Brand:Honeywell
Model:MU-KFTA05
Submodel:FTA I/O Cable
Module Category:Industrial Control Systems
Conductor Material:High-quality copper
Insulation Material:Teflon
Maximum Operating Temperature:125°C
Minimum Operating Temperature:-40°C
Current Rating:Up to 10A
Voltage Rating:Up to 250V AC / 300V DC
Cable Length:Available in 10m, 20m, 30m, and 50m
Connectors:Robust, corrosion-resistant, industrial-grade
Shielding:Fully shielded for EMI/RFI protection
Certifications:CE, UL, RoHS compliant
The Honeywell MU-KFTA05 FTA I/O Cable is specifically engineered for demanding industrial environments, ensuring reliable operation across a wide range of temperatures. It is designed to withstand harsh conditions, including dust, moisture, and extreme temperatures, making it ideal for applications in manufacturing, oil & gas, and process control industries.
Featuring a rugged construction with a tinned copper conductor and PVC insulation, this cable ensures high electrical conductivity and excellent signal integrity, crucial for accurate data transmission in automated systems. The M12 X 1 female threaded connector provides secure and easy connection options, compatible with industry-standard devices.
With an operating temperature range from -40°C to +85°C, this cable can function reliably in virtually any industrial setting, from freezing cold environments to hot manufacturing floors. Its IP67 rating ensures protection against dust and water ingress, guaranteeing dependable performance even under challenging conditions.
Equipped with CE, UL, and FCC certifications, the Honeywell MU-KFTA05 FTA I/O Cable complies with international safety and quality standards. This not only ensures reliability and safety but also simplifies regulatory compliance for our global customer base.
Our team of experts stands ready to assist you in selecting the right length and connector type to meet your specific project requirements. Whether you’re upgrading existing systems or integrating new components, we provide comprehensive support to ensure seamless integration and optimal system performance.






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