IS200TVBAH1AAA 振动端子板

零件号:IS200TVBAH1A
制造商:通用电气
系列:马克·维
产品类型:振动端子板
布线尺寸:22至12 AWG
扭矩:9.6英寸-磅(1.085牛-米)
输出电压纹波:280 mV峰值
最大输出电流:400 mA
供货情况:有现货
制造国:美国

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✦ 产品基本信息IS200TVBAH1AAA 振动端子板

零件号:IS200TVBAH1A
制造商:通用电气
系列:马克·维
产品类型:振动端子板
布线尺寸:22至12 AWG
扭矩:9.6英寸-磅(1.085牛-米)
输出电压纹波:280 mV峰值
最大输出电流:400 mA
供货情况:有现货
制造国:美国

功能描述

IS200TVBAH1A是GE公司开发的振动端子板。它是Mark VIe控制系统的一部分。该板用作I/O包Mark VIe PVIB或Mark VIeS YVIB的信号接口板。集成输出(速度)传感器的涡流(位置和速度)、地震(速度)、速度计和加速度计具有直接振动接口。它还为电荷放大器提供了一个动态压力接口。瞬态抑制保护通过两个24点螺丝端子进入的端子板输入信号免受电气干扰引起的高压影响。跳线JPxA和JPxC位于37针I/O pack连接器的左侧和24点螺丝端子的右侧,为各种传感器供电并检测开路。

特征

  • 输入信号通过右侧的37针连接器路由至I/O组件。TVBA适用于单工和TMR应用。TMR应用将信号分布在三个I/O包中。输入信号的缓冲输出被路由至9和25引脚DIN连接器,以馈入Bently Nevada 3xxx监控系统。
  • 每个缓冲输出还包括一个卡口螺母连接(BNC),用于为第三方监控设备供电。使用37引脚I/O pack连接器左侧的JPxB跳线为相应的传感器配置输出缓冲器。I/O包的通道1至13和14路由至外部使用的缓冲输出。I/O包由客户提供的+28 V电源供电。
  • WNPS子板仅向TVBAH#A端子板的Bently Nevada传感器提供所需的-28 V电源,一个用于单工配置,三个用于TMR配置。可移动子板将电源的+28 V电源转换为-28 V电源。

安装、操作和跳线配置

  • 该板接受14个传感器输入,这些输入直接连接到两个24点I/O端子板。每个块由两个螺钉固定在一起,可接受高达12 AWG的电线。
  • 每个接线板都有自己的屏蔽端接连接点。I/O包只能处理14个通道中的13个。第14个通道被路由至缓冲输出级,供本特利内华达设备(配有TVBAH2A、H2B、S2A或S2B)使用。

装置

TVBA(传感器电压偏置组件)的安装过程涉及各种组件和连接,以确保系统功能正常。下面是对安装过程的深入解释:

传感器输入:

  • TVBA总共接受14个传感器输入。
  • 这些传感器输入直接连接到两个I/O接线板,每个接线板用两个螺钉牢牢固定。
  • 每个接线板配有24个端子,设计用于接受#12 AWG的电线,确保能够处理各种尺寸的电线。
  • 邻近每个接线板,提供一个屏蔽终端连接点。这一点在接地和电磁屏蔽、保持信号完整性方面起着至关重要的作用。

输入通道1-8:

  • 这些通道支持各种传感器,包括前置器、地震仪、加速度计(仅在通道1、2和3中)和测速仪。
  • 每个通道配有限流-24V电源,确保传感器组件获得稳定的电源。
  • JPxA跳线可用于配置开路检查,并为Velomitors提供恒定的3mA电流。
  • JPxB配置可用于设置JA1和JB1输出,以与Bently Nevada 3500机架兼容。
  • JPxC配置使PR0xL能够设置为真差分输入开路,或连接到PCOM获得-24V回路。

输入通道9-12:

  • 这些通道专门支持前置传感器。
  • 每个通道配有限流-24V电源。
  • 这些通道不需要跳线配置。

输入通道13:

  • 通道13支持Proximitors或Keyphasor接近传感器。
  • 与其他通道类似,它采用限流-24V电源。
  • 该通道不需要跳线配置。

-28V电源板(WNPS):

  • WNPS板在安装中起着至关重要的作用,它将来自PVIB (Proximitor/Velomitor接口板)的+28V电源转换为限流-24V输出所需的-28V电源。
  • 每个PVIB分配一个WNPS板。
  • 每个WNPS板都配有独立的+28V输入和一条由所有三个WNPS板共享的公共-28V总线。

操作

  • TVBA(传感器电压偏置组件)设计用于容纳和支持总共14个传感器连接。这些连接被分为不同的类型,并在系统内用于各种监控和反馈目的。以下是对支持的传感器连接的简要描述:
  • 振动或位置传感器(电路1至8):TVBA支持八个传感器电路,用于振动或位置检测。这些电路功能多样,可以监控与系统内振动和位置相关的一系列参数。
  • 位置传感器(电路9至12):编号为9至12的四个传感器电路专门用于位置检测。这些电路针对精密位置监控应用进行了优化。
  • 参考探针(键相器)或位置传感器(电路13):电路13通过容纳参考探针(键相器)或位置传感器来提供灵活性。这种适应性允许监控关键系统参数或作为特定应用的参考点。
  • 参考探头(Keyphasor)或位置传感器(电路14):电路14专用于Bently Nevada 3500接口,支持参考探头(Keyphasor)或位置传感器。该接口是为满足Bently Nevada 3500系统的特定要求而定制的。

