Description
Technical Specifications
- Product Model: IS200HSLAH2ADE
- Brand: GE General Electric
- Warranty: One Year
- Input Voltage: 5 V DC local board supply; powered by Mark VI host backplane
- Operating Temperature: ‑40 °C ~ +85 °C, 5‑95 %RH non‑condensing
- Storage Temperature: ‑40 °C ~ +85 °C
- Response Time: HS‑SLR‑LNK high‑speed serial link real‑time data cycle ≤125 µs
- Protection Class: IP20, cabinet‑mount PCB assembly
- Accuracy Class: Communication interface board, no analog measurement accuracy
- Output Frequency: Not applicable, digital serial communication
- Rated Current Range: Board consumption max 220 mA; transformer‑isolated link circuits
- Communication Interface: HS‑SLR‑LNK isolated serial link ports, FPGA‑based processing, multi‑way connectors for system inter‑board connection
- Supported Protocols: GE proprietary HS‑SLR‑LNK high‑speed serial link for Mark VI turbine control system
- Overload Capacity: On‑board surge, ESD and isolation transformer protection; fault‑isolation for link‑side disturbances
- Dimensions: 114.3 mm × 82.6 mm × 19.1 mm; weight approx. 0.09 kg

Application Scenarios
- Gas‑Steam Turbine Mark VI Control Rack Internal Communication: Realizes high‑speed real‑time data interaction between main CPU board, I/O packs and protection‑logic boards, guarantees closed‑loop turbine control, sequence‑logic and protection‑signal fast transmission.
- Combined‑Cycle Power‑Plant Control‑System Cabinet: Deployed in Mark VI control racks for combined‑cycle units, ensures stable real‑time communication for multi‑module co‑operation of gas‑turbine, steam‑turbine and auxiliary‑equipment control.
- Oil‑&‑Gas Compressor‑Drive‑Turbine Control System: Adapts to heavy‑industry cabinet electromagnetic‑noise environment; transformer‑isolated serial link improves anti‑interference performance for field‑site operation.
- Legacy Mark VI Turbine‑Control Retrofit & Spare‑Part Replacement: Direct‑fit spare component for existing Mark VI hardware. Mechanical mounting hole and HS‑SLR‑LNK electrical‑interface compatibility minimizes cabinet‑rework and shortens plant‑downtime during board swap‑out.







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