Machine Vision GigE RJ45 High Flex Ethernet Cable

Machine Vision GigE RJ45 High Flex Ethernet Cable

Machine Vision GigE RJ45 High Flex Ethernet Cable

Machine Vision RJ45 Cable

Machine Vision RJ45 Cable

GigE RJ45 Ethernet Cable

GigE RJ45 Ethernet Cable

Machine Vision GigE 8P8C High Flex Ethernet Cable

Machine Vision GigE 8P8C High Flex Ethernet Cable

Machine Vision GigE RJ45 High Flex Ethernet Cable
Details:
PCM-S-0152
Machine Vision GigE RJ45 High Flex Ethernet Cable is a high-flex Ethernet cable designed specifically for machine vision applications. This type of cable is commonly used in industrial automation, machine vision systems, and other applications that require reliable, high-speed data transmission.
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Description
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This type of cable is often used in robot control systems in industrial automation, data transmission in medical imaging equipment, and experimental equipment connections in scientific research. Its highly flexible design makes it particularly suitable for environments that require frequent movement or bending, while its high-speed data transmission capability ensures stable and reliable communication between devices, thereby improving production efficiency and data acquisition accuracy.

 

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Advantages

 

Highly flexible design: adapts to the needs of frequent movement and bending in industrial environments, reducing downtime caused by cable damage.

 

Gigabit Ethernet compatible: supports high-speed data transmission, ensures stable video and image transmission, and is suitable for high-precision machine vision systems.

 

Durability: durable design, can withstand daily use and physical damage in industrial environments, and extend the service life of the cable.

 

Reliability: ensures the stability and reliability of data transmission, and ensures the requirements of real-time monitoring and precise control.

 

Applications

 

Industrial automation: used to connect various sensors and control devices in industrial robots and automated production lines to realize data acquisition and control instruction transmission.

 

Machine vision system: as a connecting cable between industrial cameras and image processing equipment, it supports real-time transmission and processing of high-definition images and videos.

 

Medical imaging equipment: used in medical imaging equipment, such as CT scanners, X-ray machines, etc., to ensure high-speed and reliable transmission of medical imaging data.

 

Scientific research: connect various scientific instruments and data acquisition equipment in laboratory environments to support the acquisition and analysis of complex experimental data.

 

This M12 to RJ45 cable is suitable for industrial cameras from IDS.
 

UI-5201SE-C-HQ Rev.4.2: AB12279

UI-5201SE-M-GL Rev.4.2: AB12280

 

The UI-5201SE Rev.4.2 GigE industrial camera with the large 1.1" CMOS sensor IMX304 delivers sharp, noise-free images with a resolution of 4104 x 3006 pixels. The global shutter sensor from the second generation of Sony's Pregius series with further improved pixels impresses with its incredible dynamic range and very high sensitivity, particularly for use in medical or measurement technology as well as in traffic monitoring.

ids-gige-ueye-cp-gige-ueye-fa-industrial-machine-vision-cameras

01

Factory / process automation

Cameras are used to monitor, control, and regulate systems, and play a key role in completing positioning and selection tasks.

02

Biotechnology and life sciences

Cameras can be used to analyze group behavior of organisms, such as behavioral pattern research in animal groups, or real-time observation and analysis of cell division processes.

3

Food & beverage

Camera technology can detect contaminants in food, such as foreign matter or defects, to help complete food sorting tasks and monitor packaging filling levels to ensure quality and safety during food production.

04

Agricultural applications

In the agricultural field, cameras can be used to monitor and optimize plant growth. Through image processing technology, farmers can monitor the growth status and health of crops in real time, adjust fertilizer application and irrigation strategies to improve crop yield and quality. 

 

 

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