novotechnik MAP 4000 Series Instructions For Use Manual

4 digit programmable universal instrument, dc voltmeter/ammeter process monitor ohmmeter thermometer for pt 100/500/1 000 thermometer for ni 1 000 thermometer for thermocouples displays for lin. potentiometers
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G U A R A N T E E
Y E A R S
MAP 4000
4 DIGIT PROGRAMMABLE
UNIVERSAL INSTRUMENT
DC VOLTMETER/AMMETER
PROCESS MONITOR
OHMMETER
THERMOMETER FOR PT 100/500/1 000
THERMOMETER FOR NI 1 000
THERMOMETER FOR THERMOCOUPLES
DISPLAYS FOR LIN. POTENTIOMETERS

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  • Page 1 G U A R A N T E E Y E A R S MAP 4000 4 DIGIT PROGRAMMABLE UNIVERSAL INSTRUMENT DC VOLTMETER/AMMETER PROCESS MONITOR OHMMETER THERMOMETER FOR PT 100/500/1 000 THERMOMETER FOR NI 1 000 THERMOMETER FOR THERMOCOUPLES DISPLAYS FOR LIN. POTENTIOMETERS...
  • Page 2 ABC-relevant applications. For more information see our Terms and Conditions TECHNICAL DATA Measuring instruments of the MAP 4000 series conform to the European regulation 89/336/EWG and the Ordinance 168/1997 Coll. The instruments are up to the following European standards:...
  • Page 3: Table Of Contents

    CONTENTS Contents ..................3 Instrument description.
  • Page 4: Instrument Description

    INSTRUMENT DESCRIPTION Description The MAP 4000 model series are 4 digit panel programmable instruments designed for maximum efficiency and user comfort while maintaining their favourable price. Type MAP 4000 is a multifunction instrument with the option of configuration for 8 various input options, easily configurable in the instrument menu.
  • Page 5 INSTRUMENT DESCRIPTION EXTERNAL CONTROL Lock : control keys blocking Hold : display/instrument blocking Tare : tare activation/resetting tare to zero Resetting MM : resetting min/max value Memory: data storage into instrument memory Operationn The instrument is set and controlled by five control keys located on the front panel. All programmable settings of the instrument are performed in three adjusting modes: LIGHT Simple programming menu...
  • Page 6: Instrument Connection

    INSTRUMENT CONNECTION The instrument supply leads should not be in proximity of the incoming low-potential signals. Contactors, motors with larger input power should not be in proximity of the instrument. The leads into the instrument input (measured quantity) should be in sufficient distance from all power leads and appliances. Provided this cannot be secured it is necessary to use shielded leads with connection to ground (bracket E).
  • Page 7 INSTRUMENT CONNECTION Excitation has the minus pole common with the input - the bracket no. 20 - GND and you may set its Open collectors value by trimmer above the bracket no. 17 Relays Option A RxD/L+ INPUT - U TxD/L- 11 12 13 GND - U/I0,5...
  • Page 8: Instrument Setting

    INSTRUMENT SETTING • For expert users • Complete instrument menu • Access is password protected • Possibility to arrange items of the „User“ menu • Tree menu structure • For trained users • Only items necessary for instrument setting • Access is password protected •...
  • Page 9 INSTRUMENT SETTING Setting The instrument is set and controlled by five control keys located on the front panel. All programmable settings of the instrument are performed in three adjusting modes: LIGHT Simple programming menu - contains solely items necessary for instrument setting and is protected by optional number code PROFI Complete programming menu - contains complete instrument menu and is protected by optional number code...
  • Page 10: Symbols Used In The Instructions

    INSTRUMENT SETTING Setting and controlling the instrument is performed by means of 5 control keys located on the front panel. With the aid of these keys it is possble to browse through the operation menu and to select and set required values. Measured value Indication of measured input (red/green LED)
  • Page 11: Control Keys Function

