GE DS3800HXPD1C - MARK IV GE CPU EXPANDER BOARD
The GE DS3800HXPD1C MARK IV GE CPU EXPANDER Board is an essential component in industrial control systems, enhancing processing capabilities for more complex tasks.
The GE DS3800HXPD1C MARK IV GE CPU EXPANDER Board is an essential component in industrial control systems, enhancing processing capabilities for more complex tasks.
Type:Microprocessor Expander Board
Model:DS3800HXPD1C
Application Compatibility:Mark IV DS3800 series
Channels Supported:Variable, depending on configuration
Operating Temperature:-40°C to +70°C
Power Supply Voltage:24VDC
Dimensions:L x W x H (mm): 164.3 x 114.3 x 30.4
Weight:Approx. 0.5 kg
Connectors:Standard interface connectors for seamless integration
The GE DS3800HXPD1C MARK IV CPU expander board is specifically designed for integration into GE’s Mark IV control systems, offering an efficient solution for augmenting computational resources. This board is a key component in enhancing the overall performance and reliability of industrial automation processes.
Crafted with precision engineering, this expander board ensures compatibility and seamless integration, enabling users to expand their control systems’ capabilities without compromising stability or performance.
Featuring a robust design suitable for harsh industrial environments, the DS3800HXPD1C MARK IV board operates within an extensive temperature range (-40°C to +70°C), ensuring reliable function in various climates and conditions.
With its flexible configuration options, users can tailor the board to meet specific application needs, whether it’s for increased data processing, enhanced monitoring functions, or expanded I/O connectivity.
Equipped with advanced processing capability and optimized for 12-bit analog input/output, this expander board significantly boosts the analytical and operational efficiency of your control systems, making it an indispensable upgrade for any industrial automation project.
The GE DS3800HXPD1C MARK IV GE CPU EXPANDER Board is an essential component in industrial control systems, enhancing processing capabilities for more complex tasks.