Emerson Solu Comp Xmt-P-FF/FI Bedienerhandbuch Seite 1

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Inhaltsverzeichnis

Seite 1 - Model Solu Comp Xmt-P

Model Solu Comp Xmt-PpH, ORP, and Redox TransmitterInstruction ManualPN 51-Xmt-P/rev.EOctober 2007

Seite 2 - ESSENTIAL INSTRUCTIONS

2MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONS1.2 SPECIFICATIONS1.2.1 GENERAL SPECIFICATIONSCase:ABS (panel mount), polycarbonate (pip

Seite 3 - QUICK START GUIDE

92MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.3 TROUBLESHOOTING WHEN NO FAULT MESSAGE IS SHOWING - TEMPERATURE10.3.1 Temperature measured by standard w

Seite 4 - TABLE OF CONTENTS

93MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.5.1 Warning or error message during two-point calibration.Once the two-point (manual or automatic) calibra

Seite 5 - TABLE OF CONTENTS CONT’D

94MODEL Xmt-P SECTION 10.0TROUBLESHOOTINGD. Is the sensor fouled? The sensor measures the pH of the liquid adjacent to the glass bulb. If the sensor

Seite 6 - LIST OF TABLES

MODEL Xmt-P SECTION 10.0TROUBLESHOOTINGor terminals.4. Connect a jumper wire between the RTD RETURN and RTD SENSE terminals (see wiring diagrams in S

Seite 7 - LIST OF FIGURES

96MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.7.3 Simulating pH input when the preamplifier is in a junction box.The procedure is the same as described

Seite 8 - LIST OF FIGURES CONT’D

MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.9 MEASURING REFERENCE VOLTAGESome processes contain substances that poison or shift the poten-tial of the r

Seite 9 - SECTION 1.0

98MODEL Xmt-P SECTION 11.0MAINTENANCESECTION 11.0MAINTENANCETABLE 11-1. REPLACEMENT PARTS FOR SOLU COMP XMT (PANEL MOUNT VERSION)PART NUMBER DESCRIPTI

Seite 10 - Sira MC070113/00

99SECTION 12.0pH MEASUREMENTS12.1 General12.2 Measuring Electrode12.3 Reference Electrode12.4 Liquid Junction Potential12.5 Converting Voltage to pH12

Seite 11 - DIGITAL COMMUNICATIONS:

100MODEL XMT-P pH/ORP SECTION 12.0 pH MEASUREMENTSdesigned, the liquid junction potential is usually small and rel-atively constant. All three potenti

Seite 12

101MODEL XMT-P pH/ORP SECTION 12.0 pH MEASUREMENTSFIGURE 12-5. The Origin of Liquid Junction Potentials.The figure shows a thin section through a pore

Seite 13 - Language

3MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSpH/ORP SENSOR DIAGNOSTIC CAPABILITY320B Glass and Reference330B Glass and Reference320HP-

Seite 14

102MODEL XMT-P pH/ORP SECTION 12.0 pH MEASUREMENTSThe second term, 0.1984 T pH, is the potential (in mV) atthe outside surface of the pH glass. This p

Seite 15 - 1.6 HART COMMUNICATIONS

103MODEL XMT-P pH/ORP SECTION 12.0 pH MEASUREMENTSare placed in pH 10 buffer, the cell voltage is V10. Note thatV7is not 0 mV as would be expected in

Seite 16 - Model Xmt-P

104MODEL XMT-P pH/ORP SECTION 12.0 pH MEASUREMENTSterm in equation 4 to the voltage is also shown. The liquidjunction potentials in the buffers are as

Seite 17

105MODEL XMT-P pH/ORP SECTION 13.0 ORP MEASUREMENTSSECTION 13.0ORP MEASUREMENTS13.1 General13.2 Measuring Electrode13.3 Reference Electrode13.4 Liquid

Seite 18 - ACCESSORIES

10613.2 MEASURING ELECTRODEFigure 13-2 shows a typical ORP measuring elec-trode. The electrode consists of a band or disc ofplatinum attached to the b

Seite 19 - INSTALLATION

107Liquid junction potentials exist whenever dissimilar elec-trolyte solutions come into contact. The magnitude of thepotential depends on the differe

