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AN4207 датащи(PDF) 20 Page - STMicroelectronics

номер детали AN4207
подробное описание детали  The STM32F37x series of microcontrollers combines
PDF  28 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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AN4207 датащи(HTML) 20 Page - STMicroelectronics

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Application examples
AN4207
20/28
Doc ID 023945 Rev 1
The temperature measurement is performed in two steps:
1.
Temperature sensor calibration: this phase is performed with JP18 fitted in 2-3(REF)
position. A 100 Ohm resistor is connected to PE7 which is connected to VREF through
the reference resistor. The SDADC converter measures the analog voltage applied on
PE7 and then computes the correction coefficient. This calibrates the gain. The PT100
is not connected in this phase.
2.
Temperature measurement: this phase is performed with JP18 fitted in 1-2 (PT100)
position. The PT100 sensor is connected to PE7 which is connected to VREF through
the reference resistor. The SDADC converter measures the analog voltage applied on
PE7 and then computes the temperature which is given by the following formula:
TemperaturePT100 = (((((CoeffCorrection * (AvrgRegularConvData/SDADC_GAIN) *
REFERENCE_RESISTOR * 2) / SDADCRESOL) - RESISTANCE_ZERODEGRE) /
RESISTANCE_COEFFICIENT);
where:
AvrgRegularConvData is the average value of 256 samples
SDADC_GAIN is the internal SDADC gain. In this example it is set to 8
CoeffCorrection is the correction coefficient computed in phase 1.
REFERENCE_RESISTOR is the reference resistor 1K8 labeled R33 on STM32373C-
EVAL
SDADCRESOL is the sigma delta converter: 2e16-1
RESISTANCE_ZERODEGRE is the resistance of PT100 at 0 °C
RESISTANCE_COEFFICIENT is the coefficient of PT100 sensor
Table 5.
Temperature sensor voltage range
VDD = 3.3V
Temperature
Resistance (
)
Voltage (mV)
Rref = 1.8 K
0 °
100
91.667
20°
107.7
98.725
50 °
119.2
109.2667



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