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MAKING MODERN LIVING POSSIBLE New photo VLT® HVAC Drive For HVAC it has to be VLT®

Transcript of New photo - chongda-yes.com.tw€¦ · Danfoss also provides active solutions such as Low Harmonic...

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MAKING MODERN LIVING POSSIBLE

New photo

VLT® HVAC DriveFor HVAC it has to be VLT®

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The HVAC Drives Specialists

The VLT® HVAC Drive includes: • >98%basicenergyefficiency• AutomaticEnergyOptimisation• User-friendlyoperation• Programmingin27languages

Save moneyThemodulardesignenablestheusergreaterflexibilitytoselectfromarangeoffunctionalperformancerequirementstosecurethebestcostadvantagefortheirapplicationneeds.

Easy commissioning• Applicationmenus• Quickmenu• MotorRotationCheck• PID-autotuning

High ambient temperatureTherobustVLT®HVACDriveisdesignedtoworkatmaximumoutputinanambienttemperatureupto 50°C.Athighertemperatures,thedrive will continue operation with lowerperformance.AutomaticderatingenablesreducedoperationforaperiodoftimestillathigherambienttemperaturestomaintainoperationoftheHVACsystem.

Danfoss has been at the forefront of the drives industry for more than 40 years and was the first to develop a comprehensive understanding of the HVAC market and its drive needs. Danfoss was the first drives provider to develop drives dedicated to HVAC applications and a dedicated HVAC organisation applying drive technology to save energy and reduce C02 emissions in HVAC applications. VLT® drives therefore meet the ever increasing demands for intelligent solutions, comfort and energy saving within the HVAC market sector.

In everything we do, Danfoss is a clean tech company.

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Maintenance freeDuetoaseriesofself-protecting andmonitoringfeaturesandahighlydurablemechanicaldesign,the VLT®HVACDriveismaintenancefree,exceptforgeneralcleaning. Noreplacementofinternalfansorcapacitorsisrequired.

Save spaceDuetoitscompactdimensions,theVLT®HVACDriveiseasilymountedinsideaHVACunitorpanel,reducingoverallenclosurecostsandfreeinguppanelbackspaceforotherdevices.

Fire Override ModeFireOverrideModehelpskeepfireescaperoutesfreeofsmoke,over-ridesthedrive’sself-protectingfeaturesandkeepsthedrivenequip-mentrunningaslongaspossibleintheeventoffire.

ActivatingFireOverrideModewillensuretheVLT®HVACDriveignores“soft“faultsandalarmstocontinueoperationduringessentialservicessuchasa“fire”command.

Save cabinetWeofferastandard&integratedIP55protectionclassequaltothatofthemotor.

Thiseliminatesthecostofaseparateenclosure and saves on the additional installation costs associated with installationinaremotelocation.

IP 66 for harsh environments IP66enclosureoptionforharshenvironments.Thistoocaneliminatethecostofaseparateenclosureandreduce the installation costs associ-atedwithremoteinstallation.

EMC & network protectionFullyintegratedEMCfilterseliminatethecostofinstallingexternalEMCfiltersandsecurethehighestintegrity&fullytestedEMCperformance.

AllversionsofVLT®HVACDrivecom-plyasstandardwithEMClimitsA2accordingtotheEN55011norm.AllA1andBfilteroptionsareavail-ablefactorybuilt-in.

ThestandardintegratedDCcoilsalsoensurelowharmonicloadonthenetworkwithinEN61000-3-12andincreasethelifespanoftheDClinkcapacitors.Theyalsoensurethatthedrivecanoperatemotorstotheirfullperformance.

Forfurtherprotectionagainsthar-monicdisturbancesofthesupplygrid,Danfossprovidespassivesolu-tionssuchas12/18pulsesolutionsandAdvanvedHarmonicFilters(AHF)aswellasactiveharmonicmitigation.

Active solutionsDanfossalsoprovidesactivesolutionssuchasLowHarmonicDrives,com-biningstandarddriveswithanactivefilterandstand-aloneVLT®AdvancedActiveFilters.

1968 1983 1988 1989 1993 1996 1998 2000 2004 2006-

VLT® 5 VLT®100 VLT®1000 VLT® 3000 HVAC VLT® 2000VLT® 3500 HVAC

VLT® Drive Motor FCM 300

VLT® 6000 HVAC VLT®2800 VLT® FCD 300 VLT®AutomationDrive VLT® HVAC DriveVLT®AQUADrive

VLT® Micro Drive

ThefirstVLT®HVACDrive–the VLT®100from1983–hasproven thereliabilityofVLT®drives.

ProvenreliabilityOriginalVLT®HVACDrivesinstalledin1983arestillfunctioningreliablyover20yearslater.

VLT® 5000 VLT®5000book

VLT®HighPower Drives

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VLT®HVACDriveforGreenBuildings

Danfoss commitmentDanfoss’longexperienceinapplyingdrivesinHVACsystemshasenhanceditsabilitytooffera“BestinClass”technicalexpertiseinintegratingthedriveintotheoverallsystemdesigntoextractthemaximumvaluefromyourinitialinvestmentandoptimisetheoperationalsavingsperformance.

The21stCenturyfocusonenergyefficiencyisnotnewasregardsenergysavingbuttheemphasisontheconsequencesofwastedenergyandtheover-useoffossilfuelstopro-duceenergyistopoftheagenda.

ClimateChangeisseenasacosttothehumanracemorethansimplyafinancialcost.

Save energy and CO2 emissionVLT®frequencyconverterssavemorethan20millionMWhenergyglobally

eachyear.Thisisequivalenttothe annualelectricityconsumptionof 5millionhouses.

Thisenergysavinghasanimpactonthe annual CO2emissions−areduc-tionof12milliontons!

Performance of the buildingTodaytheprimefocusisontheoverallperformanceofbuildingsand thisincludesdesign,construction,efficiency,sustainabilityandtheenvironmentalimpactofthesebuildingsinthefuture.

Energyefficientproductsformpartofthisoverallplan.Inmostcountriesaround the world this is now realised intheevaluationofhighperformancebuildingsunderthebannerLEED.

A wealth of knowledgeThe various applications incorporated withinhighperformancebuildingsarewellunderstoodbyDanfossandasglobalmarketleaderwehavebuiltawealthofknowledgeandunder-standingoftheapplicationsanddevelopedproductsandtechnologytoensurewemeetanddeterminefuturetrendsinthisindustry.40yearsofexperienceinthisbusinesshasmadetheVLT®HVACDrivetheindustrybenchmark.

Premier drive in the marketTheefficiencyoftheVLT®driveanditsbuilt-infeaturesmaketheVLT®HVACDrivethepremierdriveinthemarkettoday.

Danfossapplicationandindustryknowledgewillensurethattheinvest-mentmadeinVLT®drivesprovidesaqualifiedreturn.

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Financial incentives are just as importantasmoralincentivestomakepeoplechooseenergyefficientsolutions.

Reliable and cost effective Correct drive selection is critical to reliability.ProductsthatintroduceunacceptablelevelsofRFIorharmon-icsintoabuildingcanprovehighlyproblematicandcostlyinadditiontobreakinglegislativeregulations.

Danfoss’manyyearsofexperienceintheapplicationofVLT®drivesandintheHVACindustryinparticular,hasresultedinaglobalteamfocusedondeliveringthebestdrivessolution,ensuringtotalsecurityofyourinvest-ment.

Minimum impact on the environmentHavingchosentofitaVLT®driveaspartofthebuildingcontrolarchitec-ture,thelifetimesustainabilityofthisproductisanimportantaspect.

Cleanpowersupply

VLT® HVAC Drive introduces a minimumofRFIorharmonicpollutionintothebuildingandavoidsproblematicand,insomecountries/regions,performanceoutsideoftheirregulations.

VLT®HVACDriveisareliableandcosteffectiveinvestment.

DC coils reduce harmonic noise and protect the drive. Also EMC filters are integrated

(meets EN 55011 A2, A1 or B).

Newregulationsareforcingmanufac-turerstolookathowtheymanufac-ture,whattheymanufactureandwithwhatmaterials.

Aretheyharmfultomake?Aretheyharmfultodisposeofattheirend-of-life?RoHS,WEEEDirectives,ISO14001are all standards and directives cre-atedtoensuretheminimumimpactontheenvironment.

Energy monitoring The VLT® HVAC Drive provides a completerangeofenergyconsump-tioninformation.Choosetodivideabsoluteenergyconsumptionintohours,daysorweeksorchoosetomonitoraloadprofilefortheapplica-tion.

OptimisedEMCenvironment

Optimum EMC protection coupled with integrated harmonic filters ensures that the optimum EMC environment and cleanest power supplies are maintained through-out the operational lifetime of the system, negating any reduction in lifecycle costs.

VLT®HVACDrivemeetstheprod-uctstandardEN61800-3regardingEMCwithoutadditionalexternalcomponentsevenwithlongmotor

Limits according to EN 55011 Class B ClassA1 Class A2 ExceedingclassA2

Categories according to EN 61800-3 C1 C2 C3 C4

Comparison of limits EN 55011/61800-3

cables–andcorrespondstotheEMCguidelines2004/108/EC,offeringper-formancesuperiortootherdrives.

Criticalforpracticaluseiscompliancewiththeenvironmentstandard EN55011,ClassB(residential)andClassA1(industrialarea).

ThisensuresreliableplantoperationthroughfullcompliancewithallEMCrequirementsandproductstandards,prescribedwarningsandrestrictions.

Onthepowerside,integratedchokesminimisethenetworkeffectsdrama-ticallyandthusmaintainoperationwithinthelimitsofEN61000-3-12.

ThefullydimensionedintermediatecircuitmakestheVLT®HVACDrivestableandhighlydynamicevenduringshortsupplyvoltagedropsorotherpoornetworkconditions.

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Benefitsofownership

Total Cost of Ownership is an organisation’s total cost of acquir-ing, operating and maintaining a system through a given lifecycle.

TotalCostofOwnershipincludesinitialacquisitioncostandoperatingcost.Throughitstechnologyandexperience,Danfosscantransformthisintothe“BenefitofOwnership”.

Weunderstandtheneedsofourcustomersoperatingtheirfacilitiesinacompetitiveenvironmentwhich requirestotalsystemcosteffective-nessandhighestefficiencyindaily operationswithenvironmentalsustainability.

Dedicated HVAC organisation CustomerassurancestemsfromDanfoss’dedicatedandhighlyexperi-encedHVACsupportteam.

IthasthedepthofunderstandinginHVAC applications that ensures the maximumbenefitisextractedfromthecustomers’investmentinVLT®drivesystems.