Seite 20

108is described by the following equation, called theNernst equation:E = E° - (2)In the Nernst equation, E is the electrode potential andE° is the s

Seite 21 - 2.3 INSTALLATION

109The Nernst equation for reaction 3 is:E = E°- (4)Note that the hydrogen ion factor in the concentrationratio is raised to the fourteenth power. T

Seite 22 - MILLIMETER

110MODEL XMT-P pH/ORP SECTION 13.0 ORP MEASUREMENTSThe ORP of the iron (II) - iron (III) standard when meas-ured with a platinum electrode against a s

Seite 23

14.1 OVERVIEW OF HART COMMUNICATIONHART (highway addressable remote transducer) is a digital communication system in which two frequencies aresuperimp

Seite 24

4MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONS1.3 HAZARDOUS LOCATION APPROVALSIntrinsic Safety:Class I, II, III, Div. 1 Groups A-GT4 Ta

Seite 25 - SECTION 3.0

112MODEL XMT-P PH/ORP SECTION 14.0THEORY - REMOTE COMMUNICATIONSIf your communicator does not recognize the Model XMT-P pH/ORP transmitter, the device

Seite 26 - Transmitter

113MODEL XMT-P pH/ORP SECTION 15.0RETURN OF MATERIALSECTION 15.0RETURN OF MATERIAL15.1 GENERAL.To expedite the repair and return of instruments, prope

Seite 28 - SECTION 4.0

WARRANTYGoods and part(s) (excluding consumables) manufactured by Seller are warranted to be free from defects in workman-ship and material under norm

Seite 29

Credit Cards for U.S. Purchases Only.The right people,the right answers,right now.ON-LINE ORDERING NOW AVAILABLE ON OUR WEB SITEhttp://www.raihome.com

Seite 30

MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSFIGURE 1-1. MENU TREE FOR MODEL SOLU COMP Xmt-P-HT TRANSMITTER1.4 MENU TREE FOR MODEL XM

Seite 31

MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSFIGURE 1-2. MENU TREE FOR MODEL SOLU COMP Xmt-P-FF TRANSMITTER1.5 MENU TREE FOR MODEL XM

Seite 32

7MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONS1.7 FOUNDATION FIELDBUSFigure 1-3 shows a Xmt-P-FF being used to measure and control pH

Seite 33

8MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSFIGURE 1-4. HART Communicators. Both the Rosemount Model 375 (or 275) and a computer can

Seite 34

MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSFIGURE 1-5. AMS MAIN MENU TOOLS9

Seite 35

10MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONS1.10 ACCESSORIESPOWER SUPPLY: Use the Model 515 Power Supply to provide dc loop power t

Seite 36

11MODEL XMT-P pH/ORP SECTION 2.0INSTALLATIONSECTION 2.0INSTALLATION2.1 Unpacking and Inspection2.2 Pre-Installation Set Up2.3 Installation2.1 UNPACKIN

Seite 37 - 9241564-00

Emerson Process ManagementLiquid Division2400 Barranca ParkwayIrvine, CA 92606 USATel: (949) 757-8500Fax: (949) 474-7250http://www.raihome.com© Rosem

Seite 38 - IS CLASS I, II, III

12MODEL XMT-P pH/ORP SECTION 2.0INSTALLATION2.2.3 Preamplifier LocationpH sensors produce a high impedance voltage signal that must be preamplified be

Seite 39 - HAZARDOUS AREA

13MODEL XMT-P pH/ORP SECTION 2.0INSTALLATION2.3 INSTALLATION1. Although the transmitter is suitable for outdoor use,do not install it in direct sunli

Seite 40 - 9241572-00

14MODEL XMT-P pH/ORP SECTION 2.0INSTALLATIONFIGURE 2-3. Panel Mount InstallationAccess to the wiring terminals is through the rear cover. Four screws

Seite 41 - SCHEMATIC, INSTALLATION

15MODEL XMT-P pH/ORP SECTION 2.0INSTALLATIONFIGURE 2-4. Pipe Mount InstallationThe front panel is hinged at the bottom. The panel swings down for acce

Seite 42

16MODEL XMT-P pH/ORP SECTION 2.0INSTALLATIONFIGURE 2-5. Surface Mount InstallationThe front panel is hinged at the bottom. The panel swings down for a

