3500/25增強(qiáng)型Keyphasor模塊是一個(gè)半高雙通道模塊用于向中的監(jiān)視器模塊提供鍵相器信號(hào)的模塊3500架。該模塊接收來(lái)自近程探頭的輸入信號(hào)磁性拾取并將信號(hào)轉(zhuǎn)換成數(shù)字鍵控信號(hào),該信號(hào)指示軸上的鍵相標(biāo)記何時(shí)與鍵相傳感器。3500機(jī)械保護(hù)系統(tǒng)可以接受正常配置最多四個(gè)鍵相器信號(hào),最多八個(gè)成對(duì)配置的鍵相器信號(hào)。
增強(qiáng)型關(guān)鍵相量模塊是一個(gè)改進(jìn)的3500系統(tǒng)模塊。它提供了與之前的設(shè)計(jì)相比,擴(kuò)展了Keyphasor信號(hào)處理能力同時(shí)保持完全向下兼容的形式,配合和功能與現(xiàn)有的Keyphasor模塊在遺留系統(tǒng)中使用。的Keyphasor模塊,PWA 125792-01,完全被最近的149369 – 01年模塊。
當(dāng)三模冗余(TMR)需要系統(tǒng)關(guān)鍵相量輸入時(shí)在應(yīng)用中,3500系統(tǒng)應(yīng)該采用兩個(gè)Keyphasor模塊。在這個(gè)配置模塊并行工作,以提供主和次要的關(guān)鍵相量信號(hào)到機(jī)架中的其他模塊。有四個(gè)以上關(guān)鍵相量輸入的系統(tǒng)可以使用配對(duì)配置前提是不超過四個(gè)主要的Keyphasor輸入信號(hào)。一個(gè)配對(duì)配置需要兩個(gè)連續(xù)的監(jiān)測(cè)位置在任何上/下或兩個(gè)半槽位置。四個(gè)關(guān)鍵相位模塊將接受四個(gè)主輸入通道和4個(gè)備份輸入通道,并提供4個(gè)輸出通道(1每個(gè)模塊)。兩個(gè)成對(duì)和一個(gè)非成對(duì)的構(gòu)型(三個(gè)關(guān)鍵相量模塊總數(shù))也是可能的。在這樣的配置中,用戶可以進(jìn)行配置一個(gè)非配對(duì)的Keyphasor(訂購(gòu)兩個(gè)2通道或一個(gè)1通道和一個(gè)2通道選項(xiàng))
隔離鍵相器I/O模塊是為應(yīng)用程序設(shè)計(jì)的關(guān)鍵相量信號(hào)與多個(gè)設(shè)備并行連接,需要隔離來(lái)自其他系統(tǒng),如控制系統(tǒng)。隔離I/O模塊為專為磁性拾取應(yīng)用而創(chuàng)建,但與和兼容只要有外部電源,將為Proximitor*應(yīng)用程序提供隔離供應(yīng)是提供的。注意,這個(gè)I/O模塊的主要目的是測(cè)量軸轉(zhuǎn)速,而不是相位。該模塊可以提供相位
但是這種I/O引入的相移比非隔離I/O版本略高。圖1顯示了隔離的相移量I/O模塊將以不同的機(jī)器速度添加。增強(qiáng)的產(chǎn)品功能包括生成每回合一次的事件信號(hào)從多事件每回合輸入,現(xiàn)場(chǎng)升級(jí)固件,和資產(chǎn)管理數(shù)據(jù)報(bào)表。

