Kawasaki Robot Teach Pendant Cable 50979-0360L10
Product Description
The Kawasaki Robot Teach Pendant Cable is a crucial component for ensuring seamless communication between a Kawasaki teach pendant and an industrial robot. As a high-quality connection solution, it enables operators to program, control, and monitor robot operations efficiently. Whether in manufacturing, assembly, or automation environments, a reliable Kawasaki Teach Pendant Cable ensures consistent performance and minimal downtime.
The Kawasaki Robot Programming Pendant Cable is specifically designed for Kawasaki industrial robots, offering a secure and stable data transmission channel between the teach pendant and the robot controller. The cable is manufactured with durable PVC sheath material and a high-purity bare copper wire core, ensuring excellent conductivity and long service life even in harsh industrial environments.
Product Specification
Origin: | Japan |
Brand: | Kawasaki |
Sheath Material: | PVC |
Core Material: | Bare Copper Wire |
Number of Cores: | 60 |
Material Shape: | Round Line |
Tensile Strength: | 100 |
Length: | 10m,12m,15m,20m |
Application: | Kawasaki F Control cabinet and Kawasaki teah pendant |
Product Name: | Kawasaki Robot Teach Pendant Cable 50979-0360L10 |
It is commonly used in:
Industrial automation systems
Robot assembly lines
CNC machine tending
Material handling applications
Reliable Communication: Ensures smooth signal transfer between the teach pendant and the controller.
High Durability: Withstands constant flexing and mechanical stress in production environments.
Precise Fit: Tailored to Kawasaki robot systems for easy installation and maintenance.
Multiple Lengths Available: Flexible options to suit different factory layouts.
The KAWASAKI Robot Cables typically has a specific length, connector type, and pin configuration that is designed to fit the particular model of Kawasaki robot and teach pendant being used. It may be shielded to protect against electromagnetic interference and have strain relief to prevent damage from bending or pulling.