Brand:Foxboro
Model:RTD (Pt-Ni) FBM203 P0916KF-0B P0916AE
Type:Resistance Temperature Detector
Measuring Range:0°C to 500°C
Accuracy:+/-0.05% + 2 digits
Response Time:Less than 5 seconds
Temperature Coefficient:0.00385 /°C
Operating Temperature:-20°C to +85°C
Humidity Range:0% to 95% RH (non-condensing)
Connection Type:2-wire or 3-wire
Power Supply:12V DC
Current Consumption:Max. 25mA
Enclosure Rating:IP65/IP67
Material:Stainless Steel
Dimensions:110mm x 100mm x 40mm
The Foxboro RTD (Pt-Ni) FBM203 control modules are engineered for unparalleled accuracy and reliability in industrial environments. With a wide operational temperature range from -200°C to +1600°C, these modules are capable of measuring and controlling temperatures with an impressive precision of ±0.1% of reading ±2°C. Designed with advanced Pt-Ni resistance sensors, they ensure stable and consistent performance in harsh conditions.
Featuring a robust power supply capability of 9 to 32 VDC, these modules can withstand varying environmental conditions without compromising on functionality. The operating current requirement of ≤5 mA ensures efficient energy use, contributing to lower operational costs.
Offering versatile output types including 4-20 mA or 0-10 V, these modules can seamlessly integrate with various industrial systems for enhanced automation capabilities. The built-in RS-485 MODBUS RTU communication interface allows for seamless data exchange, improving system efficiency and connectivity.
Manufactured with high-quality materials, the Foxboro RTD (Pt-Ni) FBM203 modules are built to last, ensuring minimal downtime and reduced maintenance requirements. Their compact design makes them suitable for installation in space-constrained areas without compromising on performance.
Utilizing cutting-edge technology, these modules are ideal for a wide range of industrial applications, including petrochemicals, oil and gas, power generation, and process industries. They provide a reliable solution for temperature monitoring and control, enhancing operational safety and efficiency.
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