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GENERAL INFORMATION

来源: | 作者:佚名 | 发布时间 :2023-12-18 | 230 次浏览: | Share:

This catalog should give you an overview of the B&R product range which includes PLC systems, visualization devices, industrial networks, communication software and industrial computers.

The products described in this catalog are divided into seven main chapters,which are labeled from A to G. The seven chapters are:

A PLC Systems

B Visualizations

C Industrial Networks & Communication

D Industrial Computers

E Accessories

F Documentation

G Sales and Support

The pages that belong to a chapter are marked with a colored bar. The colored bar can be seen from the edge of the catalog.Most of the chapters are separated into sections. The sections are numbered.

For example, the chapter B "Visualization" contains following sections:

1 System Selection

2 Operator Panel Visualization

3 Semigraphic Visualization

4 Full Graphic Visualization

The table of contents on pages 2 and 3 contain a list of all main chapters and their sections. The main chapter and section description can be found on the top of each page. Additionally, a pictograph can be found on the top outside edge which corresponds to the respective chapter. This should allow you to quickly find the chapter that you need.

Example

Section "Operator Panel Visualization" can be found in chapter B "Visualization".It is the second section (2). The chapter is labeled B2. These labels can be found on all pages of the respective section:

The PLC serves as the foundation of an automation system. All process or machine level information passes through the PLC. The efficiency and the reliability of the entire system depends directly on the efficiency and reliability of the PLC. B&R has used this knowledge to produce a philosophy based on three criteria: ● Functionality ● Reliability ● Operation Security 

FUNCTIONALITY Functionality is the ability of PLC systems to accomplish specific tasks. Such as: - Logic Control - Positioning - Visualization - Communication - Data Acquisition, Storage and Management A PLC system not only needs to be able to solve all current automation tasks, but it also must provide enough reserve efficiency for future expansion. A PLC system with only one processor has two technological limitations to it's efficiency: - Limited application program execution speed - Limited program memory In practice, such a system can usually only accomplish part of the required tasks and will not allow subsequent function extensions. The modular concept of B&R PLC systems guarantees that your resources are never completely used. The efficiency of the entire system can be extended at any time with parallel processors. The network capability of all B&R PLC systems enables the formation of distributed PLC groups.

RELIABILITY The functionality describes only the basic abilities of a PLC system to complete tasks. Reliability is the ability of a PLC system to complete these tasks continually over a long period of time. Reliability is always a limited value because the occurrence of errors can never be completely excluded. One measurement of reliability is the failure rate. 

The following diagram shows the development of the failure rate over a period of time: Early Failure The early failure phase is caused by material and production defects and is distinguished by a comparatively steep decreasing failure rate during the first operating period. This phase can be eliminated before delivery by testing for several days at increasing operating temperatures. Random Failure The random failure phase is marked by a small, relatively constant failure rate. Wear-out Failure The failure rate increases in the wear-out phase and is equivalent to the end of serviceability. This occurs with electronic controls after a very long period of time (decades). Once made aware of these facts, the question of how to put these failure rates into relation often arises, especially with random failures. Procedures have been developed in order to establish the expected durability of electronic devices. 

The "meantime-between-failure" - (MTBF) is basically determined from experience. For a certain observation period, the number of failed units is compared with the sum of the operating times of all delivered units. The observation time must be very long in order to achieve relevant results with this procedure. Different methods for establishing MTBF rates are usually expensive and do not produce reliable results. Therefore, the MTBF indications are theoretical and can only be applied limitedly in reality. 

B&R Systems are Reliable: - All B&R components are developed, manufactured and tested. Utilization of high quality components, precise control of received products, visual check of all manufacturing steps, computer supported rack testing and 48 hour function test at increased operating temperatures in a controlled climate are part of the B&R quality control process. - A new B&R product is only put on the market after it is thoroughly tested. - PLC reliability within a system is usually overemphasized during the overall evaluation of the reliability of a machine/device. Statistics have proven that only about 5 % of all errors in PLC controlled machines or devices are caused by the PLC. 95 % of the errors emerge from signalling devices, drives, wiring positioning devices etc. 

