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BMXART0414

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BMXART0414
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analog input module X80 - 4 inputs - temperature

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  • Main
    range of product
    Modicon X80
    product or component type
    Analog input module
    electrical connection
    40 ways 1 connector
    Isolation between channels
    Isolated
    input level
    Low level
    analogue input number
    4
    analogue input type
    Voltage +/- 1.28 V
    Voltage +/- 160 mV
    Voltage +/- 320 mV
    Voltage +/- 40 mV
    Voltage +/- 640 mV
    Voltage +/- 80 mV
    Resistor 400 Ohm 2 wires
    Resistor 400 Ohm 3 wires
    Resistor 400 Ohm 4 wires
    Resistor 4000 Ohm 2 wires
    Resistor 4000 Ohm 3 wires
    Resistor 4000 Ohm 4 wires
    Temperature probe -100...+260 °C Cu 10
    Temperature probe -100...+450 °C Pt 100 conforming to UL/JIS
    Temperature probe -100...+450 °C Pt 1000 conforming to UL/JIS
    Temperature probe -200...+850 °C Pt 100 conforming to IEC
    Temperature probe -200...+850 °C Pt 1000 conforming to IEC
    Temperature probe -60...+180 °C Ni 100
    Temperature probe -60...+180 °C Ni 1000
    Thermocouple +130...+1820 °C thermocouple B
    Thermocouple +270...+1300 °C thermocouple N
    Thermocouple -200...+600 °C thermocouple U
    Thermocouple -200...+760 °C thermocouple J
    Thermocouple -200...+900 °C thermocouple L
    Thermocouple -270...+1000 °C thermocouple E
    Thermocouple -270...+1370 °C thermocouple K
    Thermocouple -270...+400 °C thermocouple T
    Thermocouple -50...+1769 °C thermocouple R
    Thermocouple -50...+1769 °C thermocouple S
    Complementary
    analog/digital conversion
    Sigma delta 16 bits
    analogue input resolution
    15 bits + sign
    input impedance
    10 MOhm
    permitted overload on inputs
    +/- 7.5 V +/- 1.28 V
    +/- 7.5 V +/- 160 mV
    +/- 7.5 V +/- 320 mV
    +/- 7.5 V +/- 40 mV
    +/- 7.5 V +/- 640 mV
    +/- 7.5 V +/- 80 mV
    common mode rejection
    120 dB 50/60 Hz
    differential mode rejection
    60 dB 50/60 Hz
    cold junction compensation
    External by Pt100 probe
    type of filter
    First order digital filtering
    nominal read cycle time
    400 ms with temperature probe
    200 ms with thermocouple
    measurement error
    +/- 0.7 °C Ni 1000 25 °C
    +/- 1.3 °C Ni 1000 0...60 °C
    +/- 2 °C Pt 100 0...60 °C
    +/- 2 °C Pt 1000 0...60 °C
    +/- 2.1 °C Ni 100 25 °C
    +/- 2.1 °C Pt 100 25 °C
    +/- 2.1 °C Pt 1000 25 °C
    +/- 2.7 °C thermocouple U 25 °C
    +/- 2.8 °C thermocouple J 25 °C
    +/- 3 °C Ni 100 0...60 °C
    +/- 3 °C thermocouple L 25 °C
    +/- 3.2 °C thermocouple R 25 °C
    +/- 3.2 °C thermocouple S 25 °C
    +/- 3.5 °C thermocouple B 25 °C
    +/- 3.7 °C thermocouple E 25 °C
    +/- 3.7 °C thermocouple K 25 °C
    +/- 3.7 °C thermocouple N 25 °C
    +/- 3.7 °C thermocouple T 25 °C
    +/- 4 °C Cu 10 0...60 °C
    +/- 4 °C Cu 10 25 °C
    +/- 4.5 °C thermocouple J 0...60 °C
    +/- 4.5 °C thermocouple L 0...60 °C
    +/- 4.5 °C thermocouple R 0...60 °C
    +/- 4.5 °C thermocouple S 0...60 °C
    +/- 4.5 °C thermocouple U 0...60 °C
    +/- 5 °C thermocouple B 0...60 °C
    +/- 5 °C thermocouple E 0...60 °C
    +/- 5 °C thermocouple K 0...60 °C
    +/- 5 °C thermocouple N 0...60 °C
    +/- 5 °C thermocouple T 0...60 °C
    <= 0.15 % of full scale +/- 1.28 V 0...60 °C
    <= 0.15 % of full scale +/- 160 mV 0...60 °C
    <= 0.15 % of full scale +/- 320 mV 0...60 °C
    <= 0.15 % of full scale +/- 40 mV 0...60 °C
    <= 0.15 % of full scale +/- 640 mV 0...60 °C
    <= 0.15 % of full scale +/- 80 mV 0...60 °C
    <= 0.2 % of full scale 400 Ohm 0...60 °C
    <= 0.2 % of full scale 4000 Ohm 0...60 °C
    0.05 % of full scale +/- 1.28 V 25 °C
    0.05 % of full scale +/- 160 mV 25 °C
    0.05 % of full scale +/- 320 mV 25 °C
    0.05 % of full scale +/- 40 mV 25 °C
    0.05 % of full scale +/- 640 mV 25 °C
    0.05 % of full scale +/- 80 mV 25 °C
    0.12 % of full scale 400 Ohm 25 °C
    0.12 % of full scale 4000 Ohm 25 °C
    temperature drift
    25 ppm/°C 400 Ohm
    25 ppm/°C 4000 Ohm
    25 ppm/°C Ni 1000
    25 ppm/°C thermocouple B
    25 ppm/°C thermocouple E
    25 ppm/°C thermocouple J
    25 ppm/°C thermocouple K
    25 ppm/°C thermocouple L
    25 ppm/°C thermocouple N
    25 ppm/°C thermocouple R
    25 ppm/°C thermocouple S
    25 ppm/°C thermocouple T
    25 ppm/°C thermocouple U
    30 ppm/°C +/- 1.28 V
    30 ppm/°C +/- 160 mV
    30 ppm/°C +/- 320 mV
    30 ppm/°C +/- 40 mV
