Digital temperature transmitter with HART protocol Model T32.1S, head … · Digital temperature...

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Electrical temperature measurement Digital temperature transmitter with HART ® protocol Model T32.1S, head mounting version Model T32.3S, rail mounting version Fig. left: Digital temperature transmitter model T32.1S Fig. right: Digital temperature transmitter model T32.3S Applications Process industry Machine building and plant construction Special features TÜV certified SIL version for protective equipment developed per IEC 61508 (option) Configurable with almost all soft- and hardware tools Universal for the connection of 1 or 2 sensors - Resistance thermometer, resistance sensor - Thermocouple, mV sensor - Potentiometer Signalling in accordance with NAMUR NE43, sensor- break detection in accordance with NE89, EMC in accordance with NE21 Isolation voltage AC 1200 V between sensor/current loop Description These temperature transmitters are designed for universal use in the process industry.They offer high accuracy, galvanic isolation and excellent protection against electromagnetic influences (EMI). Via HART ® protocol, the T32 temperature transmitters are configurable (interoperable) with a variety of open configuration tools. In addition to the different sensor types, e.g. sensors in accordance with DIN EN 60751, JIS C1606, DIN 43760, IEC 60584 or DIN 43710, customer-specific sensor characteristics can also be defined, through the input of value pairs (user-defined linearisation). Through the configuration of a sensor with redundancy (dual sensor), on a sensor failure it will automatically change over to the working sensor. Furthermore there is the possibility to activate Sensor Drift Detection. With this, an error signal occurs when the magnitude of the temperature difference between sensor 1 and sensor 2 exceeds a user-selectable value. The T32 transmitter also has additional sophisticated supervisory functionality such as monitoring of the sensor wire resistance and sensor-break detection in accordance with NAMUR NE89 as well as monitoring of the measuring range. Moreover, this transmitter has comprehensive cyclic self-monitoring functionality. The dimensions of the head-mounted transmitter match the Form-B DIN connecting heads with extended mounting space, e.g. WIKA model BSS. The rail-mounted transmitters can be used for all standard rack systems in accordance with IEC 60715. The transmitters are delivered with a basic configuration or configured according to customer specifications. WIKA data sheet TE 32.04 Page 1 of 10 WIKA data sheet TE 32.04 ∙ 01/2012

Transcript of Digital temperature transmitter with HART protocol Model T32.1S, head … · Digital temperature...

Page 1: Digital temperature transmitter with HART protocol Model T32.1S, head … · Digital temperature transmitter with HART ... The dimensions of the head-mounted transmitter match the

Electrical temperature measurement

Digital temperature transmitter with HART® protocolModel T32.1S, head mounting versionModel T32.3S, rail mounting version

Fig. left: Digital temperature transmitter model T32.1SFig. right: Digital temperature transmitter model T32.3S

Applications

Processindustry Machinebuildingandplantconstruction

Special features

TÜVcertifiedSILversionforprotectiveequipmentdevelopedperIEC61508(option) Configurablewithalmostallsoft-andhardwaretools Universalfortheconnectionof1or2sensors-Resistancethermometer,resistancesensor-Thermocouple,mVsensor-Potentiometer SignallinginaccordancewithNAMURNE43,sensor-breakdetectioninaccordancewithNE89,EMCinaccordancewithNE21 IsolationvoltageAC1200Vbetweensensor/currentloop

DescriptionThesetemperaturetransmittersaredesignedforuniversaluseintheprocessindustry.Theyofferhighaccuracy,galvanicisolationandexcellentprotectionagainstelectromagneticinfluences(EMI).ViaHART®protocol,theT32temperaturetransmittersareconfigurable(interoperable)withavarietyofopenconfigurationtools.Inadditiontothedifferentsensortypes,e.g.sensorsinaccordancewithDINEN60751,JISC1606,DIN43760,IEC60584orDIN43710,customer-specificsensorcharacteristicscanalsobedefined,throughtheinputofvaluepairs(user-definedlinearisation).

Throughtheconfigurationofasensorwithredundancy(dualsensor),onasensorfailureitwillautomaticallychangeovertotheworkingsensor.

