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User’s Manual WX1 GateWT IM WX1-03E 9th Edition

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Page 1: WX1 GateWT User's Manual · IM WX1-03E iii 5. Infringement 5.1 If you are warned or receive a claim by a third party that the Software Product in its original form infringes any third

User’sManual WX1

GateWT

IM WX1-03E9th Edition

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iIM WX1-03E

9th Edition : June 2014 (YK)All Rights Reserved, Copyright © 2003-2014 Yokogawa Electric Corporation

This manual describes the functions and operations of GateWT. To ensure correct use, please read this manual thoroughly before beginning operation. After reading the manual, keep it in a convenient location for quick reference in the event a question arises. GateWT is a software program that acquires data from WT series instruments and transfers it to DAQLOGGER or Remote Monitor.

Note• Thecontentsofthismanualaresubjecttochangewithoutpriornoticeasaresultof

continuing improvements to the software’s performance and functions.• Everyefforthasbeenmadeinthepreparationofthismanualtoensuretheaccuracy

ofitscontents.However,shouldyouhaveanyquestionsorfindanyerrors,pleasecontact your nearest YOKOGAWA representative as listed on the back cover of this manual.

• Copyingorreproducingalloranypartofthecontentsofthismanualwithoutthepermission of Yokogawa Electric Corporation is strictly prohibited.

• Useofthisproduct(softwareandthismanual)onmorethanonecomputeratthesametimeisprohibited.Usebymorethanoneuserisalsoprohibited.

• Transferorlendingofthisproducttoanythirdpartyisprohibited.• YokogawaElectricCorporationprovidesnoguaranteesotherthanforphysical

deficienciesfoundontheoriginaldiskorthismanualuponopeningtheproductpackage.

• License numbers will not be reissued. Please keep the license number in a safe place.

Copyrights• CopyrightsfortheprogramsincludedontheCD-ROMareattributabletoYokogawa

Electric Corporation.

Trademarks• DAQWORX,DAQLOGGER,andDAQEXPLORERareregisteredtrademarksor

trademarks of Yokogawa Electric Corporation.• Microsoft,Windows,andWindowsVistaareregisteredtrademarksortrademarksof

MicrosoftCorporationintheUnitedStatesand/orothercountries.• AdobeandAcrobatareregisteredtrademarksortrademarksofAdobeSystems

Incorporated.• Companyandproductnamesthatappearinthismanualareregisteredtrademarksor

trademarks of their respective holders.• Thecompanyandproductnamesusedinthismanualarenotaccompaniedbythe

registered trademark or trademark symbols (® and ™).

Revisions• 1stEditionJune2003• 2ndEditionFeburuary2005• 3rdEditionJune2007• 4thEditionJanuary2009• 5thEditionJune2009• 6thEditionJanuary2011• 7thEditionApril2011• 8thEditionOctober2011• 9thEditionJune2014

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ii IM WX1-03E

Software License Agreement

IMPORTANT - PLEASE READ CAREFULLY BEFORE INSTALLING OR USING:THANKYOUVERYMUCHFORSELECTINGSOFTWAREOFYOKOGAWAELECTRICCORPORATION("YOKOGAWA").BYINSTALLINGOROTHERWISEUSINGTHESOFTWAREPRODUCT,YOUAGREETOBEBOUNDBYTHETERMSANDCONDITIONSOFTHISAGREEMENT.IFYOUDONOTAGREE,DONOTINSTALLNORUSETHESOFTWAREPRODUCTANDPROMPTLYRETURNITTOTHEPLACEOFPURCHASEFORAREFUND,IFAPPLICABLE.

Software License Agreement1.ScopeThisAgreementapplies to the followingsoftwareproductsandassociateddocumentationofYokogawa(collectively, "SoftwareProduct").UnlessotherwiseprovidedbyYokogawa,thisAgreementappliestotheupdatesandupgradesoftheSoftwareProductwhichmaybeprovidedbyYokogawa.SoftwareProduct:DAQWORX(Itislimitedtoeachsoftwarethatyoubought).

2. Grant of License2.1SubjecttothetermsandconditionsofthisAgreement,Yokogawaherebygrantstoyouanon-exclusiveandnon-transferablerighttousetheSoftwareProductona

singleor,thefollowingspecifiednumberof,computer(s)andsolelyforyourinternaloperationuse,inconsiderationoffullpaymentbyyoutoYokogawaofthelicensefeeseparately agreed upon.

Granted number of License: 1 (one)2.2UnlessotherwiseagreedorprovidedbyYokogawainwriting,thefollowingactsareprohibited: a) toreproducetheSoftwareProduct,exceptforonearchivalcopyforbackuppurpose,whichshallbemaintainedwithduecaresubjecttothisAgreement; b) tosell,lease,distribute,transfer,pledge,sublicense,makeavailableviathenetworkorotherwiseconveytheSoftwareProductorthelicensegrantedhereintoany

otherpersonorentity; c) tousetheSoftwareProductonanyunauthorizedcomputerviathenetwork; d) tocause,permitorattempttodump,disassemble,decompile,reverse-engineer,orotherwisetranslateorreproducetheSoftwareProductintosourcecodeorother

humanreadableformat,ortoreviseortranslatetheSoftwareProductintootherlanguageandchangeittootherformatsthanthatinwhichYokogawaprovided; e) tocause,permitorattempttoremoveanycopyprotectionusedorprovidedintheSoftwareProduct;or f) toremoveanycopyrightnotice,trademarknotice,logoorotherproprietarynoticesoridentificationshownintheSoftwareProduct.2.3Anyandalltechnology,algorithms,know-howandprocesscontainedintheSoftwareProductarethepropertyortradesecretofYokogawaorlicensorstoYokogawa.

OwnershipofandalltherightsintheSoftwareProductshallberetainedbyYokogawaorthelicensorsandnoneoftherightswillbetransferredtoyouhereunder.2.4YouagreetomaintaintheaforementionedpropertyandtradesecretofYokogawaorlicensorsandkeycodesinstrictconfidence,nottodiscloseittoanypartyother

thanyouremployees,officers,directorsorsimilarstaffwhohavealegitimateneedtoknowtousetheSoftwareProductandagreedinwritingtoabidebytheobligationshereunder.

2.5UponexpirationorterminationofthisAgreement,theSoftwareProductanditscopies,includingextracts,shallbereturnedtoYokogawaandanycopiesretainedinyourcomputerormediashallbedeletedirretrievably.IfyoudisposeofmediainwhichtheSoftwareProductoritscopyisstored,thecontentsshallbeirretrievablydeleted.

2.6TheSoftwareProductmaycontainsoftwarewhichYokogawaisgrantedarighttosublicenseordistributebythirdpartysuppliers,includingaffiliatesofYokogawa("ThirdPartySoftware").IfsuppliersoftheThirdPartySoftware("Supplier")providespecialtermsandconditionsfortheThirdPartySoftwarewhichdifferfromthisAgreement,thespecialtermsandconditionsseparatelyprovidedbyYokogawashallprevailoverthisAgreement.SomesoftwaremaybelicensedtoyoudirectlybySupplier.

2.7TheSoftwareProductmaycontainopensourcesoftware("OSS"),forwhichthespecialtermsandconditionsseparatelyprovidedbyYokogawashalltakeprecedenceover this Agreement.

3. Restrictions on Application3.1Unlessotherwiseagreed inwritingbetweenyouandYokogawa, theSoftwareProduct isnot intended,designed,producedor licensed foruse in relation toaircraft

operation or control, ship navigation or marine equipment control, or ground facility or device for support of the aforesaid operation or control, or for use in relation to rail facility, nuclear related facility, radiation-related equipment, or medical equipment or facility, or under any other circumstances which may require high safety standards.

3.2IftheSoftwareProductisusedfortheabovementionedpurposes,neitherYokogawanorSupplierassumesliabilityforanyclaimordamagearisingfromthesaiduseandyoushallindemnifyandholdYokogawa,Supplier,theiraffiliates,subcontractors,officers,directors,employeesandagentsharmlessfromanyliabilityordamagewhatsoever, including any court costs and attorney's fees, arising out of or related to the said use.

4. Limited Warranty4.1TheSoftwareProductshallbeprovidedtoyouonan"asis"basisatthetimeofdeliveryandexceptforphysicaldamagetotherecordingmediumcontainingtheSoftware

Product,YokogawaandSuppliershalldisclaimallofthewarrantieswhatsoever,expressorimplied,andallliabilitiestherefrom.Ifanyphysicaldefectisfoundontherecording medium not later than twelve (12) months from delivery, Yokogawa shall replace such defective medium free of charge, provided that the defective medium shallbereturnedtotheserviceofficedesignatedbyYokogawaatyourexpensewithinthesaidtwelve(12)months.THISLIMITEDWARRANTYPROVIDEDINTHISCLAUSEISINLIEUOFALLOTHERWARRANTIESOFANYKINDWHATSOEVERANDYOKOGAWAHEREBYDISCLAIMSALLOTHERWARRANTIESRELATINGTOTHESOFTWAREPRODUCT,WHETHEREXPRESSEDORIMPLIED,INCLUDINGWITHOUTLIMITATION,ANYIMPLIEDWARRANTIESOFMERCHANTABILITY,FITNESSFORANYPARTICULARPURPOSE,NON-INFRINGEMENT,QUALITY,FUNCTIONALITY,APPROPRIATENESS,ACCURACY,RELIABILITYANDRECENCY.INNOEVENTSHALLYOKOGAWAWARRANTTHATTHEREISNOINCONSISTENCYORINTERFERENCEBETWEENTHESOFTWAREPRODUCTANDOTHERSOFTWARENORSHALLBELIABLETHEREFOR.Thewarrantyprovisionsoftheapplicablelawareexpresslyexcludedtotheextentpermitted.

4.2AtthesolediscretionofYokogawa,YokogawamayupgradetheSoftwareProducttothenewversionnumber("Upgrade")andmakeitavailabletoyouatyourexpenseorfreeofchargeasYokogawadeemsfit.InnoeventshallYokogawabeobligedtoupgradetheSoftwareProductormaketheUpgradeavailabletoyou.

4.3CertainmaintenanceservicemaybeavailableforsometypesofSoftwareProductatYokogawa'scurrentlistprice.ScopeandtermsandconditionsofthemaintenanceserviceshallbesubjecttothoseseparatelyprovidedbyYokogawa.UnlessotherwiseprovidedinYokogawacataloguesorGeneralSpecifications,maintenanceserviceswill be available only for the latest version and the immediately preceding version. In no event will service for the immediately preceding version be available for more than 5yearsafterthelatestversionhasbeenreleased.Inaddition,noservicewillbeprovidedbyYokogawafortheSoftwareProductwhichhasbeendiscontinuedformorethan5years.Notwithstandingtheforegoing,maintenanceservicemaynotbeavailablefornon-standardSoftwareProduct.Further,innoeventshallYokogawaprovideanyservicefortheSoftwareProductwhichhasbeenmodifiedorchangedbyanypersonotherthanYokogawa.

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5.Infringement5.1IfyouarewarnedorreceiveaclaimbyathirdpartythattheSoftwareProductinitsoriginalforminfringesanythirdparty'spatent(whichisissuedatthetimeofdelivery

oftheSoftwareProduct),trademark,copyrightorotherintellectualpropertyrights("Claim"),youshallpromptlynotifyYokogawathereofinwriting.5.2IftheinfringementisattributabletoYokogawa,YokogawawilldefendyoufromtheClaimatYokogawa'sexpenseandindemnifyyoufromthedamagesfinallygrantedby

thecourtorotherwiseagreedbyYokogawaoutofcourt.TheforegoingobligationandindemnityofYokogawashallbesubjecttothati)youpromptlynotifyYokogawaofthe Claim in writing as provided above, ii) you grant to Yokogawa and its designees the full authority to control the defense and settlement of such Claim and iii) you give every and all necessary information and assistance to Yokogawa upon Yokogawa's request.

5.3IfYokogawabelievesthataClaimmaybemadeorthreatened,Yokogawamay,atitsoptionanditsexpense,eithera)procureforyoutherighttocontinueusingtheSoftwareProduct,b)replacetheSoftwareProductwithothersoftwareproducttopreventinfringement,c)modifytheSoftwareProduct, inwholeorinpart,sothatitbecome non-infringing, or d) if Yokogawa believes that a) through c) are not practicable, terminate this Agreement and refund you the paid-up amount of the book value oftheSoftwareProductasdepreciated.

