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| No.13692339

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Information Name: | German horse HIMA safety system component B4235 |
Published: | 2015-04-10 |
Validity: | 30 |
Specifications: | |
Quantity: | 100.00 |
Price Description: | |
Detailed Product Description: | Horse safety system component B4243 B4235 B4236-1 B4236-2 B4237-1 B4237-2 B5230 B5231 B5232-1 B5232-2 B5233-2 B9302 B9361 central module F8650A, E F8652X, E F7126 F7130A power input / output module Digital input module piece F3221 F3222 F3223 F3224 F3236 F3237 F3238 F3240 F5203 F5220 analog input module F6208 F6214 F6215 F6216 F6216A F6217 F6220 F6221 output module F3322 F3330 F3331 F3332 F3333 F3334 F3348 F3422 F3430 F6705 F6706 sub-rack power distribution modules and auxiliary equipment F7133 F7131 H7013 K7214 communication module F8621A F8627X F8628 I / O bus connection module F7553 HIBVS bus connection module H7505 H7506 PC485ISA relay module H4116 H4122 H4135 H4136 data connection cable Bv7032 Bv7040 Bv7043 Bv7044 Bv7045 Bv7046 Bv7048 Bv7049 Bv7050 Bv7051 Bv7052 Bv7053 dark horse components and ITCC TMC is the high-end integrated ESD or quadruple structure HIMA safety control system (QMR) technology HIMA Profile Founded in Germany in 1908, is the world famous safety control systems manufacturer. HIMA since 1970 the world's first company to produce a TüV certified fail-safe control system from HIMA-Planar-System, HIMA company has been at the forefront of security control in the field, is committed to the development and application of safety control system technology and products and to remain a world leader in this field. Thirty years HIMA safety control system produced more than 14,000 units have been put into use, widely distributed in the refining, chemical, offshore oil platforms, long-distance pipelines, gas stations and other industries around the world. HIMA company's security controls and other products to meet IEC61508 and DIN19250 for the highest level of security control requirements and obtain the highest level TüV AK7 / SIL4 certification. With the development of electronic technology, HIMA's safety control system has been developed to the fourth generation, the company launched in 1998 HIMA CPU quadruple structure (QMR) safety control systems H41q and H51q, so there has been a significant safety control technology breakthrough, the first time the safety control system has no fault repair time limit, the technology is currently the world's security control areas the most advanced and reliable. One. Safety control system technology development safety control system is designed for hazardous locations (eg: petrochemical installations) interlocks and an emergency stop control system. The essential difference between it and the DCS and PLC general process control is that it functions in an accident and fault conditions (including time and the control system itself means accident failure), enables the device to secure parking, and in a safe state, thereby avoid disaster occurs, ie, to avoid damage to equipment and personnel impact on the environment, and thus the safety control system itself must be fail-safe (Fail to Safe), the hardware and software system reliability are demanding. IEC61508 international safety standards, the level of security and safety requirements for the control system has detailed provisions. TüV is the only safety control system certification body in the world. HIMA company first launched in 1970 TüV certified failsafe safety control system from HIMA-Planar-System, the safety control system has been developed since three decades of history. HIMA safety control system development history: the 1970 launch of the world's first HIMA TüV certified by the fail-safe control system HIMA-Planar-System in use. HIMA 1983 launched the world's first programmable fail-safe electronic control systems (PES) for security control. HIMA 1986 launched the world's first certified by TüV H50 programmable safety and control systems in use, CPU dual redundant fault-tolerant structure type is completely self-diagnosis type, namely 1oo2D. 1991 launch of the second generation of HIMA PES systems certified by TüV H51 and H41 series. Late eighties early nineties, other safety control system manufacturers start to appear, the technology used is generally 1oo2D or 2oo3 voting (TMR) technology, and the technology in use today. HIMA 1997 launched the world's first quadruple-certified by the TüV A type of system products (QMR) CPU architecture, namely 2oo4D. 1998 launch of the third generation of HIMA PES systems certified by TüV H41q and H51q, using four heavy and chemical (QMR) CPU architecture that 2oo4D. II. Programmable CPU architecture (PES) safety control system meets IEC-61508 standard currently the world and get TüV AK6 / SIL3 rating certified programmable safety and control system has the following three main CPU architecture: 1. Dual redundant fault-tolerant architecture completely self-diagnosis, that 1oo2D structure. 2. Triple vote partially self-diagnostic structure, namely 2oo3 architecture (TMR). 3. Quadruple redundant fault-tolerant technology is completely self-diagnosis, namely 2oo4D structure (QMR). The following is the three security control system performance comparison of different CPU architectures: HIMA HIQuard quartet of self-diagnostic system architecture 2oo4D (QMR) Honeywell-FSC dual redundant self-diagnostic system architecture 1oo2D Triconex Triple voting system architecture 2oo3 TMR three. HIMA fourfold structure (QMR) product H41q and H51q H41q and H51q CPU architecture for quadruple structure (QMR), the central processing unit constitute a total of four microprocessors. Four processors simultaneously, each of the two microprocessor mounted on a CPU card. There are two central processing unit CPU card, a CPU card constitutes 1oo2D structure. HIMA safety class SIL AK6 / SIL3 AK6 / SIL3 HIMAAK6 time to repair Unlimited HIMA Charged pluggable card pieces can HIMATüV certification are HIMATüV certification report is available to the user. Open communication structure RS485 Profibus and Ethernet OPC anti-surge control HIMA The 3C Company successfully RELIANTTM compressor controller integrated in the system, you can accept 22AI / 6PI / 16DI; have 6AO / 14DO function can be completed PD / PS or H / PS computing HIMA: four CPU is divided into two pairs, that is. At the same time work was relatively independent. When one of the