FurthermorethereisthepossibilitytoactivateSensorDriftDetection.Withthis,anerrorsignaloccurswhenthemagnitudeofthetemperaturedifferencebetweensensor1andsensor2exceedsauser-selectablevalue.

TheT32transmitteralsohasadditionalsophisticatedsupervisoryfunctionalitysuchasmonitoringofthesensorwireresistanceandsensor-breakdetectioninaccordancewithNAMURNE89aswellasmonitoringofthemeasuringrange.Moreover,thistransmitterhascomprehensivecyclicself-monitoringfunctionality.

Thedimensionsofthehead-mountedtransmittermatchtheForm-BDINconnectingheadswithextendedmountingspace,e.g.WIKAmodelBSS.

Therail-mountedtransmitterscanbeusedforallstandardracksystemsinaccordancewithIEC60715.

Thetransmittersaredeliveredwithabasicconfigurationorconfiguredaccordingtocustomerspecifications.

WIKAdatasheetTE32.04

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Temperature transmitter inputResistancesensor max.configurable

measuringrange1)Standard αvalues Minimummeasuring

span14)Typicalmeasuringdeviation2)

Temperaturecoefficientper°Ctypical3)

Pt100 -200...+850°C IEC 60751:2008 α = 0.0038510Kor3.8Ωwhicheverisgreater

≤±0.12 °C 5) ≤±0.0094 °C 6)7)

Pt(x)4)10...1000 -200...+850°C IEC60751:2008 α=0.00385 ≤±0.12°C5) ≤±0.0094°C6)7)

JPt100 -200...+500°C JISC1606:1989 α=0.003916 ≤±0.12°C5) ≤±0.0094°C6)7)

Ni100 -60...+250°C DIN43760:1987 α=0.00618 ≤±0.12°C5) ≤±0.0094°C6)7)

Resistance sensor 0 ... 8,370 Ω 4 Ω ≤ ±1.68 Ω 8) ≤ ±0.1584 Ω 8)

Potentiometer 9) 0 ... 100 % 10 % ≤ 0.50 % 10) ≤ ±0.0100 % 10)

Sensorcurrentatthemeasurement max.0.3mA(Pt100)Connectiontype 1 sensor 2-/4-/3-wireor2sensors2-wire

(forfurtherinformation,pleaserefertodesignationofterminalconnections)Max.wireresistance 50Ωeachwire,3-/4-wire

Thermocouple max.configurablemeasuringrange1)

Standard Minimummeasuringspan14)

Typicalmeasuringdeviation2)

Temperaturecoefficientper°Ctypical3)

TypeJ(Fe-CuNi) -210...+1,200°C IEC60584-1:1995

50Kor2mVwhicheverisgreater

≤±0.91°C11) ≤±0.0217°C7)11)

TypeK(NiCr-Ni) -270...+1,372°C IEC60584-1:1995 ≤±0.98°C11) ≤±0.0238°C7)11)

TypeL(Fe-CuNi) -200... +900°C DIN43760:1987 ≤±0.91°C11) ≤±0.0203°C7)11)

TypeE(NiCr-Cu) -270...+1,000°C IEC60584-1:1995 ≤±0.91°C11) ≤±0.0224°C7)11)

TypeN(NiCrSi-NiSi) -270...+1,300°C IEC60584-1:1995 ≤±1.02°C11) ≤±0.0238°C7)11)

TypeT(Cu-CuNi) -270... +400°C IEC60584-1:1995 ≤±0.92°C11) ≤±0.0191°C7)11)

TypeU(Cu-CuNi) -200... +600°C DIN43710:1985 ≤±0.92°C11) ≤±0.0191°C7)11)

TypeR(PtRh-Pt) -50...+1,768°C IEC60584-1:1995 150K ≤±1.66°C11) ≤±0.0338°C7)11)

TypeS(PtRh-Pt) -50...+1,768°C IEC60584-1:1995 150K ≤±1.66°C11) ≤±0.0338°C7)11)

TypeB(PtRh-Pt) 0... +1,820°C15) IEC60584-1:1995 200K ≤±1.73°C12) ≤±0.0500°C7)12)

mV sensor -500 ... +1,800 mV 4 mV ≤ ±0.33 mV 13) ≤ ±0.0311 mV 7) 13)