5.4Notwithstandingtheforegoing,Yokogawashallhavenoobligationnorliabilityfor,andyoushalldefendandindemnifyYokogawaanditssuppliersfrom,theClaim,iftheinfringementisarisingfroma)modificationoftheSoftwareProductmadebyapersonotherthanYokogawa,b)combinationoftheSoftwareProductwithhardwareorsoftware not furnished by Yokogawa, c) design or instruction provided by or on behalf of you, d) not complying with Yokogawa's suggestion, or e) any other causes not attributable to Yokogawa.

5.5ThissectionstatestheentireliabilityofYokogawaanditssuppliersandthesoleremedyofyouwithrespecttoanyclaimofinfringementofathirdparty'sintellectualpropertyrights.Notwithstandinganythingtothecontrarystatedherein,withrespecttotheclaimsarisingfromorrelatedtotheThirdPartySoftwareorOSS,thespecialtermsandconditionsseparatelyprovidedforsuchThirdPartySoftwareorOSSshallprevail.

6.LimitationofLiability6.1EXCEPTTOTHEEXTENTTHATLIABILITYMAYNOTLAWFULLYBEEXCLUDEDINCONTRACT,YOKOGAWAANDSUPPLIERSSHALLNOTBELIABLETOANY

PERSONORLEGALENTITYFORLOSSORDAMAGE,WHETHERDIRECT,INDIRECT,SPECIAL,INCIDENTAL,CONSEQUENTIALOREXEMPLARYDAMAGES,OROTHERSIMILARDAMAGESOFANYKIND,INCLUDINGWITHOUTLIMITATION,DAMAGESFORLOSSOFBUSINESSPROFITS,BUSINESSINTERRUPTION,LOSSORDESTRUCTIONOFDATA,LOSSOFAVAILABILITYANDTHELIKE,ARISINGOUTOFTHEUSEORINABILITYTOUSEOFTHESOFTWAREPRODUCT,ORARISINGOUTOF ITSGENERATEDAPPLICATIONSORDATA,EVEN IFADVISEDOFTHEPOSSIBILITYOFSUCHDAMAGES,WHETHERBASED INWARRANTY(EXPRESSORIMPLIED),CONTRACT,STRICTLIABILITY,TORT(INCLUDINGNEGLIGENCE),ORANYOTHERLEGALOREQUITABLEGROUNDS.INNOEVENTYOKOGAWAANDSUPPLIER'SAGGREGATELIABILITYFORANYCAUSEOFACTIONWHATSOEVER(INCLUDINGLIABILITYUNDERCLAUSE5)SHALLEXCEEDTHEDEPRECIATEDVALUEOFTHELICENSEFEEPAIDTOYOKOGAWAFORTHEUSEOFTHECONCERNEDPARTOFTHESOFTWAREPRODUCT.IftheSoftwareProductdeliveredbyYokogawaisaltered,modifiedorcombinedwithothersoftwareorisotherwisemadedifferentfromYokogawacatalogues,GeneralSpecifications, basic specifications, functional specifications ormanualswithoutYokogawa's priorwritten consent,Yokogawa shall be exempted from itsobligations and liabilities under this Agreement or law.

6.2AnyclaimagainstYokogawabasedonanycauseofactionunderorinrelationtothisAgreementmustbegiveninwritingtoYokogawawithinthree(3)monthsafterthecause of action accrues.

7.ExportControlYouagreenottoexportorprovidetoanyothercountries,whetherdirectlyorindirectly,theSoftwareProduct,inwholeorinpart,withoutpriorwrittenconsentofYokogawa.IfYokogawaagreessuchexportationorprovision,youshallcomplywiththeexportcontrolandrelatedlaws,regulationsandordersofJapan,theUnitedStatesofAmerica,andanyotherapplicablecountriesandobtainexport/importpermitandtakeallnecessaryproceduresunderyourownresponsibilityandatyourownexpense.

8.Audit;Withholding8.1Yokogawashallhavetherighttoaccessandaudityourfacilitiesandanyofyourrecords,includingdatastoredoncomputers,inrelationtotheuseoftheSoftwareProduct

as may be reasonably necessary in Yokogawa's opinion to verify that the requirements of this Agreement are being met.8.2EvenafterlicensebeinggrantedunderthisAgreement,shouldtherebeanychangeincircumstancesorenvironmentofusewhichwasnotforeseenatthetimeofdelivery

and,inYokogawa'sreasonableopinion,isnotappropriateforusingtheSoftwareProduct,orifYokogawaotherwisereasonablybelievesitistooinappropriateforyoutocontinueusingtheSoftwareProduct,Yokogawamaysuspendorwithholdthelicenseprovidedhereunder.

9. AssignmentIfyoutransferorassigntheSoftwareProduct toathirdparty,youshallexpresslypresent thisAgreementtotheassigneetoensurethat theassigneecomplywiththisAgreement, transferall copiesandwholepart of theSoftwareProduct to theassigneeandshall deleteanyandall copyof theSoftwareProduct in yourpossessionirretrievably.ThisAgreementshallinuretothebenefitofandshallbebindingontheassigneesandsuccessorsoftheparties.

10. TerminationYokogawashallhavetherighttoterminatethisAgreementwithimmediateeffectuponnoticetoyou,ifyoubreachanyofthetermsandconditionshereof.UponterminationofthisAgreement,youshallpromptlyceaseusingtheSoftwareProductand,inaccordancewithsub-clause2.5,returnorirretrievablydeleteallcopiesoftheSoftwareProduct,certifyingthesameinwriting.InthiscasethelicensefeepaidbyyoufortheSoftwareProductshallnotberefunded.Clauses2.4and2.5,3,5,6and11shallsurviveanytermination of this Agreement.

11.GoverningLaw;DisputesThis Agreement shall be governed by and construed in accordance with the laws of Japan. Anydispute,controversies,ordifferenceswhichmayarisebetweenthepartieshereto,outof,inrelationtoorinconnectionwiththisAgreement("Dispute")shallberesolvedamicablythroughnegotiationbetweenthepartiesbasedonmutualtrust.ShouldthepartiesfailtosettletheDisputewithinninety(90)daysafterthenoticeisgivenfromeitherparty to the other, the Dispute shall be addressed in the following manner: (i) IfyouareaJapaneseindividualorentity,theDisputeshallbebroughtexclusivelyintheTokyoDistrictCourt(TheMainCourt)inJapan. (ii) IfyouarenotaJapaneseindividualorentity,theDisputeshallbefinallysettledbyarbitrationinTokyo,JapaninaccordancewiththeCommercialArbitrationRules

of the Japan Commercial Arbitration Association. All proceedings in arbitration shall be conducted in the English language, unless otherwise agreed. The award of arbitrationshallbefinalandbindinguponbothparties,however,eachpartymaymakeanapplicationtoanycourthavingjurisdictionforjudgmenttobeenteredontheawardand/orforenforcementoftheaward.

12. Miscellaneous12.1 ThisAgreementsupersedesallpriororalandwrittenunderstandings,representationsanddiscussionsbetweenthepartiesconcerningthesubjectmatterhereofto

theextentsuchunderstandings,representationsanddiscussionsshouldbediscrepantorinconsistentwiththisAgreement.12.2 If any part of this Agreement is found void or unenforceable, it shall not affect the validity of the balance of the Agreement, which shall remain valid and enforceable

according to its terms and conditions. The parties hereby agree to attempt to substitute for such invalid or unenforceable provision a valid or enforceable provision that achievestothegreatestextentpossibletheeconomic,legalandcommercialobjectivesoftheinvalidorunenforceableprovision.

12.3 FailurebyeitherpartytoinsistonperformanceofthisAgreementortoexercisearightwhenentitleddoesnotpreventsuchpartyfromdoingsoatalatertime,eitherin relation to that default or any subsequent one.

End of document

Software License Agreement

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Overview of This Manual

Structure of This ManualThis user’s manual consists of the following chapters. Chapter Title Description1 Overview Gives an overview of the GateWT software.

ListsthePCrequirementsforrunningGate-WTandgives information about system configuration.

2 Operating Procedure Gives procedures for entering environment and data logging interval settings, and how to monitor the operational status of the software.

3 Detailed Description of Functions

ProvidesadetaileddescriptionofthefunctionsofGateWT. Lists error messages, their causes, and their corrective actions.

Index Analphabeticalindexofthemanual'scontents.

Scope of This ManualThismanualdoesnotexplainthebasicoperationsofyourPC'soperatingsystem(OS).ForinformationregardingthebasicoperationsofWindows,seetheWindowsuser’smanual.

Conventions Used in This Manual• Units KDenotes1024. Example:10KB MDenotes1024K. Example:10MB G Denotes1024M. Example:2GB

• BoldfaceType Hardwareandsoftwarecontrolsthattheusermanipulatessuchasdialogboxes,

buttons, and menu commands are often set in boldface type.

• Subheadings On pages in chapters 1 through 3 that describe operating procedures, the following

subheadingsareusedtodistinguishtheprocedurefromtheirexplanations.

Procedure This subsection contains the operating procedure used to carry outthe function described in the current section. All procedures arewritten with inexperienced users in mind; experienced users maynot need to carry out all the steps.

Note Calls attention to information that is important for proper operation of the instrument.

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1

2

3

Index

Contents

SoftwareLicenseAgreement ............................................................................................................ iiOverview of This Manual ................................................................................................................. iv

Chapter 1 Overview1.1 OverviewofGateWTFunctions ........................................................................................... 1-11.2 SystemOverview ................................................................................................................. 1-2

Chapter 2 Operating Procedure2.1 RunningandExitingGate-WT ............................................................................................. 2-12.2 EnteringEnvironmentSettings ............................................................................................ 2-22.3 Connecting from DAQLOGGER or Remote Monitor ........................................................... 2-72.4 ProcessRun/StopandServiceRun/Stop ............................................................................ 2-82.5 ViewingtheStatusoftheExecutableFunction ................................................................... 2-92.6 ViewingVersionInformation .............................................................................................. 2-10

Chapter 3 Detailed Description of Functions3.1 Overview .............................................................................................................................. 3-1

EnvironmentSettingFunctions ............................................................................................ 3-1ExecutableFunction ............................................................................................................ 3-1

3.2 DetailedDescriptionofFunctions ........................................................................................ 3-2SerialPort ............................................................................................................................ 3-2GP-IBCommunication ......................................................................................................... 3-2Ethernet Communication ..................................................................................................... 3-2WTSettings ......................................................................................................................... 3-2Automatic Model Determination ........................................................................................... 3-3ScanInterval ........................................................................................................................ 3-3SettingtheNumberofRetries ............................................................................................. 3-3PortSettings ........................................................................................................................ 3-4Running/StoppingtheExecutableFunction ......................................................................... 3-4MonitorServerFunctionoftheExecutableFunction ........................................................... 3-4ExecutableFunctionStatusDisplay .................................................................................... 3-4Test Acquisition .................................................................................................................... 3-4Group and Channel Assignments ........................................................................................ 3-5TagSettings ....................................................................................................................... 3-17Channel Names, Tag IDs, and Tag Names ........................................................................ 3-25Channel Colors .................................................................................................................. 3-25GateWTisstartedandthedataofapossibledatacollectionfromWT1600 ..................... 3-26GateWTisstartedandthedataofapossibledatacollectionfromWT1800 ..................... 3-27GateWTisstartedandthedataofapossibledatacollectionfromWT500 ....................... 3-29

3.3 Error Messages and Corrective Actions ............................................................................ 3-31Error ................................................................................................................................... 3-31Message ............................................................................................................................ 3-31ExecutableFunctionMessages ......................................................................................... 3-31

Index

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1

2

3

Index

Overview

Chapter 1 Overview

1.1 Overview of GateWT Functions

GateWT is a software program that acquires data from WT series instruments and transfersittoDAQLOGGERorRemoteMonitor.UsingGateWTallowsyoutomonitordata on DAQLOGGER or Remote Monitor that is measured on WT series instruments. Yokogawa’s DAQLOGGER is a software program that allows users to open a connection fromtheirPCtovariouskindsofYokogawarecorders(themR,VR,DARWIN,DX,MV,and CX) and perform data logging and monitoring. Yokogawa’s Remote Monitor is a software program that enables monitoring of data logged by recorders or data logging software.

NoteWhenconnectingtheGateWTandWT1600andacquiringdata,youmustsettheWT1600’smeasurementrangetoFixedRangesincedatacommunicationisnotpossibleifitissettoAutoRange.