    30 ppm/°C +/- 640 mV
    30 ppm/°C +/- 80 mV
    30 ppm/°C Cu 10
    30 ppm/°C Ni 100
    30 ppm/°C Pt 100
    30 ppm/°C Pt 1000
    recalibration
    Internal
    isolation voltage
    1400 V DC between channels and bus
    750 V DC between channels
    750 V DC between channels and ground
    detection type
    Open circuit Cu 10
    Open circuit Ni 100
    Open circuit Ni 1000
    Open circuit Pt 100
    Open circuit Pt 1000
    Open circuit thermocouple B
    Open circuit thermocouple E
    Open circuit thermocouple J
    Open circuit thermocouple K
    Open circuit thermocouple L
    Open circuit thermocouple N
    Open circuit thermocouple R
    Open circuit thermocouple S
    Open circuit thermocouple T
    Open circuit thermocouple U
    maximum wiring resistance
    20 Ohm 2 wires Cu 10
    20 Ohm 2 wires Ni 100
    20 Ohm 2 wires Pt 100
    20 Ohm 3 wires Cu 10
    20 Ohm 3 wires Ni 100
    20 Ohm 3 wires Pt 100
    200 Ohm 2 wires Ni 1000
    200 Ohm 2 wires Pt 1000
    200 Ohm 3 wires Ni 1000
    200 Ohm 3 wires Pt 1000
    50 Ohm 4 wires Cu 10
    50 Ohm 4 wires Ni 100
    50 Ohm 4 wires Pt 100
    500 Ohm 4 wires Ni 1000
    500 Ohm 4 wires Pt 1000
    measurement resolution
    0.1 °C Cu 10
    0.1 °C Ni 100
    0.1 °C Ni 1000
    0.1 °C Pt 100
    0.1 °C Pt 1000
    0.1 °C thermocouple B
    0.1 °C thermocouple E
    0.1 °C thermocouple J
    0.1 °C thermocouple K
    0.1 °C thermocouple L
    0.1 °C thermocouple N
    0.1 °C thermocouple R
    0.1 °C thermocouple S
    0.1 °C thermocouple T
    0.1 °C thermocouple U
    1280/2exp14 mV +/- 1.28 V
    160/2exp14 mV +/- 160 mV
    320/2exp14 mV +/- 320 mV
    40/2exp14 mV +/- 40 mV
    40/2exp14 mV 400 Ohm
    4000/2exp14 mV 4000 Ohm
    640/2exp14 mV +/- 640 mV
    80/2exp14 mV +/- 80 mV
    maximum conversion value
    +/- 100 % 400 Ohm
    +/- 100 % 4000 Ohm
    +/- 102.5 % +/- 1.28 V
    +/- 102.5 % +/- 160 mV
    +/- 102.5 % +/- 320 mV
    +/- 102.5 % +/- 40 mV
    +/- 102.5 % +/- 640 mV
    +/- 102.5 % +/- 80 mV
    protective treatment
    TC
    operating altitude
    0...2000 m
    2000...5000 m with derating factor
    status LED
    1 LED (green)RUN:
    1 LED per channel (green)channel diagnostic:
    1 LED (red)ERR:
    1 LED (red)I/O:
    net weight
    0.135 kg
    current consumption
    150 mA at 3.3 V DC
    40 mA at 24 V DC
    Environment
    vibration resistance
    3 gn
    shock resistance
    30 gn
    ambient air temperature for storage
    -40…85 °C
    ambient air temperature for operation
    0…60 °C
    relative humidity
    5…95 % at 55 °C without condensation
    IP degree of protection
    IP20
    directives
    2014/35/EU - low voltage directive
    2014/30/EU - electromagnetic compatibility
    2012/19/EU - WEEE directive
    product certifications
    EAC
    RCM
    UL
    Merchant Navy
    CSA
    CE
    standards
    EN 61131-2
    EN 61000-6-4
    EN 61000-6-2
    EN 61010-2-201
    Offer Sustainability
    Sustainable offer status
    Green Premium product
    REACh Regulation
    EU RoHS Directive
    Pro-active compliance (Product out of EU RoHS legal scope)
    EU RoHS Declaration
    Mercury free
    Yes
    RoHS exemption information
    China RoHS Regulation
    Environmental Disclosure
    Circularity Profile
    WEEE
    The product must be disposed on European Union markets following specific waste collection and never end up in rubbish bins
    Contractual warranty
    Warranty
    18 months
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    Modicon M580, Hardware Reference Manual (Version 10)
    Description
    This document provides detailed information about the M580 programmable automation controller (PAC), power supplies, and racks. These topics are also discussed:- Install a local rack in the M580 system.- Configure the M580 CPU.- The CPU performs Ethernet I/O scanning of both RIO and DIO logic without affecting network determinism.
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    Date 10/1/19
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    Modicon M580, Safety Manual (Version 05)
    Description
    This Safety Manual describes the modules of the M580 safety system with special regard as to how they meet the Safety requirements of the IEC 61508 standard. It provides detailed information on how to install, run, and maintain the system correctly in order to protect human beings as well as to prevent damage to environment, equipment, and production.
