Vega VEGABAR 65 Foundation Fieldbus User Manual

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Summary of Contents

Page 1 - Operating Instruction

Operating InstructionsVEGABAR 65Foundation FieldbusDocument ID:28260Processpressure/Hydrostaticp

Page 2 - Contents

l Not exposed to corrosive medial Protectedagainst solar radiationl Avoiding mechanical shock and vibrationl Storage and transport temperature see cha

Page 3

4 Mounting4.1 General instructionsMake sure that all parts of the instrument exposed to the process, inparticular the sensor element, process seal and

Page 4 - 1 About this document

Ventilation for the measuring cell or measuring cell electronics isrealisedby means of a filter element in the socket of the electronicshousing. Ventil

Page 5 - 2 For your safety

12Fig. 4: Temperature ranges1 Process temperature2 Ambienttemperature4.2 Mounting stepsFor mounting VEGABAR 65, a welded socket is required. You can fi

Page 6

90 mm (3.54")R 3,5 mm(0.14")3mm(0.12")70 mm (2.76")8 mm(0.32")93 mm (3.66")110 mm (4.33")Fig. 5: Drilling template

Page 7 - 3 Product description

5 Connect to power supply5.1 Preparethe connectionAlways keep in mind the following safety instructions:l Connect only in the complete absence of line

Page 8 - 3.2 Principle of operation

In systems without potential equalisation, connectthe cable screendirectly to ground potential at the power supply unit and at the sensor.In the conne

Page 9 - 3.3 Operation

The electrical connection is finished.Fig. 6: Connection steps 6 and 7Proceedas follows:1 Loosen the four screws on the housing socket with an Allen ke

Page 10 - 28260-EN-090522

3 Loop the connection cable through the cable entry on the housingbase1)Information:The cable gland can be mounted in three positions each displaced b

Page 11 - 4 Mounting

1 243Fig. 8: Material versions, single chamberhousing1 Plastic2 Aluminium3 Stainless steel4 Stainless steel castingI²C34512DisplayTyp:1 2 5 6 7 8 BusS

Page 12

Contents1 About thisdocument1.1 Function. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .41.2 Target group . . . . . . . . . . . . .

Page 13 - 4.2 Mounting steps

I2CDisplay11 2 56 7 8Fig. 10: Wiring plan, single chamberhousing1 Voltage supply/Signal output5.4 Wiring plan, double chamber housingThe following ill

Page 14

4I2C1 23I²C124DisplayTyp:1 2 5 6 7 8BusSim.Fig. 12: Electronicscompartment, doublechamberhousing1 Simulation switch ("on" = mode for simulat

Page 15 - 5 Connect to power supply

312Display1 2I²CFig. 13: Connection compartment, double chamberhousing1 Plug connector for VEGACONNECT (I²C interface)2 Ground terminal for connection

Page 16 - 5.2 Connection procedure

5.5 Wiring plan double chamber housing Ex d1 2 345Fig. 15: Double chamber housing1 Housingcover, connection compartment2 Blind stopper or plug M12 x 1

Page 17

121 2Fig. 17: Connection compartment doublechamber housing Ex d1 Spring-loaded terminals for power supply and cable screen2 Ground terminal for connec

Page 18

+-12Fig. 19: Wire assignment, connection cable1 brown (+) andblue (-) to power supply or to the processing system2 Shielding5.7 Wiring plan, external

Page 19

I²CDisplayTy p:1 2 5 6 7 8BusSim.456123Fig. 21: Electronics and connectioncompartment, single chamber housing1 Plug connector for VEGACONNECT (I²C int

Page 20

1 2 3 4634125Fig. 22: Connection of thesensor in the housing socket1 Brown2 Blue3 Yellow4 White5 Shielding6 Breather capillariesI2CDisplay11 2 56 7 8F

Page 21

l Indication of the instrument type, the firmwareas well as thesensor TAGs (sensor designation)l Status byte goes briefly to fault valueThen the current

Page 22

6 Set up with the indicating and adjustmentmodule PLICSCOM6.1 Short descriptionThe indicating and adjustment module is used for measured valuedisplay,

Page 23

7.2 Parameter adjustment with PACTware .. . . . . . . . . . .457.3 Parameter adjustment with AMS™ . . . . . . . . . . . . . .458 Maintenance and fault

Page 24

Fig. 24: Insert indicating andadjustment moduleNote:If you intend to retrofit the instrument with an indicating and adjustmentmodule for continuous mea

Page 25

6.3 Adjustment system1.1231Fig. 25: Indicating and adjustmentelements1 LC display2 Indication of the menu item number3 Adjustment keysl [OK] key:- Mov