Connectiontype 1sensoror2sensors(forfurtherinformation,pleasereferto"designationofterminalconnections")

Max.wireresistance 5kΩeachwireColdjunctioncompensation,configurable internalcompensationorexternalwithPt100,withthermostatoroff

1) Otherunitse.g.°FandKpossible2) Measuringdeviation(input+output)atambienttemperature23°C±3K,without

influenceofleadresistance;examplecalculationseepage43) Temperaturecoefficient(input+output)per°C4) xconfigurablebetween10…1,0005) Basedon3-wirePt100,Ni100,150°CMV6) Basedon150°CMV7) Inambienttemperaturerange-40…+85°C8) Basedonasensorwithmax.5kΩ9) Rtotal:10...100kΩ10) Basedonapotentiometervalueof50%

11) Basedon400°CMVwithcoldjunctioncompensationerror12) Basedon1000°CMVwithcoldjunctioncompensationerror13) Basedonmeasuringrange0...1V,400mVMV14) Thetransmittercanbeconfiguredbelowtheselimitsbutnotrecommendedduetoloss

ofaccuracy.15) Specificationvalidonlyformeasuringrangebetween450...1,820°C

bold: basic configurationitalic: This sensors are not allowed at option SIL (T32.xS.xxx-S)

MV=Measuringvalue(temperaturemeasuringvaluesin°C)

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Specifications

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User linerisationViasoftware,customer-specificsensorcharacteristicscanbestoredinthetransmitter,sothatfurthersensortypescanbeused.Numberofdatapoints:minimum2;maximum30

Monitoring functionality with 2 sensors connected (dual sensors)

RedundancyInthecaseofasensorerror(sensor-break,wireresistancetoohighoroutsidethemeasuringrangeofthesensor)ofoneofthetwosensors,theprocessvaluewillbethevaluefromtheerror-freesensor.Oncetheerrorisrectified,theprocessvaluewillagainbebasedonthetwosensors,oronsensor1.

Ageing-control (sensor-drift-monitoring)Anerrorsignalontheoutputisactivatedifthevalueofthetemperaturedifferencebetweensensor1andsensor2ishigherthanasetvalue,whichcanbeselectedbytheuser.Thismonitoringonlygeneratesasignaliftwovalidsensorvaluescanbedeterminedandthetemperaturedifferenceishigherthantheselectedlimitvalue.(Cannotbeselectedforthe'Difference'sensorfunction,sincetheoutputsignalalreadyindicatesthedifferencevalue).

Sensor functionality when 2 sensors have been connected (dual sensor)

Sensor 1, sensor 2 redundant:The4…20mAoutputsignaldeliverstheprocessvalueofsensor1.Ifsensor1fails,theprocessvalueofsensor2isoutput(sensor2isredundant).

AverageThe4...20mAoutputsignaldeliverstheaverageofthetwovaluesfromsensor1andsensor2.Ifonesensorfails,theprocessvalueoftheworkingsensorisoutput.

Minimum valueThe4...20mAoutputsignaldeliversthelowerofthetwovaluesfromsensor1andsensor2.Ifonesensorfails,theprocessvalueoftheworkingsensorisoutput.

Maximum valueThe4...20mAoutputsignaldeliversthehigherofthetwovaluesfromsensor1andsensor2.Ifonesensorfails,theprocessvalueoftheworkingsensorisoutput.

Difference *)The4...20mAoutputsignaldeliversthedifferenceofthetwovalesfromsensor1andsensor2.Ifonesensorfails,anerrorsignalwillbeactivated.*)ThisoperatingmodeisnotallowedatoptionSIL(T32.xS.xxx-S).

Note:Thetransmittercanbeconfiguredbelowtheselimitsbutnotrecommendedduetolossofaccuracy.