    INSTRUMENT SETTING Control keys functions Measurement Menu Setting numbers/selection access into USER menu exit menu quit editing programmable key function back to previous level move to higher decade programmable key function move to previous item move down programmable key function move to next item move up programmable key function...
  • Page 12 light light SETTING Setting “LIGHT” LIGHT Simple programming menu - contains only items necessary for instrument setting and is protected by optional number code • For capable users • Only items necessary for instrument setting • Access is password protected •...
  • Page 13 light light SETTING Access password 142. 8 PASSW. Upon delay exceeding 60 s the programming mode is automatically discontinued and the instrument Type of instruments Measuring range itself restores the measuring mode TYPE MODE 4-20mA Selecting projection and connection CONNEC. 2-WIRE FORM.
  • Page 14 light light SETTING 142. 8 Entering access password PASSW. for access into the menu Access into instrument PASSW. menu PAS > 0 PAS = 0 - access into menu is protected ny number - access into menu is unrestricted, after code releasing keys you automaticaly move to first item of the menu...
  • Page 15 light light SETTING INSTRUCTIONS FOR USE MAP 4000...
  • Page 16 light light SETTING Type “DC”  60 mV 150 mV 300 mV 1200mV MODE  Selection of the instrument MODE measuring range Menu Measuring range 60 mV ±60 mV 150 mV ±150 mV = 60 mV 300 mV ±300 mV 1200mV ±1,2 V 100 V...
  • Page 17 light light SETTING  MAX A Setting for maximum  input signal Setting display projection - position of the DP does not affect display MAX A for maximum value of projection input signal - the DP is automatically shifted after the value is confirmed - range of the setting is -99999…999999 = 100...
  • Page 18 light light SETTING Type “PM” MODE 0-5mA 0-20mA 4-20mA 0-10 V 0-40 V Er. 4 -20 • • •   Selection of the instrument MODE measuring range Menu Range 0-5mA 0…5 mA 0-20mA 0…20 mA 4-20mA 4…20 mA = 4 - 20 mA 0-2 V ±2 V 0-5 V...
  • Page 19 light light SETTING  MAX A Setting for maximum  input signal Setting display projection - position of the DP does not affect display MAX A for maximum value of projection input signal - the DP is automatically shifted after the value is confirmed - range of the setting is -99999…999999 = 100...
  • Page 20 light light SETTING Type “OHM”  100 R 10 K 100 K 100 K MODE  Selection of instrument MODE Menu Measuring range measuring range 100 R 0…100 Ϊ 0…1 kΪ 10 k 0…10 kΪ = 100 Ϊ 100 k 0…100 kΪ...
  • Page 21 light light SETTING  MAX A Setting for maximum  input signal Setting display projection - position of the DP does not affect display MAX A for maximum value of projection input signal - the DP is automatically shifted after the value is confirmed - range of the setting is -99999…999999 = 100...
  • Page 22 light light SETTING Type “RTD-Pt” EU-100 EU-500 EU-1k0 US-100 RU -50 RU-100 MODE   Selection of instrument MODE measuring range Menu Measuring range EU-100 Pt 100 (3 850 ppm/°C) EU-500 Pt 500 (3 850 ppm/°C) = Pt 100 EU-1k0 Pt 1000 (3 850 ppm/°C) US-100 Pt 100 (3 920 ppm/°C)
  • Page 23 light light SETTING  FORM. A 000000 00000. o 0000. o o  Setting projection of the FORM. A = 00000.o decimal point - positioning of the DP is set here in the measuring mode Projection of DP on display > 000000 Example 00000.
  • Page 24 light light SETTING Type “RTD-Ni”  5. 0 -1k 6. 2 -1k 5. 0 -10k 6. 2 -10k MODE  Selection of instrument MODE measuring range Menu Measuring range 5.0-1k Ni 1 000 (5 000 ppm/°C) 6.2-1k Ni 1 000 (6 180 ppm/°C) = Ni 1 000 - 5 000 ppm/°C 5.0-10k Ni 10 000 (5 000 ppm/°C)
  • Page 25 light light SETTING  FORM. A 000000 00000. o 0000. o o  Setting projection of the FORM. A = 00000.o decimal point - positioning of the DP is set here in the measuring mode Projection of DP on display > 000000 Example 00000.
  • Page 26 light light SETTING Type “T/C” T/C B T/C E T/C J T/C K >  MODE T/C N T/C R T/C S T/C T T/C L  > Selection of the type of MODE thermocouple Menu Type of thermocouple T/C B - setting the input range depends on the measuring range ordered T/C E...
  • Page 27 light light SETTING  C. J . TEM. Setting temperature of  cold junction Setting temperature of cold C. J . TEM. = 23 junction - range 0…99°C with compensation box Setting temperature of cold junction > C.J. TEM. = 35 Example FORM.
  • Page 28 light light SETTING Type “DU”  MIN A Setting for minimum  input signal Setting display projection - position of the DP does not affect display MIN A for minimum value of projection input signal - the DP is automatically shifted after the value is confirmed - range of the setting is -99999…999999 Projection for the beginning >...
  • Page 29 light light SETTING FORM. A 000000 00000. o 0000. o o 000. o oo 00. o ooo 0. o oooo FLOA. P.   Setting projection of the FORM. A = 0000.oo decimal point - positioning of the DP is set here in the measuring mode Projection of DP on display >...
  • Page 30 light light SETTING Type “RTD-Cu”  428-50 428-0. 1 426-50 426-0. 1 MODE  Selection of instrument MODE measuring range Menu Measuring range 428-50 Cu 50 (4 280 ppm/°C) 428-0.1 Cu 100 (4 280 ppm/°C) = Cu 50/4 280 ppm 426-50 Cu 50 (4 260 ppm/°C) 426-0.1...
  • Page 31 light light SETTING  FORM. A 000000 00000. o 0000. o o  Setting projection of the FORM. A = 00000.o decimal point - positioning of the DP is set here in the measuring mode Projection of DP on display > 000000 Example 00000.
  • Page 32: Setting Limits