Features• RunsasaWindowsapplication.• Compatiblewiththefollowinginstruments:WT110,WT110E,WT130,WT200,WT210,

WT230,WT1010,WT1030,WT2010,WT2030,WT1030M,WT1600,WT1800andWT500.

• Upto16unitsoftheWT100,WT200,WT1000,WT2000,WT1600,WT1800orWT500can be linked.

• Measurementcanbeperformedatintervalsofupto0.5seconds*.* However,DAQLOGGER’sshortestintervalis1second.Also,themaximumspeedof0.5seconds may not be attainable depending on the amount of data being read, the response time of the device, and the communication speed.

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1.2 System Overview

SystemThis software can connect with and download data from a WT series instrument having the following characteristics. However, the harmonic option is not supported. • AWT110,WT110E,WT200,orWT210withRS-232orGP-IBcommunication

functions installed• AWT230orWT130withRS-232orGP-IBcommunicationfunctionsinstalled• AWT1010,WT1030,WT1030M,WT2010,orWT2030withRS-232orGP-IB

communication functions installed• AWT1600withRS-232,GP-IB,orEthernetfunctionality.• AWT1800withGP-IBorEthernetfunctionality.• AWT500withGP-IBorEthernetfunctionality.

Required Operating SystemsRun DAQWORX under any of the following operating systems. • WindowsVistaHomePremiumSP2(excludingthe64-biteditions)• WindowsVistaBusinessSP2(excludingthe64-biteditions)• Windows7HomePremium,SP1(32-bitand64-biteditions)• Windows7Professional,SP1(32-bitand64-biteditions)• Windows8(32-bitand64-bit)(Supportsthedesktopmode)• Windows8Pro(32-bitand64-bit)(Supportsthedesktopmode)ThelanguagedisplayedbythesoftwareunderdifferentlanguageversionsoftheOSareas follows. OS Language Software LanguageJapanese JapaneseOther English

Hardware RequirementsThe following hardware are required to use GateWT. • PC: APCthatrunsoneoftheOSabove,andthatmeetsthe

followingCPUandmemoryrequirements. When Using Windows Vista Pentium4,3GHzorfasterIntelx64orx86processor;2GBor

more of memory When Using Windows 7 or Windows 8 32-bitedition:IntelPentium4,3GHzorfasterx64orx86

processor;2GBormoreofmemory 64-bitedition:Intelx64processorthatisequivalenttoIntel

Pentium4,3GHzorfaster;2GBormoreofmemory• Freediskspace: 200MBormore• Communicationdevice:AnEthernet(whenconnectingtoDAQLOGGER,Remote

Monitor,WT1600,WT1800orWT500),RS-232,orGP-IBportthatisrecognizedbytheoperatingsystem.

• CD-ROMdrive: Usedtoinstallthesoftware• Peripheraldevices: Amousesupportedbytheoperatingsystem

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2

3

Index

Overview

• GP-IBport: RequiredforGP-IBcommunicationsbetweenthesoftwareanda WT series instrument

PleaseusethePCI-GPIBorPCMCIA-GPIBbyNationalInstruments.

• Monitor: AvideocardthatisrecommendedfortheOSandadisplay thatissupportedbytheOS,hasaresolutionof1024×768or higher,andthatcanshow65,536colors(16-bit,highcolor)or more.

1.2 System Overview

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System Configuration

GateWT

TCP/IP connectionMonitor server protocolData transfer

Remote Monitor

Ethernet

ItisrecommendedthatyourunGateWTandDAQLOGGERonseparatePCs.

Software Configuration

DAQLOGGER

Ethernet

Ethernet

GateWT

Environment setting functions

Displays execution status

Writes to file

Environment settings file

File read out

Status information

Executable function

WT series instrument

Remote MonitorSerial , GP-IB,or Ethernet

communications

GateWT Configurator consists of two separate software functions. The role of each function within the configurator is as follows:• Environment Setting Functions Thesefunctionsallowtheusertoentervarioussettingsrequiredbytheexecutable

function for communications with the WT series instrument, as well as those required for data transfers to and from DAQLOGGER and Remote Monitor. The user can also viewtheexecutionstatus.

• Executable Function ThesoftwarereadsdatafromtheWTseriesinstrumentsatfixedintervals.Italsoacts

as a monitor server, transferring data to DAQLOGGER and Remote Monitor.

1.2 System Overview

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2

3

Index

Operating Procedure

Chapter 2 Operating Procedure

2.1 Running and Exiting Gate-WT

Running the SoftwareProcedure

1. FromtheWindowsStartmenu,choosePrograms > YOKOGAWA DAQWORX > GateWT > GateWT.

The GateWT Configurator opens, displaying the user interface.

Note• WhenyoustartGateWT,itisrestoredtothesamestatusthatwasactiveduringtheprevious

session.• If the program is closed while a process or service is running, the license will be considered to be “in use.”

Ifthemessage,“Invalidlicensenumber.Pleasereinstall.”appearswhenrestartingtheprogram,itmayindicatethattheuserisattemptingtorunaGateprograminexcessofthenumberofavailablelicenses.

Starting GateWT in Acquisition Start ModeProcedure

1. FromtheWindowsStartmenu,choosePrograms > YOKOGAWA DAQWORX > GateWT > GateWT,thenright-clickGateWTandselectCreateShortcut.

2. Right-clicktheshortcuticonandselectProperties.

3. ChoosetheShortcuttab,thenadd/STARTtotherightofthepathintheTargetboxandclickOK.

4. ChoosetheshortcutfromtheWindowsStartmenu.Theconnectionstatusoftheprevious session is restored, and acquisition begins.

Exiting the SoftwareProcedure

1. Choose File > Exit from the menu bar, or click the X button at the right end of the title bar. GateWT closes.

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2.2 Entering Environment Settings

The following settings can be entered using the configurator. • WTassignments,communicationssettings,andloginsettings• AcquisitionintervalsettingsforeachWT• Portnumbersettings(forthemonitorserver)asneeded• Thesettingscanbesaved.

Serial Port SettingsProcedure

1. ClicktheSerialSettingtaborchooseView > Serial Setting from the menu bar. TheSerialSettingtabisdisplayed.

Drag to select the desired items

Copies the setting in the first item of the selection to all of the items in the selection

Turns the selected items ON and OFF

Click to display a list

2. Enter settings for each item.

Portnumber: ON(blue)/OFF(gray)

Baudrate: 4800,9600,19200

Datalength: Fixedat8

Parity: FixedatNONE

Stopbit: Fixedat1

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Operating Procedure

WT SettingsProcedure

1. ClicktheWTSettingtaborchooseView > WT Setting from the menu bar.

TheWTSettingtabisdisplayed.

Click to display the Input Address dialog box

Click to display a list

Only the active COM ports (specified in serial port settings) are displayed

2. Enter the communication method and address.

Communication type : Selecttheporttobeusedfortheconnection.Onlythe numbered COM ports turned ON in the serial setting tab are displayed.

ForGP-IB ClickacellintheAddresscolumntoopenthedialogboxinthefigurebelow. EntertheGP-IBaddress.

For Ethernet (ETHER) ClickAddresstodisplaythefollowingdialogbox. EntertheIPaddressorhostname,username(onlyWT1600),andpassword

(onlyWT1600).

For Serial Ports Set to COM1–COM9 (RS-232 Ports) An address is not entered.

Address : OnlyneededifthecommunicationtypeisGP-IB.

2.2 Entering Environment Settings

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Automatic Model Determination

3. Click Auto determination on the toolbar or choose Communication > Recorder Model Determination from the menu bar.

Auto determination button

The following items are displayed.

Model : The specific WT models to be connected.

Channel : The number of channels on the WT to be connected.

Tag Settings4. Double-click the tag number cell on the WT setting tab of the tag that you wish to set.

TheTagSettingdialogboxopens.

Drag to select a range of items

Cannot be changed (see chapter 3 regarding codes)

Choose the decimal place

Enter the upper and lower limit values of span (-1E16~1E16)

Enter the units

Initial settings of the tag names are assigned from information obtained during automatic model determination

Click to display the Color setting dialog box

Test results displayed here

Turns the selected items ON and OFF

Copies the setting in the first item of the selection to all of the items in the selection

Restore the default color to all tags

2.2 Entering Environment Settings

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Operating Procedure

Executing the Test 5. ClicktheTestExecutionbuttonintheTagSettingdialogbox.

The test result is displayed in the value column. Stopping the Test

6. ClicktheTestStopbutton.

Scan Interval and Retry SettingsProcedure

1. ClicktheScanIntervalSettingtaborchooseView > Scan IntervalSettingfromthe menu bar.

TheScanIntervalSettingtabisdisplayed.

Scan Interval Settings2. Specifyascanintervalfrom0.5to3600seconds.

Setting the Number of Retries3. TurnthecommunicationretrysettingONorOFF.

4. Enter the time interval between retries.

Theavailablesettingrangeis30to3600seconds.

Port SettingsProcedure

1. Choose File > Port Number from the menu bar.

2. You can change the port number used by the monitor server.

2.2 Entering Environment Settings

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Saving Environment Settings Procedure

1 ClicktheSavebuttononthetoolbarorchooseFile > Save from the menu bar.

Save button

Test AcquisitionProcedure

1. Double-click a number in the GateWT Configurator.

TheTagSettingdialogboxopens.

Double-click

Click Test acquisition result

2. ClicktheTestExecutebutton.

ThetestacquisitionresultisdisplayedintheValuecolumn.

2.2 Entering Environment Settings

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Operating Procedure

2.3 Connecting from DAQLOGGER or Remote Monitor

Whiletheexecutablefunctionisrunning,DAQLOGGERorRemoteMonitorworksviaEthernettologandmonitorthedatathattheWTisacquiring.GateWT’sexecutablefunction acts as the client of a DAQLOGGER or Remote Monitor that is running as the monitor server.

In this case, system numbers are assigned as follows: WT assigned to WT01 : 0 WT assigned to WT02 : 1

Connecting from DAQLOGGERProcedure

Seesection2.6oftheWX101DAQLOGGERWX81DAQLOGGERClientPackageUser’sManual(IMWX101-01E).

Note• IfaconnectionismadewithGateWTwhenDAQLOGGER’ssystemserversettingissetto

Nosystemnumber,theconnectedWTsarehandledonthesamesystem.Forexample,if a GateWT with two WTs connected is set to No system number on DAQLOGGER, DAQLOGGER handles both units channels as a single connected GateWT.

• WhenrecordermodeldeterminationisperformedbyDAQLOGGER,modelsnumbered01underGateWT’s“WTSetting”aredisplayedasNo.00.Toidentifymodelsnumbered02orhigher,specifythesystemnumberonDAQLOGGER.Forexample,fornumber02,specify01underSystemNo.

Connecting from Remote MonitorProcedure

Seesection8.1oftheWX101DAQLOGGERWX81DAQLOGGERClientPackageUser’sManual(IMWX101-01E),orsection9.2oftheWX102DAQ32PlusWX82DAQ32PlusClientPackageUser’sManual(IMWX102-01E).

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2.4 Process Run/Stop and Service Run/Stop

Running/StoppingfromtheMenuBarProcedure

Running as a Process or Service1. ClicktheServiceexecutionorProcessexecutionbuttononthetoolbar.Or,

choose Execute > Service or Execute > Process from the menu bar. Theexecutablefunctionstartsasaprocessorservice.“Service”or“Process”is

displayed underPracticeStatusonthePracticeStatustab.

Stop buttonProcess execution button

Service execution button

Note• ServiceexecutioncanonlybespecifiedbyuserswithAdministratorprivileges.• ServicescannotbeexecutedwhenusingWindowsVista.

Stopping the Process or Service1. ClicktheStopbuttononthetoolbarorchooseExecute > Stop from the menu bar. ThePracticeStatusitemshownonthePractice/Statustabdisplays“Stop.”

Running/Stopping the Executable Function from the Practice/Status Tab Procedure

1. ClickthePractice/StatustaborchooseView > Practice/Status from the menu bar.

ThePractice/Statustabisdisplayed.

Select the practice type

Running as a Process or Service2. Selecttoexecutethefunctionasaprocessorservice.3. ClickPractice. Theexecutablefunctionstarts,and“Service”or“Process”isdisplayedunder

PracticeStatus.

Stopping the Process or Service2. ClicktheStopbutton. “Stop”isdisplayedforthepracticestatus.