Analogue output, output limits, signalling, isolation resistance Analogue output,configurable linear to temperature per IEC 60751,JISC1606,DIN43760

(forresistancesensors)orlineartotemperatureperIEC584/DIN43710(forthermocouples)4 ... 20 mAor20...4mA,2-wiredesign

Output limits,configurable per NAMUR NE43customerspecific,adjustableoptionSIL(T32.xS.xxx-S)

lowerlimit upperlimit3.8 mA 20.5 mA3.6...4.0mA 20.0...21.5mA3.8...4.0mA 20.0...20.5mA

Current value for signalling,configurable per NAMUR NE43defaultvalueoptionSIL(T32.xS.xxx-S)

down scale upscale< 3.6 mA (3.5 mA) >21.0mA(21.5mA)3.5...12.0mA 12.0...23.0mA3.5...3.6mA 21.0...23.0mA

Insimulationmode,independentfrominputsignal,simulationvalueconfigurablefrom3.5...23.0mALoadRA(withoutHART®) RA≤(UB-10.5V)/0.023AwithRAinΩandUBinVLoadRA(withHART®) RA≤(UB-11.5V)/0.023AwithRAinΩandUBinVInsulationvoltage(inputtoanalogueoutput) AC1200V,(50Hz/60Hz);1sInsulationspecificationtoDINEN60664-1:2003 OvervoltagecategoryIII

Rise time, damping, measuring rateRisetimet90 approx.0.8sDamping,configurable off; configurablebetween1sand60sTurnontime(timetogetthefirstmeasuredvalue) max.15sMeasuringrate1) measuredvalueupdateapprox.3/s1)ValidonlyforsingleRTD/Thermocouplesensor

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Measuring deviation, temperature coefficient, long-term stabilityEffectofload notmeasurablePowersupplyeffect notmeasurableWarm-uptime afterapprox.5minutestheinstrumentwillfunctiontothespecifiedtechnicaldata(accuracy)

Input Measuring deviation per DIN EN 60770, 23 °C ± 3 K

Average temperature coefficient (TC) for each 10 K ambient temperature change in the range -40 ... +85 °C 1)

Connection lead effects

Long-term stability 1 year

ResistancethermometerPt100/JPt100/Ni1002)

-200°C≤MW≤200°C:±0.10KMW>200°C:±(0.1K+0.01%|MW-200K|)3)

±(0.06K+0.015%MW) 4-wire:noeffect(0to50Ωeachwire)3-wire:±0.02Ω/10Ω(0to50Ωeachwire)2-wire:resistorofthe

connectionleads4)

±60mΩor0.05%ofMV,whicheverisgreater

Resistancesensor5)

≤890Ω: 0.053Ω6)or0.015%MV7)≤2140Ω: 0.128Ω6)or0.015%MV7)≤4390Ω: 0.263Ω6)or0.015%MV7)≤8380Ω: 0.503Ω6)or0.015%MV7)

±(0.01Ω+0.01%MV)

Potentiometer5) Rpart/Rtotalismax.±0.5% ±(0.1%MV) ±20µVor0.05%ofMV,whicheverisgreater

Thermocouples TypeE,J

-150°C<MV<0°C:±(0.3K+0.2%|MV|)MV>0°C:±(0.3K+0.03%MV)

TypeE:MV>-150°C:±(0.1K+0.015%|MV|)TypeJ:MV>-150°C:±(0.07K+0.02%|MV|)

6µV/1,000Ω8)

TypeT,U -150°C<MV<0°C:±(0.4K+0.2%|MV|)MV>0°C:±(0.4K+0.01%MV)

-150°C<MV<0°C:±(0.07K+0.04%MV)MV>0°C:±(0.07K+0.01%MV)

TypeR,S 50°C<MV<400°C:±(1.45K+0.12%|MV-400K|)400°C<MV<1600°C:±(1.45K+0.01%|MV-400K|)

TypeR:50°C<MV<1,600°C:±(0.3K+0.01%|MV-400K|)TypeS:50°C<MV<1,600°C:±(0.3K+0.015%|MV-400K|)

TypeB 450°C<MV<1000°C:±(1.7K+0.2%|MV-1,000K|)MV>1,000°C:±1.7K

450°C<MV<1,000°C:±(0.4K+0.02%|MV-1,000K|)MV>1,000°C:±(0.4K+0.005%(MV-1,000K))

TypeK -150°C<MV<0°C:±(0.4K+0.2%|MV|)0°C<MV<1,300°C:±(0.4K+0.04%MV)

