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TMP6331QDECTQ1 датащи(PDF) 11 Page - Texas Instruments |
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TMP6331QDECTQ1 датащи(HTML) 11 Page - Texas Instruments |
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11 / 26 page ![]() 8 Application and Implementation Note Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 8.1 Application Information The TMP63-Q1 is a positive temperature coefficient (PTC) linear silicon thermistor. The device behaves as a temperature-dependent resistor, and may be configured in a variety of ways to monitor temperature based on the system-level requirements. The device has a nominal resistance at 25 °C (R25) of 100 kΩ , a maximum operating voltage of 5.5 V (VSNS), and maximum supply current of 40 µA (ISNS). This device may be used in a variety of applications to monitor temperature close to a heat source with the very small DEC package option compatible with the typical 0402 (inch) footprint. Some of the factors that influence the total measurement error include the ADC resolution (if applicable), the tolerance of the bias current or voltage, the tolerance of the bias resistance in the case of a voltage divider configuration, and the location of the sensor with respect to the heat source. 8.2 Typical Application 8.2.1 Thermistor Biasing Circuits VTemp RT RBias VBias Figure 8-1. Voltage Biasing Circuit With Linear Thermistor VTemp RT IBias Figure 8-2. Current Biasing Circuit With Linear Thermistor VTemp RT RBias VBias RP Figure 8-3. Voltage Biasing Circuit With Non-Linear Thermistor RT IBias VTemp RP Figure 8-4. Current Biasing Circuit With Non-Linear Thermistor 8.2.1.1 Design Requirements Existing thermistors, in general, have a non-linear temperature vs. resistance curve. To linearize the thermistor response, the engineer can use a voltage linearization circuit with a voltage divider configuration, or a resistance linearization circuit by adding another resistance in parallel with the thermistor, RP. Section 8.2.1 highlights the two implementations where RT is the thermistor resistance. To generate an output voltage across the thermistor, the engineer can use a voltage divider circuit with the thermistor placed at either the high side (close to supply) or low side (close to ground), depending on the desired voltage response (negative or positive). Alternatively, the www.ti.com TMP63-Q1 SNIS215C – JANUARY 2020 – REVISED SEPTEMBER 2020 Copyright © 2020 Texas Instruments Incorporated Submit Document Feedback 11 Product Folder Links: TMP63-Q1 |
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