    light light SETTING  LIM L. 1 Setting boundary for  limit 1 Setting boundary for - contingent modification of hysteresis or LIM L. 1 limit 1 delay may be performed in “PROFI” menu - range of the setting is -99999…999999 = 20 - default “Hystresis”=0 “Delay”=0 Setting limit 1 >...
  • Page 33 light light SETTING  LIM L. 3 Setting boundary for  limit 3 Setting boundary for - contingent modification of hysteresis or LIM L. 3 limit 3 delay may be performed in “PROFI” menu - range of the setting is -99999…999999 = 60 - default “Hysteresis”=0 “Delay”=0 Setting limit 3 >...
  • Page 34 light light SETTING 0-20mA E. 4-20 4-20mA 0-5mA 0-2 V 0-5 V 0-10 V TYP. A. O .   Setting the type of analog TYP. A. O . output Menu Range Description 0-20mA 0…20 mA E. 4-20mA 4…20 mA with indication of error statement (<3,6 mA) 4-20mA 4…20 mA...
  • Page 35 light light SETTING  MAX A. O . Assigning the display  value to the end of the AO range Assigning the display MAX A. O . = 100 value to the end of the AO range - range of the setting is -99999…999999 Display value for the end of the AO range >...
  • Page 36: Restoration Of Manufacture Setting

    light light SETTING  MENU LIGHT PROFI  Setting the menu type PROFI > menu PROFI, a complete menu for MENU LIGHT/PROFI complete instrument setting > tree menu structure LIGHT > menu LIGHT, a simple menu, which contains only the most essential items = LIGHT necessary for instrument setting >...
  • Page 37 light light SETTING Type “DU” flashing legend C. MIN Calibration of input range - C. MIN Only for type “DU” the potentiometer traveller in initial position - prior confirming the flashing “YES” sign the potentiometer traveller has to be in given idle position Calibration of the beginning of the range >...
  • Page 38: Setting New Access Password

