STM32F301x6 STM32F301x8
Electrical characteristics
Table 32. Typical and maximum VDDA consumption in Stop and Standby modes
Typ @VDD (VDD = VDDA)
Max(1)
Symbol Parameter
Conditions
2.0 V 2.4 V 2.7 V 3.0 V 3.3 V 3.6 V
TA =
25 °C
TA =
85 °C
TA = Unit
105 °C
Supply
current in
Stop mode
IDDA
Supply
current in
Standby
mode
Supply
current in
Stop mode
Supply
current in
Standby
mode
Regulator in run/low-
power mode, all
1.70 1.83 1.95 2.08 2.22 2.37 3.40 5.30 5.5
oscillators OFF
LSI ON and IWDG ON 2.08 2.25 2.41 2.59 2.79 3.01 -
-
-
LSI OFF and IWDG
OFF
Regulator in run/low-
power mode, all
oscillators OFF
1.59 1.72 1.83 1.96 2.10 2.25 2.80 2.90 3.60
μA
0.99 1.01 1.04 1.09 1.14 1.21 -
-
-
LSI ON and IWDG ON 1.36 1.43 1.50 1.60 1.72 1.85 -
-
-
LSI OFF and IWDG
OFF
0.87 0.89 0.92 0.97 1.02 1.09 -
-
-
1. Data based on characterization results, not tested in production.
Table 33. Typical and maximum current consumption from VBAT supply
Symbol
Para
meter
Conditions
(1)
Typ.@VBAT
Max.
@VBAT= 3.6V(2)
TA (°C)
Unit
1.65V 1.8V 2V 2.4V 2.7V 3V 3.3V 3.6V 25 85 105
LSE & RTC
ON; “Xtal
mode”
lower
driving
0.41 0.43 0.46 0.54 0.59 0.66 0.74 0.82 -
-
capability;
IDD_VBAT
Backup
domain
supply
current
LSEDRV[1:
0] = '00'
LSE & RTC
ON; “Xtal
mode”
higher
driving
0.65 0.68 0.73 0.80 0.87 0.95 1.03 1.14 -
-
capability;
LSEDRV[1:
0] = '11'
1. Crystal used: Abracon ABS07-120-32.768 kHz-T with a CL of 6 pF for typical values.
2. Data based on characterization results, not tested in production.
-
μA
-
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