Reducing acquisition costs• FullyintegratedEMC&Harmonic

compliantsolution• IP55/66

• ExtensiveHVACfunctionstoreduceothersystemcomponents

• ExtendableI/Otoreducetotal BAS costs

• Easeofinstallationandset-up

Reducing operating costs• Minimum98%efficiency• Energymetering• AutomaticEnergyOptimisation• Designlifetimeof10years• Danfosslegacyandhistoryin

HVAC applications• IPenclosuresandoptional

conformalcoatingtoprovide robust&reliableperformancein theharshestofenvironments

• 50°Cambienttemperaturewithoutderating

• Autoderatefunctions• Broadestrangeofdrive

andmotorprotection• Maintenancefreedrive• Systemdiagnostics

Investment

Operationandmaintenance

Energycosts

Time

Cos

ts

Disposal costs

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Enhanced advanced monitoringEnhanced advanced application monitoringfunctionalityforfansallowsyoutokeeptrackofthestatusofpumpsandcompressors.Thiscanmeanincreasedlifetime,reducedmaintenancecosts,andlessdown-time.

Supporting software toolSoftwaretoolsareavailabletohelpdesignasystemwithminimalhar-monicsandbestenergyefficiency. Protection modeAssoonasthesystemdetectsacriticalstatus(e.g.over-currentorovervoltage)thefrequencyoftheVLT®HVACDrivewillautomaticallybereducedandthemodulationprocessadjusted.

Duetoitsabilitytolimititsswitch-ingoperationstheVLT®HVACDriveisextremelyreliableandrobust.

Theprotectionmodewill–ifallow-able–endafter10secondsandthefrequencywillberestoredundercontrol.

Minimum 98% efficiency The VLT® HVAC Drive sets new stand-ardswithaminimum98%efficiencyatfullload.Thisreducesinitialcostsandoperatingcostsduetothesmallerheatload/airconditioningrequirementintheswitchroom/plant-room,therebymaximisingenergyefficiency.EverykWoflossesrequiresanother~0.5kWofenergytoremovetheheat.

Installed in an air conditioned switch-room,lowerlossescaneasilyresultinoperatingcostsavings>5%–10%ofthecostofthedriveeveryyear(basedonatypicalloadprofile,withthedriveoperating24/7).AlsoenergyconsumptionandCO2emissionisreduced.

High Ambient TemperaturesVLT®HVACDriveisdesignedtooperateinambienttemperatures up to 50o C with an autoderate capa-bilityforhighertemperaturesinordertomaintainreducedoperationinextremeclimateconditions.

Inmostcases,theVLT®HVACDrivewill handle the situation without needingattention.

VLT®HVACDrivewillmanagethelossofamainsphaseorahighmainsimbalancebyautoderatingspeedandloadtomaintainaperiodofreducedoperation,enablingtechnicianstorespondtothesituation.

Our goal is the highest efficiency with the lowest energy consumption and with the lowest overall system cost for our customers = “The Benefit of Ownership”.

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ThemodularVLT®HVACDrive

TheVLT®HVACDriveisbuiltonDanfoss’modularconcept.Realplug-and-playaddingandexchang-ingofoptions.Justupgradeinsteadofbuyinganewdrive.

1 Fieldbus option • BACnet

• LonWorks • Profibus • DeviceNet

2 Local Control Panel (LCP) Choosenumerical, graphicalornodisplay

3 I/O option • GeneralPurposeI/O

(3DI+2AI+2DO+1AO) • AnalogueI/Ooption (3AI(0–10V/PT1000/

NI1000)+3AO(0–10V)) • Relayoutput(3xrelays)

4 24 V supply option

5 RFI filter Built-inRFIfilterforlong motorcablescompliantwith theIEC61800-3andEN55011standards.

6 AC mains disconnect (Factorymountedoption)

7 Input mains option Variousinputplateconfigura-tionsareavailableincludingfuses,mainsswitch(disconnect),orRFIfilter.Inputplatesarefieldadapt-ableifoptionsneedtobeaddedafterinstallation.

8 Unique cooling concept • Noambientairflowoverthe

electronicsupto90kW • Above90kW,designedwith

backchannelcooling(85%heatdissipatedviabackchannel)

9 Durable in aggressive environments InsomeHVACapplications,itisrecommendedtoprotectthedrivewithcoatedPCB’s.VLT®HVACDriveisdesignedforlevel3C2accordingtoIEC60721-3-3.Protectionlevel3C3isoptionallydeliveredfromfactory.

Theoptionofferssignificantlyimprovedprotectionagainstchlorine,hydrogensulphide,ammoniaandothercorrosiveenvironments.

VLT® quality up to 1.2 MWTheVLT®HVACDriveisavailablefrom1.1kWto1.2MW.

Driveexperiencesince1968liesbehindtheintelligentdesignofVLT®drives. Allenclosuresaremechanicallydesignedwithfocuson:• Robustness• Easyaccessandinstallation• Intelligentcooling• Highambienttemperatures

The modular design of the VLT® HVAC Drive allows even

highly customised drives to be mass produced and factory

tested. Plug-and-play options make upgrading easy and

ensure flexibility.

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OptimisingEnergySavings

Automatic Energy OptimisationThestandardfeatureAEOprovidesoptimisedmotormagnetisationatallspeedsandloads.Thisoptimisationprogramincreasestheenergysavingsgainedbyapply-ingvariablespeedcontrol.

Automatic Motor AdaptationEnterthenameplatedata,andVLT®HVACDriveautomaticallyadjuststothemotor.

Suitable for “follower” operationThedrive’smodularstructuremakesitsuitablefor“follower”operationmasteredbyBMS,PLC’sorDDCs.

Theopencommunicationsdrive

Motor current

Speed

Motorvoltage

Automaticloadadjustment

AEO-adjustmentStartwithhighacceleration

Automatic Energy Optimisation

TheVLT®HVACDriveintegratesandcommunicatesseamlesslywithallHVACdevices,masteredbyBuildingManagementSystemsviathefield-bus.HVAC-specificfeaturesmakeiteconomical,flexibleanduser-friendlyandmakeHVACoperationsimple.

Improve system performanceVLT®HVACDriveuseslimitednet-workbandwidth,anditrequireslessresources in the DDC controller due tothesupportofalarmandeventnotification.

Thiscanreducetrafficbymorethan50%comparedtootherdrives.

ForVLT®HVACDriveitispossibletoread all inputs and control all the outputsonI/Ooptions.Availableasstandardaswellasintheoptions.

ThismeansthatwhenintegratingaVLT® HVAC Drive into the controlsystemitispossibletosavemorephysicalI/Opoints.

Detailed information about warnings and alarmsVLT®HVACDrivehaspointsgivingdetailedinformationaboutalarmsandwarnings.DDCcontrollerscanmonitortheseandseewhenanalarmorwarningoccursandwhyitoccurred.

BACnet®TheVLT®BACnetoptionisaplug-and-playsolutionthatoptimisestheuseofVLT®HVACDrivetogetherwithbuildingmanagementsystemsusingtheBACnet®fieldbus.

VLT®HVACDrivehasobjectsdefinedtoaccept3separatefeedbackstransmittedoverBACnet.

ThisoptionmakesiteasytocontrolormonitorpointsrequiredintypicalHVACapplications.

Listed by BTLListingbyBTLmeanspassingcomprehensiveandlong-lastingtestsattheBTLlaboratories,whichensuresthatthefunctionwillworktogetherwithanyotherBLT-listedequipment.

Embedded fieldbuses• ModbusRTU(std.)• FCprotocol• N2Metasys• FLNApogee

Optional fieldbuses• BACnet• Profibus• Devicenet• LonWorks

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Perfectforallconditions

Theinstallationvolumeand/orthemountingsurfacesarereducedbyupto60%comparedtothepreviousseries.

Thefunctionalsectionsneverthelessfulfilthehighestrequirementsevenforapplicationswithhighoverload,longmotorcablesandambienttemperaturesupto50°C(55°Cwithderating).

Optimised design Optimisedefficiencyandintelligentcoolingtechnologymakeforacompactandservice-friendlydesign.SupplementaryequipmentsuchasEMCfilters,harmonicssuppressionandbrakemodulesareintegratedintotheenclosure.

Save installation timeTheIP20seriesisdesignedforeasyaccessibilityandtime-savinginstal-lation.Mechanicalfasteningpointsareeasytoaccessfromthefrontevenwithautomatictools.

Allterminalsaresufficientlydimen-sionedandclearlymarked.Oneneedsonlyloosenafewscrewstogettotheterminals.

Accessoriesforbondingofscreenedcablesareincluded.Thecompactenclosuresareeasiertoinstall.Thisisimportantespeciallywithinexistinginstallationswithpooraccessibility.Anextensiverangeofoptionsandac-cessoriesisavailable,optimisingthedrivefortherespectiveapplication.

VLT®drivesareavailableinIP20enclosures,optimisedforinstallationinpanels

Totalseparationbetweencoolingairand electronics protects the electron-icsandallowsforsolutionswhereheatisremovedfromoutsideofthecabinets.

WithVLT®HVACDrive,aflangedheatsinkkitisavailableformountingthedriveinthebackplateofacabinetwithoutaccessingtheelectronics.

Eliminatingairflowovertheelectron-icsincreaseslifetimeandcontami-nantsareexcludedfromthedrive.

Backchannelcoolingminimisesheatlossincreasingenergyefficiency,asignificantbenefitathighpowers.

IntelligentheatmanagementVariablecoolingmethodsfordifferentbenefits

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Highreliabilityeveninharshenvironments

An external watertight USB

plug connected to the control card

inside IP 55/66 enclosures makes

USB access easy.

The VLT® HVAC Drive is also

available with a mains switch

option. This switch interrupts the

mains supply and has a free useable auxiliary contact.

All VLT® HVAC Drive versions have manganesephosphorrearbodies.IP66encloseddrivesaresuitableforinstallationindemandingenviron-ments(e.g.coolingtowers).

Coolingairiskeptoutsidethedevicetopreventanypollutionoftheelec-tronics.Thesurfacesaresmoothandcaneasilybecleaned.

Becauseofthehigh-densityintegra-tion,thetighthousingsofVLT®HVACDrivearesignificantlysmallerwhencomparedtootherdrivesofthesameperformance.

Thecablesaremountedsecurelythroughglandsinthebaseplate.

TheIP55/66seriesaredesignedforeasyaccessibilityandtime-savinginstallation.

Furthermore,allcomponentssuchasEMCfiltersforcompliancewith EN55011,classA1/B,aswellasthe DCcoils,areprotectedinsidethedrive.

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VLT® Energy Box software is the most modern and advanced energy calculation tool available.

Itallowsenergyconsumptioncalcula-tionsandcomparisonsofHVACfans,pumpsandcoolingtowerapplica-tionsdrivenbyDanfossdrivesandalternativemethodsofflowcontrol.