IS200TVBAH2ACC MRP646218

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Part Number: IS200TVBAH1A
Manufacturer: General Electric
Series: Mark VIe
Product type: Vibration Terminal Board
Wiring Sizes: 22 to 12 AWG
Torque: 9.6 in-lb (1.085 N-m)
Output Voltage Ripple: 280 mV pk
Maximum Output Current: 400 mA
Availability: In Stock
Country of Manufacture: United States (USA)

Functional Description

IS200TVBAH1A is a Vibration Terminal Board developed by GE. It is a part of Mark VIe control system. The board serves as a signal interface board for the I/O packs Mark VIe PVIB or Mark VIeS YVIB. Eddy-current (position and velocity), seismic (velocity), Velomitors, and accelerometers with integrated outputs (velocity) sensors have a direct vibration interface. It also gives charge amplifiers a dynamic pressure interface. Transient suppression protects the terminal board input signals entering through the two 24-point screw terminals from high voltages caused by electrical disturbances. Jumpers JPxA and JPxC, located to the left of the 37-pin I/O pack connectors and to the right of the 24-point screw terminals, power the various sensors and detect open circuits.

Features

  • The input signals are routed to the I/O packs via 37-pin connectors on the right side. The TVBA is suitable for both simplex and TMR applications. TMR applications distribute the signal across three I/O packs. The input signals’ buffered outputs are routed to 9 and 25 pin DIN connectors to feed the Bently Nevada 3xxx monitoring system.
  • A bayonet nut connection (BNC) is also included for each buffered output to feed third-party monitoring equipment. Use the JPxB jumpers to the left of the 37-pin I/O pack connectors to configure the output buffers for the appropriate sensor. Channels 1 through 13 and 14 of the I/O pack are routed to buffered outputs for external use. The I/O pack receives power from a +28 V supply supplied by the customer.
  • The WNPS daughter board supplies the -28 V power required to power the Bently Nevada sensors for the TVBAH#A terminal boards only, one for simplex and three for TMR configurations. The removable daughterboard(s) convert the +28 V power from the source to -28 V power.

Installation, Operation, and Jumper Configuration

  • The board accepts 14 sensor inputs, which are directly connected to two 24-point I/O terminal blocks. Each block is held together by two screws that accept wires up to 12 AWG.
  • Each terminal block has its own shield termination attachment point. Only 13 of the 14 channels can be processed by the I/O pack. The 14th channel is routed to the buffered output stage, where it is used by Bently Nevada equipment (with TVBAH2A, H2B, S2A, or S2B).

Installation

The installation process for the TVBA (Transducer Voltage Bias Assembly) involves various components and connections to ensure the system functions correctly. Here’s an in-depth explanation of the installation procedure:

Sensor Inputs:

  • The TVBA accepts a total of 14 sensor inputs.
  • These sensor inputs are wired directly to two I/O terminal blocks, with each block securely fastened using two screws.
  • Each terminal block is equipped with 24 terminals designed to accept wires as large as #12 AWG, ensuring the capacity to handle a variety of wire sizes.
  • Adjacent to each terminal block, a shield termination attachment point is provided. This point plays a crucial role in grounding and electromagnetic shielding, maintaining signal integrity.

Input Channels 1-8:

  • These channels support various sensors, including Proximitors, Seismics, Accelerometers (only in channels 1, 2, and 3), and Velomitors.
  • A current-limited -24V power supply is allocated per channel, ensuring that sensor components receive stable power.
  • JPxA jumpers are available for configuring open circuit checks and providing a constant 3mA current feed for Velomitors.
  • JPxB configurations are available to set the JA1 and JB1 outputs for compatibility with the Bently Nevada 3500 rack.
  • JPxC configurations enable PR0xL to be set as Open for true differential input or connected to PCOM for a -24V return.

Input Channels 9-12:

  • These channels exclusively support Proximitors sensors.
  • Each channel is equipped with a current-limited -24V power supply.
  • No jumper configuration is required for these channels.

Input Channel 13:

  • Channel 13 supports Proximitors or Keyphasor proximity sensors.
  • Similar to other channels, it features a current-limited -24V power supply.
  • No jumper configurations are necessary for this channel.

-28V Power Supply Board (WNPS):

  • The WNPS board plays a vital role in the installation, converting the +28V power supply from the PVIB (Proximitor/Velomitor Interface Board) to the -28V power required by the current-limited -24V outputs.
  • There is one WNPS board allocated per PVIB.
  • Each WNPS board is equipped with independent +28V inputs and a common -28V bus shared among all three WNPS boards.

Operation

  • The TVBA (Transducer Voltage Bias Assembly) is designed to accommodate and support a total of 14 sensor connections. These connections are categorized into different types and serve various monitoring and feedback purposes within the system. Here’s a concise description of the supported sensor connections:
  • Vibration or Position Sensors (Circuits 1 through 8): The TVBA provides support for eight sensor circuits designed for Vibration or Position sensing. These circuits are versatile and can monitor a range of parameters related to vibration and position within the system.
  • Position Sensors (Circuits 9 through 12): Four sensor circuits, numbered 9 through 12, are dedicated solely to Position sensing. These circuits are optimized for precise position monitoring applications.
  • Reference Probe (Keyphasor) or Position Sensor (Circuit 13): Circuit 13 offers flexibility by accommodating either a Reference Probe (Keyphasor) or a Position Sensor. This adaptability allows for monitoring critical system parameters or serving as a reference point for specific applications.
  • Reference Probe (Keyphasor) or Position Sensor (Circuit 14): Circuit 14 is specialized for use with the Bently Nevada 3500 interface, supporting either a Reference Probe (Keyphasor) or a Position Sensor. This interface is tailored to meet the specific requirements of the Bently Nevada 3500 system.
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