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IS200AEADH1A GE Mark VIe Rectangular Printed Circuit Board Control Module
| Tempat asal | Amerika Serikat |
|---|---|
| Nama merek | GE |
| Sertifikasi | Certificate of Origin |
| Nomor model | IS200AEADH1A |
| Dokumen | GE-Mark-VIe-VIeS.pdf |
| Kuantitas min Order | 1 buah |
| Harga | $2200 |
| Kemasan rincian | 2400-3000bph |
| Waktu pengiriman | 5-7 hari |
| Syarat-syarat pembayaran | T/T |
| Menyediakan kemampuan | Cina |
| Merek | GE | Nomor Modul | IS200AEADH1A |
|---|---|---|---|
| Katalog | Tandai VIe | Harga Jual | $ 2200 |
| Asal | Amerika Serikat | Kode HS | 8537101190 |
| Kondisi | dalam stok | Waktu Pimpin | 3-5 hari kerja |
| Berat Kotor/Berat Pengiriman | 2.2 lbs / 35.2 oz / 1kg | Ukuran kemasan | 16cmx16cmx12cm |
| Pelabuhan Pelayaran | Xiamen | Warrenty | 1 Tahun |
| Pembayaran | T/T | Mitra kurir | DHL, UPS, TNT, FedEx dan EMS |
The IS200AEADH1A is a high-performance industrial I/O "Grid Fork Board" belonging to the GE Mark VIe Speedtronic control system family. It serves as a core I/O signal management component for the GE Mark VIe Wind turbine control system and is also applicable to gas turbines, steam turbines, and Balance of Plant (BOP) control applications.
This model acts as a critical signal "bridge" and "hub" within the automation control system. Its primary function is to route signals from field terminal boards to the processor via the internal backplane bus, enabling deterministic data exchange within the I/O network. The module manages various I/O signals—including digital inputs/outputs, relay outputs, and analog inputs—ensuring precise communication between system components.
- High Reliability: Features industrial-grade components and a conformal coating design, ensuring stable, long-term operation in harsh environments.
- Flexible Adaptability: Supports various connection methods and mounting configurations, making it compatible with diverse control cabinets and field devices.
- Robust Signal Processing: Minimizes signal transmission loss, ensuring signal integrity and real-time performance.
- Easy Maintenance: Equipped with fault indication capabilities to facilitate troubleshooting and maintenance.
- System Compatibility: Fully compatible with the GE Mark VIe control system, allowing seamless integration with CPU modules, I/O modules, host computers, and other equipment.
- LED indicator check: Periodically check the power, operation, and fault indicators to confirm the module is operating normally.
- Software self-test: It is recommended to perform a self-test once a year using PAC Machine Edition or ToolboxST software to check channel diagnostic status (e.g., abnormal input signals, relay faults, communication errors).
- Heat dissipation check: If the module is found to be overheating, inspect the heat sink and ventilation conditions; clean off dust or replace the fan if necessary.
At a large-scale wind farm, the IS200AEADH1A serves as the core I/O terminal board for the Mark VIe Wind control system, interfacing various sensors (monitoring wind speed, temperature, vibration, etc.) and actuators (such as those for pitch and yaw control) within the wind turbine units.
The module enables efficient management of a high volume of I/O signals via 36 terminal connections; its conformal coating design effectively withstands the salt spray and high humidity typical of offshore wind farm environments, ensuring the turbine's stable, long-term operation.
Yes. The Mark VIe architecture supports removing and replacing this module while the system is powered, provided the application software is configured for online maintenance mode. However, please note that electrical connections at the terminal block must be performed while the power is off.
No. This module lacks a front faceplate and is not designed to be inserted into standard 13-slot or 21-slot Mark VIe VME rack architectures; instead, it is mounted specifically using the drilled holes at the four corners of the PCB.
After installation, check the diagnostic status LEDs on the front of the module to confirm it has completed its power-up self-test and established communication with the processor. Also, ensure the mounting screws are fully tightened to maintain structural contact with the backplane connector.