-150°C<MV<1,300°C:±(0.1K+0.02%|MV|)

TypeL -150°C<MV<0°C:±(0.3K+0.1%|MV|)MV>0°C:±(0.3K+0.03%MV)

-150°C<MV<0°C:±(0.07K+0.02%|MV|)MV>0°C:±(0.07K+0.015%MV)

TypeN -150°C<MV<0°C:±(0.5K+0.2%|MV|)MV>0°C:±(0.5K+0.03%MV)

-150°C<MV<0°C:±(0.1K+0.05%|MV|)MV>0°C:±(0.1K+0.02%MV)

mVsensor5) ≤1,160mV:10μV+0.03%|MV|>1,160mV:15μV+0.07%|MV|

2μV+0.02%|MV|100μV+0.08%|MV|

Coldjunctioncompensation(CJC)9)

±0.8K ±0.1K ±0.2K

Output ±0.03%ofmeasuringspan ±0.03%ofmeasuringspan ±0.05%ofspan

Example calculation

Pt100 / 4-wire / measuring range 0 ... 150 °C / ambient temperature 33 °CInputPt100,MV<200°C ±0.100KInput±(0.03%of150K) ±0.045KTC10K-input±(0.06K+0.015%of150K) ±0.083KTC10K-output±(0.03%of150K) ±0.045KMeasuring deviation (typical)(√input²+output²+TCinput²+TCoutput²)

±0.145 K

Measuring deviation (maximum)(input+output+TCinput+TCoutput)

±0.273 K

Thermocouple type K / measuring range 0 ... 400 °C / internal compensation (cold junction) / ambient temperature 23 °CInputtypeK,0°C<MV<1,300°C±(0.4K+0.04%of400K)

±0.56K

Coldjunction±0.8K ±0.80KOutput±(0.03%of400K) ±0.12KMeasuring deviation (typical)(√input²+coldjunction²+output²)

±0.98 K

Measuring deviation (maximum)(input+coldjunction+output)

±1.48 K

Total measuring deviationAddition:input+outputperDINEN60770,23°C±3K

MV=Measuringvalue(temperaturemeasuringvaluesin°C)Measuringspan=configurableupperlimitofmeasuringrange-configurablelowerlimitofmeasuringrange1) T32.1S:withtheextendedambienttemperature(-50…-40°C)thevalueisdoubled2) ForsensorPtx(x=10...1,000)applies:forx≥100:permissibleerror,asforPt100forx<100:permissibleerror,asforPt100withafactor(100/x)

3) Additionalerrorforresistancethermometersina3-wireconfigurationwithzero-balancedcable:0.05K

4) Thespecifiedresistancevalueofthesensorwirecanbesubtractedfromthecalculatedmeasuredsensorresistance.Dualsensor:configurableforeachsensorseparately

5) ThisoperatingmodeisnotallowedatoptionSIL(T32.xS.xxx-S).6) Doublevalueat3-wire7) Greatervalueapplies8)Withinarangeof0...10kΩwireresistance9) Onlyforthermocouple

Basic configuration:Input signal: Pt100 in 3-wire connection, measuring range: 0 ... 150 °C

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Explosion protection, power supplyModel Approvals Permissibleambient,storage

temperature(pertemperaturecodesandclasses)

Safety-relatedmaximumvalesforSensor Currentloop(connections1upto4) (connections±)

PowersupplyUB(DC)2)

T32.xS.000 without -50-40...+85°C - - 10.5...42VT32.1S.0IS,T32.3S.0IS

EC-typeexaminationcertificate:BVS08ATEXE019X

Zones0,1:II1GExiaIICT4/T5/T6Zones20,21:II1DExiaDT120°Cintrinsicallysafeperdirective94/9/EG(ATEX)

Zones0,1:II(1G)2GExiaIICT4/T5/T6Zones20,21:II(1D)2DExiaDT120°Cintrinsicallysafeperdirective94/9/EG(ATEX)

Gas,category1and2-50-40...+85°C(T4)-50-40...+75°C(T5)-50-40...+60°C(T6)

Dust,category2-50-40...+40°C(Pi<750mW)-50-40...+75°C(Pi<650mW)-50-40...+100°C(Pi<550mW)