TheprogramcomparesthetotaloperationcostsofvarioustraditionalsystemscomparedtooperationofthesamesystemwithaVLT®HVACDrive.

Withthisprogramitiseasytoevalu-atethesavingsbyinstallingaVLT®HVACDriveoverothertypesofcapacitycontrolsystemsinbothnewinstallationsaswellasretrofitsitua-tions.

Complete financial analysisVLT®EnergyBoxprovidesacompletefinancialanalysisincluding:• Initialcostforthedrivesystemand

thealternativesystem• Installationandhardwarecosts• Annualmaintenancecostsand

anyutilitycompanyincentivesforinstallationofenergyconservationproducts

• Paybacktimeandaccumulatedsavingsarecalculated

• Uploadofrealenergyconsumption(kWh)anddutycyclefromthe VLT® HVAC Drive

VLT®EnergyBoxmakesitpossibletocapturerealenergydatafromthedrivesandtomonitorenergyconsumptionandoverallsystemefficiency.

Energy auditThe VLT® HVAC Drive coupled with theEnergyBoxsoftwareenablesthepackagetobeusedastheEnergyAuditequipmentforbothestimationandvalidationofsavings.

VLT®HVACDrivecanbeinterrogatedremotelyforfullenergydata,makingiteasytomonitoryourenergysavingsandreturnoninvestment.Monitor-ingviafieldbusoftenmakesenergymetersomissible.

Realisingthetruesavingspotential

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ManagingHarmonics

Harmonicdistortionofthesupplygridisanincreasingproblem,causedmainlybyelectronicpowerdevices,includingfrequencyconverters,drawingnon-sinusoidalcurrentfromthemainssupplyandcreatingharmonicdistortionofthesupplyvoltageasaresultofthesupplyimpedance.

Danfoss’HarmonicCalculationSoft-waremakesitpossibletocalculatetheextentoftheseharmoniccurrentsattheplanningstageandtoplancountermeasures.

Thiscanbeparticularlyvaluablewherethepowersupplyisbackedupwithemergencygenerators,whichhavepoorertolerancetonon-sinusoi-dalcurrents.

Typicalwithoutfilter

Withoutfilter

With AHF

With AHF

Datacanbeentered,storedandre-calledprojectbyproject.Ataclickthesoftwarepresentsaclearoverviewofeach project and data is presented in bothtabularandbar-chartformats.

Currentstandards(EN50106)areincludedinthesoftwareanalysis andthesoftwareitselfcanquicklyandeasilybedownloadedfrom www.drives.danfoss.com.

Harmonic disturbance with and without AHF filter.

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Theuserinterface– developed with HVAC user participation

1 Graphical display– Internationallettersandsigns– Graphicaldisplaywithbar-charts– Easyoverview– 27languagesselection– iFawardeddesign

2 Menu structure– Basedonthewellknownmatrix-

systemintoday’sVLT®drives– Easyshortcutsfortheexperienced

user– Editandoperateindifferent

set-upssimultaneously

3 Other benefits– Demountableduringoperation– Up-anddownloadfunctionality– IP65ratingwhenmounted

in a panel door– Upto5differentvariables

visibleatatime– Manualspeed/torquesetting– 100%userdefinedinformation

and size

4 Illumination– Relevantbuttonsareilluminated

when active– OtherLEDsindicatethestatusof

the drive

5 Quick Menus– ADanfoss-definedQuickMenu– Auser-definedQuickMenu– AChangesMademenulists

theparametersuniquetoyour application

– AFunctionSetupmenuprovidesquickandeasyset-upforspecificapplications

– ALoggingmenuprovidesaccesstooperationhistory

6 Intuitive functions– Info(“onboardmanual”)– Cancel(“undo”)– Alarmlog(quickaccess)

Theuserinterfacemaybemountedremotelyonacontrolpanelfascia.ThisenablesfulladvantagetobetakenoftheLCP,eliminatingtheneedforadditionalswitchesandinstrumentation.

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The VLT® HVAC Drive can be remote-commissioned and monitored via a USB cable or fieldbus communication. Special software is available: Wizards, Data transfer tool, VLT® Set-up Software MCT 10, and Language changer.

Three panel options: Graphical, numerical, blind cover. The VLT® HVAC Drive is controlled locally via a control panel. This is plugged in directly or connected via a cable.

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VLT®MotionControlToolMCT10

Set-upsoftwareprovideseasycontrolofdetailsaswellasageneralover-viewofdrivesystems,largeorsmall.Thetoolhandlesalldrives-relateddata.

Explorer-like interfaceTheMCT10softwarefeaturesanexplorer-likeinterfacedesignandfunctionalitytoeasebothuseandlearningofthefacilities.

More efficient service organisation • Scope&logging:Analyse problemseasily• Readoutalarms,warningsand faultloginoneview• Compareasavedprojectwithan

on-linedrive

More efficient commissioning • Off-linecommissioningoffsite• Save/send/mailprojectsanywhere• Easyfieldbushandling,multiple drivesinprojectfile.Enablesservice organisationtobemoreefficient

Basic• Scope&Graph• Alarmhistoryinsavedprojects• GraphicalTimebasedActions,

Preventive Maintenance and Basic Cascade Controller

• Multiplefieldbussupport

Advanced• Nolimitationinnumberofdrives• Motordatabase• Real-timeloggingfromdrive• Sensorlesspumpcontrol

Two modesOn-line and off-line modeIntheonlinemode,youworkwiththeactualsetupofthedrivesinquestion.Youractionswillhaveimmediateeffectontheperformanceofthedrive(s).

Project orientedInprojectmodeyouworkwiththedriveparametersasa“virtual”set-up.Thisallowsyoutoadjustthewholesystembeforeyouimplementitintothedrivesandputitinaction.Inprojectmodeyoucansetthesystemupevenbeforethedrivesareinstalled.Asinglecommandwillupdatethewholesystem.Incaseadriveisexchanged,itiseasilysetuptoperformexactlyasitspredecessor.

Connections• USB• RS485

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Enhancedsafetybuilt-in

Speed

Differential pressure

Easy to open doors

Fresh air in

Mains switch optionThisswitchinterruptsthemainssup-plyandhasafreeuseableauxiliarycontact.Themainsswitchensuresthesafetyofstaffduringmaintenanceandcleaningoperations.

Themainsswitchoptionalsoreducestheassemblycost.Theswitchcanbesecuredagainstunauthorisedaccesswiththreedifferentlocks.

Fire Override ModeActivatingthefunction“Fire-mode”within the VLT® drive ensures secure and continued operation withinapplicationssuchasstair-wellpressurisation,carparkexhaustfans,smokeexhaustandessentialservicefunctions.

Clearly indicatedThefiremodeisclearlyindicatedinthedisplaytopreventanyconfusion.Whenset,thedrivewilloverrideselfprotection and will continue opera-tiondespitethepossibilityofperma-

nentdamageincaseofover-heatingoroverload.Thevitalgoalistokeepthemotorrunningevenifitmeansself-destruction.

Mains bypassIfamainsbypassisavailable,theVLT®HVACDrivewillnotonlysacrificeitselfincaseofanextremecondition,butisabletobypassitselfandconnectthemotordirectlytomainsandthiswaykeepoperationgoingaslongaspowerisprovidedandthemotorisfunctioning.

Typical application Smokeextractionfromtraffictunnels,subwaystations,stairwells.

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Dedicatedpumpfeatures

1 Dry Pump Protection and End of Curve

DryPumpProtectionandEndofCurve relate to situations where thepumprunswithoutcreatingthedesiredpressure–aswhenawellrunsdryorapipeleaks.Thedrivesetsoffanalarm,shutsoffthepump,orperformsanotherpre-programmedaction.

2 Auto tuning of the PI controllers WithautotuningofthePIcontrol-

lers,thedrivemonitorshowthesystemreactsoncorrectionsmadebythedrive–andlearnsfromit,calculatethe“P”and“I”valvessothatpreciseandstableoperationisachievedquickly. This applies to each PI controller in the4-menusetsindividually.ExactPandIsettingsatstart-upwillnotbenecessary–whichlowersthecommissioningcosts.

3 Flow compensation Significantenergysavingsand

reduced installation costs are providedbyflowcompensationinbothfanandpumpssystems. Apressuresensormountedclosetothefanorpumpprovidesareferenceenablingpressuretobekeptconstantatthedischargeendofthesystem.Thedriveconstantlyadjuststhepressurereferencetofollowthesystemcurve.

4 No/low flow Anoperatingpumpwillnormally

consumemorepowerthefasteritruns–accordingtoacurvedeterminedbythepumpandapplicationdesign.VLT®HVACDrive will detect situations where thepumprunsfastbutisnotfullyloaded–andtherebynotconsum-ingadequatepower.Thisisthecasewhenwatercirculationstops,thepumprunsdryorwhenpipesleak.

The VLT® HVAC Drive offers a vast numberofpump-specificfeaturesdevelopedincooperationwithOEMs,contractorsandmanufacturersaroundtheworld.

Embedded Pump Cascade ControllerThePumpCascadeControllerdistrib-utesrunninghoursevenlyacrossallpumps,keepswearandtearonindividualpumpstoaminimumandensuresthatallpumpsareingreatshape.

Vital water supplyVitalwatersupplycanbeassuredintheeventofleakageorabrokenpipe.Forexampleoverloadisprevented byreducingspeed–andsupplyis securedatlowerflow.

Sleep Mode InSleepModethedrivedetectssitua-tionswithlowornoflow.Insteadofcontinuousoperationitbooststhesystempressureandthenstopstosaveenergy.Thedrivestartsauto-maticallywhenthepressurefallsbelowthelowersetpoint.

1 2 3 4

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18

Dedicatedfanfeatures

• Weekendandworking-day operations• CascadedP-PIfortemperature control• Multi-zone“3”control• Flowbalancingbetweenfresh and outlet air• Beltmonitoring

Fire Override Mode Fire Override Mode prevents the VLT®HVACDrivefromstoppingforself-protectingreasons.Inthismodeitwillcontinuevitalfanoperationregardlessofcontrolsignals,warningsoralarms.

Extends BMS capacityWhenintegratedintotheBMSnet-work,alltheHVACDriveI/OpointsareavailableasremoteI/OstoextendthecapacityoftheBMS.Forexample,roomtemperaturesensors(Pt1000/Ni1000)canbedirectlyconnected.

Resonance Monitoring BypressingafewbuttonsontheLocalControlPanelthedrivecanbesettoavoidfrequencybandsatwhichconnectedfanscreateresonancesintheventilationsystem.Thisimprovesbuildingcomfort.