Seite 43 - BAS04ATEX0213X

17MODEL XMT-P pH/ORP SECTION 3.0 WIRING3.1 POWER SUPPLY/CURRENT LOOP — MODEL XMT-P-HT3.1.1 Power Supply and Load Requirements.Refer to Figure 3-1.The

Seite 44 - Baseefa Certified Product

18MODEL XMT-P pH/ORP SECTION 3.0 WIRING3.2 POWER SUPPLY WIRING FOR MODEL XMT-P-FF3.2.1 Power Supply Wiring. Refer to Figure 3-3 andFigure 3-4.Run the

Seite 45 - WARNING

19MODEL XMT-P pH/ORP SECTION 3.0 WIRING3.3 SENSOR WIRING3.3.1 Sensor Wiring InformationpH and ORP sensors manufactured by Rosemount Analytical can be

Seite 46 - 9241604-00

20For FM Intrinsically Safe Label, see Figure 4-1.For FM Intrinsically Safe Installation, see Figure 4-2.For CSA Instrinsically Safe Label, see Figure

Seite 47 - MOD XMT-P-FI XMTR

21FIGURE 4-2. FM Intrinsically Safe Installation (1 of 2) for Model Xmt-P-HT

Seite 48

5. Choose the desired language. Choose >> to show more choices.6. Choose measurement: pH, ORP, or Redox. 7. Choose preamplifier location. Select

Seite 49 - -LR 34186

22FIGURE 4-3. FM Intrinsically Safe Installation (2 of 2) for Model Xmt-P-HT

Seite 50 - (CSA)

23FIGURE 4-4. CSA Intrinsically Safe Label for Model Xmt-P-HT

Seite 51

24FIGURE 4-5. CSA Intrinsically Safe Installation (1 of 2) for Model Xmt-P-HT

Seite 52 - 9241580-00

25FIGURE 4-6. CSA Intrinsically Safe Installation (2 of 2) for Model Xmt-P-HT

Seite 53 - ATEX ZONE 0

26FIGURE 4-7. ATEX Intrinsically Safe Label for Model Xmt-P-HT

Seite 54

27FIGURE 4-8. ATEX Intrinsically Safe Installation (1 of 2) for Model Xmt-P-HT

Seite 55 - DISPLAY AND OPERATION

28FIGURE 4-9. ATEX Intrinsically Safe Installation (2 of 2) for Model Xmt-P-HT

Seite 56 - - TUTORIAL

29FIGURE 4-10. FM Intrinsically Safe Label for Model Xmt-P-FF10 /6 /0410 /6 /04 J. FLOCK°CT4 Tamb = 509241564-00/ARosemount AnalyticalRFMAPPROV

Seite 57 - 5.5 DIAGNOSTIC MESSAGES - pH

30FIGURE 4-11. FM Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FF10/6/04J. FLOCK511.59mW157.17mA13.03V7.972.9740.97421.695.990.964514. MET

Seite 58

31FIGURE 4-12. FM Intrinsically Safe Installation (2 of 2) for Model Xmt-P-FFOR SIMPLE APPARATUSFM APPROVED DEVICEPH SENSOR WITH TCOR SIMPLE APPARATUS

Seite 59

iMODEL XMT-P pH/ORP TABLE OF CONTENTSMODEL XMT-P pH/ORP TWO-WIRE TRANSMITTERTABLE OF CONTENTSSection Title Page1.0 DESCRIPTION AND SPECIFICATIONS ...

Seite 60 - 5.7 USING HOLD

32FIGURE 4-13. CSA Intrinsically Safe Label for Model Xmt-P-FF 10/6 /04 J. FLOCK°CT4 Tamb = 50SEE BLANK LABEL PN 9241406-01.SUPER PREMIUM BLACK TH

Seite 61 - OPERATION WITH MODEL 375

33FIGURE 4-14. CSA Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FF 10/6/04 10/6/04J. FLOCKJ. FLOCKHAZARDOUS AREA CLASS III CLASS II, G

Seite 62 - 6.3 Operation

34FIGURE 4-15. CSA Intrinsically Safe Installation (2 of 2) for Model Xmt-P-FFHAZARDOUS AREA CLASS III CLASS II, GRPS E-GIS CLASS I, GRPS A-DCSA A

