IS200TRLYH1BCB IS200TRLYH1B Mark VIe系列的继电器输出端子板

零件号:IS200TRLYH1B
制造商:通用电气公司
制造国:美国
产品类型:终端继电器卡
系列:马克·维

IS200TRLYH1B是GE公司开发的商标为VIe系列的继电器输出端子板。带线圈感应(TRLY1B)的继电器输出端子板上有12个插入式磁性继电器。前六个继电器电路可以用跳线设置,以驱动外部螺线管或干式C型触点输出。对于磁场螺线管电源,可提供基本的125 V直流或115/230 V交流电源或可选的24 V直流电源,带有个人跳线可选保险丝和机载抑制。

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详情介绍:IS200TRLYH1BCB IS200TRLYH1B Mark VIe系列的继电器输出端子板

规范

零件号:IS200TRLYH1B
制造商:通用电气公司
制造国:美国
产品类型:终端继电器卡
系列:马克·维

IS200TRLYH1B是GE公司开发的商标为VIe系列的继电器输出端子板。带线圈感应(TRLY1B)的继电器输出端子板上有12个插入式磁性继电器。前六个继电器电路可以用跳线设置,以驱动外部螺线管或干式C型触点输出。对于磁场螺线管电源,可提供基本的125 V直流或115/230 V交流电源或可选的24 V直流电源,带有个人跳线可选保险丝和机载抑制。接下来的五个继电器(7-11)是不通电的隔离式C型触点。隔离的C型触点用于输出12,用于点火变压器等特殊用途。

IS200TRLYH1B兼容性

使用TRLY 1B时,PDOA/YDOA I/O包支持单工和TMR应用。端子板的DC-37引脚连接接受I/O包作为插件。对于单工系统,使用连接器JA1,而对于TMR系统,使用连接器JR1、JS1和JT1。

IS200TRLYH1B安装

将端子板上的两个I/O端子板(TRLY1B端子板布线)与12个继电器输出的电线直接连接。每个接线板有24个端子,可以容纳高达#12 AWG的电线,并用两个螺钉固定。每个端子板左侧都有一个连接到底盘接地的屏蔽端子板。输出1-6的螺线管电源应连接到JF1。使用JF2可以将电源菊花链连接到额外的try。或者,当JF1/JF2不使用时,电源可以直接连接到TB3。

将专用电磁阀的输出12连接到连接器JG1以供电。工厂拆除跳线JP1-JP6,并用塑料袋装运。如果磁场螺线管需要电力,重新安装合适的跳线。根据最佳实践分别检查每个回路的通电情况,并根据需要安装跳线。从隔离触点应用中移除保险丝,以确保电源总线没有抑制漏电。

IS200TRLYH1B操作

干触点

如果这些端子板用作干触点,利用电路01至06切换交流电压,同时还通过JF1、JF2或TB3接收125 V直流电源,则交流电源将出现在“NO”继电器端子上,直到电路的所有保险丝和跳线被移除。此外,当触点闭合时,它会将交流电压绑定到N 125 V直流电压。

类似的情况也适用于P-125。交流峰值电压和125 V直流电压之和施加于直流和地之间连接的mov,因为大部分交流电源的中性线接地。在这些情况下,MOV额定值足以承受120伏交流电。然而,在240 V交流应用中,峰值电压将超过MOV额定值,从而导致故障。因此,最好避免使用这些电路进行交流开关。

单一的

在try 1B上安装有跳线、保险丝和继电器驱动器。d型连接器监控I/O处理器和TRLY1B至JA1之间的反馈电压和传输控制信号,以实现单工操作。继电器的额定值为3.0 A,以帧速率驱动。500 V交流电是一分钟内允许的最大触点间电压。一分钟内,线圈到触点的额定电压为1,500 V ac。10毫秒是正常工作时间。

全混合日粮(Total Mixed Rations的缩写)

继电器控制信号通过连接器JR1、JS1和JT1从三个I/O处理器R、S和T送入TRLY1B用于TMR应用。这些信号被付诸表决,结果决定哪个继电器驱动器得到信号。所有三个I/O处理器为继电器线圈提供共享二极管电源。

