / 400 Vac 3 380 - 415 Vac LOW

    M3500 590 / 480 Vac 3 575 - 600 Vac HIGH

    590 / 480 Vac 3 460 - 480 Vac LOW

    1-4 SPEED#1-#4 (PRESETSPEEDS#1,#2,#3,AND#4)

    PRESETSPEEDSareonlyactivewhenthedriveisinAUTOmode,andareactivatedviacontactclosuresbetweenterminalTB-2andterminalsTB-13A,TB-13B,andTB-13C .TheseterminalsmustbeprogrammedaspresetspeedselectsusingParameters47-49:TB13A,TB13B,andTB13C .

    Thepresetspeedscanonlybesettovaluesthatarewithintheoperatingrangedefinedbytheminimumandmaximumfrequency(seeParameters10and11) .

    ThefollowingtableshowshoweachpresetspeedisselectedusingtheTB-13terminals .ThetermsOPENandCLOSEDrefertothestateoftheTB-13terminalrelativetoTB-2 .

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  • M301L 45

    PRESET ACTIVATION

    PRESET # TB - 13A TB - 13B TB - 13C

    1 CLOSED OPEN OPEN

    2 OPEN CLOSED OPEN

    3 OPEN OPEN CLOSED

    CLOSED CLOSED OPEN

    4 CLOSED OPEN CLOSED

    OPEN CLOSED CLOSED

    5,6 SKIP#1&#2 (SkIPSPEED#1&#2)

    7 BANDWID (SkIPBANDWIDTH)

    Theseparametersareusedtopreventthedrivefromoperatingcontinuouslyatcriticalfrequenciesthatcauseexcessivemechanicalvibrationofthedrivenequipment .TheSkIPSPEEDS(Parameters5and6)andtheSkIPBANDWIDTH(Parameter7)areusedtodefineuptotwospeedavoidanceranges .TheSkIPSPEEDsettingsdefinethestartingpointofthespeedrangethatistobeavoided,andtheSkIPBANDWIDTHsettingdefineshowfarthespeedrangeextendsbeyondSkIPSPEED .SettingtheSkIPSPEEDSto .00Hzdisablesthisfunction .

    Example: Thecriticalfrequencyis21Hz,andabandwidthof2Hzisdesired .Therefore,setSkIP#1to20HzandsetSkIPBANDWIDTHto2Hz .Thisresultsinaspeedrangefrom20Hzto22Hzthatthedrivewillnotoperatewithincontinuously .Ifthedrivewereoperatingat25Hzandthencommandedtooperateataspeedwithintherangeofavoidance,thedrivewoulddecelerateto22Hzandremainatthatfrequencyuntilcommandedto20Hzorbelow .The drive would then decelerate through the range of avoidance to thenew frequency .Likewise, if thedrivewereoperatingat18Hz,and thencommandedtooperateataspeedwithintherangeofavoidance,thedrivewouldaccelerateto20Hzandremainatthatfrequencyuntilcommandedtoaspeedof22Hzorabove .Thedrivewouldthenacceleratethroughtherangeofavoidancetothenewfrequency .

    8 ACCEL (ACCELERATIONTIME)

    ACCELsetstheaccelerationrateforallspeedreferencesources(keypad,speedpot,4-20mA,0-10VDC,jog,andthepresetspeeds) .TheACCELsettingisthetimetoacceleratefrom0HztotheBASEFREQUENCY(Parameter18) .TherangeofadjustmentforACCELdependsonhorsepower .Refertothetablebelow:

    ACCELERATION LIMITS

    HORSEPOWER RANGE OF ADJUSTMENT

    0.25 - 20 0.1 - 3600 SEC

    25 - 60 0.3 - 3600 SEC

    Example: IfACCELissetto30seconds,andtheBASEFREQUENCYissetto60Hz,thedrivewillrampfrom0Hzto60Hzin30seconds .Thisisalinearfunction,thereforethedrivewouldrampupto30Hzin15seconds,etc .

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  • 46 M301L

    NOTE

    Theability to accelerateagiven loadat a particular rate is limitedby theoutput power capability of thedrive/motor combination .Theaccelerationofhigh-inertiaandhigh-frictionloadsmaybeaffectedbythecurrentlimitingcharacteristicsofthedrive .RefertoParameters:16-CURRENT,19-FXBOOST,and20-ACBOOSTformoreinformation .

    9 DECEL (DECELERATIONTIME)

    DECELsetsthedecelerationrateforallspeedreferencesources .TheDECELsettingisthetimetodeceleratefromBASEFREQUENCYto0Hz .AswithParameter8-ACCEL,thisisalinearfunction .Ifthedriv


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