Mark V LAN Communications Card GE DS200SLCCG3AHD
Manufacturer: GE Fanuc
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Part Number: DS200SLCCG3AHD
Condition:New with Original Package
Product Type: LAN Communication Cards
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
GE DS200SLCCG3AHD Mark V LAN Communication Card
The GE DS200SLCCG3AHD, also cataloged as the DS200SLCCG3AHD LAN Communications Card (SLCC), operates as a dedicated hardware component for data exchange between the host controller and external networks within Mark V Speedtronic Turbine Control platforms. Configured for routing network packets and executing physical node interfacing, the GE DS200SLCCG3AHD provides direct physical/electrical execution.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | DS200SLCCG3AHD |
| Brand | GE |
| Origin | China |
| Weight | 0.25 kg (Shipping weight: 3 kg) |
| Dimensions | 178 x 101 x 30 mm |
| Operating Temp | -20 to +60 deg C |
| Power Consumption | 5 VDC logic supply requirement |
| Communication Protocols | Ethernet / LAN compatible |
| Interface Connectors | Edge connectors and dedicated communication ports |
| Status Indicators | Diagnostic LED array for link and power verification |
| Isolation Profile | Integrated optical and electrical noise isolation |
| Circuit Protection | Conformal coating for environmental resilience |
| Storage Temperature | -40 to +85 deg C |
| Revision Level | G3AHD (backward compatible with baseline G3 boards) |
Industrial Control & Backplane Architecture
The card architecture incorporates specialized transceiver arrays designed to maintain stable backplane bus communication velocity Licences and enforce strict firmware flash compatibility across the legacy rack assembly. The onboard multi-layer printed circuit board employs optical and electrical isolation barriers to shield internal processing logic from common-mode noise and ground potential fluctuations inherent in distributed topologies. Onboard configuration jumpers manage hardware address mapping and signal path optimization, while a dedicated array of diagnostic LEDs displays physical line activity and link state telemetry directly on the faceplate.
Frequently Asked Questions
Q: How does the G3AHD hardware revision designation impact installation in an older Mark V panel?
A: The G3AHD revision denotes incremental circuit optimizations that maintain backward compatibility with preceding G3 baseline versions, requiring no modifications to the backplane architecture or system software parameters.
Q: Can this module be hot-swapped while the turbine control system is online?
A: No, live extraction or insertion of the card is prohibited. Power down the sub-rack logic supply before card removal to prevent transient data bus corruption or destructive electrical arcs across the edge connectors.
Q: What method is used to protect the communication paths from electromagnetic interference within the cabinet?
A: The hardware utilizes localized optical couplers and galvanic isolation barriers to break ground loops and intercept electrical noise before it enters the internal bus processing logic.
Field Installation Guidelines
- Verify that all incoming 5 VDC logic power lines and terminal connections are fully de-energized prior to beginning hardware extraction.
- Ground yourself using a static-dissipative wrist strap connected to a verified earth point on the cabinet frame before removing the card from its packing enclosure.
- Match the physical jumper positions on the new G3AHD assembly exactly to the configuration established on the card targeted for replacement.
- Insert the multi-layer edge connectors straight into the card-cage chassis guides, pushing firmly on the corners until the structural tabs seat into the backplane receptacle.