Stairwell PressurisationIntheeventoffire,theVLT®HVACDrivecanmaintainahigherlevelofair pressure in stairwells than in other partsofthebuildingandensurethatfireescapesremainfreeofsmoke.

Lower AHU costsTheVLT®HVACDriveisfittedwithabuilt-inSmartLogicControllerand4auto tune PID controllers and can controlairhandlingfunctionswithfans,valvesanddampers.Thebuild-ingmanagement’sDDCsaretherebyreleasedandvaluabledatapoints(DP) aresaved.

User-friendly,distributedintelligenceandreducedpowerconsumptionarebeneficialforfanapplications.

Velocity-to-flow conversionTheVLT®HVACDriveisabletoconvertvelocitypressuresensorvaluesintoflowvalues.Operatorscanthereforesetthedriveuptoprovideafixedfloworfixeddifferentialflow.Thiswaybothcomfortandenergyconsump-tionareoptimised.Usingapressuresensorinsteadofaflowsensorsavesmoney.

Intelligent AHU functionsTheVLT®HVACDrivehandleslogicalrulesandinputsfromsensors,real- timefunctionality,andtime-relatedactions.ThisenablestheHVACDrivetocontrolawiderangeoffunctions,including:

4xPIDcontroller • ProvidesflexibilityfortheBMSandreduces the load on the central BMS

The drive controller uses an input sensorthatmeasurespressure,tem-perature,orothervariablestochangethespeedonthemotorconnectedtotheVLT®HVACDrive,byadjustingtheoutputfrequencytomatchthevaryingload.The additional 3 PID controllers can beusedforexternalsensors(i.e.pres-sure,temperature,flow)tocontrolheating/coolingcoilvalves,outside/return/exhaustdampersorotherexternalHVACcomponents.

(Individualsetpoints/feedbacks)• 1PIDfortheclosedloopcontrolof

themotorconnectedtothedrive• 3PIDforexternalclosedloopcon-

trolofHVACequipment• Auto-tuningofall4PIDloops• Eliminatestheneedfor

other controllers

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19

Dedicatedcompressorfeatures

Alternativlyusethebuilt-incascadecontrollertooperatetheleadcom-pressorwithvariablespeed,whileusingtheVLT®HVACDrivetomanageon/offcontrolofuptotwoadditionalcompressors.

Set point in temperature The VLT® HVAC Drive calculates the actualrefrigeranttemperaturefromthepressuremeasuredandrefinescompressoroperationaccordinglyusingthebuilt-inPIDcontroller.

Thiscalculationisalsoapplicabletothesetpointaswell,sothedesiredtemperatureissetindegreesviatheLocalControlPanelorMCT10–andnotaspressurevalue.

Fewer starts and stopsAmaximumnumberofstart/stopcycleswithinagivenperiodoftimecanbesetviatheLCPorMCT10.Sincestart-upisthemostcriticalpartofcompressoroperationthisextendscompressorlifetime.

Quick start-upTheVLT®HVACDriveoffersafeaturetoopenabypassvalveandletthecompresserstartquicklywithoutload.

The VLT® HVAC Drive provides increasedbreakawaytorqueandcangive110%torquefor60secondsinnormaloperation.

Improving energy efficiency… continuouslyTraditionalcommercialaircondition-ingsystemsaredesignedforefficientoperationatpeakloadconditions,sosystemsareactuallyoversizedabout85%ofthetimeormore.Consequent-lyatpartloadconditions,thesystemsdeliverexcesscapacity,withsignifi-cantandcostlyenergywaste.Vari-ablespeedwillcontributetoahigherCOPandlowerenergyconsumptionwithloadmatchedtoactualdemandwhilstdeliveringasolidreturnoninvestment(ROI).

TheVLT®HVACDrivehasbeendesignedtoofferflexible,intelligentcontrolofcompressors,makingiteveneasiertooptimisecoolingcapacitywithconstanttemperatureandpressurelevelsforwaterchillers,andothertypicalcompressorapplica-tionsinHVAC.

Replace a cascade with a single compressorThe VLT® HVAC Drive provides the samelevelofflexibilitywithonelargecompressorinsteadofacascadeof2or3smallercompressors.TheVLT®HVACDriveoperatesallcom-pressorsatafarmorerefinedrangeofspeedsthannormal–evenabovenominalspeed–meaningthatonelargecompressorissufficient.

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20

VLT® HVAC Drive projects

Tropical Islands Resort near Berlin, GermanyAsteady25°Cairtemperature,31°Cwatertemperature,norain,andapleasant40%to60%humidityfortheresort’stropicalplants.Everyone’sideaofperfectweather!AllthisispossiblewithafirstclassclimateandwatercontrolsystemdrivenbyVLT®HVACDrives.

Opera House in Sydney, AustraliaTheSydneyOperaHouseisoneofthearchitecturalwondersoftheworld,andperhapsthebestknownbuildingofthe20thcentury.In2001,theNSWGovernmentprovided$69millionforseveralprojectstoimprovethefacilitiesandenvironmentforperformingartscompanies,patronsandvisitors.Danfossprovidedthedrives.

Shanghai General Motors, ChinaShanghaiGeneralMotorsCoLtd.isa50-50%joint venturebetweenGeneralMotorsandtheShanghaiAutomotiveIndustryCorporationGroup(SAIC).ShanghaiGMhasanannualproductioncapacityof200,000vehicles.DanfossprovidestheVLT®HVACdrivestomaintaintheproductionenvironment.

Dubai MetroDanfossDrivesdeliveratotalof176drivesratedfrom90to325kWforthenewmetroinDubai,UnitedArabEmirates,tooperateexhaustfansandtunnelventilation.DubaiMetroisprojectedtocarryapproximate-ly1.2millionpassengersonanaverageday,and355millionpassengersperyear.

Torre Mayor, Mexico CityWithits55floorsandaheightof225mtheTorreMayoristhehighestbuildinginLatinAmerica.Danfossdrivescontroltheheatingandventilation.

Orlando Medical Center, Florida, USADanfossdrivesarepartoftheeconomicalandenergysmartsolutionthathelpskeepstaff and patientscoolandcomfortableinthe20,000m2 OrlandoRegionalMedicalCenterinthemiddleofsunnyFlorida.

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21

Specifications(Basicunitwithoutextensions)

Main supply (L1, L2, L3)

Supplyvoltage 200–240V±10%

Supplyvoltage 380–480V±10%

Supplyvoltage 525–600V±10%

Supplyvoltage 525–690V±10%

Supplyfrequency 50/60Hz

Displacementpowerfactor(cosф)nearunity >0.98

SwitchingoninputsupplyL1,L2,L3 1–2times/min.

Harmonicdisturbance MeetsEN61000-3-12

Output data (U, V, W)

Outputvoltage 0–100%ofsupplyvoltage

Outputfrequency 0–1000Hz

Switchingonoutput Unlimited

Ramptimes 1–3600sec.

Digital inputs

Programmabledigitalinputs 6*

Changeabletodigitaloutput 2(terminal27,29)

Logic PNP or NPN

Voltagelevel 0–24VDC

Maximumvoltageoninput 28VDC

Inputresistance,Ri Approx.4kΩ

Scan interval 5ms

* 2 can be used as digital outputs

Analogue inputs

Analogueinputs 2

Modes Voltageorcurrent

Voltagelevel 0to+10V(scaleable)

Current level 0/4to20mA(scaleable)

Accuracyofanalogueinputs Max.error:0.5%offullscale

Pulse inputs

Programmablepulseinputs 2*

Voltagelevel 0–24VDC(PNPpositivelogic)

Pulseinputaccuracy(0.1–1kHz) Max.error:0.1%offullscale

* Utilize some of the digital inputs

Digital outputs

Programmabledigital/pulseoutputs 2

Voltagelevelatdigital/frequencyoutput 0–24VDC

Max.outputcurrent(sinkorsource)

40mA

Maximumoutputfrequencyatfrequencyoutput 0to32kHz

Accuracyonfrequencyoutput Max.error:0.1%offullscale

Analogue output

Programmableanalogueoutputs 1

Currentrangeatanalogueoutput 0/4–20mA

Max.loadtocommonatanalogueoutput(clamp30) 500Ω

Accuracyonanalogueoutput Max.error:1%offullscale

Control card

USBinterface 1.1(FullSpeed)

USBplug Type“B”

RS485interface Upto115kBaud

Max.load(10V) 15mA

Max.load(24V) 200mA

Relay output

Programmablerelayoutputs 2

Max.terminalload(AC)on1-3(break),1-2(make),4-6(break)powercard

240VAC,2A

Max.terminalload(AC)on4-5(make)powercard 400VAC,2A

Min.terminalloadon1-3(break),1-2(make),4-6(break),4-5(make)power card

24VDC10mA,24VAC20mA

Surroundings/external

Enclosure IP00,IP20,IP21,IP54,IP55,IP66

Vibrationtest 1.0g(D,E&F-enclosures:0.7g)

Max.relativehumidity 5%–95%(IEC721-3-3;Class3K3(non-condensing)duringoperation

Ambienttemperature Max.50°C

Galvanicisolationofall I/OsuppliesaccordingtoPELV

Aggressiveenvironment Designedforcoated/uncoated3C3/3C2(IEC60721-3-3)

Fieldbus communication

Standardbuilt-in:FC Protocol N2MetasysFLNApogeeModbusRTU

Optional:Profibus(MCA101)DeviceNet(MCA104)LonWorks(MCA108)BACnet(MCA109)

Protection mode for longest possible up-time

• Electronicthermalmotorprotectionagainstoverload

• Temperaturemonitoringoftheheatsinkensuresthatthefrequencyconvertertripsifthetemperaturereaches95°C±5°C.

• Thefrequencyconverterisprotectedagainstshort-circuitsonmotorterminalsU,V,W.

• ThefrequencyconverterisprotectedagainstearthfaultsonmotorterminalsU,V,W.

• Protectionagainstmainsphaseloss

GlobalMarine

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22

Power,currentsandenclosures

Dimensions [mm]A2 A3 A5 B1 B2 B3 B4 C1 C2 C3 C4 D1 D2 D3 D4

H 268 420 480 650 399 520 680 770 550 660 1209 1589 1046 1327W 90 130 242 165 230 308 370 308 370 420 408D 205 200 260 249 242 310 335 333 380 375H+ 375 475 670 755 950W+ 90 130 165 255 329 391

H and W dimensions are with back-plate. H+ and W+ are with IP upgrade kit. D dimensions are without option A/B.

T2 200 – 240 V T4 380 – 480 V T6 525 – 600 V T7 525 – 690 V

FC102 kW Amp. IP 2

0

IP21

IP 5

5

IP 6

6Amp. Amp.

IP 0

0

IP 2

0

IP21

IP 5

4

IP 5

5

IP 6

6

Amp.

