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  • IS200TRPGH2B | General Electric Mark VI Printed Circuit Board
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  • IS200TRPGH2B | General Electric Mark VI Printed Circuit Board

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    IS200TRPGH2B | General Electric Mark VI Printed Circuit Board
    • ¥552.00
      ¥6498.00
      ¥552.00
      ¥552.00
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    Weight:2.500KG
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Description
IS200TRPGH2B | General Electric Mark VI Printed Circuit Board

IS200TRPGH2B | General Electric Mark VI Printed Circuit Board

Product Description P/N: DS3800NFIB DESCRIPTION / SPECIFICATIONS Description The DS3800NFIB circuit board, designed for the Speedtronic Mark IV series utilized in turbine controls, is a component of the General Electric-produced Mark IV system. Developed since the late 1940s and operational since the late 1960s, the Mark IV series serves as an automation control system for gas and steam turbines, encompassing comprehensive functionalities to meet turbine control requirements. 

This system regulates fuel type, load, speed, temperature, and injection of water and steam, while also facilitating automated startup, shutdown, and cooldown processes. Equipped with built-in diagnostics for troubleshooting, the Mark IV system, managed by the Speedtronic system, oversees fuel, air, and emissions control, fuel sequencing, and comprehensive monitoring of turbine operations. Technical Specifications Part # DS3800NFIB Category PLCs/Machine Control Subcategory PC Board PLC/Add-On Board Function Analog Interface Module Application Turbine Control Information About DS3800NFIB 

 The General Electric DS3800NFIB is a specialized analog interface module designed to enhance the capabilities of PLCs and machine control systems, particularly in turbine control applications. This PC Board PLC/Add-On Board is a critical component that facilitates precise analog signal processing, ensuring optimal performance and reliability in complex industrial environments. As part of the PLCs/Machine Control category, the DS3800NFIB is engineered to provide seamless integration with existing control systems, offering enhanced functionality and improved control precision. 

This module plays a pivotal role in converting and managing analog signals, which are essential for accurate monitoring and control of turbine operations. The DS3800NFIB analog interface module is specifically designed for turbine control applications, where precision and reliability are paramount. It processes various analog signals from sensors and other input devices, converting these signals into digital data that can be interpreted and acted upon by the PLC. This capability is crucial for maintaining the efficiency and safety of turbine operations, as it ensures accurate monitoring of parameters such as temperature, pressure, and flow rates. 

 Constructed with high-quality materials and advanced circuitry, the DS3800NFIB is built to withstand the demanding conditions of industrial environments. Its robust design ensures long-term durability and reliable performance, even in harsh conditions characterized by high temperatures, vibrations, and electrical noise. This durability reduces the risk of component failure and minimizes downtime, contributing to overall operational efficiency. One of the key features of the DS3800NFIB is its ease of integration. The module is designed to be compatible with a wide range of PLC systems, allowing for straightforward installation and configuration. 

This compatibility ensures that the DS3800NFIB can be easily incorporated into existing control setups without the need for extensive modifications, saving time and reducing implementation costs. The DS3800NFIB analog interface module also offers advanced diagnostic and monitoring capabilities. These features enable real-time tracking of the module鈥檚 performance and the integrity of the analog signals it processes. By providing detailed diagnostic information, the module allows for proactive maintenance and troubleshooting, helping to prevent issues before they lead to significant problems. 

This proactive approach enhances system reliability and extends the lifespan of the equipment. In addition to its technical capabilities, the DS3800NFIB is supported by comprehensive documentation, including detailed installation guides, configuration instructions, and troubleshooting tips. This documentation ensures that technicians and engineers have all the information they need to maximize the module鈥檚 performance and maintain system integrity. In summary, the General Electric DS3800NFIB analog interface module is a high-performance, reliable solution designed to enhance the functionality of PLCs and machine control systems in turbine control applications. Its robust construction, advanced signal processing capabilities, and ease of integration make it an invaluable component for industrial environments where precision and reliability are essential. 

By ensuring accurate analog signal processing and providing advanced diagnostic features, the DS3800NFIB helps maintain efficient and safe turbine operations, reflecting General Electric鈥檚 commitment to innovation and quality in industrial automation. 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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