GE Mark VI Speedtronic IS200VAICH1D VME Analog Input Card
Manufacturer: GE Fanuc
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Part Number: IS200VAOCH1C
Condition:New with Original Package
Product Type: Analog Input Modules
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
GE IS200VAICH1D Mark VI Module
The GE IS200VAICH1D, also cataloged as the IS200VAICH1D VME Analog Input/Output Module, operates as a dedicated hardware component for specific technical tasks within Mark VI Speedtronic Turbine Control System platforms. The module manages raw signal acquisition and routing, conditioning bidirectional analog currents and voltages across high-density execution planes via standard VME backplane interconnects.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | IS200VAICH1D |
| Brand | GE |
| Suffix Code | H1D (Hardware revision D, standard type) |
| Origin | USA |
| Weight | 0.36 kg |
| Dimensions | 2.1 x 18.8 x 26.2 cm |
| Operating Temp | -30 to +65 deg C |
| Power Consumption | 5 V DC via backplane |
| Product Type | VME Analog Input/Output Module |
| Number of Channels | 8 channels |
| Output Signal Types | +/-10 V DC, 4-20 mA DC |
| Resolution | 16-bit D/A conversion |
| Accuracy | +/-0.1% of full scale |
| Load Resistance | >=2 kOhm (voltage), <=750 Ohm (current) |
| Isolation | Channel-to-system isolation, withstands 1500 VAC |
| Response Time | <=1 ms |
| Humidity Range | 5 - 95% RH (non-condensing) |
Industrial Control & DCS Platforms Matrix
The GE IS200VAICH1D architecture implements continuous I/O density scaling through integrated 16-bit converters that process input and output configurations with a systematic response loop response of less than 1 ms. The hardware features structural channel-to-system electrical separation, utilizing barriers rated to withstand 1500 VAC transients to defend internal logic blocks from field grounding anomalies. Firmware flash compatibility guidelines dictated by the primary processing platform govern the operational interface parameters, allowing deterministic multi-signal coordination. Onboard monitoring arrays verify processing integrity across the backplane components, immediately flashing localized diagnostic status LED codes when internal anomalies or open-circuit limits occur.
Frequently Asked Questions
Q: How does the H1D suffix code dictate module deployment parameters during field swaps?
A: Suffix H1D defines a specific hardware revision level. System engineers must verify that the corresponding slot hardware matrix and the existing Mark VI control configuration file support the D revision path before executing a physical module replacement.
Q: Does the module allow hot-plug insertion into an active VME backplane chassis?
A: No. Although structural boundaries provide channel isolation, operators must completely isolate the VME frame power supply prior to extracting or inserting the card to avoid transient voltage breakdown and hardware component damage.
Field Installation Guidelines
- Insert the card assembly smoothly along the VME chassis mounting slots, checking that the rear multi-pin pin matrix mates completely with the passive backplane sockets.
- Ground all field loop instrumentation cables at the designated single-point enclosure terminal rail, keeping the shielding jackets separated from concurrent AC electrical ducts.
- Secure all interface retention screws at the upper and lower faceplate corners to ensure continuous backplane contact and minimize localized chassis vibration displacement.