Power Engineering 
K-JIANG
NameDescriptionContent
Current Location:

Eaton MTL838C-MBF MTL fieldbus networks

From:Eaton | author:Mr.Chen | Time :2026-03-30 | 34 view: | 🔊 Click to read aloud ❚❚ | Share:

The analog-input multiplexer system

The MTL838C is an analog multiplexer receiver that is used with the MTL831C

hazardous area millivolt input multiplexer transmitter. The status of up to 32 analog

inputs may be communicated from the hazardous area to the safe area via a data

highway, comprised of a simple twisted pair - over distances up to 2km.

Each data highway must be protected by an MTL5553/5053 digital isolator when

the inputs are located in a Zone 0 or 1 hazardous area.  The MTL831C is typically

used with thermocouple and RTD inputs and is intrinsically safe.  It can be mounted

in a Zone 0 or 1 hazardous area and will accept 16 inputs.  For systems that do not

require Zone 0 or Zone 1 installation, the MTL5553/5053 can be eliminated.

Up to two MTL831C transmitters can be combined on a single MTL838C receiver

input - up to a total of 32 analog inputs - as shown in Figure 1.

The MTL838C acts as a Modbus slave . It may be connected into any standard

Modbus network, with up to 31 MTL838C slaves on each network.  If each unit has

its full complement of 32 analog inputs, the status of a total of 992 analog inputs

may be passed to a Modbus master using a single RS485 network.

Configuring the MTL838C

The MTL838C must first be configured using software on a PC and the USB

connection.  This configures things such as the slave address and communication

parameters.  After the initial configuration, the MTL838C is ready to communicate

with the Modbus host.  At this point, the remaining configuration may be done in

one of two ways:

• on-line via the Modbus link, direct from the host

• off-line using the PC software and USB connection

Using the PC software is required for initial configuration and recommended for

first time configuration of the measuring channels

On-line Configuration

Configuring the unit via the Modbus master and the network might seem to be the

simplest method at first sight, but there are a number of practical difficulties with this

configuration technique.  This approach means that the user must deal with a number

of complex aspects which require a significant investment of the configurer’s time

before they are understood fully.  A further difficulty may be a lack of the necessary

memory space within the Modbus master.  If the configuration is likely to be changed

frequently it could even be necessary for the system designer to design specific ‘user

interface’ screens, such as those used by the PC software, to allow changes to be

made by operators.  This would be a time consuming and costly task.

For most users, the attraction of being able to use the Modbus master to configure the

unit is that the configuration can be re-sent if the slave’s memory becomes corrupted.

Whilst this is true, it is not possible to avoid the difficulties (and costs) outlined earlier

and the decision to adopt a strategy of configuring via the Modbus master should be

arrived at only after due consideration.

A cost effective compromise would be to perform the initial configuration via the PC

software, and then read the configuration parameters stored in the MTL838C via the

host.  The stored parameters could then be re-written to the MTL838C should the

configuration database ever become corrupt.

If a user intends to adopt the on-line configuration method, the calculation of

configuration parameters for storage in the master can be simplified, and the

possibility of ‘human error’ reduced, by using the PC software to input the required

data and data format, and then reading the stored values (encoded correctly in the

required data format) back from the MTL838C via Modbus.  The user should still realize

that any subsequent alterations of the parameters will require further use of the PC

software.

Off-line Configuration

Off-line configuration requires the use of the PC software briefly described below.

Once configured, the configuration parameters are stored in non-volatile memory

within the MTL838C.

The PC software

By far the simplest method of configuring the MTL838C is using the PC software.  This

software has been specifically designed to perform all of the complex calculations that