Seite 63 - Basic setup

35FIGURE 4-16. ATEX Intrinsically Safe Label for Model Xmt-P-FF10 /6 /04°C°C TO +50Tamb = 09241580-00/ARosemount AnalyticalRSIGNAL INPUTSUPPLYII 1

Seite 64

36FIGURE 4-17. ATEX Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FF 10/6/04 10/6/04J. FLOCKJ. FLOCK0mH5.5nF172mW123mA12.9V4020523.26.51LiC

Seite 65

37FIGURE 4-18. ATEX Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FF+PHSENSOREEx ia IIC T4Baseefa04ATEX0213XII 1 G 1180(ZONE 0)HAZARDOUS

Seite 66

38FIGURE 4-19. FM Intrinsically Safe Label for Model Xmt-P-FI10/6 /04 J. FLOCK J. FLOCK FARSIDE AND SPLIT LINER) OR (INTERMEC PN L7211210, 2

Seite 67 - Menu Tree (3 of 12)

39FIGURE 4-20. FM Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FI 10/6/04 10/6/04 10/6/0414. METAL CONDUIT IS NOT REQUIRED BUT IF USED BON

Seite 68 - Menu Tree (4 of 12)

40FIGURE 4-21. FM Intrinsically Safe Installation (2 of 2) for Model Xmt-P-FIOR SIMPLE APPARATUSFM APPROVED DEVICEPH SENSOR WITH TCOR SIMPLE APPARATUS

Seite 69 - Menu Tree (5 of 12)

41FIGURE 4-22. CSA Intrinsically Safe Label for Model Xmt-P-FI 10 /6 /04 FARSIDE AND SPLIT LINER) OR (INTERMEC PN L7211210, 2 MIL GLOSS WHIT

Seite 70

MODEL XMT-P pH/ORP TABLE OF CONTENTSTABLE OF CONTENTS CONT’Dii8.0 CALIBRATION — TEMPERATURE...

Seite 71

42FIGURE 4-23. CSA Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FI 10/6/04 10/6/0459.9729.977.9721.695.99HAZARDOUS AREA CLASS III CLAS

Seite 72 - Menu Tree (8 of 12)

43FIGURE 4-24. CSA Intrinsically Safe Installation (2 of 2) for Model Xmt-P-FIHAZARDOUS AREA CLASS III CLASS II, GRPS E-GIS CLASS I, GRPS A-DCSA A

Seite 73

44FIGURE 4-25. ATEX Intrinsically Safe Label for Model Xmt-P-FI10 /6 /04°C°C TO +50Tamb = 09241580-00/ARosemount AnalyticalRSIGNAL INPUTSUPPLYII 1

Seite 74 - Menu Tree (10 of 12)

45FIGURE 4-26. ATEX Intrinsically Safe Installation (1 of 2) for Model Xmt-P-FI 10/6/04 10/6/04 J. FLOCK0mH5.5nF172mW123mA12.9V4020523.26.51LiCiDOES N

Seite 75

46FIGURE 4-27. ATEX Intrinsically Safe Installation (2 of 2) for Model Xmt-P-FI17.5 VDC MAX17.5 VDC MAX17.5 VDC MAX SENSORAMPEROMETRIC SENSORAMPER

Seite 76

47MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATIONSECTION 5.0DISPLAY AND OPERATION5.1. DISPLAYThe Model Xmt-P has a two-line dis-play. Generally,

Seite 77 - PROGRAMMING THE TRANSMITTER

MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATION485.3 PROGRAMMING AND CALIBRATING THE MODEL XMT- TUTORIALSetting up and calibrating the Model Xmt

Seite 78

MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATION5.4 MENU TREES - pHThe Model Xmt-P pH transmitter has four menus: CALIBRATE, PROGRAM, HOLD, and D

Seite 79

50MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATIONFIGURE 5-3. MENU TREE FOR MODEL SOLU COMP Xmt-P-HT TRANSMITTER50

Seite 80

51MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATIONFIGURE 5-4. MENU TREE FOR MODEL SOLU COMP Xmt-P-FF TRANSMITTER

Seite 81 - Typically, the ref

iiiMODEL XMT-P pH/ORP TABLE OF CONTENTSTABLE OF CONTENTS CONT’D13.0 ORP MEASUREMENTS...