IP 2

0

IP21

IP 5

5

IP 6

6

Amp.

IP 0

0

IP21

IP54/

55

≤440 V >440V 400 V ≥460 V ≤550 V >550V 550 V 690V

P1K1 1.1 6.6

A2 A2

A5 A5

3 2.7

A2 A2 A5 A5

2.6 2.4

A3 A3 A5 A5P1K5 1.5 7.5 4.1 3.4 2.9 2.7

P2K2 2.2 10.6 5.6 4.8 4.1 3.9

P3K0 3 12.5A3 A3

7.2 6.3 5.2 4.9

P3K7 3.7 16.7

P4K0 4.0 10 8.2 A2 A2

A5 A5

6.4 6.1

A3 A3 A5 A5P5K5 5.5 24.2

B3 B1 B1 B1

13 11A3 A3

9.5 9

P7K5 7.5 30.8 16 14.5 11.5 11

P11K 11 46.2 24 21

B3 B1 B1 B1

19 18

B3 B1 B1 B1P15K 15 59.4B4

B2 B2 B2 32 27 23 22

P18K 18 74.8

C1 C1 C1

37.5 34 28 27

P22K 22 88C3

44 40

B4B2 B2 B2

36 34

B4B2 B2 B2

P30K 30 115 61 52 43 41

P37K 37 143C4 C2 C2 C2

73 65

C1 C1 C1

54 52

C1 C1 C1P45K 45 170 90 80C3

65 62C3

56 54

D3 D1 D1

P55K 55 106 105 87 83 76 73

P75K 75 147 130C4 C2 C2 C2

105 100C4 C2 C2 C2

90 86

P90K 90 177 160 137 131 113 108

P110 110 212 190D3 D1 D1

137 131

P132 132 260 240 162 155

P160 160 315 302

D4 D2 D2

201 192

P200 200 395 361 253 242D4 D2 D2

P250 250 480 443 303 290

IP00/Chassis IP20/Chassis IP21/NEMAType1 Withupgradekit* IP54/NEMAType12 IP55/NEMAType12 IP 66/NEMAType4X

* MCF 101 – IP 21 upgrade kit

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23

Ordering type code for VLT® HVAC Drive

FC-102 – – – – – – – – – – X – SXX X – X – – – CX – X – XX –

[1] [2] [3] [4] [5] [6] [7] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17] [18]

Based on your selection, Danfoss manufac-tures the desired VLT® HVAC Drive. You will receive a fully assembled frequency converter, tested under full load conditions.

[9] Mains Input

X No option

1 Mains disconnect

3 Mains disconnect and fuses

5 Mains disconnect, fuses and load sharing

7 Fuses

A Fuses & load sharing terminals

D Load sharing terminals

[10] Cable

X Standard Cable Entries

O Metric Cable Entries

[13] A Option (Fieldbus)

AX No fi eldbus option

A0 MCA 101 – Profi bus DPV1

A4 MCA 104 – DeviceNet

AG MCA 108 – LonWorks

AJ MCA 109 – BACnet

[14] B Option (Application)

BX No application option

BK MCB 101 – General Purpose I/O

BP MCB 105 – Relay Expansion

B0 MCB 109 – Analog I/O

[18] D Option (Control Power Backup Input)

DX No DC input installed

D0 MCB 107 24 VDC backup input

Please beware that not all combinations are possible. Find help confi guring your drive with the online confi gurator found under: driveconfi g.danfoss.com

[1] Application

102 VLT® HVAC Drive FC 102

[2] Power Size

P1K1

See ratings data on page 16for power ratings

P1K5

P2K2

P3K0

P3K7

P4K0

P5K5

P7K5

P11K

P15K

P18K

P22K

P30K

P37K

P45K

P55K

P75K

P90K

P110

P132

P160

P200

P250

P315

P355

P400

P450

P500

P560

P630

P710

P800

P900

P1M0

P1M2

[3] AC Line Voltage

T2 3 x 200/240 V AC (1.1 – 45 kW)

T4 3 x 380/480 V AC

T6 3 x 525/600 V AC (1.1 – 90 kW)

T7 3 x 525/690 V AC (45 kW – 1.2 MW)

[4] Enclosure

For cabinet mounting:

E00 IP 00 (enclosure D3, D4)

E20 IP 20 (enclosure A2, A3, B3, B4, C3, C4)

Standalone:

E21 IP 21 (enclosure B1, B2, C1, C2, D1, D2, E, F)

E54 IP 54 (enclosure D1, D2, E, F)

E55 IP 55 (enclosure A5, B1, B2, C1, C2)

E66 IP 66 (enclosure A5, B1, B2, C1, C2)

Special designs:

C00IP 00 (enclosure E00 – air duct in stainless steel)

P20 IP 20 (enclosure B4, C3, C4 – Back Plate)

E2M IP 21 (enclosure D1, D2 – protective cover)

P21 IP 21 (enclosure as E21 – Back Plate)

E5M IP 54 (enclosure D1, D2 – protective cover)

P55 IP 55 (enclosure as E55 – Back Plate)

[5] RFI Filter (EN 55011)

H1 RFI-Filter Class A1/B (A, B, C)

H2 RFI-Filter, Class A2 (A, B, C, D, E, F)

H3 RFI -Filter Class A1/B (A, B, C)

H4 RFI-Filter, Class A1 (D, E, F)

H6 RFI-Filter für Marine

HX No RFI-Filter (A, B, C, 525 – 600 V)

[6] Braking & Safety

X No brake IGBT

B Brake IGBT mounted

T Safe stop without brake

U With brake and Safe Stop

[7] Display (Local Control Panel)

X Blank faceplate, no LCP installed

G LCP 102 – Graphic LCP installed

N LCP 101 – Numeric LCP installed

[8] Conformal Coating (IEC 721-3-3)

X No conformal coating

C Conformal coating on all PCBs

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24

3 Phasepowerinput

91 (L1)92 (L2)93 (L3)

PE

88 (-)89 (+)

50 (+10 V OUT)

53 (A IN)

54 (A IN)

55 (COM A IN)0/4-20 mA

12 (+24V OUT)

13 (+24V OUT)

18 (D IN)

20 (COM D IN)

Switch ModePower Supply10Vdc15mA 200mA

+ - + -

(U) 96(V) 97

(W) 98

(PE) 99

(COM A OUT) 39

(A OUT) 42

(P RS-485) 68

(N RS-485) 69

(COM RS-485) 61

0V

5V

S801

Analog Output0/4-20 mA

RS-485RS-485Interface

DC-Bus

03

Motor

0-10Vdc

+10Vdc

0-10Vdc0/4-20 mA

240Vac, 2A

24Vdc

02

01

05

04

06240Vac, 2A

24V (NPN) 0V (PNP)

0V (PNP)24V (NPN)

19 (D IN)

24V (NPN) 0V (PNP)27

24V

0V

(D IN/OUT)

0V (PNP)24V (NPN)

(D IN/OUT)

0V

24V29

24V (NPN) 0V (PNP)

0V (PNP)24V (NPN)

33 (D IN)

32 (D IN)

12

ON

S201

ON2

1S202ON=0-20mAOFF=0-10V

95

400Vac, 2AP 5-00

21 O

N

S801ON=TerminatedOFF=Open

relay2

relay1

Brakeresistor

(R+) 82

(R-) 81

37 (D IN)(NPN) = Sink(PNP) = Source*

Par. 6 - 50

ConnectionexamplesThenumbersrepresenttheterminalsonthedrive

Thisdiagramshowsatypicalinstalla-tionoftheVLT®HVACDrive.Powerisconnectedtotheterminals91(L1),92(L2)and93(L3)andthemotoriscon-nectedto96(U),97(V)and98(W).

Terminals88and89areusedforloadsharingbetweendrives.Analogueinputscanbeconnectedto

the53(VormA),54(VormA)terminals.

Theseinputscanbesetuptoeitherreference,feedbackorthermistor.Thereare6digitalinputstobecon-nectedtoterminals18,19,27,29,32,and33.Twodigitalinput/outputterminals(27and29)canbesetup

asdigitaloutputstoshowanactualstatusorwarning.Theterminal42analogueoutputcanshowprocessvaluessuchas0-Imax.

Onthe68(P+)and69(N-)terminals’RS485interface,thedrivecanbecontrolledandmonitoredviaserialcommunication.

* Safe Stop optional

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25

EnclosureIP 20 (IP 21*)/Chassis B3 B4 C3 C4

IP 21/NEMA 1, IP 55 + IP 66/NEMA 12 B1 B2 C1 C2P5K5 P7K5 P11K P15K P18K P22K P30K P37K P45K

Typical Shaft Output [kW] 5.5 7.5 11 15 18.5 22 30 37 45Typical Shaft Output at 208 V [HP] 7.5 10 15 20 25 30 40 50 60

Output Current (3x200–240V)

Continuous [A] 24.2 30.8 46.2 59.4 74.8 88.0 115 143 170Intermittent [A] 26.6 33.9 50.8 65.3 82.3 96.8 127 157 187

Output Power(208VAC) Continuous [kVA] 8.7 11.1 16.6 21.4 26.9 31.7 41.4 51.5 61.2

Max. cable size Mains,motor,brake

[mm2]([AWG]) 10(7) 35(2) 50(1/0)

(B4=35(2)) 95(4/0)120(250MCM)

Max. cable size mainsWithmainsdisconnectswitchincluded

[mm2]([AWG]) 16(6) 35(2) 35(2) 70(3/0)

185(kcmil350)

Max. Input Current(3x200–240V)

Continuous[A]

22.0 28.0 42.0 54.0 68.0 80.0 104.0 130.0 154.0Intermittent 24.2 30.8 46.2 59.4 74.8 88.0 114.0 143.0 169.0

Max. pre-fuses [A] 63 63 63 80 125 125 160 200 250EnvironmentEstimated power loss at rated max. load [W] 269 310 447 602 737 845 1140 1353 1636WeightIP 20 [kg] 12 12 12 23.5 23.5 35 35 50 50IP21,IP55,IP66 [kg] 23 23 23 27 45 45 45 65 65Efficiency 0.96 0.96 0.96 0.96 0.96 0.97 0.97 0.97 0.97

200–240VAC

EnclosureIP 20 (IP 21*)/Chassis A2 A2 A2 A3 A3

IP 55 + IP 66 /NEMA 12 A5 A5 A5 A5 A5P1K1 P1K5 P2K2 P3K0 P3K7

Typical Shaft Output [kW] 1.1 1.5 2.2 3 3.7Typical Shaft Output at 208 V [HP] 1.5 2.0 2.9 4.0 4.9

Output Current(3x200–240V)

Continuous [A] 6.6 7.5 10.6 12.5 16.7Intermittent [A] 7.3 8.3 11.7 13.8 18.4

Output Power(208VAC) Continuous [kVA] 2.38 2.70 3.82 4.50 6.00

Max. cable size(Mains,motor,brake)

[mm2]([AWG]) 4(10)

Max. Input Current(3x200–240V)

Continuous [A] 5.9 6.8 9.5 11.3 15.0Intermittent [A] 6.5 7.5 10.5 12.4 16.5

Max. pre-fuses [A] 20 20 20 32 32EnvironmentEstimated power loss at rated max. load [W] 63 82 116 155 185WeightIP 20 [kg] 4.9 4.9 4.9 6.6 6.6IP21 [kg] 5.5 5.5 5.5 7.5 7.5IP55,IP66 [kg] 13.5 13.5 13.5 13.5 13.5Efficiency 0.96 0.96 0.96 0.96 0.96

* (A2, A3, B3, B4, C3 and C4 may be converted to IP21 using a conversion kit. (Please see also items Mechanical mounting in Operating Instructions and IP 21/ Type 1 Enclosure kit in the Design Guide.))

