8521-LC-MT  MOST EthernetTM BIM

The EBIM can be used in two communications modes: with MODBUS TCP as remote I/O to another host system, or with highspeed peer to peer communications as remote I/O in a MOST Control system.
When using MODBUS TCP, the EBIM acts as a slave, communicating over Ethernet in RTU mode at speeds of 10/100MB.
Combined with the MTL 8000 Process I/OTM system components, it offers cost savings over control-room mounted systems as well as flexible system design and high system availability. An EBIM can utilize off-theshelf HMI packages, including Wonderware, Intellution and Cimplicity.

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Description

8521-LC-MT  MOST EthernetTM BIM

Product description

Compact design

The EBIM can be used in two communications modes: with MODBUS TCP as remote I/O to another host system, or with highspeed peer to peer communications as remote I/O in a MOST Control system.
When using MODBUS TCP, the EBIM acts as a slave, communicating over Ethernet in RTU mode at speeds of 10/100MB.
Combined with the MTL 8000 Process I/OTM system components, it offers cost savings over control-room mounted systems as well as flexible system design and high system availability. An EBIM can utilize off-theshelf HMI packages, including Wonderware, Intellution and Cimplicity.
In a MOST Control system, an EBIM system can be used as remote I/O node to a MOST system Controller. When used in a MOST Control system, all remote EBIM nodes are configured as if part of a local I/O system, providing a single integrated configuration of all I/O nodes in the system, whether local or remote. Data is passed efficiently to the controller from the EBIM using high-speed peer to peer communications.

Product parameter

The majority of energy consumption in factory automation is attributable to drive technology. Here, KeDrive D3 makes an important contribution to cost reduction.

  • Active power regeneration limits peak load consumption and thus connection costs
  • Efficient capacity modules as a dynamic energy storage system
  • Intelligent energy storage systems to protect against grid interruptions increase availability

Application field

Flexible system design
Combine analog and discrete modules for maximum flexibility and use of space.
High system availability-easy maintenance
Maximize up-time by incorporating redundant EBIMs, power supplies and net-work connections. ‘Hot swap’ modules, without affecting system operation or reconfiguring, even in hazardous areas.
On-line changes
The EBIM allows on-line configuration changes during testing, start-up, and maintenance phases. This significantly accelerates system start-up and reduces operation downtime.
The Ethernet BIM platform
The Ethernet BIM incorporates a rigorous redundancy model, HART® capability and a fault tolerant Ethernet implementation to manage communications on the process network and deliver reliable system operation in your application. Process I/O™ is a field-mounted distributed I/O system that provides an intelligent interface between field-mounted instrumentation and the Host system. Process I/O™ interfaces to virtually all process signals including HART®, providing a complete solution for your I/O needs. The complete platform has an environmental specification capable of surviving conditions out in the plant. It is built for harsh process applications, being shock and vibration resistant, operating over the industrial -40°C to +70°C temperature range that is typically associated with field transmitters, and meeting ISA’s stringent G3 corrosion resistance requirements. The EBIM and I/O components can all be mounted directly in Division 2/Zone 2 hazardous areas and, when required, can provide a cost effective intrinsic safety solution.
Because the system can be mounted in the field, it can also provide extensive cost savings by eliminating the need to wire all sensors back to a central controller. With the EBIM and its I/O mounted in the field, the only wiring back to a control room is the high-speed network

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