Changsha Panran Technology Co., Ltd.
Nano-volt micro-ohm thermometers|panrantemperaturecalibration.com
Source: | Author:J | Published time: 2025-03-14 | 12 Views | Share:

Nano-volt micro-ohm thermometers offer several advantages over traditional reading devices, particularly in high-precision temperature measurement applications:

  1. Enhanced Measurement Resolution: These instruments achieve a measurement resolution of 10 nV (nano-volts) and 10 µΩ (micro-ohms), enabling the detection of minute voltage and resistance changes essential for accurate temperature assessments. citeturn0search0

  2. Superior Accuracy and Stability: With a measurement accuracy of 40 ppm (parts per million) and excellent annual stability, nano-volt micro-ohm thermometers provide highly reliable readings, surpassing many traditional devices. citeturn0search0

  3. Integrated Multi-Channel Functionality: Equipped with 2 or 5 independent measurement channels, these thermometers facilitate simultaneous data acquisition from multiple sensors without the need for external switching devices, streamlining the measurement process. citeturn0search0

  4. Versatile Measurement Modes: They offer various operational modes, such as inspection, single-channel tracking, and differential temperature measurement, enhancing their adaptability to diverse measurement scenarios. citeturn0search0

  5. High-Precision Reference Junction Compensation: Featuring dedicated high-precision reference junction compensation modules, these devices achieve reference junction errors better than 0.2 °C, ensuring accurate temperature readings. citeturn0search0

  6. User-Friendly Design: The implementation of multi-functional tellurium copper terminals with gold plating ensures excellent electrical connectivity and supports various wiring methods, enhancing usability. citeturn0search0

In summary, nano-volt micro-ohm thermometers provide high-resolution, accurate, and stable measurements with integrated multi-channel capabilities and user-friendly features, making them superior to traditional reading devices in precision temperature measurement applications.