GE IS200TBACIH1B – Advanced Mark VI Circuit Board, Optimized for Industrial Control Solutions
The GE IS200TBACIH1B Mark VI Circuit Board is a high-performance, versatile component designed for advanced industrial automation systems. It ensures reliable operation in demanding environments, offering seamless integration and superior control capabilities.
Detailed content
Model:IS200TBACIH1B
Series:Mark VI
Category:Industrial Automation Circuit Board
Manufacturer:General Electric
Dimensions:12.7 x 12.7 x 2.5 cm
Weight:0.32 kg
Power Consumption:Max 10 W
Operating Temperature Range:-40°C to +85°C
Storage Temperature Range:-55°C to +125°C
Communication Interface:RS-485
Compatibility:Mark VI Control Systems
Engineered with precision for high-performance industrial applications, the GE IS200TBACIH1B Mark VI Circuit Board is a cornerstone of advanced automation solutions. This circuit board is meticulously designed to provide unparalleled reliability and efficiency, ensuring seamless integration into complex industrial control systems.
Featuring an ultra-wide operating temperature range (-40°C to 85°C), this circuit board is built to withstand harsh environmental conditions, making it ideal for applications in extreme climates. Its robust construction ensures longevity and minimal maintenance requirements.
With support for multiple communication protocols including Modbus and Ethernet/IP, the GE IS200TBACIH1B facilitates easy connectivity with a wide array of industrial devices and systems. This compatibility enhances system flexibility and simplifies setup processes.
Equipped with 20 input and output channels, this circuit board offers versatile functionality, allowing for precise control over industrial processes. Its ability to handle both digital and analog signals makes it suitable for a broad spectrum of applications, from process control to machinery operation.
Crafted from high-quality materials, the GE IS200TBACIH1B ensures durability and stability in demanding industrial settings. The circuit board’s compact design and efficient power management contribute to its overall performance, making it an optimal choice for optimizing industrial automation systems.