The ABB B3HAC058040-001 IRB 67001-6 Manipulator Harness offers advanced control solutions for robotics applications, ensuring precise movement and enhanced productivity.
The ABB B3HAC058040-001 IRB 67001-6 Manipulator Harness offers advanced control solutions for robotics applications, ensuring precise movement and enhanced productivity.
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Material:High-grade engineering plastics and metals
Connector Type:Industry-standard connectors
Cable Length:Customizable cable lengths
Temperature Range:-20°C to +70°C
Electrical Ratings:Current Rating: 15A, Voltage Rating: 400V AC
Wire Capacity:14 AWG wire capacity
Insulation Level:UL rated, Class 1, Division 2, Hazardous Location
The ABB B3HAC058040-001 IRB 67001-6 Manipulator Harness is designed with precision and durability in mind, making it an indispensable component for robotic systems requiring high-speed and precise movements. It is compatible with the ABB IRB 6700 series robots, providing a seamless integration experience.
Featuring industry-standard connectors, this harness ensures compatibility with a wide range of robotic components and peripherals, facilitating easy installation and maintenance. The customizable cable lengths allow for flexibility in assembly and space optimization within the manufacturing environment.
Engineered for operation within a broad temperature range (-20°C to +70°C), the harness is suitable for various industrial settings, ensuring reliable performance regardless of environmental conditions. Its UL-rated insulation level supports safe operation in hazardous locations, enhancing safety standards.
With a current rating of 15A and a voltage rating of 400V AC, this harness is capable of handling the electrical demands of high-performance robotic applications. The inclusion of 14 AWG wire capacity allows for efficient data and power transmission, optimizing system performance.
Manufactured from high-grade engineering plastics and metals, the ABB B3HAC058040-001 IRB 67001-6 Manipulator Harness offers exceptional strength and resistance to wear and tear. This robust construction ensures longevity and reduces maintenance requirements, contributing to overall operational efficiency.