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    This Safety Manual describes the modules of the M580 safety system with special regard as to how they meet the Safety requirements of the IEC 61508 standard. It provides detailed information on how to install, run, and maintain the system correctly in order to protect human beings as well as to prevent damage to environment, equipment, and production.
    Modicon M580, Safety System Planning Guide (Version 05)
    Description
    This Safety System Planning Guide describes the modules of the M580 Safety system with special regard to how they meet the Safety requirements of the IEC 61508. It provides detailed information on how to install, run, and maintain the system correctly in order to help protect human beings as well as to help prevent damage to environment, equipment, and production.
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    This Safety System Planning Guide describes the modules of the M580 Safety system with special regard to how they meet the Safety requirements of the IEC 61508. It provides detailed information on how to install, run, and maintain the system correctly in order to help protect human beings as well as to help prevent damage to environment, equipment, and production.
    Modicon X80 - Analog input/output modules, User manual (Version 16)
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    This manual describes the hardware and software implementation of Modicon X80 analog modules.
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    Date 12/1/18
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    This manual describes the hardware and software implementation of Modicon X80 analog modules.
    Modicon X80 - Racks and Power Supplies, Hardware Reference Manual (Version 03)
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    This document provides detailed information about the Modicon X80 racks and power supplies used for M340 station, M580 system, and X80 drops.
    prp.document.label.format pdf
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    Date 12/1/18
    Description
    This document provides detailed information about the Modicon X80 racks and power supplies used for M340 station, M580 system, and X80 drops.
    Modicon M580 Standalone System Planning Guide for Frequently Used Architectures (Version 09)
    Description
    This document presents one of the PlantStruxure features, using Ethernet as the backbone around the Modicon M580 offer and connecting an M580 local rack and M580 RIO drops. This guide provides detailed information about planning frequently used M580 architectures, including the following: - Ethernet I/O networks (RIO and distributed equipment integrated on the same physical network) - topology rules and recommendations for choosing a network configuration - role of network option switch modules - system commissioning and maintenance - system performance and limitations - system diagnostics
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    Date 12/1/18
    Description
    This document presents one of the PlantStruxure features, using Ethernet as the backbone around the Modicon M580 offer and connecting an M580 local rack and M580 RIO drops. This guide provides detailed information about planning frequently used M580 architectures, including the following: - Ethernet I/O networks (RIO and distributed equipment integrated on the same physical network) - topology rules and recommendations for choosing a network configuration - role of network option switch modules - system commissioning and maintenance - system performance and limitations - system diagnostics
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    This guide provides information about the Change Configuration on the Fly (CCOTF) feature in a M580 system, using Control Expert software.
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    This guide provides information about the Change Configuration on the Fly (CCOTF) feature in a M580 system, using Control Expert software.
    Modicon M580 - RIO Modules, Installation and Configuration Guide (Version 09)
    Description
    This document describes the adapter modules that can be used in X80 RIO drops. This guide describes 3 adapter modules: - BMECRA31210 - BMXCRA31210 - BMXCRA31200
    prp.document.label.format pdf
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    This document describes the adapter modules that can be used in X80 RIO drops. This guide describes 3 adapter modules: - BMECRA31210 - BMXCRA31210 - BMXCRA31200
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    BMXART0414 : analog input module X80 - 4 inputs - temperature
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  • Technical FAQs

