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STM32H723VG Datasheet(PDF) 175 Page - STMicroelectronics

Part # STM32H723VG
Description  32-bit Arm® Cortex®-M7 550 MHz MCU, up to 1 MB Flash memory, 564 KB RAM, 35 comms peripherals and analog interfaces
PDF  227 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STM32H723VG Datasheet(HTML) 175 Page - STMicroelectronics

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DS13313 Rev 2
175/227
STM32H723xE/G
Electrical characteristics
208
6.3.25
Analog temperature sensor characteristics
tSTART
Start-up time
CL=0.5 µF
-
-
300
-
µs
CL=1 µF
-
-
500
-
CL=1.5 µF
-
-
650
-
IINRUSH
Control of maximum
DC current drive on
VREFBUF_OUT during
startup phase(3)
--
8
-
mA
IDDA
(VREFBUF)
VREFBUF
consumption from
VDDA
ILOAD = 0 µA
-
-
15
25
µA
ILOAD = 500 µA
-
-
16
30
ILOAD = 4 mA
-
-
32
50
1. Guaranteed by design, unless otherwise specified.
2.
In degraded mode, the voltage reference buffer cannot accurately maintain the output voltage (VDDA−drop voltage).
3. To properly control VREFBUF IINRUSH current during the startup phase and the change of scaling, VDDA voltage should be in
the range of 1.8 V-3.6 V, 2.1 V-3.6 V, 2.4 V-3.6 V and 2.8 V-3.6 V for VSCALE = 011, 010, 001 and 000, respectively.
Table 87. VREFBUF characteristics(1) (continued)
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Table 88. Temperature sensor characteristics
Symbol
Parameter
Min
Typ Max
Unit
TL(1)
1. Guaranteed by design.
VSENSE linearity with temperature
-
-
3
°C
Avg_Slope(2)
2. Guaranteed by characterization results.
Average slope
-
2
-
mV/°C
V30(3)
3. Measured at VDDA = 3.3 V ± 10 mV. The V30 ADC conversion result is stored in the TS_CAL1
byte.
Voltage at 30°C ± 5 °C
-
0.62
-
V
tstart_run
Startup time in Run mode (buffer startup)
-
-
25.2
µs
tS_temp(1)
ADC sampling time when reading the temperature
9
-
-
Isens(1)
Sensor consumption
-
0.18 0.31
µA
Isensbuf(1)
Sensor buffer consumption
-
3.8
6.5
Table 89. Temperature sensor calibration values
Symbol
Parameter
Memory address
TS_CAL1
Temperature sensor raw data acquired value at
30 °C, VDDA=3.3 V
0x1FF1 E820 -0x1FF1 E821
TS_CAL2
Temperature sensor raw data acquired value at
110 °C, VDDA=3.3 V
0x1FF1 E840 - 0x1FF1 E841



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