Product Description P/N: IS200SPIDG1A DESCRIPTION / SPECIFICATIONS Description The GE IS200SPIDG1A Speedtronic Terminal Board, part of the Mark VI system, offers secure and efficient terminal connections for signal transmission. It is designed for reliable operation in complex industrial automation, ensuring precise control and robust performance in demanding environments. Technical Specifications Condition New / Never Used Surplus Brand General Electric Category PLCs/Machine Control Part Number IS200SPIDG1A Subcategory PC Board PLC/Add-On Board Functional Acronym SPID Mount Metal Chassis Port I/O for IS220PPRFH units Operating Temperature -25 to +50掳C Information About IS200SPIDG1A The IS200SPIDG1A is a General Electric Speedtronic Terminal Board designed for use within the Mark VI series of turbine control systems. This component plays a crucial role in the efficient operation and control of industrial turbines, providing essential connectivity and interface functions between various system modules. Engineered with precision, the IS200SPIDG1A serves as a pivotal element in the overall architecture of the Mark VI system, ensuring seamless communication and integration of input/output signals. Designed for robust industrial environments, the IS200SPIDG1A is mounted within a metal chassis, providing durability and protection against physical and environmental challenges. This metal chassis not only offers mechanical stability but also aids in shielding the electronic components from electromagnetic interference (EMI), which is critical in maintaining the integrity of the control signals.
The board鈥檚 sturdy construction ensures reliable operation even in harsh conditions, making it suitable for use in a wide range of industrial applications. The IS200SPIDG1A is specifically designed to interface with IS220PPRFH units, allowing for precise control and monitoring of turbine operations. The board features a well-organized layout of input and output ports, which are essential for the accurate transmission of data between the control system and the turbine hardware. These I/O ports are strategically positioned to facilitate easy connections and minimize the risk of signal loss or degradation, ensuring that the system operates at peak efficiency. Operating within a temperature range of -25 to +50掳C, the IS200SPIDG1A is built to withstand varying thermal conditions, which is a common requirement in industrial settings where temperature fluctuations are frequent. This wide operating temperature range ensures that the board maintains optimal performance even in challenging environments, such as those found in power plants or other heavy industrial facilities. The ability to function reliably across this temperature spectrum is a testament to the board鈥檚 robust design and high-quality components. In addition to its functional capabilities, the IS200SPIDG1A also incorporates advanced diagnostic features that enable proactive maintenance and troubleshooting. These features allow for real-time monitoring of the board鈥檚 performance, helping to identify potential issues before they escalate into more serious problems. This proactive approach to maintenance reduces downtime and enhances the overall reliability of the Mark VI control system, contributing to more efficient and cost-effective turbine operations. The SPID functional acronym associated with the IS200SPIDG1A signifies its role as a critical component within the Speedtronic Mark VI system. As part of the broader Mark VI architecture, the IS200SPIDG1A contributes to the system鈥檚 overall flexibility and scalability, allowing for customized configurations that meet the specific needs of different industrial applications. This flexibility is particularly important in industries where operational requirements can vary significantly, such as in the energy sector, where turbines are often tailored to meet specific power generation demands. Furthermore, the IS200SPIDG1A鈥檚 integration with the Mark VI system ensures compatibility with other components within the Speedtronic family, facilitating seamless upgrades and system expansions. This compatibility is crucial for maintaining the long-term viability of the control system, as it allows operators to incorporate new technologies and enhancements without the need for extensive system overhauls. The board鈥檚 design also takes into consideration the ease of installation and maintenance, with clearly labeled connectors and a user-friendly interface that simplifies these processes.
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