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26

380–480VAC

EnclosureIP 20 (IP 21*)/Chassis A2 A2 A2 A2 A2 A3 A3

IP 55 + IP 66 /NEMA 12 A5 A5 A5 A5 A5 A5 A5P1K1 P1K5 P2K2 P3K0 P4K0 P5K5 P7K5

Typical Shaft Output [kW] 1.1 1.5 2.2 3 4 5.5 7.5Typical Shaft Output at 460 V [HP] 1.5 2.0 2.9 4.0 5.0 7.5 10

Output Current(3x380–440V)

Continuous [A] 3 4.1 5.6 7.2 10 13 16Intermittent [A] 3.3 4.5 6.2 7.9 11 14.3 17.6

Output Current(3x441–480V)

Continuous [A] 2.7 3.4 4.8 6.3 8.2 11 14.5Intermittent [A] 3.0 3.7 5.3 6.9 9.0 12.1 15.4

Output Power(400VAC) Continuous [kVA] 2.1 2.8 3.9 5.0 6.9 9.0 11.0

Output Power(460VAC) Continuous [kVA] 2.4 2.7 3.8 5.0 6.5 8.8 11.6

Max. cable size(Mains,motor,brake)

[mm2]([AWG]) 4(10)

Max. Input Current(3x380–440V)

Continuous [A] 2.7 3.7 5.0 6.5 9.0 11.7 14.4Intermittent [A] 3.0 4.1 5.5 7.2 9.9 12.9 15.8

Max. Input Current(3x441–480V)

Continuous [A] 2.7 3.1 4.3 5.7 7.4 9.9 13.0Intermittent [A] 3.0 3.4 4.7 6.3 8.1 10.9 14.3

Max. pre-fuses [A] 10 10 20 20 20 32 32EnvironmentEstimated power loss at rated max. load [W] 58 62 88 116 124 187 255WeightIP 20 [kg] 4.8 4.9 4.9 4.9 4.9 6.6 6.6IP55,IP66 [kg] 13.5 13.5 13.5 13.5 13.5 14.2 14.2Efficiency 0.96 0.97 0.97 0.97 0.97 0.97 0.97

* (A2, A3, B3, B4, C3 and C4 may be converted to IP21 using a conversion kit. Please contact Danfoss. (Please see also items Mechanical mounting in Operating Instructions and IP 21/ Type 1 Enclosure kit in the Design Guide.))

1) Withbrakeandloadsharing95(4/0)

EnclosureIP 20 (IP 21*)/Chassis B3 B4 C3 C4

IP 21/NEMA 1, IP 55 + IP 66/NEMA 12 B1 B2 C1 C2P11K P15K P18K P22K P30K P37K P45K P55K P75K P90K

Typical Shaft Output [kW] 11 15 18.5 22 30 37 45 55 75 90Typical Shaft Output at 460 V [HP] 15 20 25 30 40 50 60 75 100 125

Output Current (3x380–439V)

Continuous [A] 24 32 37.5 44 61 73 90 106 147 177Intermittent [A] 26.4 35.2 41.3 48.4 67.1 80.3 99 117 162 195

Output Current (3x440–480V)

Continuous [A] 21 27 34 40 52 65 80 105 130 160Intermittent [A] 23.1 29.7 37.4 44 61.6 71.5 88 116 143 176

Output Power(400VAC) Continuous [kVA] 16.6 22.2 26 30.5 42.3 50.6 62.4 73.4 102 123

Output Power(460VAC) Continuous [kVA] 16.7 21.5 27.1 31.9 41.4 51.8 63.7 83.7 104 128

Max. cable size Mains,motor,brake

[mm2]([AWG]) 10(7) 35(2) 50(1/0)

(B4=35(2)) 95(4/0)120(250

MCM)1)

Max. cable size mainsWithmainsdisconnectswitchincluded

[mm2]([AWG]) 16(6) 35(2) 70(3/0)

185(kcmil350)

Max. Input Current(3x380–439V)

Continuous[A]

22 29 34 40 55 66 82 96 133 161Intermittent 24.2 31.9 37.4 44 60.5 72.6 90.2 106 146 177

Max. Input Current(3x440–480V)

Continuous[A]

19 25 31 36 47 59 73 95 118 145Intermittent 20.9 27.5 34.1 39.6 51.7 64.9 80.3 105 130 160

Max. pre-fuses [A] 63 63 63 63 80 100 125 160 250 250EnvironmentEstimated power loss at rated max. load [W] 278 392 465 525 698 739 843 1083 1384 1474WeightIP 20 [kg] 12 12 12 23.5 23.5 23.5 35 35 50 50IP21,IP55,IP66 [kg] 23 23 23 27 27 45 45 45 65 65Efficiency 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.99

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27

525–600VAC

EnclosureIP 20 Chassis

A3 A3B3 B4 C3 C4

IP 21/NEMA 1B1 B2 C1 C2

IP 55, IP 66/NEMA 12 A5P1K1 P1K5 P2K2 P3K0 P4K0 P5K5 P7K5 P11K P15K P18K P22K P30K P37K P45K P55K P75K P90K

Typical Shaft Output [kW] 1.1 1.5 2.2 3 4 5.5 7.5 11 15 18.5 22 30 37 45 55 75 90Output CurrentContinuous(3x525–550V) [A] 2.6 2.9 4.1 5.2 6.4 9.5 11.5 19 23 28 36 43 54 65 87 105 137

Intermittent(3x525–550V) [A] 2.9 3.2 4.5 5.7 7.0 10.5 12.7 21 25 31 40 47 59 72 96 116 151

Continuous(3x525–600V) [A] 2.4 2.7 3.9 4.9 6.1 9.0 11.0 18 22 27 34 41 52 62 83 100 131

Intermittent(3x525–600V) [A] 2.6 3.0 4.3 5.4 6.7 9.9 12.1 20 24 30 37 45 57 68 91 110 144

Output PowerContinuous (525VAC) [kVA] 2.5 2.8 3.9 5.0 6.1 9.0 11.0 18.1 21.9 26.7 34.3 41 51.4 61.9 82.9 100 130.5

Continuous(575VAC) [kVA] 2.4 2.7 3.9 4.9 6.1 9.0 11.0 17.9 21.9 26.9 33.9 40.8 51.8 61.7 82.7 99.6 130.5

Max. cable size IP21/55/66(mains,motor,brake)

[mm2]([AWG])

4(10) 10(7) 35(2) 50(1/0) 95(4/0)

120(250MCM)

Max. cable size IP 20(mains,motor,brake)

[mm2]([AWG])

4(10) 10(7) 35(2) 50(1/0) 95(4/0)

150(250

MCM)1)

Max. cable size mainsWithmainsdisconnectswitch included

[mm2]([AWG])

4(10) 16(6) 35(2) 70(3/0)

185(kcmil350)

Max. Input CurrentContinuous(3x525–600V) [A] 2.4 2.7 4.1 5.2 5.8 8.6 10.4 17.2 20.9 25.4 32.7 39 49 59 78.9 95.3 124.3

Intermittent(3x525–600V) [A] 2.7 3.0 4.5 5.7 6.4 9.5 11.5 19 23 28 36 43 54 65 87 105 137

Max. pre-fuses [A] 10 10 20 20 20 32 32 63 63 63 63 80 100 125 160 250 250EnvironmentEstimated power loss at rated max. load [W] 50 65 92 122 145 195 261 300 400 475 525 700 750 850 1100 1400 1500

WeightIP 20 [kg] 6.5 6.5 6.5 6.5 6.5 6.6 6.6 12 12 12 23.5 23.5 23.5 35 35 50 50IP21,IP55,IP66 [kg] 13.5 13.5 13.5 13.5 13.5 14.2 14.2 23 23 23 27 27 27 45 45 65 65Efficiency 0.97 0.97 0.97 0.97 0.97 0.97 0.97 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.98 0.98

1) Withbrakeandloadsharing95(4/0)

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28

380–480VACand525–690VACHighPower

380 – 480 VAC

EnclosureIP 21, IP 54 D1 D2

IP 00 D3 D4P110 P132 P160 P200 P250

Typical Shaft Output at 400 V [kW] 110 132 160 200 250Typical Shaft Output at 460 V [HP] 150 200 250 300 350Output Current Continuous(at400V) [A] 212 260 315 395 480Intermittent(60secoverload)(at400V) [A] 233 286 347 435 528Continuous(at460/480V) [A] 190 240 302 361 443Intermittent(60secoverload)(at460/480V) [A] 209 264 332 397 487Output PowerContinuous(at400V) [kVA] 147 180 218 274 333Continuous(at460V) [kVA] 151 191 241 288 353Max. Input Current Continuous(at400V) [A] 204 251 304 381 463Continuous(at460/480V) [A] 183 231 291 348 427Max. cable size Mainsmotor,brakeandloadshare

[mm2]([AWG])

2x70(2x2/0)

2x150(2x300mcm)

Max. external pre-fuses [A] 300 350 400 500 630Estimated power loss at rated max. load – 400 V [W] 3234 3782 4213 5119 5893Estimated power loss at rated max. load – 460 V [W] 2947 3665 4063 4652 5634

WeightIP21,IP54 [kg] 96 104 125 136 151IP 00 [kg] 82 91 112 123 138

Efficiency 0.98Output Frequency [Hz] 0–800Heatsink overtemp. trip [°C] 85 90 105 105 115Power card ambient trip [°C] 60