    light light SETTING  LANG. CZECH ENGL.  Selection of language in LANG. instrument menu - selection of language version of the = ENGL. instrument menu Language selection - ENGLISH > LANG. = ENGL. Example CZECH ENGL. PAS. LI.  PAS.
  • Page 39 light light SETTING instrument type SW number SW version setting the input type IDENT. MAP 4000 Instrument SW version - if SW version contains a letter in first IDENT. position, then it is a customer SW - after the identification is completed the - the display shows the type of instrument menu is automatically exited and the indication, SW number, SW version and...
  • Page 40 profi profi SETTING Setting “PROFI” PROFI Complete programming menu • contains complete instrument menu and is protected by optional number code • designed for expert users • preset from manufacture is menu LIGHT • For expert users • Complete instrument menu •...
  • Page 41 profi profi SETTING INSTRUCTIONS FOR USE MAP 4000...
  • Page 42 profi profi SETTING Setting “PROFI” - INPUT The primary instrument parameters are set in this menu INPUTS CLEAR   Resetting internal CLEAR CHANNE. CONFIG. values OUTPUT.   Selection of measuring CONFIG. range and parameters SERVIC. EXT. IN.   Setting date and time for KEYS option with RTC  ...
  • Page 43 profi profi SETTING Selection of measuring rate 6.1.2a Selection of measuring READ. / S rate INPUTS CLEAR READ. / S 40. 0   40,0 measurements/s 40. 0 CHANNE. CONFIG. TYPE 20. 0   20,0 measurements/s 20. 0 OUTPUT. MODE 10. 0 SERVIC.
  • Page 44 profi profi SETTING Programming sche 142. 8 PASSW. Access password INPUTS CHANNE. CLEAR CHAN. A SET. A MIN A CL. TAR.  CL. MM  CL. MEM. MAX A CONFIG READ. / S 0. 1  0. 2    20. 0  40. 0 P.
  • Page 45 profi profi SETTING eme PROFI MENU OUTPUT. SERVIC. MEMORY REWRIT. MENU NO  YES LIGHT  PROFI 00. 0 0. 0 0 START RESTOR. RE. CAL. STOP 00. 0 0. 0 0 PERIOD 00. 0 0. 0 0 RE. SET. TYPE TRIGER USER...
  • Page 46 profi profi SETTING Selection of measuring range 6.1.2c Selection of instrument MODE measuring range INPUTS CLEAR READ. / S 60mV 100 R Menu Measuring range CHANNE. CONFIG. TYPE 150mV 60 mV ±60 mV 150 mV ±150 mV OUTPUT. MODE 300mV 10 k 300 mV ±300 mV...
  • Page 47 profi profi SETTING Selection of type of sensor connection RTD OHM 6.1.2d Selection of type of CONECT. sensor connection INPUTS CLEAR READ. / S 2-WIRE RTD OHM CHANNE. CONFIG. TYPE 3-WIRE   2-wire connection 2-WIRE OUTPUT. MODE 4-WIRE   3-wire connection 3-WIRE SERVIC.
  • Page 48 profi profi SETTING Setting temperature of cold junction 6.1.2e Setting temperature of C. J . TEM. cold junction INPUTS CLEAR READ. / S - range 0…99°C with compensation box CHANNE. CONFIG. TYPE = 23°C OUTPUT. MODE SERVIC. EXT. IN. CONECT. KEYS C.
  • Page 49: Setting The Real Time

    profi profi SETTING Setting the real time clock 6.1.3 Setting the real time clock (RTC) INPUTS CLEAR TIME   Time setting TIME CHANNE. CONFIG. DATE - format 23.59.59 OUTPUT. SERVIC. EXT. IN.   Date setting DATE KEYS - format DD.MM.YY External input function selection 6.1.4a External input function...
  • Page 50: Optional Accessory Functions Of The Keys

