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GE DS200IIBDG1AEA IGBT Gate Driver Board 330mm x 200mm

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xNazwa | GE DS200IIBDG1AEA PCB IGBT Gate Board | Identyfikator produktu | DS200IIBDG1AEA |
---|---|---|---|
Szereg | Mark v | Funkcjonować | Dyskretny pakiet wyjściowy |
Głębokość/długość netto produktu | 330 mm | Wysokość netto produktu | 200 mm |
Szerokość sieci produktu | 100 mm | Waga netto produktu | 2 kg |
Gwarancja | 1 Year | ||
Podkreślić | GE IGBT gate driver board,GE turbine control driver board,IGBT driver board 330mm x 200mm |
GE DS200IIBDG1AEA PCB IGBT Gate Driver Board
Product Details:
The GE DS200IIBDG1AEA is an IGBT (Insulated Gate Bipolar Transistor) Driver Board designed for drive control systems, specifically GE’s Mark V Series. As a revised version of the parent DS200IIBDG1 board (with three significant product updates), its core role is to deliver precise control signals—typically pulse-to IGBT gate terminals, synchronizing with system needs to regulate switching frequency and duty cycle. It also monitors key parameters (temperature, voltage, current) for safe, efficient IGBT operation.
Physically, it features a 34-pin connector for ribbon cable connection, three 8-pin connectors labeled APL, BPL, CPL, for system communication, and nine red indicator LEDs. Strict handling is required: ribbon cables must be gripped by connectors to avoid damage; the board is high-voltage, so no contact with cabinet components is allowed. A thick standard PCB coating protects critical internal hardware.
Key Features:
Precise IGBT Control: Generates PWM signals to regulate IGBT switching, optimizing efficiency and aligning with system operational requirements.
Parameter Monitoring: Tracks temperature, voltage, and current to prevent IGBT damage and ensure safe, consistent performance.
Structured Connectivity: 34-pin (ribbon cable) and APL/BPL/CPL 8-pin connectors enable secure, organized links to system components—cabling routed internally to avoid interference.
Visual Status & Safety: Red LEDs provide clear operational feedback; high-voltage design mandates strict safety protocols to protect users and equipment.
Protective Design: Thick PCB coating safeguards critical hardware, enhancing durability in industrial environments.
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