COMOSS's high-speed cable technology feature article was published in the November issue of the Japanese magazine "Imaging Laboratory"
With the rapid development of industrial automation, smart manufacturing, and AI technology, machine vision systems have become an indispensable core technology in fields such as semiconductor inspection, precision assembly, and autonomous driving. These systems demand unprecedented capabilities for high-speed acquisition and analysis of high-precision images.
However, behind the pursuit of extreme speed and accuracy lies a crucial, often overlooked link: the "high-speed transmission cable" connecting the system components. The cable is no longer merely a connecting medium; it is a critical channel that determines image signal integrity, transmission speed, and overall system stability.
CK Wang, CTO of COMOSS Group, deeply explores the vital role of high-speed cables in machine vision applications. The article focuses on the two main threats to cable performance: Return Loss (RL) and Insertion Loss (IL). It reveals the core factors in cable design and manufacturing that affect high-frequency characteristics, including impedance matching, the skin effect, shielding structures, and technical challenges like propagation delay mismatch (Skew), along with their corresponding solutions.
Through this article, you will learn how to ensure cables possess optimal electrical performance and stability, thereby safeguarding the data accuracy and production efficiency of your machine vision system.





However, behind the pursuit of extreme speed and accuracy lies a crucial, often overlooked link: the "high-speed transmission cable" connecting the system components. The cable is no longer merely a connecting medium; it is a critical channel that determines image signal integrity, transmission speed, and overall system stability.
CK Wang, CTO of COMOSS Group, deeply explores the vital role of high-speed cables in machine vision applications. The article focuses on the two main threats to cable performance: Return Loss (RL) and Insertion Loss (IL). It reveals the core factors in cable design and manufacturing that affect high-frequency characteristics, including impedance matching, the skin effect, shielding structures, and technical challenges like propagation delay mismatch (Skew), along with their corresponding solutions.
Through this article, you will learn how to ensure cables possess optimal electrical performance and stability, thereby safeguarding the data accuracy and production efficiency of your machine vision system.




