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H41q/H51q«Y²Î¬°CPU¥|­«¤Æµ²ºc¡]Qmr-quadruple modular redundant¡^¡A§Y«Y²Îªº¤¤¥¡±±¨î³æ¤¸¦@¦³¥|­Ó·L³B²z¾¹¡A¨C¤G­Ó·L³B²z¾¹¶°¦¨¦b¤@¶ôCU¼Ò¥ó¤W¡A¦A¥Ñ¨â¶ô¦P¼ËªºCU¼Ò¥óºc¦¨¤¤¥¡±±¨î³æ¤¸¡C


¡@¡@¶Â°¨«Y²Î¡V¥i½sµ{¹q¤l«Y²Î¡]PES¡^HIQuad«Y²Î¥D­n¥]¬AH41q©MH51q¨â­Ó«Y¦C¡A¥¦­Ì°ò©ó¦P¼Ëªºµw¥ó©M³n¥ó¡A¬O²Ä¤T¥N¸g¥Í²£¹ê½îÅçÃÒªºHIMA PES«Y²Î¡C¥¦¯à°÷§Q¥Î­Ó¤H­pºâ¾÷¶i¦æÆF¬¡ªº¥Î¤á²ÕºA¡BºÊ´ú©M¨Æ¥ó°O¿ý¡A¨ä¥X¦âªº©Ê¯à¬°¥Í²£±±¨î´£¨Ñªº±±¨î«O»Ù¡C


¡@¡@¶Â°¨«Y²ÎªºH41q/H51q«Y²Î¬°CPU¥|­«¤Æµ²ºc¡]Qmr-quadruple modular redundant¡^¡A§Y«Y²Îªº¤¤¥¡±±¨î³æ¤¸¦@¦³¥|­Ó·L³B²z¾¹¡A¨C¤G­Ó·L³B²z¾¹¶°¦¨¦b¤@¶ôCU¼Ò¥ó¤W¡A¦A¥Ñ¨â¶ô¦P¼ËªºCU¼Ò¥óºc¦¨¤¤¥¡±±¨î³æ¤¸¡C¤@¶ôCU¼Ò¥ó§Yºc¦¨1oo2dµ²ºc¡AHIMAªº1oo2dµ²ºc²£«~´N¥i¥Hº¡¨¬AK6/Sil3ªº¼Ð·Ç¡C¬°¤F¦V¥Î¤á´£¨Ñªº¥i§Q¥Î©Ê¡A±Ä¥ÎÂù1oo2dµ²ºc¡A§Y2oo4dµ²ºc¡C¦b¤¾¾lµ²ºcªº±¡ªp¤U¡A°ª³tÂù­«RAM±µ¤f¡]DPR¡^¨Ï¨â­Ó¤¤¥¡³æ¤¸³q°T¡A±q¦Ó¸Ñ¨M¤FµL¬G»Ù­×´_®É¶¡­­¨îªºÃøÃD¡C¨ä®e¿ù¥\¯à¨Ï«Y²Î¤¤ªº¥ô¦ó¤@­Ó³¡¥óµo¥Í¬G»Ù¡A§¡¤£¼vÅT«Y²Îªº¥¿±`¹B¦æ¡C


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The H41q/H51q system adopts a CPU quadruple modular redundant structure, which means that the central control unit of the system consists of four microprocessors. Each two microprocessors are integrated into a CU module, and the central control unit is composed of two identical CU modules.


The Black Horse Security System - Programmable Electronic System (PES) HIQuad system mainly consists of two series, H41q and H51q, which are based on the same hardware and software and are the third generation HIMA PES system that has been verified in production practice. It can utilize personal computers for flexible user configuration, monitoring, and event recording, and its excellent performance provides safe control guarantees for production control.


The H41q/H51q system of the Black Horse security system adopts a CPU quadruple modular redundant structure, which means that the central control unit of the system has four microprocessors, each of which is integrated into a CU module, and then two identical CU modules form the central control unit. A single CU module constitutes a 1oo2d structure, and HIMA's 1oo2d structure products can meet the safety standards of AK6/Sil3. In order to provide users with availability, a dual 1oo2d structure, i.e. a 2oo4d structure, is adopted. In the case of redundant structure, the high-speed dual RAM interface (DPR) enables communication between two central units, thereby solving the problem of limited fault free repair time. Its fault-tolerant function ensures that any component in the system malfunctions without affecting the normal operation of the system.

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IPSYS01PR6423/014-121 CON031315116-A05
KSML92S1450-W-MC1 IEC60945PR6423/015-111 CON041320087-A06
LL02 LL 02PR6423/01R-111 CON031321131-A01
LZ01 LZ 01PR6423/01R-111 CON03151404127-250
LZ02 LZ 02PR6423/10R-010 CON0215370-CVIM
MA01 MA 01PR6424/000-030 CON0216155R-14S2KH
MA03 MA 03PR6424/000-040 CON0216181F-15TSXP
MA12 MA 12PR6424/000-121 CON0416181P-17TPXPH
MAG-XM 50XM2000PR6424/000-121 CON0416186M-15PT
MAI32MADPR6424/004-010 CON02174101-181-51






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