Uo=DC6.5VIo=9.3mAPo=15.2mWCi=208nFLi=negligible

Gas,category1and2IIC:Co=24µF3)Lo=365mHLo/Ro=1.44mH/ΩIIA:Co=1,000µF3)Lo=3,288mHLo/Ro=11.5µH/Ω

Dust,category2IIBiaD:Co=570µF3)Lo=1644mHLo/Ro=5.75µH/Ω

Gas,category1and2Ui=DC30VIi=130mAPi=800mWCi=7.8nFLi=100µH

Dust,category2Ui=DC30VIi=130mAPi=750/650/550mWCi=7.8nFLi=100µH

10.5...30V

T32.1S.0IS,T32.3S.0IS

CSAapproval09.2095056

Intrinsicallysafeinstallationperdrawing11396220ClassI,Zone0,ExiaIICClassI,Zone0,AExiaIIC

-50-40...+80°C(T4)-50-40...+75°C(T5)-50-40...+60°C(T6)

Vmax=DC30VImax=130mAPi=800mWCi=7.8nFLi=100µH

10.5...30V

Non-incendivefieldwiringperdrawing11396220ClassI,division2,groupsA,B,C,D

DC30V

T32.1S.0IS,T32.3S.0IS

FMapproval3034620

Intrinsicallysafeinstallationperdrawing11396220ClassI,Zone0,AExiaIICClassI,division1,groupsA,B,C,D

FMapprovalAExiaonly

-50-40...+85°C(T4)-50-40...+75°C(T5)-50-40...+60°C(T6)

Voc=6.5VIsc=9.3mAPmax=15.2mWCa=24µFLa=365µH

Vmax=30VImax=130mAPi=800mWCi=7.8nFLi=100µH

10.5...30V

Non-incendivefieldwiringperdrawing11396220ClassI,division2,groupsA,B,C,DClassI,Division2,IIC

T32.1S.0NI,T32.3S.0NI

II3GExnLIICT4/T5/T6II3GExnAIICT4/T5/T6II3GExicIICT4/T5/T6

-50-40...+85°C(T4)-50-40...+75°C(T5)-50-40...+60°C(T6)

Uo=DC3.1VIo=0.26mACi=208nFLi=negligibleCo≤1,000µFLo≤1,000mHratioLo/Ro(forignitionprotectiontypeic)Lo/Ro≤9mH/Ω(forIIC)Lo/Ro≤39mH/Ω(forIIB)Lo/Ro≤78mH/Ω(forIIA)

Ui=40VIi=23mA*)Pi=1WCi=7.8nFLi=100µH

10.5...40V

MonitoringTestcurrentforsensormonitoring1) nom.20µAduringtestcycle,otherwise0µAMonitoringNAMURNE89(monitoringofinputleadresistance) Resistancethermometer(Pt100,4-wire) RL1+RL4>100Ωwithhysteresis5Ω

RL2+RL3>100Ωwithhysteresis5Ω Thermocouple RL1+RL4+Rthermocouple>10kΩwithhysteresis100Ω

Sensorburnoutmonitoring ActivatedSelfmonitoring activepermanently,e.g.RAM/ROMtest,logicalprogramoperatingchecksand

validitycheckMeasuringrangemonitoring monitoringofthesetmeasuringrangeforupper/lowerdeviationsMonitoringofinputleadresistance(3-wire) monitoringforresistancedifferencebetweenwire3and4;anerrorwillbeset,if

thereisadifference(>0,5Ω)betweenwire3and4

2)Powersupplyinputprotectedagainstreversepolarity;LoadRA≤(UB-10.5V)/0.023AwithRAinΩandUBinV(withoutHART®)Onswitchingon,anincreaseinthepowersupplyof2V/sisneeded;otherwisethetemperaturetransmitterwillremaininasafeconditionat3.5mA.

3)Cialreadyconsidered Itemsincurvedbracketsareoptionsforadditionalprice,notforrailmountingversionT32.3S*) ThemaximumoperatingcurrentislimitedbytheT32.Themaximumoutputcurrentoftheassociatedenergy-limitedapparatusdoesnothavetobe≤23mA.

