Datasheet
Electrical characteristics STM32F413xG/H
84/208 DocID029162 Rev 6
8. If T
A
is lower, higher P
D
values are allowed as long as T
J
does not exceed T
Jmax
.
9. In low power dissipation state, T
A
can be extended to this range as long as T
J
does not exceed T
Jmax
.
Table 18. Features depending on the operating power supply range
Operating
power
supply
range
ADC
operation
Maximum
Flash
memory
access
frequency
with no wait
states
(f
Flashmax
)
Maximum Flash
memory access
frequency with
wait states
(1)(2)
I/O operation
Clock output
frequency on
I/O pins
(3)
Possible
Flash
memory
operations
V
DD
=1.7 to
2.1 V
(4)
Conversion
time up to
1.2 Msps
16 MHz
(5)
100 MHz with 6
wait states
– No I/O
compensation
up to 30 MHz
8-bit erase
and program
operations
only
V
DD
= 2.1 to
2.4 V
Conversion
time up to
1.2 Msps
18 MHz
100 MHz with 5
wait states
– No I/O
compensation
up to 30 MHz
16-bit erase
and program
operations
V
DD
= 2.4 to
2.7 V
Conversion
time up to
2.4 Msps
20 MHz
100 MHz with 4
wait states
– I/O
compensation
works
up to 50 MHz
16-bit erase
and program
operations
V
DD
= 2.7 to
3.6 V
(6)
Conversion
time up to
2.4 Msps
25 MHz
100 MHz with 3
wait states
– I/O
compensation
works
–up to
100 MHz
when V
DD
=
3.0 to 3.6 V
–up to
50 MHz
when V
DD
=
2.7 to 3.0 V
32-bit erase
and program
operations
1. Applicable only when the code is executed from Flash memory. When the code is executed from RAM, no wait state is
required.
2. Thanks to the ART accelerator and the 128-bit Flash memory, the number of wait states given here does not impact the
execution speed from Flash memory since the ART accelerator allows to achieve a performance equivalent to 0 wait state
program execution.
3. Refer to Table 61: I/O AC characteristics for frequencies vs. external load.
4. V
DD
/V
DDA
minimum value of 1.7 V, with the use of an external power supply supervisor (refer to Section 3.17.2: Internal
reset OFF).
5. Prefetch available over the complete VDD supply range.
6. The voltage range for the USB full speed embedded PHY can drop down to 2.7 V. However the electrical characteristics of
D- and D+ pins will be degraded between 2.7 and 3 V.
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