525 – 690 VAC

EnclosureIP 21, IP 54 D1 D2

IP 00 D3 D4P45K P55K P75K P90K P110 P132 P160 P200 P250

Typical Shaft Output at 550 V [kW] 37 45 55 75 90 110 132 160 200Typical Shaft Output at 575 V [HP] 50 60 75 100 125 150 200 250 300Typical Shaft Output at 690 V [kW] 45 55 75 90 110 132 160 200 250Output Current Continuous(at3x525–550V) [A] 56 76 90 113 137Continuous(at550V) [A] 162 201 253 303Intermittent(60secoverload)(at550V) [A] 62 84 99 124 151 178 221 278 333Continuous(at3x551–690V) [A] 54 73 86 108 131Continuous(at575/690V) [A] 155 192 242 290Intermittent(60secoverload)(at575/690V) [A] 59 80 95 119 144 171 211 266 319Output PowerContinuous(at550V) [kVA] 53 72 86 108 131 154 191 241 289Continuous(at575V) [kVA] 54 73 86 108 130 154 191 241 289Continuous(at690V) [kVA] 65 87 103 129 157 185 229 289 347Max. Input Current Continuous(at550V) [A] 60 77 89 110 130 158 198 245 299Continuous(at575V) [A] 58 74 85 106 124 151 189 234 286Continuous(at690V) [A] 58 77 87 109 128 155 197 240 296Max. cable size Mains,motor,loadshareandbrake

[mm2]([AWG])

2x70(2x2/0)

2x70(2x2/0)

2x150(2x300mcm)

Max. external pre-fuses [A] 125 160 200 200 250 315 350 350 400Estimated power loss at rated max. load – 600 V [W] 1398 1645 1827 2157 2533 2963 3430 4051 4867Estimated power loss at rated max. load – 690 V [W] 1458 1717 1913 2262 2662 3430 3612 4292 5156

WeightIP21,IP54 [kg] 96 104 125 136IP 00 [kg] 82 91 112 123

Efficiency 0.97 0.98Output Frequency [Hz] 0–600Heatsink overtemp. trip [°C] 85 90 110Power card ambient trip [°C] 60

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29

DimensionsVLT®HVACDriveInmm

Min.1

00

Exha

ust

Inle

tM

in.1

00

∅ 5,5

Rear View

∅ 5,5205(220)

7090

257

268

341

Exhaust

Inlet

Depth220mmwithA/B-Options

341

Min.1

00

Exha

ust

Inle

t

Min.1

00 ∅ 5,5

Rear View

∅ 5,5

205(220)

268

257

Exhaust

Inlet

Depth220mmwithA/B-Options

110130

A1

Geh

äuse

180

A2

Encl

osu

res

A3

Geh

äuse

A3

Encl

osu

res

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30

DimensionsVLT®HVACDriveInmm

A5

Encl

osu

res

B1

Encl

osu

res

B2

Encl

osu

res

Min.1

00

Exha

ust

Inle

t

Min.1

00

∅ 6,5 Rear View

∅ 6,5

200215

402

420

Exhaust

Inlet

242

Inle

tM

in.1

00

∅ 9Rear View

∅ 9

260

210

454

480

650

Exhaust

Inlet

Min.2

00

Exha

ust

Inle

t

Min.2

00 ∅ 9Rear View

∅ 9

260

242

624

Exhaust

Inlet

210

Min.1

00

Exha

ust

242

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31

A1

Geh

äuse

180

B3

Encl

osu

res

B4

Encl

osu

res

A3

Geh

äuse

C1

Encl

osu

res

DimensionsVLT®HVACDriveInmm

Min.2

00

Exha

ust

Inle

t

Min.2

00

∅ 6,8 Rear View

∅ 6,8

249(262) 165

140

399

380

419

Exhaust

Inlet

Depth262mmwithA/B-Options

Min.2

00

Exha

ust

Inle

tM

in.2

00

∅ 8,5Rear View

∅ 8,5242

200

231

495

520

460

595

35

680

Exhaust

Inlet

Min.2

00

Exha

ust

Inle

t

Min.2

00

∅ 9 Rear View

∅ 9310308

648

Exhaust

Inlet

272

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32

DimensionsVLT®HVACDriveInmm

C2

Encl

osu

res

C3

Encl

osu

res

C4

Encl

osu

res

Min.2

25

Exha

ust

Inle

t

Min.2

25

∅ 9Rear View

∅ 9

335

334

739

770

Exhaust

Inlet

370

Inle

tM

in.2

00

∅ 8,5Rear View

∅ 8,5334 308

270

21052

1

550

630

3636

488

Exhaust

Inlet

Min.2

25

Exha

ust

Inle

t

Min.2

25 ∅ 8,5

Rear View

∅ 8,5Exhaust

Inlet

Min.2

00

Exha

ust

631

660

800

598

334370330

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33

A1

Geh

äuse

180

D1

Encl

osu

res

(Flo

or-

or

cab

inet

Mo

un

t)

A3

Geh

äuse

D2

Encl

osu

res

(Flo

or-

or

cab

inet

Mo

un

t)

DimensionsVLT®HVACDriveInmm

Optional pedestal 176F1827 availablefor stand-alone floor mount installations

(adds 200 mm to height)

Min.2

25In

let

Min.2

2Ex

haus

t

420

1166

310

417

380

1209

765m3/hr

170m3/hr

74

163

Optional pedestal 176F1827 availablefor stand-alone floor mount installations

(adds 200 mm to height)

Drives shown with optional disconnect switch

Min.2

25In

let

Min.2

25Ex

haus

t

420

1547

423

417

380

1589

765m3/hr

170m3/hr

72

1362

157

981

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34

D3

Encl

osu

res

(Cab

inet

Mo

un

t)D

4 En

clo

sure

s (C

abin

et M

ou

nt)

DimensionsVLT®HVACDriveInmm

Equus 3100 Innova Diagnostic Code Reader

Drives shown with optional disconnect switch

Min.2

25In

let

Min.2

25Ex

haus

tM

in.2

25In

let

Min.2

25Ex

haus

t

408

997

147

417

375

1046

765m3/hr 255m3/hr66

818

157

408

1280

161

417

375

1327

765m3/hr 255m3/hr66

1099

151

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35

VLT® HVAC Drive Options

Typec

odePo

sitio

n

VLT® PROFIBUS DP V1 MCA 101• PROFIBUSDPV1givesyouwidecompatibility,ahighlevelofavailability,supportforallmajorPLCvendors, andcompatibilitywithfutureversions

• Fast,efficientcommunication,transparentinstallation,advanceddiagnosisandparameterisationand auto-configurationofprocessdataviaGSD-file

• A-cyclicparameterisationusingPROFIBUSDPV1,PROFIdriveorDanfossFCprofilestatemachines,PROFIBUSDPV1,MasterClass1and2

Ordering number 130B1100 uncoated – 130B1200 coated (Class 3C3/IEC 60721-3-3) 13

VLT® DeviceNet MCA 104• Thismoderncommunicationsmodelofferskeycapabilitiesthatletyoueffectivelydetermine whatinformationisneededandwhen

• YouwillalsobenefitfromODVA’sstrongconformancetestingpolicies,whichensurethatproductsareinteroperableOrdering number 130B1102 uncoated – 130B1202 coated (Class 3C3/IEC 60721-3-3)

13

VLT® LonWorks MCA 108LonWorksisafieldbussystemdevelopedforbuildingautomation.Itenablescommunicationbetweenindividualunitsinthesamesystem(peer-to-peer)andthussupportsdecentralisingofcontrol.• Noneedforbigmainstation(master-follower)• Unitsreceivesignalsdirectly• SupportsEchelonfree-topologyinterface(flexiblecablingandinstallation)• SupportsembeddedI/OsandI/Ooptions(easyimplementationofde-centralI/Os)• Sensorsignalscanquicklybemovedtoanothercontrollerviabuscables• CertifiedascompliantwithLonMarkver.3.4specificationsOrdering number 130B1106 uncoated – 130B1206 coated (Class 3C3/IEC 60721-3-3)

13

VLT® BACnet MCA 109Theopencommunicationsprotocolforworldwidebuildingautomationuse.TheBACnetprotocolisaninternationalproto-colthatefficientlyintegratesallpartsofbuildingautomationequipmentfromtheactuatorleveltothebuildingmanage-mentsystem.• BACnetistheworldstandardforbuildingautomation• InternationalstandardISO16484-5• Withnolicensefees,theprotocolcanbeusedinbuildingautomationsystemsofallsizes• TheBACnetoptionletsthedrivecommunicatewithbuildingmanagementsystemsrunningtheBACnetprotocol• TypicalareaswhereBACnetisusedincludeheating,ventilation,coolingandclimateequipmentcontrol• TheBACnetprotocoliseasilyintegratedintoexistingcontrolequipmentnetworksOrdering number 130B11446 uncoated – 130B1244 coated (Class 3C3/IEC 60721-3-3)

13

A

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36

VLT® HVAC Drive Options

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14

VLT® General Purpose I/O MCB 101 TheI/Ooptionoffersanextendednumberofcontrolinputsandoutputs.• 3digitalinputs0-24V:Logic‘0’<5V;Logic‘1’>10V• 2analogueinputs0-10V:Resolution10bitplussign• 2digitaloutputsNPN/PNPpushpull• 1analogueoutput0/4-20mA• Springloadedconnection• SeparateparametersettingsOrdering number 130B1125 uncoated – 130B1212 coated (Class 3C3/IEC 60721-3-3)

14

VLT® Relay Option MCB 105Letsyouextendrelayfunctionswith3additionalrelayoutputs.Max.terminalload:• AC-1Resistiveload...........................................................240 V AC 2 A• AC-15Inductiveload@cosф0.4..............................240VAC0.2A• DC-1Resistiveload............................................................. 24VDC1A• DC-13Inductiveload@cosф0.4...............................24VDC0.1A

Min.terminalload:• DC5V................................................................................................. 10mA• Maxswitchrateatratedload/min.load.............. 6min-1/20sec-1

Ordering number 130B1110 uncoated – 130B1210 coated (Class 3C3/IEC 60721-3-3)

14

VLT® Analog I/O Option MCB 109 Thisanalogueinput/outputoptioniseasilyfittedinthefrequencyconverterforupgradingtoadvancedperformanceandcontrolusingtheadditionalin/outputs.Thisoptionalsoupgradesthefrequencyconverterwithabatteryback-upsupplyfortheclockbuiltintothefrequencyconverter.Thisprovidesstableuseofallfrequencyconverterclockfunctionsastimedactionsetc.