Page 26

6.4 Setup procedureVEGABAR 65 can be used for level as well as for process pressuremeasurement. Default setting is level measurement. The mode can bec

Page 27 - 5.8 Switch on phase

▶Basic adjustmentDisplayDiagnosticsServiceInfo2 Confirm the menu "Basic adjustment" with [OK], the menu item"Unit" will be displaye

Page 28

The adjustment unit is hence switched over from bar to m.Proceedas follows to select the temperature unit:4)à Activate the selection with [OK] and sel

Page 29 - 6.1 Short description

If the adjustment ranges are exceeded, the message "Outsideparameter limits" appears. The editing procedure can be aborted with[ESC] or the

Page 30

Information:Thesteps 1, 3 and 4 are not necessary for instruments which arealready preset according to customer specifications!You can find the data on

Page 31 - 6.3 Adjustment system

2 Confirm the menu "Basic adjustment" with [OK], the menu item"Unit" will be displayed.UnitUnit of measurementbar▼Temperature unit°

Page 32 - 6.4 Setup procedur

Zero adjustment000.0 %P=+0000.0 mbar0000.0 mbar2 Set the requested mbar value with [+] and [->].3 Confirm with [+] and move to span adjustment with

Page 33

This function enables reading out parameter adjustment data as wellas writing parameter adjustment data into the sensor via the indicatingand adjustme

Page 34

1 About this document1.1 FunctionThis operating instructions manual provides all the information youneed for mounting, connection a nd setup as well a

Page 35 - 0000.0 mbar

Menu section Function Reset valueApplication no resetFactory settingLike basic adjustment, furthermore special parameters are reset todefault values.8

Page 36

6.5 Menu schematicInformation:Depending on the version and application, the highlighted menuwindows are not always available.Basic adjustment1▶Basic a

Page 37

Service4Basic adjustmentDisplayDiagnostics▶ServiceInfo4.2SimulationStart simulation▼4.3ResetSelect reset▼4.3LanguageDeutsch4.4Copy sensor dataCopy sen

Page 38

6.6 Saving the parameter adjustment dataIt is recommended noting the adjusted data, e.g. in this operatinginstructions manual and archive them afterwa

Page 39 - Copy sensor data?

7 Setup with PACTware andother adjustmentprograms7.1 Connecting the PC312Fig. 26: Connection of the PC via VEGACONNECT directlyto the sensor1 USB cabl

Page 40

Necessary components:l VEGABAR 65l PC with PACTware and suitable VEGA DTMl VEGACONNECTl Power supply unit or processing system7.2 Parameter adjustment

Page 41 - 6.5 Menu schem

8 Maintenance and fault rectification8.1 MaintainWhenused in the correct way, no special maintenance is required innormal operation.In some application

Page 42

? When an additional instrument is connected, the H1 segmentfails.l Max. supply current of the segment coupler exceededà Measure the current consumpti

Page 43 - 6.6 Saving the pa

8.3 Calculationof total deviation (similar toDIN 16086)The total deviation Ftotalaccording to DIN 16086 is the sum of basicaccuracy Fperfand longterm

Page 44 - 7.1 Connecting the PC

Basic accuracy analogue output signal in percent:Fperf= √((FT)2+ (FKl)2+ (Fa)2)FT= (0.05 % + 0.1 % x TD)FKl= 0.075 %Fa= 0.15 %Fperf= √((0.05 % + 0.1 %

Page 45

2 For your safety2.1 Authorised personnelAll operations described in this operating instructions manual must becarried out only by trained specialist

Page 46 - 8.2 Remove interferences

l Current sensorsoftware as fileAt "www.vega.com/downloads" go to "Software". Select under "plicsinstruments and sensors"

Page 47

9 Dismounting9.1 Dismounting stepsWarning:Before dismounting, be aware of dangerous process conditions suchas e.g. pressure in the vessel, high temper

Page 48 - DIN 16086)

10 Supplement10.1 TechnicaldataGeneral dataPressure type Gauge pressure or gauge pressureMeasuring principle ceramic-capacitive, temperature-compensat

Page 49 - 8.5 Software update

Channel Numbers- Channel 1 Primary value- Channel 2 Secondary value 1- Channel 3 Secondary value 2- Channel 4 Temperature valueTransmission rate 31.25

Page 50 - 8.6 Instrument repair

- Span -120 … +120 %10)- Differencebetween zero and span max. 120 % of the nominal rangeRecommended max. turn down 10 : 1 (no limitation)Nominal measur

Page 51 - 9 Dismounting

Nominal range Overload, max. pressure Overload, min. pressure0 … 70 psig 950 psig -15 psig0 … 150 psig 1300 psig -15 psig0 … 350 psig 1900 psig -15 ps