Seite 82

52MODEL XMT-P pH/ORP SECTION 5.0 DISPLAY AND OPERATION1. If a security code has been programmed, pressing MENU causes thesecurity screen to appear.2.

Seite 83 - COMPENSATION

53MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375SECTION 6.0OPERATION WITH MODEL 3756.1 Note on Model 375 HART and Foundation Fieldbus Communi

Seite 84 - 7.6 SETTING A SECURITY CODE

54MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 3756.3 Operation6.3.1 Off-line and On-line OperationThe Model 375 Communicator features off-line

Seite 85 - 7.8 NOISE REDUCTION

55MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375Device setupProcess variablespH (1)ORP/Redox (2)TempInput (1)GlassZ (1)RefZTempRUncorr pH (4)

Seite 86

56MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375Temp mode [Live, Manual] (1)Man temp (6)Temp unit [ºC, ºF]Temp snsr [RTD PT100, RTD PT1000, M

Seite 87 - CALIBRATION — TEMPERATURE

57MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375RESOURCEIdentificationMANUFACT_IDDEV_TYPEDEV_REVDD_REVCharacteristics Block TagTAG_DESCHardwa

Seite 88

58MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375TRANSDUCERStatusMODE_BLK: ActualTransducer ErrorST_REVBLOCK_ERRFaultsWarningsAdditional trans

Seite 89 - CALIBRATION — pH

59MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375Glass fault low setpointGlass warn high setpointGlass warn low setpointTemperature Compensati

Seite 90

60MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375LOW_CUTSIMULATE: Simulate StatusSIMULATE: Simulate ValueSIMULATE: Transducer StatusSIMULATE:

Seite 91

61MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375OUT_SCALE: EU at 100%OUT_SCALE: EU at 0%OUT_SCALE: Units IndexOUT_SCALE: DecimalGRANT_DENY: G

Seite 92

ivMODEL XMT-P pH/ORP TABLE OF CONTENTSLIST OF FIGURESNumber Title Page1-1 Menu Tree — Xmt-P-HT...

Seite 93

62MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375DV_LO_LIMGAINHI_HI_LIMHI_LIMLO_LIMLO_LO_LIMOUT_SCALE: EU at 100%OUT_SCALE: EU at 0%OUT_SCALE:

Seite 94

63MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375TRK_SCALE: Units IndexTRK_SCALE: DecimalTRK_VAL: StatusTRK_VAL: ValueConnectorsBK_CAL_IN: Sta

Seite 95 - 9.6 ORP CALIBRATION

64MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375UPDATE_EVT: Time StampUPDATE_EVT: Static RevUPDATE_EVT: Relative IndexBLOCK_ALM: Unacknowledg

Seite 96 - SECTION 10.0

65PV: ValueSP: StatusSP: ValueOUT: StatusOUT: ValuePV_SCALE: EU at 100%PV_SCALE: EU at 0%PV_SCALE: Units IndexPV_SCALE: DecimalOUT_SCALE: EU at 100%OU

Seite 97

66MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375UPDATE_EVT: Relative IndexBLOCK_ALM: UnacknowledgedBLOCK_ALM: Alarm StateBLOCK_ALM: Time Stam

Seite 98

67SchedulingDetailPhysical Device TagAddressDevice IDDevice RevisionAdvancedStack CapabilitiesFasArTypeAndRoleSupportedMaxDIsapAddressesSupportedMaxDI

Seite 99

68MODEL XMT-P pH/ORP SECTION 6.0 OPERATION WITH MODEL 375Normal RcvUrgent RcvTime Available SAP EC DCNormal SAP EC DCUrgent SAP EC DCTime Available Rc

Seite 100 - TROUBLESHOOTING

69MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTERSECTION 7.0PROGRAMMING THE TRANSMITTER7.1 GENERALThis section describes how to program the

Seite 101

707.3 CONFIGURING AND RANGING THE OUTPUT (-HT version only)7.3.1 Purpose1. Configuring an output means a. displaying the output reading in units of m

Seite 102

71MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTER7.3.3 Procedure: Configuring the Output1. Press MENU. The menu screen appears. Choose Pro

Seite 103 - 10.7 SIMULATING INPUTS - pH

v9-1 Calibration Slope and Offset ... 6310-1 Simulate pH...