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Operating Procedure

2.5 Viewing the Status of the Executable Function

ProcedureDisplaying the Connection Status

1. ClicktheExecution/Statustab,orchooseView > Execution/Status from the menu bar.

TheExecution/Statustabisdisplayed,allowingyoutoseethemethodunderwhichtheexecutablefunctionmayberunning(asaprocessorasaservice),whetherornotitisrunning,andwithwhichPCscommunicationsareopen.

Select the practice type

Displays the names of connected clients

Double-click to display the Error Indicator dialog box

Displays the communications status with the clientGray: StoppedRed: ErrorGreen: Normal

Viewing Error Detail 2. Double-clicktheboxdisplayingtheclientcommunicationstatusontheExecution/

Statustab(shownabove). The Error Indicatordialogboxopens.

Seesection3.3forerrormessages.

Note• Ifawarningmessageisdisplayed(codeWxxxx),thelampthatdisplaystheconnection

status by color does not blink red. • Whenanerroroccursandthelampblinksred,theErrorIndicatordialogboxappears.Ifyou

closethedialogbox,thelampturnsgreen.

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2.6 Viewing Version Information

Procedure1. Click the About button on the tool bar or choose Help > About from the menu bar.

About button

TheVersiondialogboxopens.

License number

Company nameUser name

Version

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Chapter 3 Detailed Description of Functions

3.1 Overview

GateWT opens communications with WT series instruments and acquires data at regular intervals. Through the monitor server function, the acquired data is transferred to DAQLOGGER or Remote Monitor via Ethernet. GateWT Configurator consists of two separate software functions. The following is a list of the features of each software function.

Environment Setting FunctionsBasically,theenvironmentsettingfunctionsareusedtoenterallenvironmentsettingsrequiredtoruntheexecutablefunction.Theenvironmentsettingfunctionsincludethefollowing :• Entryofparametersusedforcommunicationswithupto16WTs. ForGP-IB: Address Forserialcommunications: Port,baudrate ForEthernet: IPaddressorhostname,username,password• Display of information (model and number of channels) from the WTs to be connected The software can open communication with the WTs and obtain this information automatically. • TagsettingsforeachWT

• Use/Donotuse(ON/OFF)• Upper/lowerlimitofspan• Decimalplace• Unit• Tagname• Color

• Entryoftheacquisitionintervalandportnumbersfortheexecutablefunction• Testexecution• Theabovecommunicationparameters,informationfromtheWT,acquisitioninterval,

and port numbers can be saved Later,thisinformationcanbeloadedbytheexecutablefunction.• Runs/stopstheexecutablefunctionasaprocess Twoexecutablefunctionscannotberunatthesametime. If the function is already running as a service, it cannot be run as a process. • Registers/deletestheexecutablefunctionasaprocess The function can run as a service while being registered. Itcanberegisteredasanautomaticallyexecutableservice.• Displaysthestatusoftheexecutablefunction Stopped,runningasaservice,runningasaprocess• Displaysalistofmonitorclientsconnectedwiththeexecutablefunction• Displayserrorsfromtheexecutablefunction Socketsareusedforcommunicationwiththeexecutablefunction.

Executable FunctionFeaturesoftheexecutablefunctionareasfollows:• Runsasaservice• Multipleinstancesofthefunctionmaynotberunsimultaneously• Readsthesettingsfileandconnectswithupto16WTs Communicationprotocols:GP-IB,RS-232,Ethernet• ReadsinstantaneousdatafromtheWTsatfixedintervalsandsavesthedatato

internal memory Readinginterval:0.5–3600seconds Theinternalmemoryholdsthe1800mostrecentdatasamples.• Runsasamonitorserver CompatiblewiththeDAQLOGGERmonitorserverspecifications.• Providesalistofclientsconnectedtothestatusdisplayfunction

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3.2 Detailed Description of Functions

Serial PortThecommunicationsportsavailabletoGateWTaretheCOM1–COM9serial(RS-232)ports. The user must enter the following port settings. • Use/Donotuse(ON/OFF)• Baudrate: Select4800,9600,or19200• Datalength: Fixedat8• Parity: FixedatNONE• Stopbit: Fixedat1

GP-IBCommunicationGateWTcanuseGP-IBaddresses1–30.

Ethernet CommunicationTheWT1600,WT1800,andWT500canperformEthernetcommunications.EntertheIPaddressorhostname,username(onlyWT1600),andpassword (onlyWT1600).

WT SettingsGateWTallowssimultaneousconnectionwithanycombinationof16ofthefollowinginstruments:WT110,WT110E,WT130,WT200,WT210,WT230,WT500,WT1010,WT1030,WT1030M,WT1600,WT1800, WT2010, or WT2030. The user must enter the following on the WTs to be accessed. • Chooseacommunicationmethod(COMx,GP-IB,orEthernet)

ForGP-IB Communicationsmode: 488.2 Address: 1–30 ForRS-232(forinstrumentsotherthantheWT1600) Communicationsmode: 488.2 Handshaking : 0 Format: 0 Delimiter : Cr + Lf Baudrate: 4800,9600,19200 ForRS-232(WT1600) Communicationmode: 488.2 Handshaking: CTS-RTS Format: 8-NO-1 Delimiter : Cr+Lf Baudrate: 4800,9600,19200 ForEthernet:Enterthefollowingsettings. WhenUsingDHCP Domain name PrimaryDNSserveraddress SecondaryDNSserveraddress Primarydomainsuffix Secondarydomainsuffix WhenUsingDNS IPaddress Subnetmask Default gateway

NoteWhen connecting with DAQLOGGER to acquire data from the WT, if the number of channels setontheWTSettingtabexceeds1600,1600channelsofdataissenttoDAQLOGGER,starting with the first channel of the instrument of the smallest system number. Also, if an error occurs on an instrument during the first communication and communication is restored by executingacommunicationretry,connectionispossiblewiththatinstrumentin1scanmodewithout any channels being cut out.

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Automatic Model DeterminationIf you select a WT and perform automatic model determination, the model and number of channelsarepassedtotheWTSettingtabontheconfigurator.However,harmonicoptionoutputforWT1600andharmonicmodeforWT1600arenotsupported.

ModelsandNumberofChannels(ModelNameinBrackets)

Model Number of channelsWT110[253401]WT110E[253451]WT200[253421]WT210[760401]

19

WT130(2Elements)[253502]WT230(2Elements)[760502]

53

WT230(3Elements)[253503]WT230(3Elements)[760503]

70

WT1010[253610]WT2010[253101]

18

WT1030(2Elements)[253620]WT2030(2Elements)[253102]

46

WT1030(3Elements)[253630]WT2030(3Elements)[253103]

61

WT1030M[253640] 68WT1600(1Elements)[760101-01/-10] 76WT1600(1Elements)[760101-02/-11/-20] 123WT1600(1Elements)[760101-03/-12/-21/-30] 170WT1600(1Elements)[760101-04/-13/-22/-31/-40] 197WT1600(1Elements)[760101-05/-14/-23/-32/-41/-50] 224WT1600(1Elements)[760101-06/-15/-24/-33/-42/-51/-60] 251WT1800(1Elements)[WT1801-01/-10] 55WT1800(2Elements)[WT1802-02/-11/-20] 104WT1800(3Elements)[WT1803-03/-12/-21/-30] 104WT1800(4Elements)[WT1804-04/-13/-22/-31/-40] 179WT1800(5Elements)[WT1805-05/-14/-23/-32/-41/-50] 205WT1800(6Elements)[WT1806-06/-15/-24/-33/-42/-51/-60] 254WT500[1Elements](760201) 99WT500[2Elements](760202) 156WT500[3Elements](760203) 213

* ThenumberofWT500channelsgivenaboveiswiththe/G5and/DSoptions.Ifanoptionis not installed, the number of channels is decreased by the number of channels related to thatoption.ThenumberofWT1800channelsgivenaboveiswiththe/G5or/G6,/DT,/MTRor/AUXoptions.Ifanoptionisnotinstalled,thenumberofchannelsisdecreasedbythenumber of channels related to that option.

Scan IntervalAscanintervalfrom0.5to3600secondsisselectedforeachofthe16WTs.

NoteWhen connecting to DAQLOGGER and acquiring data from the WTs, if GateWT’s scan interval is longer than that of DAQLOGGER, DAQLOGGER logs the same data repeatedly until the nextGateWTscaninterval.Therefore,itisrecommendedthatGateWT’sscanintervalbesetto a value smaller than DAQLOGGER’s scan interval.

Setting the Number of RetriesTheRetryfunctioncanbeturnedONandOFFforeachofthe16WTs.IfRetryisturnedON,aretryintervalof30to3600secondscanbespecified.Communication is reattempted each time the specified number of seconds elapses. Retries are also performed on instruments with which a communication error occurred during the first communication.

3.2 Detailed Description of Functions

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Port SettingsGateWT uses the following ports. • Monitorserverport The port used for communications from DAQLOGGER and Remote Monitor. • Statusacquisitionport Theportfromwhichthestatusdisplaysoftwareacquiresstatusfromtheexecutable

software.Searchforanemptyporttouseasthestatusacquisitionport.

Running/Stopping the Executable FunctionTheuserinterfaceallowsyoutostartandstoptheexecutablefunction.Theexecutablefunctionrunsunderoneofthefollowingtwomethodsor“types.”• ProcessRun/Stop Theexecutablefunctionisrun/stoppedasaprocess.• ServiceRun/Stop Theexecutablefunctionisregisteredasanautomaticallyexecutingservice,then

run.Afteranexecutablefunctionrunningasaserviceisstopped,itsregistrationasaservice is deleted.

NoteAsindicatedbytheserviceexecutionstatus,theexecutablefunctioncontinuesprocessingeven when the user has logged off of Windows. Also, the software is automatically run as a servicewhenthecomputeristurnedON.ServiceexecutioncanonlybespecifiedbyuserswithAdministratorprivileges.ServicescannotbeexecutedwhenusingWindowsVista.

Monitor Server Function of the Executable FunctionWhentheexecutablefunctionisrunning,youcanconnectfromDAQLOGGERorRemote Monitor via Ethernet using the remote monitor protocol, and acquire data. In this case, system numbers are assigned as follows: WT assigned to WT01 : 0 WT assigned to WT02 : 1If GateWT is connected without specifying a system number on DAQLOGGER, all WTs areregardedasbeingofthesamesystem.Forexample,ifaGateWTconnectedtotwoWTs is connected to DAQLOGGER without specifying a system number, it appears as though a single GateWT with two WTs worth of channels is connected.

Executable Function Status DisplayThestatusdisplayshowsthestatusoftheenvironmentsettingandexecutablefunctions.Theinformationfromtheexecutablefunctionthatcanbedisplayedisasfollows:• Practicestatus(stopped,runningasaservice,runningasaprocess)• Connectionstatusfromtheclient DisplaysalistofPCsrunningDAQLOGGERSandRemoteMonitorswithwhichthe

executablesoftwarehasopenedaconnection.• Errordisplay Showsthepresenceorabsenceoferrorsontheexecutablefunction.

Test AcquisitionYou can perform a test acquisition on each tag using the configurator. During the test acquisition, data is read from WT output channels assigned to each tag and displayed as digital values. This allows you to determine whether the communication settings for each tag are correct. The test acquisition gets values from assigned tags at intervals of approximately1second.Upto32tagscanbeassignedtoagroup,andupto4groupscan be displayed. The number of tags that can be assigned to a group differs depending on the type of connected device, and only up to 4 groups can be displayed.

3.2 Detailed Description of Functions

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Group and Channel AssignmentsIf connected from the remote monitor, the initial group and channel assignments are as follows, and cannot be changed.

NoteIf connected to GateWT using DAQLOGGER, the group and waveform assignments are ignored.