IS200TRLYH1B规格

一块TRLY1B板上的继电器通道数量

  • 12
  • 6个继电器,带可选螺线管驱动器电压
  • 5个继电器,仅带干触点
  • 1个继电器,额定电流为7安培

继电器的额定电压

  • 标称125伏直流电或24伏直流电
  • 标称115/230伏交流电

最大负载电流

  • 125 V直流操作时为0.6安培
  • 24 V直流工作时为3.0安培
  • 115/230伏交流电、50/60赫兹操作时为3.0安培

最大响应时间开启
典型值25毫秒

最长响应时间关闭
典型值25毫秒

诊断学

对端子板部件执行以下诊断程序:

  • 在帧率下,每个继电器的输出(线圈电流)被监控并与命令进行比较。如果连续两次检查后不一致,警报将被锁定。
  • 如果电磁阀励磁电压降至保险丝下游监控的12 V dc以下,则会锁定报警。
  • 如果任何一个输出变得不正常,将触发复合诊断警报L3DIAG xxxx。
  • 当I/O处理器读取ID芯片并发现不匹配时,就会产生硬件不兼容故障。
  • 继电器触点电压的监控。
  • 配置应用程序具有关于每个诊断细节的信息。诊断信号可以单独锁存,如果它们变得健康,则用复位DIA信号复位。

配置

对电路板的调整如下:

JP1–JP12跳线

如果需要接触电压检测,请为所选继电器插入跳线。

FU1–FU12保险丝

如果继电器1-6需要用电,则应为每个供电电路增加两个保险丝。例如,FU1和FU7向继电器输出1供电。

IS200TRLYH1B特性

  • 电路板的左边是巨大的黑色端子板。每个接线板包含24个银金属端子。总共有48个终端。在端子板上,每个端子都被指定为白色类型。在主板的右侧,有四个连接器端口。
  • 三个连接器端口在边缘垂直对齐,而第四个与底部的连接器端口平行。
  • 晶体管位于每个继电器的两侧。每个晶体管都配有一个圆形红色MOV或金属氧化物变阻器。在电路板的上部,其中五个继电器垂直排列。在PCB的下部,又排列了五个继电器。

IS200TRLYH1B

SPECIFICATIONS

Part No.: IS200TRLYH1B
Manufacturer: General Electric
Country of Manufacture: USA
Product Type: Termination Relay Card
Series: Mark VIe

The IS200TRLYH1B is a Relay Output Terminal Board developed by GE under the Mark VIe series. There are 12 plug-in magnetic relays on the Relay Output with Coil Sensing (TRLY1B) terminal board. The first six relay circuits can be set up with jumpers to drive external solenoids or dry, Form-C contact outputs. For field solenoid power, a basic 125 V dc or 115/230 V ac source or an optional 24 V dc source with personal jumper-selectable fuses and onboard suppression can be offered. The next five relays (7–11) are isolated Form-C contacts that are not powered. An isolated Form-C contact is used on output 12 for specialized uses like ignition transformers.

IS200TRLYH1B Compatibility

Simplex and TMR applications are supported by the PDOA/YDOA I/O pack when using the TRLY 1B. The terminal board’s DC-37 pin connections accept the I/O pack as a plug-in. For simplex systems, connector JA1 is used, while for TMR systems, connectors JR1, JS1, and JT1 are used.

IS200TRLYH1B Installation

Wire the two I/O terminal blocks on the terminal board, TRLY1B Terminal Board Wiring, directly with the wires for the 12 relay outputs. Each block has 24 terminals that may accommodate wires up to #12 AWG and is secured with two screws. Each terminal block has a shield terminal strip on the left side that is connected to chassis ground. The solenoid power for outputs 1-6 should be connected to JF1. Power can be daisy-chained to additional TRLYs using JF2. Alternatively, when JF1/JF2 are not in use, power can be connected directly to TB3.

