The ABB 3HAC022087-003 Cable Harness, Multibus is designed for high-speed communication in industrial automation systems, ensuring reliable data transfer and enhanced system performance.
The ABB 3HAC022087-003 Cable Harness, Multibus is designed for high-speed communication in industrial automation systems, ensuring reliable data transfer and enhanced system performance.
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Material:High-grade copper alloy
Cable Length:8 meters
Connector Type:Multibus compatible
Data Transfer Rate:Up to 1Mbps
Environmental Compatibility:IP67 rated for dust and waterproof
Operating Temperature Range:-20°C to +70°C
Wiring Capacity:2x 10 AWG wires
The ABB 3HAC022087-003 Cable Harness, Multibus is a critical component in industrial automation, engineered for robust connectivity in challenging environments. Its high-grade copper alloy construction ensures durability and longevity, while the multibus compatibility ensures seamless integration with existing systems.
Equipped with a 8-meter cable length, this harness is designed to meet the demands of large-scale industrial installations, providing ample reach for efficient data transmission across various control systems. The ability to handle up to 1Mbps data transfer rate ensures fast and accurate information exchange, crucial for real-time operation management.
With an IP67 rating, the cable harness is waterproof and dustproof, making it ideal for use in harsh industrial conditions. This feature is particularly beneficial in manufacturing floors where environmental factors can pose significant challenges to equipment performance.
Operating within a temperature range from -20°C to +70°C, the ABB 3HAC022087-003 Cable Harness, Multibus is designed to withstand extreme temperatures encountered in different industrial settings. This wide operating range ensures consistent performance across various climates, enhancing reliability and reducing maintenance needs.
The wiring capacity of 2x 10 AWG wires allows for flexible cabling solutions, accommodating different data and power requirements without compromising on the quality of signal transmission. This design choice simplifies installation processes and ensures optimal utilization of space within control panels or machinery.