• 3analogueinputs,eachconfigurableasbothvoltageandtemperatureinput• Connectionof0-10VanaloguesignalsaswellasPT1000andNI1000temperatureinputs• 3analogueoutputseachconfigurableas0-10Voutputs• Incl.back-upsupplyforthestandardclockfunctioninthefrequencyconverter

Theback-upbatterytypicallylastsfor10years,dependingonenvironment.Ordering number 130B1143 uncoated – 130B1243 coated (Class 3C3/IEC 60721-3-3)

B

Installation of options is a matter of plug-and-play

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37

LCP

D

VLT® HVAC Drive Options

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VLT® 24 V DC Supply Option MCB 107TheoptionisusedtoconnectanexternalDCsupplytokeepthecontrolsectionandanyinstalledoptionactivewhenmainspowerisdown. • Inputvoltagerange24VDC+/-15%(max.37Vin10sec.)• Max.inputcurrent..................................................2.2A• Max.cablelength...................................................75m• Inputcapitanceload.........................................<10uF• Power-updelay.....................................................<0.6s• Easytoinstallindrivesinexistingmachines• Keepsthecontrolboardandoptionsactiveduringpowercuts• KeepsfieldbusesactiveduringpowercutsOrdering number 130B1108 uncoated – 130B1208 coated (Class 3C3/IEC 60721-3-3)

14

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LCP 102 Graphical Local Control Panel• Multi-languagedisplay• Statusmessages• QuickMenuforeasycommissioning• Parametersettingandexplanationofparameterfunction• Adjustmentofparameters• Fullparameterbackupandcopyfunction• Alarmlogging• Infobutton–explainsthefunctionoftheselecteditemondisplay• Hand-operatedstart/stop,orautomaticmodeselection• Resetfunction• TrendgraphOrdering number 130B1107

15 & 17

LCP 101 Numerical Local Control PanelThenumericalcontrolpaneloffersanexcellentMMIinterfacetothedrive.• Statusmessages• Quickmenuforeasycommissioning• Parametersettingandadjustment• Hand-operatedstart/stopfunctionorautomaticmodeselect• ResetfunctionOrdering number 130B1124

15

LCP Panel Mounting KitForeasyinstallationoftheLCP101andLCP102ine.g.acabinet.• IP65(front)• Thumbscrewsfortool-freeinstallation• Incl.3metersofcablesinindustryquality(alsoavailableseparately)• WithorwithoutLCPoperatingunit• EachtimeeasytoinstallOrdering number 130B1117 (Mounting kit for all LCP’s including fasteners, 3 m cable and gasket) Ordering number 130B1113 (Incl. graphical LCP, fasteners, 3 m cable and gasket)Ordering number 130B1114 (Incl. numerical LCP, fasteners and gasket)Ordering number 130B1129 (LCP front mounting IP55/IP66) – Ordering number 175Z0929 (cable only)Ordering number 130B1170 (Panel Mouting Kit for all LCP w.o. cable)

16

Installation of options is a matter of plug-and-play

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38

Profibus Adapter Sub-D9 ConnectorTheadaptermakeslinkingoffieldbusconnectionspluggable.ForusewithoptionA.• OptiontouseprefabricatedProfibuscabling• Forretrofit

Screw terminalsScrewterminalsasanalternativetothestandardspringloadedterminals.• Pluggable• TerminalnameisdescribedOrdering number 130B1116

IP 21/Type 12 (NEMA1) KitTheIP21/Type12(NEMA1)kitisusedforinstallationofVLT®drivesindryenvironments.TheenclosurekitsareavailableforframesizesA1,A2,A3,B3,B4,C3andC4• SupportsVLT®drivesfrom1.1to90kW• UsedonstandardVLT®driveswithorwithoutmountedoptionmodules• IP41ontopside• PG16andPG21holesforglands130B1122 for frame size A2, 130B1123 for frame size A3, 130B1187 for frame size B3, 130B1189 for frame size B4, 130B1191 for frame size C3, 130B1193 for frame size C4

Kit for panel through mountMountingkitforexternalcoolingoftheheatsinkforapplianceswithA5,B1,B2,C1andC2housing.• Theairconditionedinstallationspacecanbereduced.• Additionalcoolingmaybeomitted• Nocontaminationofelectronicsbyforcedventilation• Facilitatesintegratedassembly• Reducedcabinetdepth/lessspace

VLT® Brake ResistorsEnergygeneratedduringbrakingisabsorbedbytheresistors,protectingelectricalcomponentsfromheatingup.Danfossbrakeresistorscoverthefullpowerrange.• Quickbrakingofheavyloads• Brakingenergyisonlyabsorbedintothebrakeresistor• Externalmountingmakesitpossibletousethegeneratedheat• Allnecessaryapprovalsareavailable

USB ExtensionUSBextensionforIP55andIP66enclosures.MakestheUSBconnectoravailableoutsidethedrive.TheUSBextensionisdesignedformountinginacableglandinthebottomofthedrive,whichmakesPCcommunicationveryeasyevenindriveswithhighIPrating.USB extension for A5-B1 enclosures, 350 mm cable , ordering number 130B1155USB extension for B2-C enclosures, 650 mm cable , ordering number130B1156

VLT® HVAC Drive Accessories

Please refer to the product and design manuals for selection and dimensioning

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39

VLT® Harmonic Filter AHF 005/010 MCE Easy,effectiveharmonicdistortionreductionbyconnectingtheAHF005/010harmonicfilterinfrontofaDanfossfrequencyconverter.• AHF005reducestotalharmoniccurrentdistortionto5%• AHF010reducestotalharmoniccurrentdistortionto10%• Smallcompacthousingthatcanbefittedintoapanel• Easytouseinretrofitapplications• User-friendlystart-up–noadjustmentnecessary• Noroutinemaintenancerequired

VLT® Sine-Wave Filters MCC 101Sine-wavefiltersareplacedbetweenthefrequencyconverterandthemotortooptimisethemotorpowercurrent.Itprovidesasinusoidalphase-to-phasemotorvoltage.Thefiltersreducemotorinsulationstress,acousticnoisefromthemotor,andbearingcurrents(especiallyinlargemotors).• Reducesmotorinsulationstress• Reducesacousticnoisefromthemotor• Reducesbearingcurrents(especiallyinlargemotors)• Enablesuseoflongermotorcables• Reduceslossesinthemotor• Prolongsservicelifetime• IP20orIP21

VLT® dU/dt filter MCC 102VLT®dU/dtfiltersareplacedbetweenthefrequencyconverterandthemotortoeliminateveryfastvoltagechanges.Themotorterminalphase-to-phasevoltageisstillpulseshapedbutitsdU/dtvaluesarereduced.• Thesefiltersreducestressonthemotor’sinsulationandarerecommendedinapplicationswitholdermotors,aggressiveenvironmentsorfrequentbrakingwhichcauseincreasedDClinkvoltage.

• IP20orIP21

SVCD – regenerative braking Transferringthegeneratedpowerfromadeceleratingmotorbackintothepowersupplyenablesbrakingofvirtuallyunlimitedduration.• Energyefficientbraking• Self-synchronisation• DC-DCcouplingofmultipledrivespossible• HighefficiencythroughIGBTtechnology• Simpleoperation• Overloadprotectioninregenerativeoperation

VLT® HVAC Drive Accessories

Note: Missing numbers can be found in the design manual or can be delivered on request

Page 40: New photo - chongda-yes.com.tw€¦ · Danfoss also provides active solutions such as Low Harmonic Drives, com-bining standard drives with an active filter and stand-aloneVLT® Advanced

Environmentallyresponsible

VLT®productsaremanufacturedwithrespectforthesafetyandwell-beingofpeopleandtheenvironment.

All activities are planned and per-formedtakingintoaccounttheindivid-ualemployee,theworkenvironmentandtheexternalenvironment.Produc-tiontakesplacewithaminimumofnoise,smokeorotherpollutionandenvironmentallysafedisposaloftheproductsispre-prepared.

UN Global CompactDanfosshassignedtheUNGlobalCompactonsocialandenvironmentalresponsibilityandourcompaniesactresponsiblytowardslocalsocieties.

EU Directives AllfactoriesarecertifiedaccordingtoISO14001standard.AllproductsfulfiltheEUDirectivesforGeneralProductSafetyandtheMachinerydirective.DanfossDrivesis,inallproductseries,implementingtheEUDirectivecon-cerningHazardousSubstancesinElec-tricalandElectricalEquipment(RoHS)andisdesigningallnewproductseriesaccordingtotheEUDirectiveonWasteElectricalandElectronicEquipment(WEEE).

Impact on energy savingsOneyear’senergysavingsfromouran-nualproductionofVLT®driveswillsavetheenergyequivalenttotheenergyproductionfromamajorpowerplant.Betterprocesscontrolatthesametimeimprovesproductqualityandreduceswasteandwearonequipment.

WhatVLT®isallaboutDanfoss Drives is the world leader among dedicated drives providers – and still gaining market share.

Dedicated to drivesDedicationhasbeenakeywordsince1968,whenDanfossintroducedtheworld’sfirstmassproducedvariablespeeddriveforACmotors–andnameditVLT®.

Twentyfivehundredemployees develop,manufacture,sellandservicedrivesandsoftstartersinmorethanonehundredcountries,focusedonlyondrivesandsoftstarters.

Intelligent and innovative DevelopersatDanfossDriveshavefullyadoptedmodularprinciplesindevelopmentaswellasdesign,productionandconfiguration.

Tomorrow’sfeaturesaredevelopedinparallelusingdedicatedtechnologyplatforms.Thisallowsthedevelop-mentofallelementstotakeplaceinparallel,atthesametimereducingtimetomarketandensuringthatcustomersalwaysenjoythebenefitsofthelatestfeatures.

Rely on the expertsWetakeresponsibilityforeveryelementofourproducts.Thefactthatwe develop and produce our own features,hardware,software,powermodules,printedcircuitboards,andaccessoriesisyourguaranteeofreliableproducts.

Local backup – globallyVLT®motorcontrollersareoperatingin applications all over the world and DanfossDrives’expertslocatedinmorethan100countriesarereadytosupportourcustomerswithapplica-tionadviceandservicewherevertheymaybe.

DanfossDrivesexpertsdon’tstop untilthecustomer’sdrivechallengesaresolved.

DKDD.PB.36.A1.02 VLT®isatrademarkofDanfossA/S ProducedbySMC/AO2009.03

Melbourne:Tel.(03)97035100,Fax.(03)97035159•Sydney: Tel.(02)88451800,Fax.(02)96386088•Brisbane:Tel.(07)36901899,Fax.(07)36302122Adelaide:Tel.(08)81507400,Fax.(08)84438033•Perth:Tel.(08)93333800,Fax.(08)94797200•Auckland:Tel.(09)2702110,Fax.(09)2702112•Christchurch:Tel.(03)3794365,Fax.(03)3794365www.danfoss.com/pacific•EmailAustralia:[email protected]•EmailNewZealand:[email protected]

After Hours Service Support: AustraliaTel.1800063330•NewZealand(Nth)Tel.092592519