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  • DS200NATOG3A | General Electric Voltage Feedback Scaling Board
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  • DS200NATOG3A | General Electric Voltage Feedback Scaling Board

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    DS200NATOG3A | General Electric Voltage Feedback Scaling Board
    • ¥606.00
      ¥1159.00
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    Weight:2.500KG
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Description
DS200NATOG3A | General Electric Voltage Feedback Scaling Board

DS200NATOG3A | General Electric Voltage Feedback Scaling Board

Product Description P/N: DS200NATOG3A DESCRIPTION / SPECIFICATIONS Description The General Electric Voltage Feedback Sensing Board DS200NATOG3A is designed to comply with UL, EC, and CSA Agency Standards for controlled and known transients. It features various stab connectors and wire jumper combinations. Technical Specifications Brand General Electric Board Type Voltage Feedback Scaling Board Part Number DS200NATOG3A Series LS2100 Function Voltage Feedback Scaling Board Information About DS200NATOG3A The General Electric DS200NATOG3A is a specialized Voltage Feedback Scaling Board designed for use within the LS2100 series of industrial control systems. 

This board is a critical component in managing the precise scaling of voltage feedback signals, which is essential for maintaining the accuracy and stability of power conversion processes in high-demand environments. As a key element of the LS2100 series, the DS200NATOG3A is engineered to meet the rigorous requirements of modern industrial applications, ensuring reliable performance and long-term operational integrity. The DS200NATOG3A plays a crucial role in the LS2100 system by processing voltage feedback from various parts of the power control architecture. This feedback is vital for real-time monitoring and adjustment of voltage levels, ensuring that the system operates within its optimal parameters. 

By accurately scaling these voltage feedback signals, the board allows the control system to make precise adjustments that enhance the efficiency and safety of the overall operation. This is particularly important in applications where maintaining consistent voltage levels is critical to the performance and longevity of the equipment. One of the defining features of the DS200NATOG3A is its robust design, tailored to withstand the harsh conditions typically found in industrial environments. The board is built to handle temperature variations, electrical noise, and mechanical vibrations, all of which are common in settings such as power plants, manufacturing facilities, and other heavy-duty industrial sites. This durability ensures that the DS200NATOG3A can perform reliably over extended periods, minimizing the need for maintenance and reducing the risk of unexpected system failures. 

 As part of the LS2100 series, the DS200NATOG3A is designed to integrate seamlessly with other components within the series, providing a cohesive solution for voltage feedback management. This integration is facilitated by the board鈥檚 standardized connectors and interfaces, which simplify the installation process and ensure compatibility with existing systems. The board鈥檚 design also allows for easy replacement or upgrading, making it a flexible choice for facilities looking to enhance their voltage control capabilities without extensive system overhauls. The primary function of the DS200NATOG3A is to scale voltage feedback signals to levels that are usable by the control system鈥檚 processing units. This scaling process is crucial for the accurate interpretation of feedback data, which in turn informs the control decisions that keep the system running smoothly. Whether it鈥檚 regulating the output of a power converter, stabilizing voltage levels in a distribution system, or managing the electrical characteristics of complex machinery, the DS200NATOG3A ensures that the control system has the accurate feedback it needs to maintain optimal performance. 

 The DS200NATOG3A is also backed by General Electric鈥檚 long-standing reputation for quality and innovation in the field of industrial automation and power control. As a component of the LS2100 series, it benefits from the extensive research and development that has gone into making this series a trusted choice for industrial professionals around the world. The board鈥檚 design reflects the latest advancements in voltage feedback technology, offering users a reliable and effective solution for managing critical voltage parameters. In summary, the General Electric DS200NATOG3A Voltage Feedback Scaling Board is a high-performance, reliable component designed to enhance the voltage control capabilities of the LS2100 series. Its ability to accurately scale voltage feedback signals is essential for maintaining the efficiency, safety, and stability of industrial control systems. 

With its robust construction, seamless integration within the LS2100 series, and ease of installation, the DS200NATOG3A provides a dependable solution for a wide range of industrial applications. Whether used in power generation, manufacturing, or other heavy-duty industries, this board delivers the precision and reliability needed to support critical voltage control functions. 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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