  • 4000094-310 | Triconex | External Output Cable Aassembly
  • TRICONEX AO3482 | Analog Output Safety Module
  • TRICONEX AT-2701FX 843-000844-00 REVD Ethernet Fiber Optic Network Interface Card
  • TRICONEX D28799-005 Power Interface Module
  • Triconex DI3361 Digital Input Module Brand
  • Triconex AI2361 7400210-020 Analog Input Card Module
  • Triconex AI3351 Analog Input Card Module
  • Triconex 4351A TCM Communication Module
  • TRICONEX RO3451 Digital Input Module Brand
  • TRICONEX 4000093-320 communication module
  • TRICONEX 2071H 7400313-100 Data Acquisition Module
  • TRICONEX T8800C PD8800 PCB130100 RISC Processor
  • TRICONEX 4000093-316 communication module
  • TRICONEX 4000094-313 communication module
  • TRICONEX 4000093-306 communication module
  • TRICONEX 4000103-513 communication module
  • TRICONEX 4000093-145 communication module
  • Triconex 4000066-025 9000011-000 I/O Communication Bus Cable
  • Triconex 4000056-025 I/O Communication Bus Cable
  • TRICONEX 4000093-110N Main Processor Module
  • Triconex 4352AN Tricon Communication Module
  • Triconex T8830 Control Module
  • Triconex 3008N Control Module
  • TRICONEX TCM 4355X Control Module
  • Triconex MP3009X/TCM 4355X Industrial Control Module
  • TRICONEX PLM 3900N Safety Redundant I/O Module
  • TRICONEX DI 3506X Digital Input Interface Board
  • TRICONEX IMSS 4701X I/O bus interface module
  • TRICONEX 7400212-100 Safety I/O Module
  • TRICONEX 2000418 Three-Channel Redundancy Module
  • TRICONEX 2000417 Three-Channel Redundancy Module
  • TRICONEX 3625C1 | Digital Output Module
  • TRICONEX TM11-5L-88 Industrial Control Module
  • TRICONEX 09031647921 | TMR Digital Output Module
  • TRICONEX JWA600-24 Digital Input Module
  • TRICONEX 9753-1 Redundant I/O Module
  • TRICONEX FTA-554 Process Control Module
  • TRICONEX 9853-610 Analog Output Module
  • 9662-1 TRICONEX terminal block
  • TRICONEX 2290614 Analog module
  • 3625A | Triconex | Digital 24VDC Output Module
  • T8850C | ICS Triplex Expander Interface Module
  • TRICONEX 8311N Power Module
  • TRICONEX 3708EN High-Precision Redundant Analog Input Module
  • TRICONEX 8609-396-7113755 Triple Modular Redundancy
  • TRICONEX 0905-148-6921 16-Channel Digital I/O Module
  • TRICONEX 0903-164-7921 16-Channel Digital I/O Module
  • TRICONEX 0923-141-6957 Triple Modular Redundancy
  • Triconex 8110 High Density Main Chassis
  • TRICONEX PM6301A analog output module
  • GE Converteam P111-6052 Advanced Micro Controller
  • AI6700 - Triconex Analog Input Module
  • TRICONEX ICM6211 Industrial Control Module
  • DI6503 TRICONEX Digital Input Module
  • TRICONEX 1600071-001 Terminal Board
  • 9662-910 | TRICONEX | Digital Input Terminal Panel
  • 9661-610 | TRICONEX | Digital Input Terminal Panel
  • Triconex 7400206-100 CM2201 Communication Module
  • Triconex 4000056-002 I/O Communication Bus Cable
  • TRICONEX 7400213-100 Digital signal Hardware execution unit
  • TRICONEX | HCU3700/3703E | Isolated Analog Input suppliers
  • Triconex 7400209-010 AO2481 Analog Output Module
  • TRICONEX 3005 Pulse Input Terminal Board
  • TRICONEX 3002 Pulse Input Terminal Board
  • QY68A - I-O Units (Mitsubishi Electric) - Mitsubishi Electric
  • QH42P | Mitsubishi Electric | I/O Combined Module
  • Mitsubishi Q Series Cc-Link Ie Qj71gp21s-Sx PLC Controller