    profi profi SETTING Selection of function “HOLD” 6.1.4b Selection of function M. HOLD “HOLD” INPUTS CLEAR EXT. 1 DISPL.   “HOLD” locks only the DISPL. CHANNE. CONFIG. EXT. 2 DIS. + AO. value displayed   “HOLD” locks the value DIS. + AO. OUTPUT.
  • Page 51 profi profi SETTING Optional accessory functions of the keys - Temporary projection 6.1.5b Temporary projection of TMP. LE. selected item INPUTS CLEAR LEFT FN. LE. - “Temporary” projection of selected value is displayed for the time of keystroke CHANNE. CONFIG. DOWN TMP.
  • Page 52 profi profi SETTING Optional accessory functions of the keys - Direct access to item 6.1.5c Assigning access to MNU. LE. selected menu item INPUTS CLEAR LEFT FN. LE. LIM 1   Direct access to item LIM 1 CHANNE. CONFIG. DOWN MNU.
  • Page 53 profi profi SETTING INSTRUCTIONS FOR USE MAP 4000...
  • Page 54 profi profi SETTING Setting “PROFI” - CHANNELS The primary instrument parameters are set in this menu   INPUTS CHAN. A Setting parameters of CHAN. A measuring “Channel” CHANNE. MAT. FN.   Setting parameters of MAT. FN. mathematic functions OUTPUT. MIN. M AX  ...
  • Page 55 profi profi SETTING Digital filters 6.2.1c Selection of digital MOD. F. A filters INPUTS CHAN. A SET. A MOD. F. A - at times it is useful for better user projection of data on display to modify it CHANNE. MAT. FN. FILTER CON.
  • Page 56 profi profi SETTING Projection format - positioning of decimal point 6.2.1d Selection of decimal FORM. A point INPUTS CHAN. A SET. A 000000 - the instrument allows for classic projection of a number with positioning of the DP CHANNE. MAT. FN. FILTER 00000.
  • Page 57 profi profi SETTING Selection of storing data into instrument memory 6.2.1f Selection of storing data SAVE. A into instrument memory INPUTS CHAN. A SET. A SAVE A - by selection in this item you allow to register values into instrument memory CHANNE.
  • Page 58: Setting Mathematic Functions

    profi profi SETTING Mathematic functions 6.2.2a Selection of mathematic MATH. F. functions INPUTS CHAN. A MATH. F.   Mathematic functions CHANNE. MAT. FN. CON. A POLIN. are off   Polynome POLIN OUTPUT. MIN. M AX CON. B 1/MUL.   ...
  • Page 59 profi profi SETTING Mathematic functions - decimal point 6.2.2b Selection of decimal FORM. M. point INPUTS CHAN. A MATH. F. 000000 - the instrument allows for classic projection of a number with positioning of the DP CHANNE. MAT. FN. CON. A 00000.
  • Page 60 profi profi SETTING Mathematic functions - selection of storing data into instrument memory 6.2.2d Selection of storing data SAVE. M into instrument memory INPUTS CHAN. A MATH. F. SAVE M - by selection in this item you allow to register values into instrument memory CHANNE.
  • Page 61 profi profi SETTING INSTRUCTIONS FOR USE MAP 4000...
  • Page 62 profi profi SETTING Setting „PROFI“ - OUTPUTS In this menu it is possible to set parame ters of the instrument output signals INPUTS MEMORY   Setting data logging into MEMORY memory CHANNE. LIMITS   Setting type and LIMITS OUTPUT. DATA parameters of limits  ...
  • Page 63 profi profi SETTING Setting data logging into instrument memory - RTC 6.3.1b   Start of data logging into START instrument memory - time format HH.MM.SS INPUTS MEMORY REWRIT.   Stop data logging into STOP CHANNE. LIMITS START instrument memory OUTPUT. DATA STOP - time format HH.MM.SS...
  • Page 64 profi profi SETTING z - delay “TIM. L.” Dose limit: MODE L. > “DOSE” axis x > “P” Period Switch-on relay TYPE > SWITCH-ON LED signalization Switch-off relay TYPE > SWITCH-OFF LED signalization Window limit: MODE L. > “FROM . .” axis x >...
  • Page 65 profi profi SETTING Selection of input for limits evaluation 6.3.2a Selection evaluation INP. L. 1 of limits INPUTS MEMORY LIM 1 INP. L. 1 - selection of value from which the limit will be evaluated CHANNE. LIMITS LIM 2 MOD. L. 1 CHAN.
  • Page 66: Setting Limits

