Product Type:Temperature Converter
Model Number:KFD2-UT2-EX1
Power Supply:24 V DC (Power Rail)
Input Types:Thermocouple, RTD, potentiometer, voltage
Output Mode:Current output 0/4 mA to 20 mA
Operating Modes:Sink or source
Configuration:Configurable by PACTware
Fault Detection:Line fault (LFD) and sensor burnout detection
Safety Rating:Up to SIL 2 acc. to IEC 61508/IEC 61511
Rated Voltage:20 to 30 V DC
Mass:Approx. 130 g
Dimensions:20 x 119 x 115 mm
The KFD2-UT2-EX1 Universal Temperature Converter from Pepperl+Fuchs is engineered to provide unparalleled accuracy and reliability in temperature measurement and conversion tasks. Its compact design makes it ideal for integration into various industrial systems requiring precise temperature control.
Equipped with a single-channel isolated barrier, this converter ensures effective signal isolation and protection against electrical noise, enhancing system stability and safety. The versatile input capabilities allow for seamless connection to a wide range of temperature sensors and devices, making it suitable for diverse applications in manufacturing, automation, and process industries.
Featuring configurable sink or source mode and configurable output, the KFD2-UT2-EX1 adapts easily to different operational requirements, supporting current output from 0/4 mA to 20 mA. This feature enables precise control over processes that require fine-tuned temperature adjustments.
Incorporating advanced fault detection mechanisms, the converter ensures continuous monitoring of line faults and sensor burnouts, preventing system disruptions and safeguarding against potential damage. With its up to SIL 2 safety rating according to IEC standards, the device is designed for critical safety applications, providing peace of mind in high-risk environments.
Crafted with durable materials and precision engineering, the KFD2-UT2-EX1 is built to withstand harsh industrial conditions. Its compact size and efficient mounting options facilitate easy installation and integration into existing systems, minimizing downtime and maximizing operational efficiency.
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