GE IS200TSVCH1AED TSVC Servo‑Valve Interface Terminal Board

IS200TSVCH1AED (TSVC‑AED) is conformal‑coated high‑precision servo‑valve field termination board for GE Speedtronic Mark VI / Mark VIe gas‑steam turbine control system. It acts as physical interface between TSVOH servo‑processor pack and field electro‑hydraulic servo‑valves, LVDT valve‑position feedback sensors and pulse‑rate transducers. It provides LVDT excitation, analog signal conditioning and bidirectional current drive for fuel valves, steam governing valves and IGV inlet‑guide‑vane actuators. Supports simplex, dual redundant and TMR triple‑modular‑redundant architecture. It is critical for turbine valve closed‑loop regulation; hardware fault may result in valve mis‑positioning, load swing or unit trip. Product status: Obsolete, spare‑part only supply available。

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Description

Hardware & Electrical Specifications

  • Model:IS200TSVCH1AED
  • Part Number:IS200TSVCH1AED
  • Module Type:TSVC Servo‑Valve Interface Terminal Board
  • Mounting:Cabinet panel mounting inside turbine control cabinet
  • Logic power supply:24‑28 VDC supplied by TSVOH servo‑processor pack
  • Servo output:2‑channel bi‑directional current output, ±10 mA nominal for electro‑hydraulic servo‑valve coils
  • Feedback input:8‑channel LVDT winding inputs for valve‑position measurement; 2‑channel pulse‑rate frequency inputs for speed‑related transducers
  • LVDT excitation:On‑board isolated 7.5 kHz excitation source for position sensors
  • Isolation:2500 VAC galvanic isolation between field side and control rack side, suppress plant ground‑loop interference
  • Control sampling rate:1 ms closed‑loop servo‑control cycle
  • Interface:Removable barrier‑type screw terminal blocks for field servo‑valve, LVDT and pulse‑transducer wiring; multiple multi‑pin ribbon‑cable connectors for TSVOH servo‑processor interconnection
  • PCB treatment:AED‑revision conformal coated for dust‑moisture‑corrosion resistance
  • On‑board protection:ESD protection, MOV surge suppression, per‑channel over‑current limiting for servo drive outputs, LVDT open‑/short‑circuit fault detection circuit
  • Compatibility note:Cannot run standalone; must match Mark VI / Mark VIe IS200TSVOH1 servo‑processor pack; full servo‑loop simulation test mandatory after replacement。

Environmental Specifications

  • Operating temperature:‑40 ℃ ~ +70 ℃
  • Storage temperature:‑40 ℃ ~ +85 ℃
  • Relative humidity:5%‑95% non‑condensing
  • Installation location:Indoor turbine control cabinet
  • EMC compliance:IEC 61000‑6‑2
  • Certifications:CE

Mechanical Data

  • Weight:approx 1.20 kg
  • Dimension:330 mm × 178 mm × 55 mm
  • Handling note:ESD‑sensitive PCB; high‑precision analog servo‑circuit, anti‑static wrist‑strap mandatory during handling
  • Recommended wire cross‑section:0.75‑2.5 mm² shielded twisted‑pair copper cable for servo‑valve and LVDT position‑sensor wiring
  • Terminal tightening torque:0.6‑1.0 N·m

Main Functions

  1. Removable screw‑terminal field termination for electro‑hydraulic servo‑valve coils, LVDT valve‑position feedback sensors and pulse‑rate transducers.
  2. Generate high‑frequency excitation signal for LVDT sensors, condition position feedback signals and transmit to servo‑processor board.
  3. Convert digital control commands from TSVOH processor into bi‑directional analog current drive signals for field servo‑valves, realize closed‑loop position regulation of turbine control valves.
  4. Galvanic isolation between control rack and field devices, suppress turbine‑hall high‑EMI transient interference.
  5. On‑board channel self‑diagnosis: detect servo‑drive over‑current, LVDT open‑circuit / short‑circuit fault, ribbon‑cable link failure; upload fault alarm to turbine main controller.
  6. LED status indication:
    • Green LED:Board auxiliary power normal
    • Yellow LED:Ribbon‑cable link communication active
    • Red LED:Servo‑channel fault / LVDT sensor fault / link‑failure alarm

Installation & Wiring Requirements

  1. Cut off rack power supply before replacement. Hot‑swap is forbidden. Strict anti‑static protection when handling PCB board.
  2. Secure panel mounting firmly; ensure all multi‑pin ribbon‑cable connectors fully locked without loose contact.
  3. Field servo‑valve and LVDT sensor wiring strictly follow GE Speedtronic Mark VI / Mark VIe wiring manual; analog control cables adopt shielded twisted‑pair, strictly separated from high‑power cables; connect shielding to dedicated ground terminal.
  4. Complete protective grounding according to GE Speedtronic system specification.
  5. After replacement: verify ribbon‑cable link status, check LVDT position reading, execute full‑range valve stroke test, validate closed‑loop servo‑regulation performance before commissioning.
  6. Replacement note: For TMR triple‑redundant system application, hardware consistency of related servo packs shall be verified; full servo‑loop simulation test mandatory before unit put‑into‑service.

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