    profi profi SETTING Selection of type of output 6.3.2c Selection of type of TYP. L. 1 output INPUTS MEMORY LIM 1 INP. L. 1 CLOSE.   Output switches on when CLOSE. CHANNE. LIMITS LIM 2 MOD. L. 1 OPEN condition is met  ...
  • Page 67 profi profi SETTING Selection of data output baud rate 6.3.3a Selection of data output BAUD baud rate INPUTS MEMORY BAUD   Rate - 600 Baud CHANNE. LIMITS ADDR. 1200   Rate - 1 200 Baud 1200 OUTPUT. DATA AD. - MOD. 2400 SERVIC.
  • Page 68 profi profi SETTING Selection of data output protocol 6.3.3c Selection of the type of PROT. analog output INPUTS MEMORY BAUD ASCII   Data protocol ASCII CHANNE. LIMITS ADDR. M. B US ASCII   Data protocol M. BUS OUTPUT. DATA AD. - MOD. MODBUS DIN MessBus SERVIC.
  • Page 69 profi profi SETTING Selection of the type of analog output 6.3.4b Selection of the type of TYP. AO. analog output INPUTS MEMORY INP. AO. 0-20mA   Type - 0…20 mA 0-20mA CHANNE. LIMITS TYP. A. O . E 4-20   Type - 4…20 mA E 4-20 OUTPUT.
  • Page 70 profi profi SETTING Selection of input for display projection 6.3.5a Selection display PERM. projection INPUTS MEMORY PERM. CHAN. A - selection of value which will be shown on the instrument display CHANNE. LIMITS BRIGHT FIL. A   Projection of values CHAN.
  • Page 71 profi profi SETTING INSTRUCTIONS FOR USE MAP 4000...
  • Page 72 profi profi SETTING Setting “PROFI” - SERVIS The instrument service functions are set in this menu INPUTS MENU   Selection of menu type RESTOR. MENU CHANNE. LIGHT/PROFI CALIB. OUTPUT.   Restore instrument RESTOR. manufacture setting and LANG. SERVIC. calibration N. PASS.  ...
  • Page 73 profi profi SETTING Restoration of manufacture setting 6.4.2 Restoration of RESTOR. manufacture setting INPUTS MENU RE. CAL. - in the event of error setting or calibration, CHANNE. RESTOR. RE. SET. manufacture setting may be restored. OUTPUT. CALIB. SAVE   Restoration of RE.
  • Page 74: Selection Of Instrument Menu Language Version

    profi profi SETTING Calibration - Input range 6.4.3 Input range CALIB. calibration INPUTS MENU C. MIN - when “C. MIN” is displayed, move the CHANNE. RESTOR. C. MAX potentiometer traveller to the required minimum position and confirm by „Enter“, OUTPUT. CALIB.
  • Page 75: Instrument Identification

    profi profi SETTING Instrument identification 6.4.6 Projection of instrument IDENT. SW version INPUTS MENU MAP 4000 78-302 - display shows type identification of the instrument, SW number, SW version CHANNE. RESTOR. and current input setting (Mode) OUTPUT. CALIB. - if the SW version reads a letter on first position, it is a customer SW SERVIC.
  • Page 76: Setting Items Into "User" Menu