  • Mitsubishi Electric QJ61BT11 Sequencer (MELSEC-Q) CC-Link system master local unit
  • Q68DAIN - Mitsubishi Analog Input Module
  • QJ71C24N-R2 | Mitsubishi Electric | Interface Module
  • Digital Input Module Mitsubishi RX10-TS
  • Mitsubishi PLC CPU Module Q Series Q13UDEHCPU
  • Mitsubishi Q12HCPU Series CPU Module
  • Mitsubishi Electric Q02HCPU Q Series High Speed Q CPU Module
  • Mitsubishi NP1S-22 POWER SUPPLY MODULE
  • Q61P-A1 Power Supply Systems by MITSUBISHI
  • Q63P Mitsubishi Electric | Mitsubishi Electric Q63 Series PLC Power Supply
  • Q64P Power Supply Systems by MITSUBISH
  • Q61P-A2 MITSUBISHI Power Supply PLC
  • Melsec-q Series Mitsubishi Q61P Power Supply PLC
  • Q38B - Mitsubishi Base Rack at Rs 12000
  • Q63B MITSUBISHI Extension base unit
  • MITSUBISHI MELSEC-Q Q35B BASE UNIT MODULE
  • Mitsubishi Melsec A Series PLC AY11A Relay Output Module Card Unit Programmable Logic Controller
  • Mitsubishi FX1S-20MT-D | David E. Spence, Inc., DBA PLC Products Group
  • Mitsubishi PLC Module FX1S-14MR-D/FX1S-14MT-D
  • Mitsubishi Melsec Fx1N-40Mt-001 Programmable Logic Controller Module Plc
  • Mitsubishi FX1N-24MR Programmable Controller
  • MITSUBISHI Electric Corporation QM100HY-H Transistor Module
  • MITSUBISHI Electric Corporation QM100DY-H Transistor Module
  • Mitsubishi BN624A96IG52A Intelligent Function Module
  • Mitsubishi BN624A960H03B Intelligent Function Module
  • MITSUBISHI ELECTRIC 60DAH4 High-speed Analog output Modules
  • MITSUBISHI ELECTRIC 60ADH4 High-speed Analog input Modules
  • MITSUBISHI ELECTRIC RY41PT2H High-speed Digital I/O Modules
  • MITSUBISHI ELECTRIC RY41NT2H High-speed Digital I/O Modules
  • MITSUBISHI ELECTRIC RX61C6HS High-speed Digital I/O Modules
  • MITSUBISHI ELECTRIC RX41C6HS High-speed Digital I/O Modules
  • MITSUBISHI ELECTRIC RX40NC6H High-speed Digital I/O Modules
  • MITSUBISHI ELECTRIC RX40PC6H High-speed Digital I/O Modules
  • Eaton MTL 8711-CA-NS | Analog Signal Isolator
  • MTL 8715-CA-BI Bus Interface Module (BIM)
  • Eaton MTL 831B IS Analogue Multiplexer Transmitter
  • Eaton MTL 8724-CA-PS – Intrinsically Safe Barrier
  • Eaton MTL 8502-BI-DP PROFIBUS DP Interface Module
  • Eaton MTL838B-MBF Analogue Multiplexer Receiver
  • Eaton MTL MTL5053 Safety Barrier
  • Eaton MTL 8939-HN | Fiber Optic Extender Module Supplier
  • Eaton MTL 8937-HN Fiber Optic Extender Module
  • Eaton MTL4073 Temperature Converter, Safety Barrier Module
  • Eaton MTL MTL5541 - Repeater Power Supply
  • MTL MTL2213 3-Channel Switch/Proximity Detector Relay
  • MVME2604 Motorola VME64 Processor Module
  • MOTOROLA 01-W3960B/61C MOTOROLA 01-W3960B/61C
  • Motorola 01-W3914B Control Module
  • MVME162-513A Motorola Embedded Controller
  • Motorola MPC2004 Application Expansion Module
  • Motorola MVME162PA-344E Embedded Controller
  • Motorola RSG2PMC-RSG2PMCF-NK2 communication module
  • MOTOROLA 0188679 0190530 MVME Control Module
  • MOTOROLA DB1-1 DB1-Falcon Control Module
  • MOTOROLA L0115012 L0115032 Industrial Control Module
  • MOTOROLA 188987-008R 188987-008R001 analog module
  • Motorola AET-3047 Embedded Controller Module
  • DEIF DU-2MKIII Generator Protection and Parallel Unit Display Module
  • DEIF 1000315910 LSU-112DG Load Sharing Unit
  • Parker 6K2-Nk Compumotor 2-Axis Servo
  • Parker 6K4 Power Controller by COMPUMOTOR