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STM32F756VG Datasheet, PDF (100/228 Pages) STMicroelectronics – Up to 25 communication interfaces
Electrical characteristics
STM32F756xx
Symbol
Table 17. General operating conditions (continued)
Parameter
Conditions(1)
Min Typ Max Unit
Power Scale 3 ((VOS[1:0] bits in
PWR_CR register = 0x01), 144 MHz
HCLK max frequency
Regulator ON: 1.2 V internal
voltage on VCAP_1/VCAP_2 pins
Power Scale 2 ((VOS[1:0] bits in
PWR_CR register = 0x10), 168 MHz
HCLK max frequency with over-drive
OFF or 180 MHz with over-drive ON
V12
Power Scale 1 ((VOS[1:0] bits in
PWR_CR register = 0x11), 180 MHz
HCLK max frequency with over-drive
OFF or 216 MHz with over-drive ON
Regulator OFF: 1.2 V external
voltage must be supplied from
external regulator on
VCAP_1/VCAP_2 pins(7)
Max frequency 144 MHz
Max frequency 168MHz
Max frequency 180 MHz
Input voltage on RST and FT
pins(8)
VIN
Input voltage on TTa pins
2 V ≤VDD ≤3.6 V
VDD ≤2 V
-
Input voltage on BOOT pin
-
LQFP100
TFBGA100
WLCSP143
Power dissipation at TA = 85 °C LQFP144
PD
for suffix 6
suffix 7(9)
or
TA
=
105
°C
for
LQFP176
UFBGA176
LQFP208
TFBGA216
1.08 1.14 1.20
1.20 1.26 1.32
1.26 1.32 1.40
V
1.10 1.14 1.20
1.20 1.26 1.32
1.26 1.32 1.38
− 0.3 -
5.5
− 0.3 -
5.2
− 0.3
-
VDDA+
0.3
0
-
9
-
- 465
-
- 351
-
- 641
-
- 500
mW
-
- 526
-
- 513
-
- 1053
-
- 690
Ambient temperature for 6 suffix Maximum power dissipation
version
Low power dissipation(10)
TA
Ambient temperature for 7 suffix Maximum power dissipation
version
Low power dissipation(10)
− 40 -
− 40 -
− 40 -
− 40 -
85
°C
105
105
°C
125
TJ Junction temperature range
6 suffix version
7 suffix version
− 40 -
− 40 -
105
°C
125
1. The over-drive mode is not supported at the voltage ranges from 1.7 to 2.1 V.
2. 216 MHz maximum frequency for 6 suffix version (200 MHz maximum frequency for 7 suffix version).
3. VInDteDr/nVaDlDrAesmeitnOimFuFm). value of 1.7 V is obtained with the use of an external power supply supervisor (refer to Section 2.17.2:
4. When the ADC is used, refer to Table 62: ADC characteristics.
5. If VREF+ pin is present, it must respect the following condition: VDDA-VREF+ < 1.2 V.
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