Connect output 12 of the special solenoid to connector JG1 to provide electricity. The factory removes jumpers JP1-JP6 and ships them in a plastic bag. If a field solenoid needs electricity, reinstall the proper jumper. Check each loop’s energization individually in accordance with best practices, and install the jumpers as necessary. Remove the fuses from isolated contact applications to make sure that the power bus is free of suppression leakage.

IS200TRLYH1B Operation

Dry Contacts

If these terminal boards are utilized as dry contacts to switch ac voltage utilizing circuits 01 through 06 while also receiving 125 V dc power through JF1, JF2, or TB3, ac power will be present on the “NO” relay terminal until all fuses and jumpers for a circuit are removed. Additionally, the contact will bind the ac voltage to N 125 V dc when it shuts.

Similar circumstances apply to the P-125. The sum of the ac peak voltage and the 125 V dc is applied to MOVs linked between the dc and ground because the neutral of the majority of ac supply is grounded. The MOV rating is adequate to tolerate 120 V ac in those situations. The peak voltage will, however, exceed the MOV rating in 240 V ac applications, leading to failure. It is best to avoid using these circuits for ac switching because of this.

Simplex

On the TRLY 1B are mounted jumpers, fuses, and relay drivers. D-type connectors monitor feedback voltages and transmit control signals between the I/O processors and TRLY1B through JA1 for simplex operation. Relays have a 3.0 A rating and are driven at the frame rate. 500 V ac is the maximum allowable contact-to-contact voltage for one minute. For one minute, the coil to contact voltage is rated at 1,500 V ac. 10 ms is the normal operating time.

TMR

Relay control signals are fanned into TRLY1B for TMR applications from the three I/O processors R, S, and T through connectors JR1, JS1, and JT1. These signals are put to a vote, and the outcome determines which relay driver gets the signal. All three I/O processors provide shared diode power to the relay coils.

IS200TRLYH1B Specifications

Number of relay channels on one TRLY1B board

  • 12
  • 6 relays, with optional solenoid driver voltages
  • 5 relays, with dry contacts only
  • 1 relay, with 7 Ampere rating

The rated voltage on relays

  • Nominal 125 V dc or 24 V dc
  • Nominal 115/230 V ac

Max load current

  • 0.6 Ampere  for 125 V dc operation
  • 3.0 Ampere  for 24 V dc operation
  • 3.0 Ampere  for 115/230 V ac, 50/60 Hz operation

Max response time on
25 ms typical

Max response time off
25 ms typical

Diagnostics

The following diagnostic procedures are performed on the terminal boards’ components:

  • At the frame rate, each relay’s output (coil current) is monitored and compared to the command. An alarm is latched if there is no agreement after two inspections in a row.
  • An alarm is latched if the solenoid excitation voltage drops below 12 V dc, which is monitored downstream of the fuses.
  • A composite diagnostics alert, L3DIAG xxxx, is triggered if any one of the outputs becomes unhealthy.
  • A hardware incompatibility fault is produced when an ID chip is read by the I/O processor and a mismatch is discovered.
  • Monitoring of relay contact voltage.
  • The configuration application has information about each diagnostic’s specifics. The diagnostic signals can be individually latched and, if they become healthy, reset with the RESET DIA signal.

Configuration

Adjustments to the board are made as follows:

JP1–JP12 jumpers

Insert jumpers for the chosen relays if contact voltage sensing is necessary.

FU1–FU12 fuses

Two fuses should be added to each power circuit supplying relays 1-6 if electricity is required for them. For instance, FU1 and FU7 provide power to relay output 1.

IS200TRLYH1B Features

  • On the left edge of the board are huge black terminal blocks. Each terminal block contains twenty-four silver metal terminals. There are a total of 48 terminals in all. On the terminal blocks, each terminal has been designated in white type. On the right side of the board, there are four connector ports.
  • Three connector ports are vertically aligned on the edge, while the fourth sits parallel to the connector port at the bottom.
  • A transistor is located on both sides of each relay. A circular red MOV, or metal oxide varistor, is paired with each transistor. On the upper part of the board, five of these relays are vertically aligned. On the lower portion of the PCB, five more relays have been aligned.

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