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  • DS200CTBDG1A | General Electric Terminal Board Relay Solenoid
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  • DS200CTBDG1A | General Electric Terminal Board Relay Solenoid

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    DS200CTBDG1A | General Electric Terminal Board Relay Solenoid
    • ¥29985.00
      ¥345887.00
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    Weight:2.500KG
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Description
DS200CTBDG1A | General Electric Terminal Board Relay Solenoid

DS200CTBDG1A | General Electric Terminal Board Relay Solenoid

Product Description P/N: DS200IIBDG1A DESCRIPTION / SPECIFICATIONS Description The DS200IIBDG1A, a printed circuit board from General Electric, is officially designated as an IGBT Gate Driver Board, as per the specifications outlined in the original Mark V Turbine Control System Series instructional materials. Belonging to the Mark V Series, this PCB finds its application in the management and control systems of wind, steam, and gas turbine automated drive assemblies. Part of a legacy series, the Mark V, this board represents one of the final iterations of General Electric products featuring the patented Speedtronic control system technology. The DS200IIBDG1A is an updated version of the DS200IIBDG1, distinguished by its singular A-rated functional product revision. 

 Technical Specifications Part # DS200IIBDG1A Category Drives Subcategory Gate Driver Board Technology IGBT (Insulated-Gate Bipolar Transistor) Series Mark V Application Turbine Control Information About DS200IIBDG1A The General Electric DS200IIBDG1A is a highly advanced gate driver board designed for use in industrial drive systems, particularly in turbine control applications. As part of the prestigious Mark V series, this gate driver board is engineered to deliver precise and reliable performance, leveraging the latest IGBT (Insulated-Gate Bipolar Transistor) technology. 

This cutting-edge technology ensures optimal efficiency and control, making the DS200IIBDG1A an essential component for modern industrial automation and drive systems. Manufactured by General Electric, a leader in industrial automation technology, the DS200IIBDG1A gate driver board is designed to meet the rigorous demands of contemporary industrial environments. Its primary function is to control the gates of IGBTs, which are crucial for managing power flow and ensuring efficient operation of turbine control systems. 

The board's advanced design and robust construction ensure long-term reliability and consistent performance, even under the harshest operating conditions. The DS200IIBDG1A is categorized under Drives and falls specifically within the Gate Driver Board subcategory. This classification highlights its vital role in the precise control of IGBT gates, ensuring that the drive system operates smoothly and efficiently. The use of IGBT technology in this gate driver board provides several advantages, including higher efficiency, faster switching speeds, and greater reliability compared to traditional bipolar transistors. 

These benefits make the DS200IIBDG1A an ideal choice for applications that demand high performance and precision. One of the key features of the DS200IIBDG1A is its integration into the Mark V series, known for its advanced capabilities and exceptional reliability in industrial applications. The Mark V series is designed to provide comprehensive solutions for turbine control, and the DS200IIBDG1A plays a critical role in ensuring the system's overall performance and stability. Its compatibility with other components in the Mark V series facilitates seamless integration, reducing setup time and ensuring efficient operation. 

 The application of the DS200IIBDG1A in turbine control systems underscores its importance in maintaining the efficiency and reliability of these complex systems. Turbine control requires precise management of power flow and rapid response to changing conditions, and the DS200IIBDG1A's advanced gate driving capabilities ensure that these requirements are met. Its ability to deliver precise control of IGBT gates enhances the overall performance of the turbine control system, contributing to improved efficiency and reduced operational costs. In addition to its technical capabilities, the DS200IIBDG1A gate driver board is supported by comprehensive documentation and user manuals. These resources provide detailed instructions for installation, configuration, and troubleshooting, ensuring that users can fully leverage the board's features and maintain optimal system performance.

 The availability of thorough documentation simplifies the integration process and aids in the quick resolution of any issues that may arise. In summary, the General Electric DS200IIBDG1A gate driver board is a high-performance, reliable solution for controlling IGBT gates in turbine control applications. Its integration into the Mark V series, use of advanced IGBT technology, and robust construction make it an indispensable component for modern industrial drive systems. By providing precise and efficient control, the DS200IIBDG1A enhances the performance and reliability of turbine control systems, reflecting General Electric's commitment to innovation, quality, and excellence in industrial automation technology. 

 Manufacturer information General Electric (GE) is a multinational conglomerate founded in 1892, based in the United States. It operates in various industries, including aviation, healthcare, renewable energy, and power. GE is known for its innovations in technology, manufacturing, and infrastructure solutions. IQElectro is not an authorized distributor. QElectro LLC (IQElectro) is NOT an Authorized Distributor or in any way affiliated with Rockwell Automation, Siemens, or any other Manufacturers. IQElectro is NOT an Authorized Dealer of this product. The product may be of older version, date codes, or design than that available from authorized dealers. As IQElectro is not an authorized dealer of this product, the Original Manufacturer's Warranty and Support DO NOT apply.IQElectro sells SURPLUS onlyand DOES NOT SELL SOFTWARE or FIRMWARE licenses For more detailed information, please refer to the full version of our disclaimer policy Disclaimer Policy.

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