    user user SETTING Setting items into “USER” menu • USER menu is designed for users who need to change only several items of the setting without the option to change the primary instrument setting (e.g. repeated change of limit setting) •...
  • Page 77 user user SETTING Setting sequence of items in “USER” menu In compiling USER menu from active LIGHT menu the items (max. 10) may be assigned a sequence, in which they will be projected in the menu setting projection sequence Example: Into USER menu were selected these items (keys >...
  • Page 78 METHOD OF MEASURING THE CJC Instrument with input for temperature measurement with thermocouple allows to set two types of measurement of cold junction. Measuring thermocouple OM xxx T/C Reference thermocouple WITH REFERENCE THERMOCOUPLE – a reference thermocouple may be located in the same place as the measuring instrument or in place with stable tempera- ture/compensation box CONECT.
  • Page 79 INSTRUCTIONS FOR USE MAP 4000...
  • Page 80: Data Protocol

    DATA PROTOCOL The instruments communicate via serial line RS232 or RS485. For communication they use the ASCII protocol. Communica- tion runs in the following format: ASCII: 8 bit, no parity, one stop bit DIN MessBus: 7 bit, even parity, one stop bit The transfer rate is adjustable in the instrument menu.
  • Page 81: Error Statements

    DATA PROTOCOL LEGEND RELAY, TARE Command beginning Change Sign Relay 1 Relay 2 Tare relay 3/4 Two characters of instrument address 0…31 (sent in ASCII - tens and units, e.g. “01“, “99“ universal <CR> Carriage return <SP> Space N, P Number and command - command code Data - usually characters “0“…“9“, “-“, “.“;...
  • Page 82 ERROR STATEMENTS ERROR CAUSE ELIMINATION E. D. Un. Number is too small (large negative) to be change DP setting, channel constant setting displayed E. D. Ov. Number is too large to be displayed change DP setting, channel constant setting E. T. Un. . Number is outside the table range increase table values, change input setting (cha- nnel constant setting)
  • Page 83 TABLE OF SIGNS The instrument allows to add two descriptive characters to the classic numeric formats (at the expense of the number of dis- played places). The setting is performed by means of a shifted ASCII code. Upon modification the first two places display the entered characters and the last two places the code of the relevant symbol from 0 to 95.
  • Page 84: Technical Data

    TECHNICAL DATA INPUT Voltage of lin. pot. 2,5 VDC/6 mA range is adjustbale min. potentiometer resistance is 500 Ohm ±60 mV >100 MOhm Input U ±150 mV >100 MOhm Input U PROJECTION ±300 mV >100 MOhm Input U ±1200 mV >100 MOhm Input U Display:...
  • Page 85 TECHNICAL DATA DATA OUTPUTS POWER SUPPLY Protocols: ASCII, DIN MessBus, MODBUS, PROBUS Options: 10…30 V AC/DC, 10 VA, isolated, Data format: 8 bit + no parity + 1 stop bit (ASCII) - fuse inside (T 4000 mA) 7 bit + even parity + 1 stop bit (MessBus) 80…250 V AC/DC, 10 VA, isolated Rate: 600…230 400 Baud...
  • Page 86 INSTR. DIMENSIONS AND INSTALLATION Front view Panel cut 96 mm 90,5 mm Side view 119 mm 13,5 mm Panel thickness: 0,5...20 mm Instrument installation 1. insert the instrument into the panel cut-out 2. fit both travellers on the box 3. press the travellers close to the panel Instrument disassembly 1.
  • Page 87: Certificate Of Guarantee

    CERTIFICATE OF GUARANTEE MAP 4000 Product Type ....Manufacturing No..... Date of sale .
  • Page 88 TECHDOK - MAP 4000 - 2012 - 2v6 - en - NOVO - V INSTRUCTIONS FOR USE MAP 4000...

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