WT100, WT110E [17]Group String Waveform Number Channel Assignment

1 group Element1 W01 VW02 AW03 WW04 VAW05 VARW06 PFW07 DEGRW08 VHZW09 AHZW10 WHW11 WHPW12 WHMW13 AHW14 AHPW15 AHMW16 VPKW17 APKW18 MATHW19 TIME

WT200, WT210 [19]Group String Waveform Number Channel Assignment

2 group Element1 W01 VW02 AW03 WW04 VAW05 VARW06 PFW07 DEGRW08 VHZW09 AHZW10 WHW11 WHPW12 WHMW13 AHW14 AHPW15 AHMW16 VPKW17 APKW18 MATHW19 TIME

3.2 Detailed Description of Functions

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WT130 (Three-phase, three-wire), WT230(Three-phase, three-wire) [53]Group String Waveform Number Channel Assignment

1 group Element1 W01—W19 V—TIME(sameasWT200)2 group Element3 W01—W17 V—APK3 group Sigma W01—W17 V—APK

WT130 (Three-phase, four-wire), WT230(Three-phase, four-wire) [70]Group String Waveform Number Channel Assignment

1 group Element1 W01—W19 V—TIME(sameasWT200)2 group Element2 W01—W17 V—APK3 group Element3 W01—W17 V—APK4 group Sigma W01—W17 V—APK

WT1010, WT2010 [18]Group String Waveform Number Channel Assignment

1 group Element1 W01 VW02 AW03 WW04 VAW05 VARW06 PFW07 DEGRW08 VPKW09 APKW10 WHW11 WHPW12 WHMW13 AHW14 AHPW15 AHMW16 FREQW17 MATHW18 TIME

WT1030 (Three-phase, three-wire), WT2030(Three-phase, three-wire) [46]Group String Waveform Number Channel Assignment

1 group Element1 W01—W18 V—TIME(sameasWT1010)2 group Element3 W01—W15 V—AHM3 group Sigma W01—W15 V—AHM

WT1030(Three-phase, four-wire), WT2030(Three-phase, four-wire) [61]Group String Waveform Number Channel Assignment

1 group Element1 W01—W18 V—TIME(sameasWT1010)2 group Element2 W01—W15 V—AHM3 group Element3 W01—W15 V—AHM4 group Sigma W01—W15 V—AHM

WT1030M(Three-phase, four-wire)Group String Waveform Number Channel Assignment

1 group Element1 W01—W18 V—TIME(sameasWT1010)2 group Element2 W01—W15 V—AHM3 group Element3 W01—W15 V—AHM4 group Sigma W01—W15 V—AHM5group Motor W01 TORQ

W02 RPMW03 SRPMW04 SLIPW05 MPOWW06 MEFFW07 TEFF

3.2 Detailed Description of Functions

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WT1600(1Element model)Group String Waveform Number Channel Assignment

1 group Element1 W01 URMSW02 UMNW03 UDCW04 UACW05 IRMSW06 IMNW07 IDCW08 IACW09 PW10 SW11 QW12 LAMBdaW13 PHIW14 FUW15 FIW16 PCW17 UPPeakW18 UMPeakW19 IPPeakW20 IMPeakW21 TIMEW22 WHW23 WHPW24 WHMW25 AHW26 AHPW27 AHM

2 group SigmaA W01 URMSW02 UMNW03 UDCW04 UACW05 IRMSW06 IMNW07 IDCW08 IACW09 PW10 SW11 QW12 LAMBdaW13 PHIW14 PCW15 WHW16 WHPW17 WHMW18 AHW19 AHPW20 AHM

(Cont.onnextpage.)

3.2 Detailed Description of Functions

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Group String Waveform Number Channel Assignment3 group Other W01 ETA

W02 SETAW03 F1W04 F2W05 F3W06 F4W07 DURMS1W08 DUMN1W09 DUDC1W10 DUAC1W11 DURMS2W12 DUMN2W13 DUDC2W14 DUAC2W15 DURMS3W16 DUMN3W17 DUDC3W18 DUAC3W19 DURMS4W20 DUMN4W21 DUDC4W22 DUAC4

4 group Motor W01 TORQueW02 SPEedW03 SYNCW04 SLIPW05 PMW06 MEATaW07 MBETa

WT1600(2Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W27 URMS—AHM2 group Element2 W01—W27 URMS—AHM3 group SigmaA W01—W20 URMS—AHM4 group SigmaB W01—W20 URMS—AHM5group Other W01—W22 ETA—DUAC46group Motor W01—W07 TORQue—MBETa

WT1600(3Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W27 URMS—AHM2 group Element2 W01—W27 URMS—AHM3 group Element3 W01—W27 URMS—AHM4 group SigmaA W01—W20 URMS—AHM5group SigmaB W01—W20 URMS—AHM6group SigmaC W01—W20 URMS—AHM7group Other W01—W22 ETA—DUAC48group Motor W01—W07 TORQue—MBETa

3.2 Detailed Description of Functions

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WT1600(4Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W27 URMS—AHM2 group Element2 W01—W27 URMS—AHM3 group Element3 W01—W27 URMS—AHM4 group Element4 W01—W27 URMS—AHM5group SigmaA W01—W20 URMS—AHM6group SigmaB W01—W20 URMS—AHM7group SigmaC W01—W20 URMS—AHM8group Other W01—W22 ETA—DUAC49 group Motor W01—W07 TORQue—MBETa

WT1600(5Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W27 URMS—AHM2 group Element2 W01—W27 URMS—AHM3 group Element3 W01—W27 URMS—AHM4 group Element4 W01—W27 URMS—AHM5group Element5 W01—W27 URMS—AHM6group SigmaA W01—W20 URMS—AHM7group SigmaB W01—W20 URMS—AHM8group SigmaC W01—W20 URMS—AHM9 group Other W01—W22 ETA—DUAC410 group Motor W01—W07 TORQue—MBETa

WT1600(6Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W27 URMS—AHM2 group Element2 W01—W27 URMS—AHM3 group Element3 W01—W27 URMS—AHM4 group Element4 W01—W27 URMS—AHM5group Element5 W01—W27 URMS—AHM6group Element6 W01—W27 URMS—AHM7group SigmaA W01—W20 URMS—AHM8group SigmaB W01—W20 URMS—AHM9 group SigmaC W01—W20 URMS—AHM10 group Other W01—W22 ETA—DUAC411 group Motor W01—W07 TORQue—MBETa

3.2 Detailed Description of Functions

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WT1800(1Element model)Group String Waveform Number Channel Assignment

1 group Element1 W01 URMSW02 UMNW03 UDCW04 IRMSW05 IMNW06 IDCW07 PW08 SW09 QW10 LAMBDAW11 PHIW12 FUW13 FIW14 TIMEW15 WHW16 WHPW17 WHMW18 AHW19 AHPW20 AHM

2 group ElemHrm1(/G5,/G6)

W01 UK_1W02 UK_TW03 IK_1W04 IK_TW05 UTHDW06 ITHD

3 group Other W01 ETA1W02 ETA2W03 ETA3W04 ETA4W05 F1W06 F2W07 F3W08 F4W09 F5W10 F6W11 F7W12 F8W13 F9W14 F10W15 F11W16 F12W17 F13W18 F14W19 F15W20 F16W21 F17W22 F18W23 F19W24 F20

4 group Motor(/MTR) W01 SPEEDW02 TORQUEW03 SYNCSPW04 SLIPW05 PM

5group Aux(/AUX) W01 AUX1W02 AUX2

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Note• Sincethemaximumnumberofparametersthatcanbeacquiredviacommunicationsonthe

WT1800is255,allfunctionscannotbeacquiredonGateWT.Toacquirefunctionsnotinthetable,youcansetthemintheWT1800'suser-definedfunctions(F1toF20).

• (/G5,/G6)canbeselectedoninstrumentswiththeharmonicmeasurementfunctionsoption,(/DT)canbeselectedoninstrumentswiththedeltacomputationfunctionsoption,(/MTR)canbeselectedoninstrumentswiththemotorevaluationfunctionsoptionand(/AUX)canbeselectedoninstrumentswiththeauxiliaryinputmeasurementfunctionsoption.Ifaninstrument without an option is selected, the group numbers shift to fill in the missing option. Forexample,groupsareassignedasfollowsfora2-elementmodelwith(/G5)and(/Aux)butwithout(/DT),(/MTR).

Group 1: Element1Group 2: Element2Group 3: ElemHrm1Group 4: ElemHrm2Group5: SigmaAGroup6: OtherGroup7: Aux

WT1800(2Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W20 URMS—AHM2 group Element2 W01—W20 URMS—AHM3 group ElemHrm1 W01—W06 UK_1—ITHD4 group ElemHrm2 W01—W06 UK_1—ITHD5group SigmaA W01 URMS

W02 UMNW03 IRMSW04 IMNW05 PW06 SW07 LAMBDAW08 PHIW09 WHW10 WHPW11 WHMW12 AHW13 AHPW14 AHM

6group Other W01—W24 ETA1—F207group DeltaA(/DT) W01 DU1

W02 DU2W03 DU3W04 DUSW05 DIW06 DP1W07 DP2W08 DP3W09 DPS

8group Motor W01—W05 SPEED—PM9 group Aux W01—W02

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WT1800(3Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W20 URMS—AHM2 group Element2 W01—W20 URMS—AHM3 group Element3 W01—W20 URMS—AHM4 group ElemHrm1 W01—W06 UK_1—ITHD5group ElemHrm2 W01—W06 UK_1—ITHD6group ElemHrm3 W01—W06 UK_1—ITHD7group SigmaA W01—W14 URMS—AHM8group Other W01—W24 ETA1—F209 group DeltaA W01—W09 DU1—DPS10 group Motor W01—W05 SPEED—PM11 group Aux W01—W02 AUX1—AUX2

WT1800(4Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W20 URMS—AHM2 group Element2 W01—W20 URMS—AHM3 group Element3 W01—W20 URMS—AHM4 group Element4 W01—W20 URMS—AHM5group ElemHrm1 W01—W06 UK_1—ITHD6group ElemHrm2 W01—W06 UK_1—ITHD7group ElemHrm3 W01—W06 UK_1—ITHD8group ElemHrm4 W01—W06 UK_1—ITHD9 group SigmaA W01—W14 URMS—AHM10 group SigmaB W01—W14 URMS—AHM11 group Other W01—W24 ETA1—F2012 group DeltaA W01—W09 DU1—DPS13 group DeltaB W01—W09 DU1—DPS14 group Motor W01—W05 SPEED—PM15group Aux W01—W02 AUX1—AUX2

WT1800(5Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W20 URMS—AHM2 group Element2 W01—W20 URMS—AHM3 group Element3 W01—W20 URMS—AHM4 group Element4 W01—W20 URMS—AHM5group Element5 W01—W20 URMS—AHM6group ElemHrm1 W01—W06 UK_1—ITHD7group ElemHrm2 W01—W06 UK_1—ITHD8group ElemHrm3 W01—W06 UK_1—ITHD9 group ElemHrm4 W01—W06 UK_1—ITHD10 group ElemHrm5 W01—W06 UK_1—ITHD11 group SigmaA W01—W14 URMS—AHM12 group SigmaB W01—W14 URMS—AHM13 group Other W01—W24 ETA1—F2014 group DeltaA W01—W09 DU1—DPS15group DeltaB W01—W09 DU1—DPS16group Motor W01—W05 SPEED—PM17group Aux W01—W02 AUX1—AUX2

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WT1800(6Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W20 URMS—AHM2 group Element2 W01—W20 URMS—AHM3 group Element3 W01—W20 URMS—AHM4 group Element4 W01—W20 URMS—AHM5group Element5 W01—W20 URMS—AHM6group Element6 W01—W20 URMS—AHM7group ElemHrm1 W01—W06 UK_1—ITHD8group ElemHrm2 W01—W06 UK_1—ITHD9 group ElemHrm3 W01—W06 UK_1—ITHD10 group ElemHrm4 W01—W06 UK_1—ITHD11 group ElemHrm5 W01—W06 UK_1—ITHD12 group ElemHrm6 W01—W06 UK_1—ITHD13 group SigmaA W01—W14 URMS—AHM14 group SigmaB W01—W14 URMS—AHM15group SigmaC W01—W14 URMS—AHM16group Other W01—W24 ETA1—F2017group DeltaA W01—W09 DU1—DPS18group DeltaB W01—W09 DU1—DPS19 group DeltaC W01—W09 DU1—DPS20 group Motor W01—W05 SPEED—PM21 group Aux W01—W02 AUX1—AUX2

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WT500(1Element model)Group String Waveform Number Channel Assignment

1 group Element1 W01 URMSW02 UMNW03 UDCW04 URMNW05 UACW06 IRMSW07 IMNW08 IDCW09 IRMNW10 IACW11 PW12 SW13 QW14 LAMBdaW15 PHIW16 FUW17 FIW18 UPPeakW19 UMPeakW20 IPPeakW21 IMPeakW22 CFUW23 CFIW24 TIMEW25 WHW26 WHPW27 WHMW28 AHW29 AHPW30 AHMW31 WSW32 WQ

2 group ElemHrm1(G5) W01 UK_0W02 UK_1W03 UK_TW04 IK_0W05 IK_1W06 IK_TW07 PK_0W08 PK_1W09 PK_TW10 SK_0W11 SK_1W12 SK_TW13 QK_0W14 QK_1W15 QK_TW16 LAMBDA0W17 LAMBDA1W18 LAMBDATW19 PHIK_1W20 PHIK_TW21 PHIUk3W22 PHIIk3W23 UTHDW24 ITHDW25 PTHD

(Cont.onnextpage.)

