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Ge IS200VVIBH1CAC-w03 Printed Circuit Board

Short Description:

The GE IS200VVIBH1CAC-W03 is a printed circuit board (PCB) developed by General Electric (GE) for the Mark VI series, falling under GE’s Speedtronic product line.


  • FOB Price: US $0.5 - 9,999 / Piece
  • Min.Order Quantity: 100 Piece/Pieces
  • Supply Ability: 10000 Piece/Pieces per Month
  • Brand: GE
  • Manager: Jinny
  • E-mail: sales5@xrjdcs.com
  • Tel: + 86-15359273791
  • ( WhatsApp )Wechat: + 86-15359273791
  • Warranty: one year
  • In stock: In stock
  • Product Detail

    Product Tags

    GE IS200VVIBH1CAC-w03

    1. Overview

    The GE IS200VVIBH1CAC-W03 is a printed circuit board (PCB) developed by General Electric (GE) for the Mark VI series, falling under GE’s Speedtronic product line. Primarily designed for vibration monitoring, this board processes vibration probe signals transmitted from DVIB or TVIB terminal boards. All acquired analog signals are digitized and subsequently transmitted to the controller via the VME bus for centralized data processing and system control.

    2. Main Specifications

    Parameter Item
    Specification
    Model
    IS200VVIBH1CAC-W03
    Brand
    GE (General Electric)
    System Series
    Mark VI / Speedtronic
    Input Voltage
    24V DC
    Operating Temperature Range
    0℃ to 60℃ / -40℃ to 70℃
    Memory Capacity
    32 KB
    Microprocessor Type
    80C186 / 32-bit RISC
    Processor Frequency
    12 MHz
    Maximum Number of Connected Probes
    Up to 14 probes
    Communication Method
    VME Bus
    Weight
    Approx. 0.85 kg / 375g
    Dimensions
    Approx. 100mm × 50mm × 30mm / 166mm × 112mm × 36mm

    3. Product Features

    • Professional Vibration Monitoring: It is capable of measuring differential expansion, rotor eccentricity, mechanical vibration and axial position of rotating equipment, realizing all-round condition monitoring of industrial rotating machinery.
    • Multi-probe Compatibility: Supports multiple types of monitoring probes, including Seismic probes, Proximitor probes, Velomitor probes and Accelerometer probes, adapting to diverse industrial monitoring scenarios.
    • Built-in Self-test Indicators: Equipped with three onboard LED indicators to display equipment fault status, system state and real-time operating conditions intuitively and accurately.
    • Independent Power Supply Support: Provides stable power supply for connected probes and supports both Simplex and TMR (Triple Modular Redundancy) operating modes.
    • High Reliability & Stability: Adopts industrial-grade design with excellent environmental adaptability, which can operate stably in harsh industrial working conditions.
    • Compact & Lightweight Structure: Featuring small size and light weight, the module saves installation space and simplifies on-site assembly and layout work.
    • Redundant Architecture Design: Compatible with TMR triple redundant module architecture, effectively improving overall system safety, stability and fault tolerance.

    4. Structure and Composition

    • Indicator Panel: Integrated with three LED indicator lights for real-time display of fault alerts, system status and equipment operation status.
    • Connection Connectors: Configured with 2 backplane connectors (P1, P2) and 4 additional auxiliary connectors to ensure stable signal transmission and convenient wiring expansion.
    • Core Chips: Adopts Xilinx Spartan FPGA chip, matched with multiple RAM and SRAM integrated circuits to ensure high-speed and stable data operation and processing.
    • Basic Electronic Components: The PCB is equipped with complete electronic components including diodes, capacitors, resistors, inductors and magnetic beads to support normal circuit operation.
    • Fixed Installation Structure: Fixed on the PCB surface via three screws, and supports standard DIN rail and VME rack mounting methods for flexible and firm installation.

    5. Application Fields

    As a core monitoring component of the GE Speedtronic Mark VI control system, this module is widely used in energy and industrial automation fields, with main application scenarios as follows:
    • Gas turbine management and monitoring systems
    • Steam turbine management and control systems
    • General industrial automation control systems
    • Industrial process control fields
    • Monitoring and protection of power generation equipment in power plants
    • Condition monitoring of rotating machinery in manufacturing industry
    Core Vibration Protection Functions:
    • Real-time equipment vibration monitoring
    • Rotor eccentricity measurement and analysis
    • Differential expansion measurement
    • Rotor axial position accurate measurement

    6. Installation and Maintenance

    6.1 Installation Steps

    1. Power Off Operation: Cut off the system power supply completely before installation to eliminate electric shock and equipment damage risks and ensure construction safety.
    2. Rack Insertion: Align the module with the designated slot of the VME rack and insert it smoothly in place.
    3. Fix and Connect: Fasten the edge connectors and tighten the fixing screws to ensure reliable connection and firm installation.
    4. Power-on Verification: Complete the installation work, restore the power supply, and conduct system commissioning and operation tests to verify normal functions.

    6.2 Maintenance Guidelines

    1. Regular Status Inspection: Regularly check the status of the three onboard LED indicators to monitor the real-time operating state of the module and judge the system operation quality.
    2. Fast Fault Diagnosis: Quickly locate equipment faults and judge operating abnormalities through the fault, status and operation indicator lights, realizing efficient troubleshooting and maintenance.

     

     Ge IS200VVIBH1CAC-w03 (2)

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    If you would like to learn more about our products and services, please feel free to contact us at any time!

    • Sales Manager : Jinny
    • Email : sales5@xrjdcs.com
    • Whatsapp/Mobile:+86 15359273791

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