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  • GE IS420UCSBH3A - Advanced Industrial Control Module
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  • GE FANUC - IC693MDL654 Modular Control System
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  • GE IS220PSCAH1A - Advanced Power Control Module for Turbine Systems
  • GE Fanuc - IC220STR001 Direct Motor Starter for Precision Control
  • GE Fanuc - IC698CPE020-GP Slot Rack Card High Performance Control Module
  • GE FANUC - IC693MDL240 Modular Control Module
  • GE Electric - IC693PBM200-FE Master Module Industrial Automation Control Core Component
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  • GE DS6800CCID1D1D - Industrial I/O Interface Module
  • GE MULTILIN - EPM 9650 POWER QUALITY METER PL96501A0A10000
  • GE Electric - Fanuc IC697CMM742-KL Advanced Type 2 Ethernet Interface Module
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  • GE DS200VPBLG1AEE - High-Performance Circuit Board
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  • GE Fanuc - IS215VCMIH2CC | Communication Card
  • GE IC690ACC901 - Mini Converter Kit Efficient Communication Solution
  • GE Electric - DS3800HCMC Gas Turbine Daughter Board For Enhanced Control & Efficiency
  • GE Electric - FANUC IC200ALG320C Analog Output Module
  • GE Electric - (GE) IS420UCSBH3A REV D
  • GE IC693MDL646B - Advanced Input Module for Industrial Control Solutions
  • GE IC693MDL730F - Advanced Digital Input Module for Industrial Automation
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  • GE Electric - IC698ACC735 Shielded Single Slot Faceplate
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  • GE DS3800HMPG - Cutting-Edge CPU Card for Advanced Industrial Control
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  • GE IC200UEX626 - 6-Channel Analog Expansion Module for Advanced Process Control
  • GE IC693PWR331D - Advanced Power Supply for Industrial Automation
  • GE DS200TBQBG1ACB - Advanced RST Analog Termination Board
  • GE Fanuc - DS200TBCAG1AAB Advanced PLC for Industrial Automation
  • GE FANUC - DS200LRPAG1AGF Industrial Line Protection Module
  • GE IC693MDL654 - Advanced Logic Input Module for Industrial Control Systems
  • GE Industrial - Controls IC695LRE001B Transmitter Module
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  • GE IC660BBD021W - Advanced 3-Wire Sensor Block for Industrial Control Systems
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  • GE IC694ACC300 - Input Simulator Module Advanced Control Solutions
  • GE FANUC - IC687BEM713C Advanced Bus Transmitter Module for Industrial Automation
  • GE IS200TGENH1A - Advanced Turbine Control Board for Gas and Steam Turbines
  • GE IC693MDL654F - Advanced Modular PLC Input Module for Industrial Automation
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  • GE IS230TRLYH1B - New in Box | Industrial Control Module
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  • GE Electric - (GE) IS200IVFBG1AAA Fiber Optic Feedback Card for Industrial Automation
  • GE Electric - IC693PWR322LT Advanced Industrial Power Supply
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  • GE Fanuc - IC200MDL330 Network Interface Unit Advanced Networking for Industrial Automation
  • GE Fanuc - IC676PBI008 Waterproof Input Block
  • GE Circuit - Board 304A8483G51A1A
  • GE YPH108B - Measurement Board
  • GE UR6AH - Digital I/O Module Industrial Control
  • GE IC200ALG264E - High Precision Current Analog Input Module
  • GE IS200TRLYH2C - Relay Output Module with Contact Sensing Terminal Board; Manufacturer GE-FANUC
  • GE IC693ALG442B - Advanced Programmable Logic Controller Module
  • GE IC693ACC301 - Lithium Battery Replacement Module
  • GE Fanuc - DS200PTBAG1A Termination Board Advanced Control Module
  • GE IS200VCRCH1BBB - Mark VI Circuit Board
  • GE IS200UCVEH2A - High-Performance Exciter Bridge Interface BOARD for Industrial Automation
  • GE IS220PDIOS1A - Mark VI Control Module
  • GE IS210AEBIH3BEC - Advanced Input/Output Board for MKVI Control Systems
  • GE 6KLP21001X9A1 - AC Variable Frequency Drive
  • GE 531X123PCHACG1 - Advanced Power Supply Interface Card
  • GE Electric - STXKITPBS001 Profibus Interface Module for Industrial Control Systems
  • GE DS200TCRAG1AAA - Industrial Grade Relay Output Board for Enhanced Control Systems
  • GE UR9NH - CPUUR CPU Module
  • GE Electric - DS200TCQFG1ACC
  • GE Electric - Fanuc IC200ALG260H Analog Input Module Precision & Reliability in Automation Solutions
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  • GE DS3800NMEC1G1H - Industrial Motor Control Module
  • GE Fanuc - 531X113PSFARG1 | Mark VI Circuit Board
  • GE Fanuc - IC693ALG392C Analog Output Module Precision Control in Industrial Automation
  • GE IC693ALG220G - Advanced Input Analog Module for Industrial Automation
  • GE DS200DTBCG1AAA - Industrial Control System's Reliable Core
  • GE F31X301DCCAPG1 - Control Board Advanced Industrial Automation Solution
  • GE Electric - (GE) IS200AEAAH1AAA Mark VI Printed Circuit Board