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Group String Waveform Number Channel Assignment3 group Sigma W01 URMS

W02 UMNW03 UDCW04 URMNW05 UACW06 IRMSW07 IMNW08 IDCW09 IRMNW10 IACW11 PW12 SW13 QW14 LAMBdaW15 PHIW16 WHW17 WHPW18 WHMW19 AHW20 AHPW21 AHMW22 WSW23 WQ

4 group Other W01 ETA1W02 ETA2W03 F1W04 F2W05 F3W06 F4W07 F5W08 F6W09 F7W10 F8

5group Delta(DT)

W01 DELTA1W02 DELTA2W03 DELTA3W04 DELTA4

6group Phase(G5)

W01 P_U1U2W02 P_U1U3W03 P_U1I1W04 P_U1I2W05 P_U1I3

Note• WiththeWT500,becausethemaximumnumberofparametersthatcanbeacquiredvia

communicationsis255,thefollowingcannotbeacquiredwiththeGateWT:2ndthrough50thordersofU/I/P/S/Q/LAMBda/PHI;1st,2nd,and4ththrough50thordersofPHIU/PHII;andUHDF,IHDF,andPHDF.

• (G5)canbeselectedoninstrumentswiththeharmonicoption,and(DT)canbeselectedoninstruments with the delta option. If an instrument without an option is selected, the group numbersshifttofillinthemissingoption.Forexample,groupsareassignedasfollowsfora1-elementmodelwith(G5)butwithout(DT).

Group 1: Element1Group 2: ElemHrm1Group3: SigmaGroup 4: OtherGroup5: Phase

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WT500(2Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W32 URMS—WQ2 group Element2 W01—W32 URMS—WQ3 group ElemHrm1 W01—W25 UK_0—PTHD4 group ElemHrm2 W01—W25 UK_0—PTHD5group Sigma W01—W23 URMS—WQ6group Other W01—W10 ETA1—F87group Delta W01—W04 DELTA1—DELTA48group Phase W01—W05 P_U1U2—P_U1I3

WT500(3Elements model)Group String Waveform Number Channel Assignment

1 group Element1 W01—W32 URMS—WQ2 group Element2 W01—W32 URMS—WQ3 group Element3 W01—W32 URMS—WQ4 group ElemHrm1 W01—W25 UK_0—PTHD5group ElemHrm2 W01—W25 UK_0—PTHD6group ElemHrm3 W01—W25 UK_0—PTHD7group Sigma W01—W23 URMS—WQ8group Other W01—W10 ETA1—F89 group Delta W01—W04 DELTA1—DELTA410 group Phase W01—W05 P_U1U2—P_U1I3

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Tag SettingsInitial settings of the tags are assigned according to the model information obtained during automatic model determination. WT100/WT200WT110WT110EWT200WT210

Group 1(Group name: Element1)

Element1(V,A,W,VA,VAR,PF,DEGR,VHZ,AHZ,WH,WHP,WHM,AH,AHP,AHM)+MATH+TIME

WT130(2Element) WT230(2Element)

Group 1(Group name: Element1)

Element1(V–APK)+MATH+TIME

Group 2(Group name: Element3)

Element3(V–APK)

Group 3(Groupname:Sigma)

Sigma(V–APK)

WT130(3Element) WT230(3Element)

Group 1(Group name: Element1)

Element1(V–APK)+MATH+TIME

Group 2(Group name: Element2)

Element2(V–APK)

Group 3(Group name: Element3)

Element3(V–APK)

Group 4(Groupname:Sigma)

Sigma(V–APK)

WT1000/WT2000WT1010WT2010

Group 1(Group name: Element1)

Element1(V,A,W,VA,PF,DEGR,VPK,APK,WH,WHP,WHM,AH,AHP,AHM)+FREQ+MATH+TIME

WT1030WT2030

Group 1(Group name: Element1)

Element1(V–AHM)+FREQ+MATH+TIME

Group 2(Group name: Element3)

Element3(V–AHM)

Group 3(Groupname:Sigma)

Sigma(V~AHM)

WT1030(3Element)WT2030(3Element)

Group 1(Group name: Element1)

Element1(V–AHM)+FREQ+MATH+TIME

Group 2(Group name: Element2)

Element2(V–AHM)

Group 3(Group name: Element3)

Sigma(V–AHM)

Group 4(Groupname:Sigma)

Sigma(V–AHM)

WT1030M Group 1(Group name: Element1)

Element1(V–AHM)+FREQ+MATH+TIME

Group 2(Group name: Element2)

Element2(V–AHM)

Group 3(Group name: Element3)

Element3(V–AHM)

Group 4(Groupname:Sigma)

Sigma(V–AHM)

Group5(Groupname:Sigma)

TORQ,RPM,SRPM,SLIP,MPOW,MEFF,TEFF

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WT1600Tags set to group ElementX are the same as those for Element1. Tags set to group SigmaXarethesameasthoseforSigmaA.

NoteSincethemaximumnumberofparametersthatcanbeacquiredviacommunicationsbytheWT1600is255,GateWTcannotacquireCfu,Chi,FfU,FfI,Z,Rs,Xs,Rp,orXp.

WT1600(1Element) Groupe 1(Groupe Name:Element1)

Element1(URMS,UMN,UDC,UAC,IRMS,IMN,IDC,IAC,P,S,Q,LAMBda,PHI,FU,FI,PC,UPPeak,UMPeak,IPPeak,IMPeak,TIME,WH,WHP,WHM,AH,AHP,AHM)

Groupe 2(SigmaA)

SigmaA(URMS,UMN,UDC,UAC,IRMS,IMN,IDC,IAC,P,S,Q,LAMBda,PHI,PC,WH,WHP,WHM,AH,AHP,AHM)

Groupe 3(Other)

Other(ETA,SETA,F1,F2,F3,F4,DURMS1,DUMN1,DUDC1,DUAC1,DURMS2,DUDC2,DUAC2,DUMN2,DURM3,DUMN3,DUDC3,DUAC3,DIRM,DIMN,DIDC,DIAC)

Groupe 4(Motor)

Motor(TORQue,SPEed,SYNC,SLIP,PM,MAETa,MBETa)

WT1600(2Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe3(SigmaA) SigmaA(URMS—AHM)Groupe4(SigmaB) SigmaB(URMS—AHM)Groupe5(Other) Other(ETA—DIAC)Groupe6(Motor) Motor(TORQue—MBETa)

WT1600(3Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe4(SigmaA) SigmaA(URMS—AHM)Groupe5(SigmaB) SigmaB(URMS—AHM)Groupe6(SigmaC) SigmaC(URMS—AHM)Groupe7(Other) Other(ETA—DIAC)Groupe8(Motor) Motor(TORQue—MBETa)

WT1600(4Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(SigmaA) SigmaA(URMS—AHM)Groupe6(SigmaB) SigmaB(URMS—AHM)Groupe7(SigmaC) SigmaC(URMS—AHM)Groupe8(Other) Other(ETA—DIAC)Groupe 9 (Motor) Motor(TORQUA—MBETa)

WT1600(5Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(Element5) Element5(URMS—AHM)Groupe6(SigmaA) SigmaA(URMS—AHM)Groupe7(SigmaB) SigmaB(URMS—AHM)Groupe8(SigmaC) SigmaC(URMS—AHM)Groupe 9 (Other) Other(ETA—DIAC)Groupe 10 (Motor) Motor(TORQue—MBETa)

WT1600(6Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(Element5) Element5(URMS—AHM)Groupe6(Element6) Element6(URMS—AHM)Groupe7(SigmaA) SigmaA(URMS—AHM)Groupe8(SigmaB) SigmaB(URMS—AHM)Groupe9(SigmaC) SigmaC(URMS—AHM)Groupe 10 (Other) Other(ETA—DIAC)Groupe 11 (Motor) Motor(TORQue—MBETa)

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WT1800Tags set to group ElementX are the same as those for Element1. Tags set to group ElemHrmXarethesameasthoseforElemHrm1.TagssettogroupSigmaXarethesameasthoseforSigmaA.TagssettogroupDeltaXarethesameasthoseforDeltaA.

WT1800(1Element) Groupe 1(Groupe Name:Element1)

Element1(URMS,UMN,UDC,IRMS,IMN,IDC,P,S,Q,LAMBDA,PHI,FU,FI,TIME,WH,WHP,WHM,AH,AHP,AHM)

Groupe 2 (ElemHrm1) ElemHrm1(UK_1,UK_T,IK_1,IK_T,UTHD,ITHD)Groupe 3 (Other) Other(ETA1,ETA2,,ETA3,ETA4,F1,F2,F3,F4,F5,F6,F7,F8,

F9,F10,F11,F12,F13,F14,F15,F16,F17,F18,F19,F20)Groupe 4 (Motor) Motor(SPEED,TORQUE,SYNCSP,SLIP,PM)Groupe5(Aux) Aux(AUX1,AUX2)

WT1800(2Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (ElemHrm1) ElemHrm1(UK_1—ITHD)Groupe 4 (ElemHrm2) ElemHrm2(UK_1—ITHD)Groupe5(SigmaA) SigmaA(URMS,UMN,IRMS,IMN,P,S,LAMBDA,PHI,WH,

WHP,WHM,AH,AHP,AHM)Groupe6(Other) Other(ETA1—F20)Groupe7(DeltaA) DeltaA(DU1,DU2,DU3,DUS,DI,DP1,DP2,DP3,DPS)Groupe8(Motor) Motor(SPEED—PM)Groupe5(Aux) Aux(AUX1—AUX2)

WT1800(3Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (ElemHrm1) ElemHrm1(UK_1—ITHD)Groupe5(ElemHrm2) ElemHrm2(UK_1—ITHD)Groupe6(ElemHrm3) ElemHrm3(UK_1—ITHD)Groupe7(SigmaA) SigmaA(URMS—AHM)Groupe8(Other) Other(ETA1—F20)Groupe 9 (DeltaA) DeltaA(DU1—DPS)Groupe 10 (Motor) Motor(SPEED—PM)Groupe11(Aux) Aux(AUX1—AUX2)

WT1800(4Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(ElemHrm1) ElemHrm1(UK_1—ITHD)Groupe6(ElemHrm2) ElemHrm2(UK_1—ITHD)Groupe7(ElemHrm3) ElemHrm3(UK_1—ITHD)Groupe8(ElemHrm4) ElemHrm4(UK_1—ITHD)Groupe9(SigmaA) SigmaA(URMS—AHM)Groupe10(SigmaB) SigmaB(URMS—AHM)Groupe 11 (Other) Other(ETA1—F20)Groupe 12 (DeltaA) DeltaA(DU1—DPS)Groupe13(DeltaB) DeltaB(DU1—DPS)Groupe 14 (Motor) Motor(SPEED—PM)Groupe15(Aux) Aux(AUX1—AUX2)

(Cont.onnextpage.)

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WT1800(5Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(Element5) Element5(URMS—AHM)Groupe6(ElemHrm1) ElemHrm1(UK_1—ITHD)Groupe7(ElemHrm2) ElemHrm2(UK_1—ITHD)Groupe8(ElemHrm3) ElemHrm3(UK_1—ITHD)Groupe 9 (ElemHrm4) ElemHrm4(UK_1—ITHD)Groupe10(ElemHrm5) ElemHrm5(UK_1—ITHD)Groupe11(SigmaA) SigmaA(URMS—AHM)Groupe12(SigmaB) SigmaB(URMS—AHM)Groupe 13 (Other) Other(ETA1—F20)Groupe 14 (DeltaA) DeltaA(DU1—DPS)Groupe15(DeltaB) DeltaB(DU1—DPS)Groupe16(Motor) Motor(SPEED—PM)Groupe17(Aux) Aux(AUX1—AUX2)

WT1800(6Elements) Groupe 1 (Element1) Element1(URMS—AHM)Groupe 2 (Element2) Element2(URMS—AHM)Groupe 3 (Element3) Element3(URMS—AHM)Groupe 4 (Element4) Element4(URMS—AHM)Groupe5(Element5) Element5(URMS—AHM)Groupe6(Element6) Element6(URMS—AHM)Groupe7(ElemHrm1) ElemHrm1(UK_1—ITHD)Groupe8(ElemHrm2) ElemHrm2(UK_1—ITHD)Groupe 9 (ElemHrm3) ElemHrm3(UK_1—ITHD)Groupe 10 (ElemHrm4) ElemHrm4(UK_1—ITHD)Groupe11(ElemHrm5) ElemHrm5(UK_1—ITHD)Groupe12(ElemHrm6) ElemHrm6(UK_1—ITHD)Groupe13(SigmaA) SigmaA(URMS—AHM)Groupe14(SigmaB) SigmaB(URMS—AHM)Groupe15(SigmaC) SigmaC(URMS—AHM)Groupe16(Other) Other(ETA1—F20)Groupe17(DeltaA) DeltaA(DU1—DPS)Groupe18(DeltaB) DeltaB(DU1—DPS)Groupe 19 (DeltaC) DeltaC(DU1—DPS)Groupe 20 (Motor) Motor(SPEED—PM)Groupe21(Aux) Aux(AUX1—AUX2)

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WT500Tags set to group ElementX are the same as those for Element1.

