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  • Applied Materials 50416002300 - AMAT ASSY SGI SILICON GRAPHICS O2 SYSTEM / SGI
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  • Applied Materials 50416002300 - AMAT ASSY SGI SILICON GRAPHICS O2 SYSTEM / SGI

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    The Applied Materials 50416002300 is a high-performance automation component designed to meet the rigorous demands of the power industry, petrochemical sectors, and general automation applications. Engineered with precision and durability in mind, th
    • ¥12731.00
      ¥6888.00
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    Weight:9.950KG
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Description
The Applied Materials 50416002300 is a high-performance automation component designed to meet the rigorous demands of the power industry, petrochemical sectors, and general automation applications. Engineered with precision and durability in mind, th


Applied Materials 50416002300 - AMAT ASSY SGI SILICON GRAPHICS O2 SYSTEM / SGI

The Applied Materials 50416002300 is a high-performance automation component designed to meet the rigorous demands of the power industry, petrochemical sectors, and general automation applications. Engineered with precision and durability in mind, this model offers exceptional input/output capacity, enabling seamless integration into complex industrial control systems. Its robust construction ensures long-lasting performance even in harsh operating environments, making it ideal for mission-critical automation tasks where reliability and uptime are paramount. Key technical features of the Applied Materials 50416002300 include an advanced interface architecture that supports high-speed data throughput, allowing for rapid communication between connected devices. This model boasts an input capacity capable of handling a wide range of signal types and voltage levels, ensuring compatibility across diverse industrial equipment. 


The output stage is equally versatile, providing stable and accurate signal delivery to actuators, sensors, and other peripheral devices. Built with high-grade materials and tested against stringent quality standards, the 50416002300 offers superior resistance to electromagnetic interference (EMI) and thermal stress, enhancing operational stability in electrically noisy or temperature-variable environments. In practical terms, the application of 50416002300 in power industry settings includes real-time monitoring and control of power generation units, substations, and distribution networks. Its reliable signal processing capabilities improve system responsiveness and safety, reducing downtime and maintenance costs. Within petrochemical plants, the model excels at integrating with process automation systems to regulate flow, temperature, and pressure parameters accurately, contributing to optimized production efficiency and compliance with safety regulations. 


For general automation purposes, the 50416002300 supports a broad range of industrial automation equipment, enhancing system scalability and facilitating predictive maintenance through precise data acquisition. When compared to other Applied Materials automation products, the 50416002300 stands out for its balanced combination of durability and input/output versatility. For example, while models like the Applied Materials 0010-77769 and Applied Materials 0040-62413 offer specialized interface options, the 50416002300 delivers a more comprehensive compatibility profile with a wider range of industrial protocols. Additionally, unlike the Applied Materials 0200-10324 and Applied Materials 0190-86771, which focus primarily on signal conditioning, the 50416002300 integrates both conditioning and robust communication capabilities within a single unit, simplifying system architecture and reducing installation complexity. 


Alongside the Applied Materials 50416002300, we also offer complementary models such as the Applied Materials 0100-A0009 and Applied Materials 0190-35628, which provide enhanced sensor interfacing and control logic functions. For advanced system configurations, the Applied Materials 8310 SYSTEM and Applied Materials FCCD 143AEDC can be paired with the 50416002300 to deliver expanded automation and diagnostic capabilities. The Applied Materials 0020-08465 and Applied Materials 30712640100 further extend the functionality spectrum by supporting additional I/O channels and specialized communication protocols. These combinations enable highly customizable automation solutions tailored to specific industrial requirements. Applied Materials 50416002300’s integration flexibility is complemented by its ease of maintenance and upgradeability, making it a preferred choice over models such as Applied Materials 001109-2 and Applied Materials 0041-06736, which might require more frequent servicing or lack modular design features. 


The 50416002300’s robust construction and advanced thermal management also provide a distinct advantage over other variants like Applied Materials 50416002500 and Applied Materials Plate Assy TBH, which may not perform as reliably under extreme environmental stresses. For industries seeking high-efficiency automation solutions, the Applied Materials 50416002300 offers an unmatched combination of performance, reliability, and adaptability. Its proven application in power industry, petrochemical, and general automation settings underscores its versatility and technical superiority. By leveraging the latest advancements in industrial automation technology, this model ensures that operational goals are met with precision and consistency. 


In summary, the Applied Materials 50416002300 stands as a cornerstone product within the Applied Materials automation products lineup, distinguished by its superior input/output capacity, exceptional durability, and broad applicability. Whether deployed alongside models such as Applied Materials 0200-20378, Applied Materials 9090-01251, or Applied Materials 0010-04514, it forms the backbone of efficient, reliable, and scalable automation systems. For organizations looking to enhance their industrial control infrastructure, the 50416002300 represents a smart investment, delivering performance and dependability that align with the evolving demands of modern industrial environments.

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