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PIC16F720-E/ML 数据表(PDF) 89 Page - Microchip Technology |
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PIC16F720-E/ML 数据表(HTML) 89 Page - Microchip Technology |
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89 / 244 page ![]() 2010 Microchip Technology Inc. DS41430A-page 89 PIC16F/LF720/721 11.0 TEMPERATURE INDICATOR MODULE This family of devices is equipped with a temperature circuit designed to measure the operating temperature of the silicon die. The circuit’s range of operating temperature falls between -40°C and +85°C. The output is a voltage that is proportional to the device temperature. The output of the temperature indicator is internally connected to the device ADC. The circuit may be used as a temperature threshold detector or a more accurate temperature indicator, depending on the level of calibration performed. A one- point calibration allows the circuit to indicate a temperature closely surrounding that point. A two-point calibration allows the circuit to sense the entire range of temperature more accurately. Reference Application Note AN1333, “Use and Calibration of the Internal Temperature Indicator” (DS01333) for more details regarding the calibration process. 11.1 Circuit Operation Figure 11-1 shows a simplified block diagram of the temperature circuit. The proportional voltage output is achieved by measuring the forward voltage drop across multiple silicon junctions. Equation 11-1 describes the output characteristics of the temperature indicator. EQUATION 11-1: VOUT RANGES The temperature sense circuit is integrated with the Fixed Voltage Reference (FVR) module. See Section 10.0 “Fixed Voltage Reference” for more information. The circuit is enabled by setting the TSEN bit of the FVRCON register. When disabled, the circuit draws no current. The circuit operates in either high or low range. The high range, selected by setting the TSRNG bit of the FVRCON register, provides a wider output voltage. This provides more resolution over the temperature range, but may be less consistent from part to part. This range requires a higher bias voltage to operate and thus, a higher VDD is needed. The low range is selected by clearing the TSRNG bit of the FVRCON register. The low range generates a lower voltage drop and thus, a lower bias voltage is needed to operate the circuit. The low range is provided for low voltage operation. FIGURE 11-1: TEMPERATURE CIRCUIT DIAGRAM 11.2 Minimum Operating VDD vs. Minimum Sensing Temperature When the temperature circuit is operated in low range, the device may be operated at any operating voltage that is within specifications. When the temperature circuit is operated in high range, the device operating voltage, VDD, must be high enough to ensure that the temperature circuit is correctly biased. Table 11-1 shows the recommended minimum VDD vs. range setting. TABLE 11-1: RECOMMENDED VDD VS. RANGE 11.3 Temperature Output The output of the circuit is measured using the internal Analog-to-Digital converter. Channel 14 is reserved for the temperature circuit output. Refer to Section 9.0 “Analog-to-Digital Converter (ADC) Module” for detailed information. High Range: VOUT = VDD - 4VT Low Range: VOUT = VDD - 2VT Min. VDD, TSRNG = 1 Min. VDD, TSRNG = 0 3.6V 1.8V Note: Every time the ADC MUX is changed to the temperature indicator output selection (CHS bit in the ADCCON0 register), wait 500 usec for the sampling capacitor to fully charge before sampling the tempera- ture indicator output. TSEN ADC MUX TSRNG VDD ADC CHS bits (ADCON0 register) n VOUT |
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