Seite 104 - 10.8 SIMULATING TEMPERATURE

72MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTERCurrent Outputfor Test:12.00mAOutput TempMeasurement°>>Test OutputTrim OutputOutput?

Seite 105

73MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTER7.4 CHOOSING AND CONFIGURING THE ANALYTICAL MEASUREMENT7.4.1 PurposeThis section describes

Seite 106 - MAINTENANCE

74MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTER7.4.3 Procedure: Measurement.To choose a menu item, move the cursor to the item and press

Seite 107 - SECTION 12.0

75MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTER7.5.3 Procedure: Temperature.To choose a menu item, move the cursor to the item and press

Seite 108 - 12.3 REFERENCE ELECTRODE

76Outputs TempMeasurement >>Security HART>>7.6.2 Procedure: Setting a security codeCalibrate HoldProgram DisplayLock?Calib Config1. Press

Seite 109 - 12.5 CONVERTING VOLTAGE TO pH

77MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTEROutputs TempMeasurement >>Security HART>>7.8.2 Procedure: Noise reductionCalib

Seite 110 - 12.7 BUFFERS AND CALIBRATION

78MODEL XMT-P pH/ORP SECTION 7.0 PROGRAMMING THE TRANSMITTERDefault DisplayDisplay Contrast7.10.2 Procedure: Choosing a display screen.Calibrate HoldP

Seite 111 - 12.8 ISOPOTENTIAL pH

79MODEL XMT-P pH/ORP SECTION 8.0 CALIBRATION — TEMPERATURESECTION 8.0CALIBRATION — TEMPERATURE8.1 INTRODUCTIONThe Calibrate Menu allows the user to ca

Seite 112 - PREAMPLIFIERS

80MODEL XMT-P pH/ORP SECTION 8.0 CALIBRATION — TEMPERATURE8.2.2 Procedure1. Remove the sensor from the process. Place it in an insulated container of

Seite 113 - ORP MEASUREMENTS

81MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pHSECTION 9.0CALIBRATION — pH9.1 INTRODUCTIONFor pH sensors, two-point buffer calibration is standard.

Seite 114

1MODEL XMT-P pH/ORP SECTION 1.0DESCRIPTION AND SPECIFICATIONSSECTION 1.0DESCRIPTION AND SPECIFICATIONSModel Xmt Family of Two-wire Transmitters• CHOIC

Seite 115

82MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH9.2 PROCEDURE — AUTO CALIBRATION1. Obtain two buffer solutions. Ideally, the buffer values should b

Seite 116 - Chromium (VI), ppm

83MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH14. The top line shows the actual reading. The transmitter also identifies thebuffer and displays the

Seite 117 - 13.8 CALIBRATION

84MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH9.3 PROCEDURE — MANUAL TWO-POINT CALIBRATION1. Obtain two buffer solutions. Ideally, the buffer val

Seite 118

85MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH9.4 PROCEDURE — STANDARDIZATION1. The pH measured by the transmitter can be changed to match the re

Seite 119 - SECTION 14.0

86MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH9.5 PROCEDURE — ENTERING A KNOWN SLOPE VALUE.1. If the electrode slope is known from other measurem

Seite 120

87MODEL XMT-P pH/ORP SECTION 9.0 CALIBRATION — pH9.6 ORP CALIBRATION9.6.1 Purpose1. For process control, it is often important to make the measured OR

Seite 121 - RETURN OF MATERIAL

88MODEL Xmt-P SECTION 10.0TROUBLESHOOTINGSECTION 10.0TROUBLESHOOTING10.1 OVERVIEWThe Xmt-P transmitter continuously monitors itself and the sensor for

Seite 122

89MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.2 TROUBLESHOOTING WHEN A FAULT OR WARNING MESSAGE IS SHOWINGFault message Explanation See SectionRTD Open

Seite 123 - Irvine, CA 92606

90MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.2.2 Broken pH Glass and pH Glass Z HighThese messages mean that the pH sensor glass impedance is outside t

Seite 124 - The right people

91MODEL Xmt-P SECTION 10.0TROUBLESHOOTING10.2.8 pH mV Too HighThis message means the raw millivolt signal from the sensor is outside the range -2100 t

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