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GE IS200TBAIH1CDD Terminal Board for Analog Inputs

GE IS200TBAIH1CDD Terminal Board for Analog Inputs

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GE IS200TBAIH1CDD Terminal Board for Analog Inputs Configured for analog sensor signal termination and conditioning in the GE Mark VI... Baca selengkapnya

SKU: IS200TBAIH1CDD
Negara asal: USA

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    Keterangan

    GE IS200TBAIH1CDD Terminal Board for Analog Inputs

    Configured for analog sensor signal termination and conditioning in the GE Mark VI Speedtronic turbine control system, the GE IS200TBAIH1CDD (IS200TBAI Terminal Board for Analog Inputs) provides direct physical signal routing between field devices and VAIC analog interface boards.

    Hardware Specifications

    Parameter Specification
    Model IS200TBAIH1CDD
    Brand GE
    Origin United States
    Weight 0.6 kg
    Operating Temp -40 deg C to +70 deg C
    Power Consumption Passive terminal interface board; power supplied through connected control system
    Product Type Terminal Board for Analog Inputs (TBAI)
    System Platform GE Mark VI Speedtronic Turbine Control System
    Compatible Controller Board VAIC (IS200VAICH1CBA and variants)
    Signal Channels 20 analog input channels, 4 analog output channels
    Input Signal Types +/-5 V, +/-10 V, 0-1 mA, 4-20 mA
    Output Signal Types 0-20 mA, 4-20 mA
    Resolution Support 16-bit A/D and 12-bit D/A through VAIC interface
    Mounting Format DIN rail or chassis mount terminal board
    Protection Features Conformal coating and transient suppression
    System Mode Support Simplex and TMR configurations

    GE Mark VI Analog Signal Interface Characteristics

    The IS200TBAIH1CDD provides field wiring termination for voltage and current analog signals before transfer to the VAIC analog input/output board. The terminal interface maintains signal routing integrity between turbine sensors and the controller processing hardware.

    GE Mark VI architecture uses VME-based backplane communication between control modules. The TBAI board functions as the field-side connection point, while the VAIC board performs analog conversion, scaling, and controller data processing.

    Firmware and Backplane Compatibility

    The board operates within the GE Mark VI control architecture through compatible VME rack interfaces. The module supports simplex and triple modular redundant configurations where multiple control paths require synchronized I/O signal availability.

    The analog interface design supports I/O density scaling through Mark VI rack configurations, allowing multiple terminal boards and VAIC modules to be arranged according to turbine instrumentation requirements.

    Frequently Asked Questions

    Q: What analog signals can the IS200TBAIH1CDD terminate?
    A: The board supports voltage and current analog signals including +/-5 V, +/-10 V, 0-1 mA, and 4-20 mA inputs, with analog outputs of 0-20 mA or 4-20 mA through the VAIC interface.

    Q: Does the IS200TBAIH1CDD perform analog-to-digital conversion?
    A: No. The terminal board provides signal termination and routing. Analog conversion functions are performed by the connected VAIC analog input/output board.

    Q: Can the IS200TBAIH1CDD operate in redundant Mark VI configurations?
    A: The board supports installation within simplex and TMR system configurations when used with compatible Mark VI control hardware.

    Field Installation Guidelines

    Install the IS200TBAIH1CDD in the designated GE Mark VI control cabinet location according to the system hardware configuration. Verify terminal assignments before connecting field wiring from analog sensors.

    Use shielded instrumentation cables for low-level analog signals where required. Connect cable shields according to the cabinet grounding scheme and avoid routing analog signal cables parallel to high-current power conductors.

    Confirm terminal polarity and signal type before energizing the system. Inspect connectors, terminal screws, and board seating condition during installation and maintenance activities.

    Spesifikasi

    • Merek: General Electric

    • :

    Keuntungan

    • Keandalan tinggi di lingkungan industri

    • Mendukung operasi berkelanjutan
    • Kompatibel dengan sistem PLC/DCS utama

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