1)Onlyforthermocouple

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Ambient conditionsPermissibleambienttemperaturerange -50-40...+85°CClimateclassperIEC654-1:1993 Cx(-40...+85°C,5...95%relativeairhumidity)Maximumpermissiblehumidity

ModelT32.1SperIEC60068-2-38:1974 ModelT32.3SperIEC60068-2-30:2005

Testmax.temperaturevariation65°Cand-10°C,relativehumidity93%±3%Testmax.temperature55°C,relativehumidity95%

VibrationperIEC60068-2-6:2007 TestFc:10...2000Hz;10g,Amplitude0.75mmShockperIEC68-2-27:1987 TestEa:AccelerationTypeI30gandTypeII100gSaltmistperIEC60068-2-52 Severitylevel1FreefallinaccordancewithIEC60721-3-2:1997 Dropheight1,500mmElectromagneticcompatibility(EMC) EMCdirective2004/108/EC,DINEN61326emission(Group1,ClassB)and

immunity(industrialapplication),aswellasperNAMURNE21

CaseTransmittermodel Material Weight Ingressprotection1) Terminalconnections

(screwscaptive)T32.1Sheadmountingversion

PlasticPBT,glassfibrereinforced

0.07kg IP00Electronicscompletelypotted

Cross-sectionheadandrailmin.0.14mm2Wirecross-sectionmax.1.5mm2

T32.3Srailmountingversion

Plastic 0.2kg IP20 Wirecross-sectionmax.2.5mm2

Models T32.1R, T32.3RHighermeasuringrate Measuredvalueupdateapprox.10/sLimitedaccuracy MultiplytheaccuracylimitvaluesforthemodelT32.xSbyfactor2Limitedsensordiagnostics Limitedself-monitoringfunctionSensorinput OnlyforthermocouplesSILcertification WithoutExternalcoldjunction WithoutDualsensorfunction Without

Communication HART® protocol rev. 5 incl. burst mode, MultidropInteroperability(i.e.compatibilitybetweencomponentsfromdifferentmanufacturers)isimperativewithHART®devices.TheT32transmitteriscompatiblewithalmosteveryopensoftwareandhardwaretool;amongotherthingswith:1.User-friendlyWIKAconfigurationsoftware,free-of-chargedownloadviawww.wika.de2.HART®communicatorHC275,FC375,FC475,MFC4150:T32devicedescription(deviceobjectfile)isintegratedandupgradablewitholdHC275versions

3.AssetManagementSystems3.1AMS:T32_DDcompletelyintegratedandupgradablewitholdversions3.2SimaticPDM:T32_EDDcompletelyintegratedfromversion5.1,upgradablewithversion5.0.23.3SmartVision:DTMupgradableperFDT1.2standardfromSVversion43.4PACTware(seeaccessories):DTMcompletelyintegratedandupgradableaswellasallsupportingapplicationswith

FDT1.2interface3.5Fieldmate:DTMupgradable

Attention:FordirectcommunicationviatheserialinterfaceofaPC/notebook,aHART®modemisneeded(see"Accessories").Asageneralrule,parameterswhicharedefinedinthescopeoftheuniversalHART®commands(e.g.themeasuringrange)can,inprinciple,beeditedwithallHART®configurationtools.

1)IngressprotectionperIEC529/DINEN60529

Itemsincurvedbracketsareoptionsforadditionalprice,notforrailmountingversionT32.3S

Options

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Load diagramThepermissibleloaddependsontheloopsupplyvoltage.

VoltageUBinV

LoadRAinΩ

11289130.02

Exia ExnA/nL/ic

LoadRA≤(UB-10.5V)/0.023AwithRAinΩandUBinV(withoutHART®)

Dimensions in mm

11234377.01

CT0129.01

Head mounting version Rail mounting version

Designation of terminal connectors

Resistancethermometer/resistancesensor

in4-wire 3-wire 2-wire

Potentio-meter

ThermocoupleCJCwithexternalPt100

Input resistance sensor/thermocouple

11234547.0X

DualthermocoupleDualmVsensor

Dualresistancethermometer/dualresistancesensor

in2+2-wire

Analogue output

4...20mA-loop

Identicaldualsensorsaresupportedforallsensormodels,i.e.dualsensorcombinationsasforexamplePt100/Pt100orthermocoupletypeK/typeKarepossible.Afurtherruleisthatbothsensorval-ueshavethesameunitandthesamesensorrange.

