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  • Thermistor Temperature Sensing with MCP6SX2 PGAs
    This application note shows two designs that use a precise, negative temperature coefficient (NTC) thermistor for temperature measurement. The thermistor is placed in a resistive divider to linearize the temperature-to-voltage conversion. The voltage is processed in the analog domain by the MCP6SX2
  • Thermistor Temperature Sensing with MCP6S2X PGA
    This application note shows two circuits that use a precise, negative temperature coefficient (NTC) thermistor for temperature measurement. The thermistor is placed in a resistive divider to linearize the voltage response to temperature. This voltage is then processed in the analog domain
  • Thermistor Calibration for High Accuracy Measurements
    Learn how Thermistor calibration can ensure high accuracy temperature measurements by easily using the Steinhart-Hart equation to calculate temperature.
  • High Accuracy Temperature Measurement
    * Required accuracies This list may seem trivial, but the answers to these questions will help determine the type of transducer, the measurement instruments, and the approach that must be taken to physically interface to the test article. The most common temperature measurement transducers available
  • Temperature Measurement Circuits for Embedded Applications
    This application note shows how to select a temperature sensor and conditioning circuit to maximize the measurement accuracy and simplify the interface to the microcontroller. Practical circuits and interface techniques will be provided for embedded applications with thermocouples, Resistive
  • Precision Temperature-Sensing With RTD Circuits
    The most widely measured phenomena in the process control environment is temperature. Common elements, such as Resistance Temperature Detectors (RTDs), thermistors, thermocouples or diodes are used to sense absolute temperatures, as well as changes in temperature. Of these technologies
  • Measuring Temperature with the PIC16F84A Watchdog Timer Application Note
    Almost all temperature sensor circuits use some form of discrete component (such as a thermistor or a solid-state sensor) to actually measure the environment?s temperature. It is left to the microcontroller to interpret the reading into a human-friendly form for the users benefit. It is possible
  • Criteria for Temperature Sensor Selection of T/C and RTD Sensor Types
    Temperature reigns as the most often measured process parameter in industry. While temperature measurement utilizes sensors of many forms, the actual measurement of temperature is accomplished via only five basic sensor types: Thermocouple (T/C), Resistance Temperature Detector (RTD), Thermistor

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