CPU diagnose the fault, then the removal of the CPU, switch to the 2-0 work, the remaining pair of CPU 1oo2D continue to work, which is independent of the CPU still meet safety class AK6 / SIL3 requirements, when it wherein the CPU further has a fault, the system stop. So no fault repair time limit. The difference between ESD and other controllers is a fault-tolerant, but also advanced than redundancy. For example: SIEMENS: S7-414FH, S7-417FH; GE: GMR; INVENSYS: TRICONEX; HONEYWELL: FSC; HIMA; AB: GUARDLOGIX; ABB: PM865 ESD is the abbreviation of the English Emergency Shutdown Device emergency shutdown system. This dedicated security system developed in the 1990s, with its high reliability and flexibility of praise. ESD emergency shutdown system in accordance with the principle of the independence requirements of security, independent of the DCS distributed control system, the security level is higher than the DCS. Under normal circumstances, ESD system is in static, without human intervention. As a security system, above the production process control, real-time online security monitoring device. Only when the plant emergency occurs, does not require the DCS system, and a protection interlock signal directly from ESD, on-site equipment for security, to avoid the risk of proliferation caused huge losses. Relevant information on the time when the person in danger of the judgment and the operation is often delayed, unreliable, when the operator to risk their lives to respond within 60s, the probability of wrong decisions in 99.9%. Therefore, independent of the control system set up safety interlock is very necessary, it is important to prepare guidelines on the safe production. The move will move, move should not move, this is a notable feature of the ESD system. Why should it be set independently ESD system? Of course, the general safety interlock protection function can also be achieved DCS. But for large-scale emergency shutdown system shall be in accordance with the principles of independence and security DCS set apart to do the following main reasons: (1) reduce the probability of control and safety functions at the same time fail, nor when the maintenance part of the fault DCS would endanger the safety protection system; (2) for large-scale installations or rotating mechanical equipment, emergency shutdown system response faster, the better. This helps protect the equipment, to avoid the accident to expand; and help to distinguish the accident record. The DCS handle large process monitoring information, and therefore it is difficult to make the response speed quickly; (3) DCS system is a process control system, is dynamic, needs frequent human intervention, which may cause malfunction human; and ESD is static and does not require human intervention, so to avoid artificially set ESD malfunction. Solutions require ESD system is widely used to protect the security and automatic chain occasions petrochemical, metallurgy, electric power, light industry, textiles, railways, compressors, blowers and. For this occasion, GE FANUC AUTOMATION introduced 90-70 GMR (Genius Module Redundancy) voting system. Depending on the needs of redundancy; sensor signal is introduced into the isolated input module Genius. Set in a separate rack, separate CPU to accept the input signal and the signal from the vote on each Genius bus, and then perform the appropriate application based on the results of the vote. Due to the use of a physical hardware system design and no separation structure coupling circuit protection, so users do not have to worry about hardware failures affect operation. Discrete output circuit current, voltage sensor signal integrated analysis to achieve the output and load status diagnosis. GMR recognition system failure and its automatic compensation, while allowing the case without interrupting system operation maintenance and parts replacement on its implementation. Failure by a software alarm features to handle, and it provides time recording and I / O fault reporting, system fault diagnosis of the two tables can be displayed by the programmer, but also can be sent to a computer or other co-processor for display. Each PLC diagnostic procedures are continually run to detect obvious and hidden faults, thus, reduce the mean time to repair system (MTTR), while, for the maintenance and operating personnel automatically generated fault report. GMR controller solution is composed of PLC CPU 788/789 and CPM790 and associated power supplies, chassis, and communications modules. Composition: GMR CPU: IC697CPU788, or IC697CPU789, or IC697CPM790 90-70 Bus Controller (GBC): IC697BEM731 power supply (PS): IC697PWR711 / 710 rack (RACK): IC697CHS790 IC697CHS791 GMR software: IC641SWP745 programming software: IC640HWP706 90-70 Features GMR voting system: application flexibility, redundancy can be configured by point so that you can configure their own hardware system based on the requirements of specific applications. Genius I / O acceleration system to drive the process, do not have long-distance cable. Eliminate insurance, reducing the mean time to repair (MTTR) failure to identify the point level, further reducing mean time to repair (MTTR) GMR is a "high reliability" and "high availability" system. Other advantages Recommended: 1. Sweden SUNFAB; 2. Harvey HAWE, K60N series; 3. Vickers PVH series; 4. American brand cat CAT PUMPS; 5. US Moog MOOG D series (advantage is not); 6. Parker PARKER (F11 / F12 F1 / F2 PTO) 7. Sweden 8. Pegasus TEMA joint US UFM flow switch 9. Derrick Derrick motors, screens and other accessories 10. Norway PLT throw rope 11.VIGIL slip stickers 12. Rand Ingersoll Rand and its accessories starter motor (not superiority) 13. Germany Spek SPECK (advantage is not) 14.CR seals (SKF seals), National oil seals, wire and other 15.woma Anke High Pressure Cleaning pumps, and accessories. In addition, the company agent: Harvey HAWE, WABCO WABCO, MANN MANN, OFMB, US DMIC. |
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Copyright © GuangDong ICP No. 10089450, Quanzhou bicyclic Trade Automation All rights reserved.
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You are the 7870 visitor
Copyright © GuangDong ICP No. 10089450, Quanzhou bicyclic Trade Automation All rights reserved.
Technical support: ShenZhen AllWays Technology Development Co., Ltd.
AllSources Network's Disclaimer: The legitimacy of the enterprise information does not undertake any guarantee responsibility