Note• WiththeWT500,becausethemaximumnumberofparametersthatcanbeacquiredvia

communicationsis255,thefollowingcannotbeacquiredwiththeGateWT:2ndthrough50thordersofU/I/P/S/Q/LAMBda/PHI;1st,2nd,and4ththrough50thordersofPHIU/PHII;andUHDF,IHDF,andPHDF.

• (G5)canbeselectedoninstrumentswiththeharmonicoption,and(DT)canbeselectedoninstruments with the delta option. If an instrument without an option is selected, the group numbersshifttofillinthemissingoption.Forexample,groupsareassignedasfollowsfora1-elementmodelwith(G5)butwithout(DT).

Group 1: Element1Group 2: ElemHrm1Group3: SigmaGroup 4: OtherGroup5: Phase

WT500(1Element) Group 1(Group name:Element1)

Element1(URMS,UMN,UDC,URMN,UAC,IRMS,IMN,IDC,IRMN,IAC,P,S,Q,LAMBda,PHI,FU,FI,UPPeak,UMPeak,IPPeak,IMPeak,CFU,CFI,TIME,WH,WHP,WHM,AH,AHP,AHM,WS,WQ)

Group 2(ElemHrm1)(G5)

Element1(UK_0,UK_1,UK_T,IK_0,IK_1,IK_T,PK_0,PK_1,PK_T,SK_0,SK_1,SK_T,QK_0,QK_1,QK_T,LAMBD0,LAMBD1,LAMBDT,PHIK_1,PHIK_T,PHIUk3,PHIIk3,UTHD,ITHD,PTHD)

Group 3(Sigma)

SigmaA(URMS,UMN,UDC,URMN,UAC,IRMS,IMN,IDC,IRMN,IAC,P,S,Q,LAMBda,PHI,WH,WHP,WHM,AH,AHP,AHM,WS,WQ)

Group 4(Other)

Other(ETA1,ETA2,F1,F2,F3,F4,F5,F6,F7,F8)

Group5(Delta)(DT)

Delta(DELTA1, DELTA2, DELTA3, DELTA4)

Group6(Phase)(G5)

Phase(P_U1U2,P_U1U3,P_U1I1,P_U1I2,P_U1I3)

WT500(2Elements) Group 1 (Element1) Element1(URMS—WQ)Group 2 (Element2) Element2(URMS—WQ)Group 3 (ElemHrm1)(G5)

Element1(UK_0—PTHD)

Group 4 (ElemHrm2)(G5)

Element2(UK_0—PTHD)

Group5(Sigma) Sigma(URMS—WQ)Group6(Other) Other(ETA—F8)Group7(Delta)(DT)

Delta(DELTA1—DELTA4)

Group8(Phase)(G5)

Phase(P_U1U2—P_U1I3)

WT500(3Elements) Group 1 (Element1) Element1(URMS—WQ)Group 2 (Element2) Element2(URMS—WQ)Group 3 (Element3) Element3(URMS—WQ)Group 4 (ElemHrm1)(G5)

Element1(UK_0—PTHD)

Group5(ElemHrm2)(G5)

Element2(UK_0—PTHD)

Group6(ElemHrm3)(G5)

Element3(UK_0—PTHD)

Group7(Sigma) Sigma(URMS—WQ)Group8(Other) Other(ETA—F8)Group 9 (Delta)(DT)

Delta (DELTA1—DELTA4)

Group10(Phase)(G5)

Phase(P_U1U2—P_U1I3)

3.2 Detailed Description of Functions

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3-22 IM WX1-03E

A list of function names used in this manual and function names used on the WT1600 (Numerical display header name)

Function names used in this manual

: Function names used on the WT1600 (Numerical display header name)

Function names used in this manual

: Function names used on the WT1600 (Numerical display header name)

URMS : Urms PC : PcUMN : Umean TIME : I-TimeUDC : Udc WH : WpUAC : Uac WHP : Wp+IRMS : Irms WHM : Wp-

IMN : Imean AH : qIDC : Idc AHP : q+IAC : Iac AHM : q-P : P ETA : ηS : S SETA : 1/ηQ : Q F1 : F1

LAMBda : λ F2 : F2PHI : φ F3 : F3FU : FreqU(fU) F4 : F4FI : FreqI(fI) DURMS : ∆Urms

UPPeak : U+peak(U+pk) DUMN : ∆UmeanUMPeak : U-peak(U-pk) DUDC : ∆UdcIPPeak : I+peak (I+pk) DUAC : ∆UacIMPeak : I-peak (I-pk) DIRMS : ∆Irms

CFU : CfU DIMN : ∆ImeanCFI : CfI DIDC : ∆IdcFFU : FfU DIAC : ∆IacFFI : FfI SPEed : SpeedZ : Z TORQue : Torque

RS : Rs SYNC : SyncSpdXS : Xs SLIP : SlipRP : Rp PM : PmXP : Xp MAETa : ηmA

3.2 Detailed Description of Functions

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escription of Functions

A list of function names used in this manual and function names used on the WT1800 (Numerical display header name)

Function names used in this manual

: Function names used on the WT1800 (Numerical display header name)

Function names used in this manual

: Function names used on the WT1800 (Numerical display header name)

URMS : Urms F4 : F4UMN : Umn F5 : F5UDC : Udc F6 : F6IRMS : Irms F7 : F7

IMN : Imn F8 : F8IDC : Idc F9 : F9P : P F10 : F10S : S F11 : F11Q : Q F12 : F12

LAMBDA : λ F13 : F13PHI : φ F14 : F14FU : fU(FreqU) F15 : F15FI : fI(FreqI) F16 : F16

TIME : Time F17 : F17WH : WP F18 : F18

WHP : Wp+ F19 : F19WHM : Wp- F20 : F20

AH : q DU1 : ∆U1AHP : q+ DU2 : ∆U2AHM : q- DU3 : ∆U3UK_1 : U(1) DUS : ∆UΣUK_T : U(Total) DI : ∆IIK_1 : I(1) DP1 : ∆P1IK_T : I(Total) DP2 : ∆P2

UTHD : Uthd DP3 : ∆P3ITHD : Ithd DPS : ∆PΣETA1 : η1 TORQUE : TorqueETA2 : η2 SPEED : SpeedETA3 : η3 SYNCSP : SyncspETA4 : η4 SLIP : Slip

F1 : F1 PM : PmF2 : F2 AUX1 : Aux1F3 : F3 AUX2 : Aux2

3.2 Detailed Description of Functions

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3-24 IM WX1-03E

A list of function names used in this manual and function names used on the WT500 (Numerical display header name)

Function names used in this manual

: Function names used on the WT500 (Numerical display header name)

Function names used in this manual

: Function names used on the WT500 (Numerical display header name)

URMS : Urms ETA1 : η1UMN : Umn ETA2 : η2UDC : Udc F1 : F1

URMN : Urmn F2 : F2UAC : Uac F3 : F3IRMS : Irms F4 : F4

IMN : Imn F5 : F5IDC : Idc F6 : F6

IRMN : Irmn F7 : F7IAC : Iac F8 : F8P : P DELTA1 : ∆F1S : S DELTA2 : ∆F2Q : Q DELTA3 : ∆F3

LAMBda : λ DELTA4 : ∆F4PHI : φ P_U1U2 : φUi-UjFU : FreqU(fU) P_U1U3 : φUi-UkFI : FreqI(fI) P_U1I1 : φUi-Ii

UPPeak : U+peak(U+pk) P_U1I2 : φUi-IjUMPeak : U-peak(U-pk) P_U1I3 : φUi-IkIPPeak : I+peak(I+pk)IMPeak : I-peak(I-pk)

CFU : CfUCFI : CfI

TIME : TimeWH : WP

WHP : WP+WHM : WP–

AH : q AHP : q+ AHM : q–WS : WSWQ : WQ

UK_0 : U(k)k=0UK_1 : U(k)k=1UK_T : U(k)k=TotalIK_0 : I(k)k=0IK_1 : I(k)k=1IK_T : I(k)k=TotalPK_0 : P(k)k=0PK_1 : P(k)k=1PK_T : P(k)k=TotalSK_0 : S(k)k=0SK_1 : S(k)k=1SK_T : S(k)k=TotalQK_0 : Q(k)k=0QK_1 : Q(k)k=1QK_T : Q(k)k=Total

LAMBD0 : λ(k)k=0LAMBD1 : λ(k)k=1LAMBDT : λ(k)k=TotalPHIK_1 : φ(k)k=1PHIK_T : φ(k)k=TotalPHIUk3 : φU(k)k=3PHIIk3 : φI(k)k=3UTHD : UthdITHD : IthdPTHD : Pthd

3.2 Detailed Description of Functions

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escription of Functions

Channel Names, Tag IDs, and Tag NamesGateWT’sdefaultchannelnamesandtagIDsarethesame:EI:V,EI:A,…etc.The tag names are the names of the output items on the connected WT: TAG01, TAG02,…etc.Thesecanbechanged.

NoteWhen connecting DAQLOGGER to GateWT, channel names and tag IDs are ignored. You can download tag names using tag setting software.

Channel ColorsThedefaultchannelcolorsonGateWTarethefollowing16colors. Red,Green,Blue,Magenta,Orange,Cyan,Brown,LightGray,Purple,Pink,Yellow,

White,CaditBlue,LightPink,LightGreen,SalmonThese can be changed.

3.2 Detailed Description of Functions

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3-26 IM WX1-03E

GateWT is started and the data of a possible data collection from WT1600GateWT doesn’t correspond to “Harmonic component mode.” Therefore, the data collection of the parameter in the harmonic component mode is not made.

Element

1

Element

2

Element

3

Element

4

Element

5

Element

6ΣA ΣB ΣC motor

VoltageRMS URMS URMS URMS URMS URMS URMS URMS URMS URMS TORQueVoltageMEAN UMN UMN UMN UMN UMN UMN UMN UMN UMN SPEed

Revolution sped

VoltageDC UDC UDC UDC UDC UDC UDC UDC UDC UDC SYNCSynchronizationspeed

VoltageAC UAC UAC UAC UAC UAC UAC UAC UAC UAC SLIPCurrentRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS PM

Motor outputCurrent MEAN IMN IMN IMN IMN IMN IMN IMN IMN IMN MAETa

Motor efficiencyCurrent DC IDC IDC IDC IDC IDC IDC IDC IDC IDC MBETa

total efficiencyCurrent AC IAC IAC IAC IAC IAC IAC IAC IAC IACActive power P P P P P P P P PApparent power S S S S S S S S SReactive power Q Q Q Q Q Q Q Q QPowerfactor LAMBda LAMBda LAMBda LAMBda LAMBda LAMBda LAMBda LAMBda LAMBda

Phasedifference PHI PHI PHI PHI PHI PHI PHI PHI PHIVoltagefrequency FU FU FU FU FU FUCurrent frequency FI FI FI FI FI FICorrectedPowerPc PC PC PC PC PC PC PC PC PCVoltage+peak UPPeak UPPeak UPPeak UPPeak UPPeak UPPeak

Voltage–peak UMPeak UMPeak UMPeak UMPeak UMPeak UMPeak

Current + peak IPPeak IPPeak IPPeak IPPeak IPPeak IPPeak

Current–peak IMPeak IMPeak IMPeak IMPeak IMPeak IMPeak

Integration time TI TI TI TI TI TIWatt hour (positive and negative)

WH WH WH WH WH WH WH WH WH

Watt hour (positive) WHP WHP WHP WHP WHP WHP WHP WHP WHPWatt hour (negative) WHM WHM WHM WHM WHM WHM WHM WHM WHMCurrent hour (positive and negative)

