The ABB DSQC676 3HAC031612-001 Circuit Board is an advanced, versatile component designed for seamless integration into industrial automation systems, offering enhanced control and monitoring capabilities.
The ABB DSQC676 3HAC031612-001 Circuit Board is an advanced, versatile component designed for seamless integration into industrial automation systems, offering enhanced control and monitoring capabilities.
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Manufacturing Brand:ABB
Model:DSQC676
Sub-Model:3HAC031612-001
Board Type:Modular Control Board
Interface:Ethernet
Operating Temperature:-20°C to +70°C
Power Consumption:Less than 15W
Dimensions (LxWxH):120mm x 59mm x 31mm
Connectors:4x Digital I/O, 2x Analog I/O
The ABB DSQC676 3HAC031612-001 Circuit Board is engineered to withstand harsh industrial environments, ensuring reliable operation even under extreme conditions. It features an aluminum alloy casing that not only provides robust protection against physical impacts but also aids in heat dissipation, optimizing performance over long periods.
This interface module is equipped with 8 digital inputs and 8 digital outputs, enabling flexible connectivity to a wide range of industrial devices and systems. Its compatibility with Profinet communication protocol ensures seamless data exchange within the automation network, facilitating efficient control and monitoring.
Designed with precision, the ABB DSQC676 3HAC031612-001 offers a maximum power consumption of 1W, making it an energy-efficient choice for industrial applications. This feature contributes to cost savings on energy bills without compromising on performance.
The board’s operating temperature range from -20°C to +60°C ensures its functionality across diverse geographical locations, from cold warehouses to hot production floors. This wide operational range makes it a versatile solution for various industrial settings.
Ease of installation and maintenance are further advantages of the ABB DSQC676 3HAC031612-001 Circuit Board. Its compact size and well-designed connectors simplify setup procedures, reducing downtime and improving overall system reliability.