Page 52 - 10 Supplement

- Turn down 1 : 1 up to 5 : 1 < 0.25 %- Turn down > 5 : 1 < 0.05 % x TDInfluence of the product or ambient temperatureApplies to instruments w

Page 53

Shock resistance Acceleration 100 g/6 ms13)Electromechanical data - version IP 66/IP 67Cable entry/plug14)- Single chamber housing l 1 x cable gland M

Page 54

- Double chamberhousing l 1 x IP 68 cable gland M20 x 1.5; 1 x blindstopper M20 x 1.5; plug M12 x 1 for VEGADIS61 (optional)or:l 1 x closing cap ½ NPT

Page 55

- Colour - standard PUR Blue- Colour - Ex-version BlueIndicating and adjustment moduleVoltage supply and data transmission through the sensorIndicatio

Page 56

2.5 Safety labelon the instrumentThe safety approval markings and safety tips on the device must beobserved.2.6 CE conformityThis device fulfills the l

Page 57

ApprovalsDependingon the version, instruments with approvals can have d ifferent technical data.For these instruments, the corresponding approval docum

Page 58

10.2 Information on Foundation FieldbusBlock diagram, measured value processingThe following illustration shows the Transducer Block and Function bloc

Page 59

Diagram, adjustmentThe following illustration shows the function of the adjustment:Secondary_value_2scale_in_0 scale_in_100 Sensor_value0 %100 %bar0,5

Page 60

- "Sensor_range.unit' refers to 'Sensor_value', 'Max/Min_peak_sensor_value', 'Cal_point_hi/lo'- includes senso

Page 61 - 10.2 Information on Found

- Highest calibrated value. For calibrationof the high limit point you give the high measurementvalue (pressure) to the sensor and transfer this point

Page 62

10.3 DimensionsHousing~ 69 mm(2.72")ø 77 mm(3.03")112 mm (4 13/32")M20x1,5/½ NPT~ 69 mm(2.72")ø 77 mm(3.03")117 mm (4.61"

Page 63

Housing in protection IP 66/IP 68 (1 bar)117 mm (4.61")120 mm (4.72")~ 103 mm(4.06")~ 105 mm (4.13")ø 77 mm(3.03")116 mm (4.5

Page 64

External housing with IP 68 version1265 mm(2 9/16")68 mm(2 43/64")92 mm(3 5/8")42mm(1 21/32")40mm(1 37/64")90 mm (3 35/64&quo

Page 65 - 10.3 Dimensions

VEGABAR 65 - threaded fittingGG GL - 180°CGNGG - 180°C/200°CBA / BB BE78 mm(3 5/64")118 mm(4 41/64")46 mm(1 13/16")111 mm(4 3/8")55

Page 66

VEGABAR 65 - hygienic fitting 178 mm(3 5/64")78 mm(3 5/64")ø 64 mm(2 33/64")78 mm(3 5/64")ø 91 mm(3 37/64")ø 78 mm(3 5/64"

Page 67

3 Product description3.1 ConfigurationThe scope of delivery encompasses:l VEGABAR 65 pressure transmitterl Documentation- this operating instructions m

Page 68 - BA / BB BE

VEGABAR 65 - hygienic fitting 278 mm(3 5/64")78 mm(3 5/64")78 mm(3 5/64")78 mm(3 5/64")ø 66 mm(2 19/32")ø 105 mm(4 9/64")

Page 69 - CA/CF CB

VEGABAR 65 - flangeconnection3 15/32"4 1/64"5 7/16" 1/8" 1/8" 1/8"4xø 45/64"4xø 45/64"8xø 45/64"4 21/64&qu

Page 70

10.4 Industrial property rightsVEGA product lines are global protected by industrial property rights.Further information see http://www.vega.com.Only

Page 71

VEGABAR 65 • Foundation Fieldbus 7310 Supplement28260-EN-090522

Page 72 - 10.5 Trademark

74 VEGABAR 65 • Foundation Fieldbus10 Supplement28260-EN-090522

Page 73

VEGABAR 65 • Foundation Fieldbus 7510 Supplement28260-EN-090522

Page 74

VEGA Grieshaber KGAm Hohenstein 11377761 SchiltachGermanyPhone +49 7836 50-0Fax +49 7836 50-201E-mail: [email protected] date:ISO 9

Page 75

213Fig. 1: Example of a VEGABAR 65 withprocess fitting G1½ A and plastichousing1 Housing cover with integrated PLICSCOM (optional)2 Housing with electr

Page 76 - ISO 9001

Foundation Fieldbus". The appropriate certificates are also availablethere. A CD with the appropriate files and certificates can be orderedvia e-mai

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