AH AH AH AH AH AH AH AH AH

Current hour (positive) AHP AHP AHP AHP AHP AHP AHP AHP AHPCurrent hour (negative) AHM AHM AHM AHM AHM AHM AHM AHM AHM

DURM DURM DURMDelta computation voltage MEAN

DUMN DUMN DUMN

Delta computation voltage DC

DUDC DUDC DUDC

Delta computation current AC

DUAC DUAC DUAC

Delta computation currentACIRMS

DIRMS

Delta computation current AC IMN

DIMN

Delta computation current AC IDC

DIDC

Delta computation current AC IAC

DIAC

Efficiency 1 ETAEfficiency 2 SETAUser-definedfunction1 F1User-definedfunction2 F2User-definedfunction3 F3User-definedfunction4 F4

3.2 Detailed Description of Functions

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Detailed D

escription of Functions

GateWT is started and the data of a possible data collection from WT1800Element

1

Element

2

Element

3

Element

4

Element

5

Element

6ΣA ΣB ΣC motor

VoltageRMS URMS URMS URMS URMS URMS URMS URMS URMS URMS SPEEDRevolution speed

VoltageMEAN UMN UMN UMN UMN UMN UMN UMN UMN UMN TORQUE

VoltageDC UDC UDC UDC UDC UDC UDC SYNCSPSynchronizationspeed

CurrentRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS IRMS SLIPCurrent MEAN IMN IMN IMN IMN IMN IMN IMN IMN IMN PM

Motor outputCurrent DC IDC IDC IDC IDC IDC IDCActive power P P P P P P P P PApparent power S S S S S S S S SReactive power Q Q Q Q Q QPowerfactor LAMBDA LAMBDA LAMBDA LAMBDA LAMBDA LAMBDA LAMBDA LAMBDA LAMBDA

Phasedifference PHI PHI PHI PHI PHI PHI PHI PHI PHIVoltagefrequency FU FU FU FU FU FUCurrent frequency FI FI FI FI FI FIIntegration time TIME TIME TIME TIME TIME TIMEWatt hour (positive and negative)

WH WH WH WH WH WH WH WH WH

Watt hour (positive) WHP WHP WHP WHP WHP WHP WHP WHP WHPWatt hour (negative) WHM WHM WHM WHM WHM WHM WHM WHM WHMCurrent hour (positive and negative)

AH AH AH AH AH AH AH AH AH

Current hour (positive) AHP AHP AHP AHP AHP AHP AHP AHP AHPCurrent hour (negative) AHM AHM AHM AHM AHM AHM AHM AHM AHMRms voltage value of harmonic order 1

UK_1 UK_1 UK_1 UK_1 UK_1 UK_1

Total harmonic voltage UK_T UK_T UK_T UK_T UK_T UK_TRms current value of harmonic order 1

IK_1 IK_1 IK_1 IK_1 IK_1 IK_1

Total harmonic current IK_T IK_T IK_T IK_T IK_T IK_TTotal harmonic voltage distortion

UTHD UTHD UTHD UTHD UTHD UTHD

Total harmonic current distortion

ITHD ITHD ITHD ITHD ITHD ITHD

Equation for efficiency 1 ETA1Equation for efficiency 2 ETA2Equation for efficiency 3 ETA3Equation for efficiency 4 ETA4User-definedfunction1 F1User-definedfunction2 F2User-definedfunction3 F3User-definedfunction4 F4User-definedfunction5 F5User-definedfunction6 F6User-definedfunction7 F7User-definedfunction8 F8User-definedfunction9 F9User-definedfunction10 F10User-definedfunction11 F11User-definedfunction12 F12User-definedfunction13 F13User-definedfunction14 F14

(Cont.onnextpage.)

3.2 Detailed Description of Functions

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3-28 IM WX1-03E

User-definedfunction15 F15User-definedfunction16 F16User-definedfunction17 F17User-definedfunction18 F18User-definedfunction19 F19User-definedfunction20 F20Delta computation voltage 1

DU1

Delta computation voltage 2

DU2

Delta computation voltage 3

DU3

Delta computation voltage sigma

DUS

Delta computation current

DI

Delta computation power 1

DP1

Delta computation power 2

DP2

Delta computation power 3

DP3

Delta computation power sigma

DPS

Aux1 AUX1Aux2 AUX2

3.2 Detailed Description of Functions

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GateWT is started and the data of a possible data collection from WT500

Element1 Element2 Element3 ΣVoltageRMS URMS URMS URMS URMSVoltageMEAN UMN UMN UMN UMNVoltageDC UDC UDC UDC UDCVoltageRMEAN URMN URMN URMN URMNVoltageAC UAC UAC UAC UACCurrentRMS IRMS IRMS IRMS IRMSCurrent MEAN IMN IMN IMN IMNCurrent DC IDC IDC IDC IDCCurrent RMEAN IRMN IRMN IRMN IRMNCurrent AC IAC IAC IAC IACActive power P P P PApparent power S S S SReactive power Q Q Q QPowerfactor LAMBda LAMBda LAMBda LAMBdaPhasedifference PHI PHI PHI PHIVoltagefrequency FU FU FUCurrent frequency FI FI FIVoltage+peak UPPeak UPPeak UPPeakVoltage–peak UMPeak UMPeak UMPeakCurrent + peak IPPeak IPPeak IPPeakCurrent–peak IMPeak IMPeak IMPeakVoltagecrestfactor CFU CFU CFUCurrent crest factor CFI CFI CFIIntegration time TIME TIME TIMEWatt hour (positive and negative) WH WH WH WHWatt hour (positive) WHP WHP WHP WHPWatt hour (negative) WHM WHM WHM WHMCurrent hour (positive and negative) AH AH AH AHCurrent hour (positive) AHP AHP AHP AHPCurrent hour (negative) AHM AHM AHM AHMVolt-amparehours WS WS WS WSVarhours WQ WQ WQ WQRms voltage value of harmonic order 0 UK_0 UK_0 UK_0Rms voltage value of harmonic order 1 UK_1 UK_1 UK_1Total harmonic voltage UK_T UK_T UK_TRms current value of harmonic order 0 IK_0 IK_0 IK_0Rms current value of harmonic order 1 IK_1 IK_1 IK_1Total harmonic current IK_T IK_T IK_TActive power of harmonic order 0 PK_0 PK_0 PK_0Active power of harmonic order 1 PK_1 PK_1 PK_1Total harmonic active power PK_T PK_T PK_TApparent power of harmonic order 0 SK_0 SK_0 SK_0Apparent power of harmonic order 1 SK_1 SK_1 SK_1Total harmonic apparent power SK_T SK_T SK_TReactive power of harmonic order 0 QK_0 QK_0 QK_0Reactive power of harmonic order 1 QK_1 QK_1 QK_1Total harmonic reactive power QK_T QK_T QK_TPowerfactorofharmonicorder0 LAMBD0 LAMBD0 LAMBD0Powerfactorofharmonicorder1 LAMBD1 LAMBD1 LAMBD1Total harmonic power factor LAMBDT LAMBDT LAMBDTPhasedifferenceofharmonicorder1 PHIK_1 PHIK_1 PHIK_1Total harmonic phase difference PHIK_T PHIK_T PHIK_TPhasedifferencebetweenfundamentalsignal voltage and harmonic order 3

PHIUk3 PHIUk3 PHIUk3

Phasedifferencebetweenfundamentalsignal current and harmonic order 3

PHIIk3 PHIIk3 PHIIk3

Total harmonic voltage distortion UTHD UTHD UTHDTotal harmonic current distortion ITHD ITHD ITHDTotal harmonic active power distortion PTHD PTHD PTHD

(Cont.onnextpage.)

3.2 Detailed Description of Functions

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3-30 IM WX1-03E

Element1 Element2 Element3 ΣEquation for efficiency 1 ETA1Equation for efficiency 2 ETA2User-definedfunction1 F1User-definedfunction2 F2User-definedfunction3 F3User-definedfunction4 F4User-definedfunction5 F5User-definedfunction6 F6User-definedfunction7 F7User-definedfunction8 F8Delta computation 1 DELTA1Delta computation 2 DELTA2Delta computation 3 DELTA3Delta computation 4 DELTA4PhasedifferenceUIU2 P_U1U2PhasedifferenceUIU3 P_U1U3PhasedifferenceUII1 P_U1I1PhasedifferenceUII2 P_U1I2PhasedifferenceUII3 P_U1I3

3.2 Detailed Description of Functions

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3.3 Error Messages and Corrective Actions

ErrorNo. Message Corrective ActionsE211 Cannot write to file. Check if the disk capacity is sufficient or if the file systems is

normal.E212 Cannot read file. Checkifthefileexistsandissupportedbythesoftwareorifthe

file system is normal.E213 Cannot open file. Checkifthefileexistsandissupportedbythesoftwareorifthe

file system is normalE401 Communication error. Check if the recorder connected for communication is powered on

and if the cable is properly connected. Also check the following items according the the communication type.•ForEthernetCheckifaddresssettingsarecorrect;theTCP/IPprotocolisinstalledinWindows;theEthernetcardisproperlyinstalled.•ForRS-232andRS-422-ACheckifthebaudratesettingsmatch;theport(COM1toCOM9)settingsmatch,theaddresssettingsarecorrect(RS-422-A);theserialportofthePCisactiveandtheappropriatecableisbeingused.

E402 Communication timeout. -E403 Cannot open a communication port. SameasE401.E501 Invalid license number.

Pleasereinstallthesoftware.Install the software again.

E1010 Executionofaprocessfailed. Checkwhetheranexecutablefunctionexists,orwhetheritsfiles are damaged. If this error appears frequently, reinstall the software.

E1011 Execuitionofaservicefailed. Checkwhetheranexecutablefunctionexists,orwhetheritsfiles are damaged. If this error appears frequently, reinstall the software.

E1600 TheWT1000/WT2000doesnotsupport WithWT1000/WT2000seriesinstruments,modeldeterminationcan

MessageNo. MessageM1201 Model determination was successful.M1210 Settingchangessavedbeforeexecution.

Executable Function MessagesNo. Message Corrective ActionsW[631] Data Lack Reduce the number of acquired data points or connected

instruments, or lengthen the scan interval.E[673] Cannot open communication SameasE401.E[674] Communication error SameasE401.E[675] Communication time out SameasE401.E[850] Command Error An error was received from the WT. Check the status of the WT.E[851] Cannot setting WT Check whether the communication status and connected

instruments matches those specified in the software. If they do not, perform model determination again.

E[852] Recive Continued Check the communication status.E[853] Recieve data error Check the communication status.I[606] Recovery Communication Connection recovered.

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1

2

3

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Index

Index

Aautomatic model determination ..................................... 2-4, 3-3

Cchannel colors .................................................................... 3-25channel names, tag IDs, and tag names ............................ 3-25connecting from DAQLOGGER ............................................ 2-7connecting from Remote Monitor ......................................... 2-7

DDetailedDescriptionofFunctions ......................................... 3-2displaying the connection status........................................... 2-9

EEnteringEnvironmentSettings ............................................. 2-2environment setting functions ........................................ 1-4, 3-1executablefunction........................................................ 1-4, 3-1exitingthesoftware............................................................... 2-1

GGPIBcommunication ............................................................ 3-2

Hhardware requirements......................................................... 1-2

Mmessage ............................................................................. 3-31monitor server function ......................................................... 3-4

OOverview............................................................................... 3-1

PPortSettings ......................................................................... 2-5port settings .......................................................................... 3-4Process................................................................................. 2-8

RRecorderSettings ................................................................. 2-3required operating systems .................................................. 1-2RetrySettings ....................................................................... 2-5running/stoppingtheexecutablefunction ............................. 3-4running the software ............................................................. 2-1

Ssaving environment settings ................................................. 2-6ScanInterval......................................................................... 2-5scan interval ......................................................................... 3-3serial port .............................................................................. 3-2SerialPortSettings ............................................................... 2-2Service.................................................................................. 2-8setting the number of retries ................................................. 3-3software configuration .......................................................... 1-4software license ........................................................................ iistatus display ........................................................................ 3-4stopping the process or service ............................................ 2-8system .................................................................................. 1-2

system configuration............................................................. 1-4system numbers ................................................................... 2-7

Ttag settings .................................................................. 2-4,3-17test acquisition ............................................................... 2-6,3-4

Vversion information ............................................................. 2-10viewing error detail ............................................................... 2-9

WWT settings ........................................................................... 3-2

Index