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  • Dimensions Drawings

    Modules Mounted on Racks
    Dimensions


    (1)
    With removable terminal block (cage, screw or spring).
    (2)
    With FCN connector.
    (3)
    On AM1 ED rail: 35 mm wide, 15 mm deep. Only possible with BMXXBP0400/0400H/0600/0600H/0800/0800H rack.

    Rack references

    a in mm

    a in in.

    BMXXBP0400 and BMXXBP0400H

    242.4

    09.54

    BMXXBP0600 and BMXXBP0600H

    307.6

    12.11

    BMXXBP0800 and BMXXBP0800H

    372.8

    14.68

    BMXXBP1200 and BMXXBP1200H

    503.2

    19.81


  • Connections and Schema

    Wiring Diagram

    Below example shows a probe configuration with:

    • Channel 0/4: Thermocouple

    • Channel 1/5: 2-wires RTD

    • Channel 2/6: 3-wires RTD

    • Channel 3/7: 4-wires RTD


    MS+
    Thermocouple + input
    MS-
    Thermocouple - input
    EX+
    RTD probe current generator + output
    EX-
    RTD probe current generator - output
    NC
    Not connected
    DtC
    The CJC sensor detection input is connected to CJ+ if the sensor type is DS600. It is not connected (NC) if the sensor type is LM31.

    NOTE: The CJC sensor is needed for TC only.