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CC-TSV211 | Servo Valve Positioner Module | Honeywell

CC-TSV211 | Servo Valve Positioner Module | Honeywell

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Honeywell CC-TSV211 Servo Valve Positioner Module Configured for servo valve position control in Honeywell Experion PKS Series C I/O systems,... اقرأ المزيد

رمز المنتج: CC-TSV211
بلد المنشأ: USA

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    وصف

    Honeywell CC-TSV211 Servo Valve Positioner Module

    Configured for servo valve position control in Honeywell Experion PKS Series C I/O systems, the Honeywell CC-TSV211 (51306665-175) (CC-TSV211 Servo Valve Positioner Module) provides direct physical/electrical execution for hydraulic actuator positioning through servo coil drive and position feedback processing.

    Hardware Specifications

    Parameter Specification
    Model CC-TSV211 (51306665-175)
    Brand Honeywell
    Product Type Servo Valve Positioner Module
    Series Experion PKS Series C I/O
    Origin USA
    Weight 0.7 kg
    Dimensions 44.3 x 12 x 7.5 cm
    Operating Temp Not specified
    Power Consumption Not specified
    Output Channels 2
    DAC Resolution 16-bit
    Maximum Open Circuit Voltage +/-14 V
    Galvanic Isolation +/-500 VDC
    Input/Output Range 8 V RMS max., 2.5-3.2 kHz
    Input Impedance > 25 kOhm
    Input Scan Rate 2.5 ms
    Common Mode Voltage -6 to +5 V peak, DC to 60 Hz
    Feedback Interface LVDT/RVDT/4-20 mA position feedback support
    Control Function Onboard PID servo positioning loop
    Output Function Direct servo valve coil current drive

    DCS Signal Conditioning and Channel Isolation Features

    The CC-TSV211 operates as a Series C I/O servo control interface with onboard signal processing for valve position regulation. The module accepts position feedback signals from LVDT, RVDT, or 4-20 mA devices and executes an internal PID positioning algorithm before generating servo coil output commands.

    The Honeywell Experion PKS architecture uses channel-level signal conditioning methods similar to other process control I/O modules, including channel-to-channel isolation concepts for minimizing electrical interference between independent signal paths. The CC-TSV211 provides +/-500 VDC galvanic isolation for field-side signal protection and supports controlled analog feedback acquisition with a 2.5 ms input scan rate.

    The module receives remote valve demand signals from a C300 controller and converts digital control commands into analog servo output behavior. The design supports dual-channel operation, LVDT feedback monitoring, diagnostic processing, and redundant control configurations within compatible Series C I/O installations.

    Frequently Asked Questions (FAQ)

    Q: What type of feedback signals can the CC-TSV211 process?
    A: The module supports LVDT, RVDT, and 4-20 mA valve position feedback inputs for servo valve positioning applications.

    Q: Does the CC-TSV211 contain an onboard positioning control loop?
    A: Yes. The module includes an onboard PID positioning loop that processes valve demand commands and feedback signals to control servo valve coil output.

    Q: What electrical isolation capability is provided by the module?
    A: The CC-TSV211 provides galvanic isolation rated at +/-500 VDC between applicable electrical sections.

    Field Installation Guidelines

    • Install the CC-TSV211 in a compatible Honeywell Experion PKS Series C I/O rack according to the system hardware configuration requirements.
    • Verify field wiring polarity and signal termination before connecting servo coil outputs and position feedback inputs.
    • Use shielded instrumentation wiring for LVDT/RVDT and analog feedback connections where required by the site electrical installation standard.
    • Terminate cable shields according to the plant grounding practice to reduce electromagnetic interference.
    • Separate low-level feedback wiring from high-current actuator wiring to reduce induced electrical noise.
    • Confirm controller communication configuration and I/O channel assignment before commissioning the servo positioning loop.
    • Inspect terminal connections and mechanical mounting before applying operating power.

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