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FOXBORO P0912CM Product Introduction

Oct 04, 2025 FOXBORO

P0912CM is an industrial grade dual coaxial cable launched by FOXBORO, designed specifically for high-frequency signal transmission and widely used in industrial automation, process control, and data acquisition systems. This cable adopts a dual shielding structure, with high anti-interference ability and long-term stability, suitable for connecting sensors and control systems in harsh environments.

FOXBORO P0912CM

Main features and advantages

Optimization of high-frequency signal transmission

Adopting a dual coaxial design significantly reduces signal transmission loss, ensuring the accuracy and real-time performance of high-frequency signals (such as industrial sensor data).

The high-quality shielding layer effectively suppresses electromagnetic interference and ensures data integrity.

Industrial grade durability

Made of high temperature and corrosion-resistant materials, suitable for working environments ranging from -40 ℃ to 85 ℃, with a humidity range of 5% -95% (non condensing).

IP65 protection level, dustproof and waterproof, suitable for complex scenarios such as factories and chemicals.

Flexible installation and compatibility

Supports modular installation, compatible with Foxboro I/A series control systems and multiple industrial protocols such as Profinet and EtherCAT.

Provide RJ45, DB9 and other interface types to adapt to different device connection requirements.

Long distance transmission capability

The maximum transmission distance reaches 1200 meters, meeting the communication needs of long-distance sensors and controllers.

Technical specifications

Parameter specifications

Model P0912CM

Structural dual coaxial shielding design

Transmission rate 100Mbps (cable bus node mode)

Working temperature -40 ℃ to 85 ℃

Storage temperature -20 ℃ to 75 ℃

Protection level IP65

Interface type RJ45, DB9 (optional)

Power supply requirement 24VDC (cable bus node mode)

Application areas

Industrial automation: Connect sensors, actuators, and PLCs to achieve real-time control of production lines.

Process control: Monitoring of temperature, pressure, and other parameters in the petroleum, chemical, and power industries.

Data acquisition: signal acquisition and transmission of laboratory instruments and testing equipment.

Telecommunications system: Stable transmission of high-frequency signals from base stations and communication equipment.

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