10k sensor chart 2026

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  1. Click ‘Get Form’ to open the 10k sensor chart in the editor.
  2. Begin by identifying the temperature range you need. The leftmost column lists temperatures in Fahrenheit (°F) from -50°F to 300°F.
  3. Locate the corresponding resistance values in ohms, which are displayed across the rows next to each temperature. This will help you understand how resistance changes with temperature.
  4. If you need to input data, click on the relevant cell and type in your values directly. Ensure accuracy for effective readings.
  5. Utilize our platform's tools to highlight or annotate specific values if needed, making it easier to reference important data later.
  6. Once completed, save your document by clicking ‘Export’ or ‘Download’ to keep a copy of your filled-out chart for future use.

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This 10K Type-II Thermistor temperature sensor has an 8 inch long Stainless Steel Probe with a 6mm diameter and a 3m long cable. It features a mounting flange that makes it easy to mount and insert the probe into duct work.
These thermistors have different operational ranges: the 5K variant operates from -40C to 85C, the 10K variant from -40C to 125C, and the 20K variant has its own specific range. The typical accuracy of NTC thermistors is 1.0C.
A 3-wire RTD connection includes an additional wire compared to the 2-wire setup. This third wire is used to measure and compensate for the resistance of the lead wires, which improves the accuracy of the temperature measurement.
Both BAPIs 10K-2 and 10K-3 thermistors have 10,000 Ohms of resistance at 77F. At 32F (0C) the 10K-2 thermistor has 32,650 Ohms of resistance and a 10K-3 29,490 Ohms. If a 10K-3 thermistor is substituted for a 10K-2 you could have 6F of measurement error at 32F.
Connect the multimeter probes to the NTC thermistors terminals. Measure the thermistors resistance at room temperature. The reading should be close to the rated value (e.g., 10K).

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