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The 3500/25 Enhanced Keyphasor module is a semi-high dual channel module used to provide the key phaser signal to the monitor module 3500. The module receives the input signal from the short-range probe magnetic pick up and converts the signal into a digital keying signal that indicates when the key phase marker on the axis is with the key phase sensor. The 3500 mechanical protection system can accept up to four key-phase signals in normal configurations and up to eight key-phase signals in paired configurations.
The Enhanced Critical phasor module is an improved 3500 system module. It offers extended Keyphasor signal processing capabilities compared to previous designs while maintaining a fully backward compatible form that fits and functions with existing Keyphasor modules for use in legacy systems. The Keyphasor module, PWA 125792-01, was completely replaced by the most recent 149369-01 module.
When three-mode redundancy (TMR) requires system critical phasor inputs in an application, the 3500 system should adopt two Keyphasor modules. This configuration module works in parallel to provide primary and secondary critical phasor signals to other modules in the rack. Systems with more than four key phasor inputs can use a paired configuration provided that there are no more than four major Keyphasor input signals. A paired configuration requires two consecutive monitoring positions at any up/down or two half-slot positions. The four critical phase modules will accept four primary input channels and four backup input channels, and provide four output channels (1 per module). Two paired and one unpaired configurations (the total number of three key phasor modules) are also possible. In such a configuration, the user can configure a non-paired Keyphasor(order two 2-channel or one 1-channel and one 2-channel option).
Isolated key phase I/O modules are designed for applications where critical phasor signals are connected in parallel with multiple devices and need to be isolated from other systems, such as control systems. Isolated I/O modules have been created specifically for magnetic pickup applications, but are compatible with and will provide isolated supplies for Proximitor* applications as long as an external power supply is available. Note that the primary purpose of this I/O module is to measure shaft speed, not phase. This module can provide phase
However, this I/O introduces a slightly higher phase shift than the non-isolated I/O version. Figure 1 shows the isolated phase-shift amount of I/O modules that will be added at different machine speeds. Enhanced product features include generating once-per-turn event signals from multi-event per-turn inputs, on-site firmware upgrades, and asset management data reports.

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EMERSON | SE3008KJ2005X1-MQ213P0072X08 | EMERSON | 12P3439X012 | EMERSON | CE3008 |
EMERSON | KJ2005X1-MQ2 | EMERSON | KJ2003X1-BB1 | EMERSON | KJ2005X1-MQ1 |
EMERSON | 13P0072X082 | EMERSON | A6140 | EMERSON | 12P6381X042 |
EMERSON | VE3008 | EMERSON | 9199-00058 | EMERSON | CON021 |
EMERSON | CE3008 | EMERSON | VE3007 | EMERSON | 38B5786X132 |
EMERSON | KJ2005X1-MQ1 | EMERSON | KJ2005X1-BA1 | EMERSON | KJ3002X1-BF1 |
EMERSON | 12P6381X042 | EMERSON | 12P4375X012 | EMERSON | 1C31222G01 |
EMERSON | VE3008 | EMERSON | MVME2434 | EMERSON | MVME7100 |
EMERSON | CE3008 | EMERSON | 1C31219G01 | EMERSON | 9199-00002 A6120 |
EMERSON | 12P1732X042 | EMERSON | A3120022-000 | EMERSON | 1C31227G01 |
EMERSON | KJ3002X1-BF1 | EMERSON | FX-316 | ||
GE | IS200TPROH1BCB | GE | DS200ACNAG1ADD | GE | IS210BPPBH2BMD |
GE | IS200TPROS1CBB | GE | DS200ADGIH1AAA | GE | IS210SAMBH2AA |
GE | IS200TREAH2AED | GE | DS200ADPBG1ABB | GE | IS210WSVOH1AE |
GE | IS200TREGH1BEC | GE | DS200CPCAG1ABB | GE | IS215ACLEH1BB |
GE | IS200TRPAH2AHE | GE | DS200CTBAG1ADD | GE | IS215UCVEH2AB |
GE | IS200TSVCH1AJE | GE | DS200DCFBG1 BGB | GE | IS215UCVEH2AE |
GE | IS200TTURH1CFD | GE | DS200DCFBG1BLC | GE | IS215UCVEM10A |
GE | IS200TVBAH2ACC | GE | DS200DMCBG1AED | GE | IS215VPROH1BD |
GE | IS200TVIBH2BBB | GE | DS200DMCBG1AKG | GE | IS220PAICH1A |
GE | IS200VAICH1DAB | GE | DS200DPCBG1AAA | GE | IS220PAICH2A |
GE | IS200VCRCH1B | GE | DS200DSPCH1ADA | GE | IS220PAOCH1A |
GE | IS200VRTDH1D | GE | DS200FGPAG1AHD | GE | IS220PDOAH1A |

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