Forheadmountingandrailmountingcase,connectionclampsfortheHART®modemareavailable.

Sensor1

Sensor2

Sensor1

Sensor2

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11242175.02

Typical connection for hazardous areas

Typical connection for non-hazardous areas

Transmitterpowersupply

24V

Transmitter

Safe area Hazardous area

RL=ResistancefortheHART®communication

RLmin.250Ω,max.1100Ω

Terminal1-4:sensor,seedesignationofterminalconnections

Transmitterpowersupply

24V

Transmitter

IfRLis<250Ωintherespectiveelectricalcircuit,RLmustbeincreasedtoatleast250Ωbyconnectingexternalresistances.

11242299.02

Non-hazardous areaTerminal1-4:sensor,seedesignationofterminalconnections

IfRLis<250Ωintherespectiveelectricalcircuit,RLmustbeincreasedtoatleast250Ωbyconnectingexternalresistances.

HART®communicator

USBHART®modem

HART®communicator

FSKmodem

RS-232-C

BluetoothExia

USB

RL=ResistancefortheHART®communication

RLmin.250Ω,max.1100Ω

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Model Design Special features Dimensions Order No.DIH50,DIH52withfieldhousing

Aluminium DIH50digitalindicatorwithoutseparateauxiliarypowersupply,automaticallyrescalestothenewmeasuringrangeanditsunitsviasupervisionoftheHART®communication,5-digitLCdisplay,20segmentbargraph,displayrotatablein10°steps,withexplosionprotectionII1GEExiaIIC;seedatasheetAC80.10

150x127x138mm onrequest

Adapter Plastic/stainlesssteel

suitableforTS35perDINEN60715(DINEN50022)orTS32perDINEN50035

60x20x41.6mm 3593789

Adapter Steeltingalvanized

suitableforTS35perDINEN60715(DINEN50022)

49x8x14mm 3619851

MagneticquickconnectormagWIK

ReplacementforcrocodileclipsandHART®terminals

Fast,safeandtightelectricalconnection Forallconfigurationandcalibrationprocesses

11604328

Model Description Order No.Model010031 USB-interface,specificallydesignedforusewithmodernnotebooks 11025166

Model010001 RS-232interface 7957522

Model010041 Bluetooth-interface[EExia]IIC 11364254

Model Description Order No.FC475HP1EKLUGMT HART®protocol,Li-Ionbattery,powersupplyAC90...240V,

withoutEASYUPGRADE;ATEX,FMandCSA(intrinsicallysafe)onrequest

FC475FP1EKLUGMT HART®protocol,FOUNDATION™Fieldbus,Li-Ionbattery,powersupplyAC90...240V,withEASYUPGRADE;ATEX,FMandCSA(intrinsicallysafe)

onrequest

MFC4150 HART®protocol,universalpowersupply,cablesetwith250Ωresistance,withDOFupgrade,withEx-protection

11405333

Model Description Order No.DTMcollection incl.PACTware,containsDTMsforWIKAfielddevices 12513636

AccessoriesWIKA configuration software:freedownloadfromwww.wika.com

DIH50-F with field housing, adapter

HART® modem

HART® communicator

DTM collection, incl. PACTware

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WIKA Alexander Wiegand SE & Co. KGAlexander-Wiegand-Straße3063911Klingenberg/GermanyTel. (+49)9372/132-0Fax (+49)9372/132-406E-mail [email protected]

©2008WIKAAlexanderWiegandSE&Co.KG,allrightsreserved.Thespecificationsgiveninthisdocumentrepresentthestateofengineeringatthetimeofpublishing.Wereservetherighttomakemodificationstothespecificationsandmaterials.

01/2012GBPage10of10 WIKAdatasheetTE32.04∙01/2012

Ordering informationModel/Explosionprotection/SILspecifications/Configuration/Permissibleambienttemperature/Certificates/Options

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