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STM32L072KB Datasheet(PDF) 106 Page - STMicroelectronics

Part # STM32L072KB
Description  Ultra-low-power 32-bit MCU ARM-based Cortex-M0, up to 192KB Flash, 20KB SRAM, 6KB EEPROM, USB, ADC, DACs
PDF  147 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STM32L072KB Datasheet(HTML) 106 Page - STMicroelectronics

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Electrical characteristics
STM32L072xx
106/147
DocID027100 Rev 3
Figure 34. 12-bit buffered/non-buffered DAC
6.3.17
Temperature sensor characteristics
6. Difference between the value measured at Code (0x800) and the ideal value = VREF+/2.
7. Difference between the value measured at Code (0x001) and the ideal value.
8. Difference between ideal slope of the transfer function and measured slope computed from code 0x000 and 0xFFF when
buffer is off, and from code giving 0.2 V and (VDDA – 0.2) V when buffer is on.
9. In buffered mode, the output can overshoot above the final value for low input code (starting from min value).
Table 68. Temperature sensor calibration values
Calibration value name
Description
Memory address
TS_CAL1
TS ADC raw data acquired at
temperature of 30 °C, VDDA= 3 V
0x1FF8 007A - 0x1FF8 007B
TS_CAL2
TS ADC raw data acquired at
temperature of 130 °C, VDDA= 3 V
0x1FF8 007E - 0x1FF8 007F
Table 69. Temperature sensor characteristics
Symbol
Parameter
Min
Typ
Max
Unit
TL(1)
1. Guaranteed by characterization results.
VSENSE linearity with temperature
-
1
2°C
Avg_Slope(1)
Average slope
1.48
1.61
1.75
mV/°C
V130
Voltage at 130°C ±5°C(2)
2. Measured at VDD = 3 V ±10 mV. V130 ADC conversion result is stored in the TS_CAL2 byte.
640
670
700
mV
IDDA(TEMP)(3)
Current consumption
-
3.4
6
µA
tSTART(3)
3. Guaranteed by design.
Startup time
-
-
10
µs
TS_temp(4)(3)
4. Shortest sampling time can be determined in the application by multiple iterations.
ADC sampling time when reading the temperature
10
-
-



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