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DCS系統(tǒng)DSMB179 57360001-MS模塊的操作DSMB 179

作者:xqt 發(fā)布時(shí)間:2022-10-14 13:38:40 次瀏覽

DCS系統(tǒng)DSMB179 57360001-MS模塊的操作DSMB 179 繼電器電路FA-M3的輸入/輸出點(diǎn)通常直接連接到外部設(shè)備。然而,在以下情況下,繼電器應(yīng)放置在控制器的輸入/輸出點(diǎn)和外部設(shè)備之間:-控制器遠(yuǎn)離外部設(shè)備,容易受到現(xiàn)場噪聲干擾。-控制器應(yīng)連接至產(chǎn)生高壓噪聲的設(shè)備需要澄清其他控制線路之間關(guān)于處理各自信號(hào)的責(zé)任的關(guān)系需要包括一個(gè)手動(dòng)操作電路,作為I/O設(shè)備故障的備用電路。聯(lián)鎖處理特

DCS系統(tǒng)DSMB179 57360001-MS模塊的操作DSMB 179 

繼電器電路FA-M3的輸入/輸出點(diǎn)通常直接連接到外部設(shè)備。然而,在以下情況下,繼電器應(yīng)放置在控制器的輸入/輸出點(diǎn)和外部設(shè)備之間:-控制器遠(yuǎn)離外部設(shè)備,容易受到現(xiàn)場噪聲干擾。-控制器應(yīng)連接至產(chǎn)生高壓噪聲的設(shè)備需要澄清其他控制線路之間關(guān)于處理各自信號(hào)的責(zé)任的關(guān)系需要包括一個(gè)手動(dòng)操作電路,作為I/O設(shè)備故障的備用電路。聯(lián)鎖處理特定輸出時(shí),需要聯(lián)鎖電路,例如不能同時(shí)打開的電機(jī)正反轉(zhuǎn)輸出。在這種情況下,安裝外部聯(lián)鎖電路可使兩個(gè)繼電器線圈的“b”觸點(diǎn)中的一個(gè)在通電時(shí)切斷另一個(gè)。圖A3.13顯示了聯(lián)鎖電路的示例。

DSMB179.jpg

輸出短路保護(hù)

如果連接到FA-M3輸出端子的任何負(fù)載短路,則會(huì)產(chǎn)生過多的短路電流,并且外部接線可能會(huì)燃燒或產(chǎn)生異常熱量。因此,通常在輸出電路中安裝保險(xiǎn)絲,以確保短路負(fù)載情況下的安全,并將FA-M3的損壞降至最低。建議使用外部保險(xiǎn)絲,尤其是對于沒有內(nèi)置保險(xiǎn)絲或短路保護(hù)器的輸出模塊。圖A3.12是配備輸出短路保護(hù)熔斷器的FA-M3的示例。請注意,這些保險(xiǎn)絲并不用于保護(hù)內(nèi)部輸出元件免受可能的損壞。此外,這些保險(xiǎn)絲在短路負(fù)載以外的故障模式下可能無法熔斷。FA-M3的電源塊包含一個(gè)內(nèi)置的電源順序電路,當(dāng)發(fā)生瞬時(shí)電源故障或電壓降低時(shí),該電路可防止系統(tǒng)發(fā)生故障。該系統(tǒng)有兩種檢測電源故障的模式;一種是標(biāo)準(zhǔn)模式,另一種是即時(shí)檢測模式。根據(jù)使用的電源模塊或CPU模塊的類型,使用即時(shí)檢測模式有一些限制,如下表所示。默認(rèn)(出廠設(shè)置)模式為標(biāo)準(zhǔn)模式。

Relay Circuits The input/output points of the FA-M3 are normally connected directly to external devices. Relays, however, should be placed between the input/output points of the controller and the external devices in the following cases: - The controller is far away from the external devices and is susceptible to noise interferences in the field. - The controller is to be connected to devices that will generate high-voltage noise. - There is a need to clarify the relationship between other control lines with regards to the responsibility of handling respective signals. - A manually operated circuit needs to be included as a backup against failure of the I/O equipment.

Interlocking An interlock circuit is required when you handle particular outputs, such as those for the forward and reverse rotation of a motor that must not turn on at the same time. In such a case, installing an external interlock circuit allows one of the “b” contacts of the two relay coils to cut off the other when energized. Figure A3.13 shows an example of an interlock circuit.

Protection against Output Short-circuit 

If any of the loads connected to the output terminals of the FA-M3 are short-circuited, an excess short-circuit current flows and there is the possibility that the external wiring will burn or there will be a generation of abnormal heat. It is therefore common practice to install fuses in the output circuits to ensure safety in the case of short-circuited loads and minimize damage to the FA-M3. Use of external fuses is recommended, especially for output modules that do not have built-in fuses or short-circuit protectors. Figure A3.12 is an example of an FA-M3 that is equipped with output short-circuit protection fuses. Note that these fuses are not intended to protect internal output elements against possible damage. In addition, these fuses may fail to blow in failure modes other than short-circuited loads.The power supply block of the FA-M3 incorporates a built-in power sequence circuit which prevents the system from malfunctioning when a momentary power failure or voltage reduction occurs. This system has two modes of detecting power failures; one is the standard mode and the other is the immediate detection mode. There are restrictions on the use of the immediate detection mode, as summarized in the table given below, according to the type of power supply module or CPU module used. The default (factory setting) mode is the standard mode.

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