Model Number:1MRK000173-BBr03
Type:Binary I/O Module
Technology:High-speed digital input/output
Operating Temperature Range:-25°C to +70°C
Power Consumption:Max 5 W
Connection Type:Modular terminal block
Number of Channels:8 Input / 8 Output
Communication Interface:EtherCAT compatible
The ABB 1MRK000173-BBr03 Binary I/O Module is engineered for seamless integration into complex industrial control systems, offering unparalleled reliability and robust performance. Its compact design ensures minimal footprint, making it ideal for space-constrained environments.
With its high-speed Profinet interface, this module facilitates efficient data transfer and real-time communication, enhancing system responsiveness and reducing downtime.
Featuring 16 digital input and output channels, the module provides a versatile solution for various automation tasks, enabling precise control over actuators, sensors, and other system components.
The module operates within an extended temperature range (-25°C to +60°C), ensuring reliable performance under varying environmental conditions. Its low power consumption contributes to energy-efficient operation, further optimizing system economics.
Designed with durability in mind, the ABB 1MRK000173-BBr03 Binary I/O Module is constructed from high-quality materials, ensuring longevity and minimal maintenance requirements. It adheres to stringent safety standards, ensuring compliance with industry regulations.

Looking for reliable industrial automation solutions? Our MODULE offers superior performance, competitive pricing, and fast global shipping. Trusted by engineers worldwide for PLC, DCS, and motion control applications.
📦 Fast Delivery | 🔧 Technical Support | 💰 Best Price Guarantee
Contact us today for bulk pricing and availability. We stock major brands including Siemens, Allen-Bradley, ABB, Schneider, Mitsubishi, and more.
🔗 Visit World PLC for more automation products and solutions.
🔗 Explore Weikun Automation for additional industrial control equipment.










There are no reviews yet.