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STM32F427NET6 数据表(PDF) 95 Page - STMicroelectronics

部件名 STM32F427NET6
功能描述  ARM Cortex-M4 32b MCUFPU, 225DMIPS, up to 2MB Flash/2564KB RAM, USB OTG HS/FS, Ethernet, 17 TIMs, 3 ADCs, 20 comm. interfaces, camera & LCD-TFT
PDF  231 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

STM32F427NET6 数据表(HTML) 95 Page - STMicroelectronics

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STM32F427xx STM32F429xx
Electrical characteristics
192
TJ
Junction temperature range
6 suffix version
− 40
105
°C
7 suffix version
− 40
125
1. The over-drive mode is not supported at the voltage ranges from 1.7 to 2.1 V.
2. VDD/VDDA minimum value of 1.7 V is obtained with the use of an external power supply supervisor (refer to Section 3.17.2:
Internal reset OFF).
3. When the ADC is used, refer to Table 74: ADC characteristics.
4. If VREF+ pin is present, it must respect the following condition: VDDA-VREF+ < 1.2 V.
5. It is recommended to power VDD and VDDA from the same source. A maximum difference of 300 mV between VDD and
VDDA can be tolerated during power-up and power-down operation.
6. The over-drive mode is not supported when the internal regulator is OFF.
7. To sustain a voltage higher than VDD+0.3, the internal Pull-up and Pull-Down resistors must be disabled
8. If TA is lower, higher PD values are allowed as long as TJ does not exceed TJmax.
9. In low power dissipation state, TA can be extended to this range as long as TJ does not exceed TJmax.
Table 17. General operating conditions (continued)
Symbol
Parameter
Conditions(1)
Min
Typ
Max
Unit
Table 18. Limitations depending on the operating power supply range
Operating
power supply
range
ADC operation
Maximum Flash
memory access
frequency with
no wait states
(fFlashmax)
Maximum HCLK
frequency vs Flash
memory wait states
(1)(2)
I/O operation
Possible Flash
memory
operations
VDD =1.7 to
2.1 V(3)
Conversion time
up to 1.2 Msps
20 MHz(4)
168 MHz with 8 wait
states and over-drive
OFF
No I/O
compensation
8-bit erase and
program
operations only
VDD = 2.1 to
2.4 V
Conversion time
up to 1.2 Msps
22 MHz
180 MHz with 8 wait
states and over-drive
ON
No I/O
compensation
16-bit erase and
program
operations
VDD = 2.4 to
2.7 V
Conversion time
up to 2.4 Msps
24 MHz
180 MHz with 7 wait
states and over-drive
ON
I/O compensation
works
16-bit erase and
program
operations
VDD = 2.7 to
3.6 V(5)
Conversion time
up to 2.4 Msps
30 MHz
180 MHz with 5 wait
states and over-drive
ON
I/O compensation
works
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. VDD/VDDA minimum value of 1.7 V is obtained with the use of an external power supply supervisor (refer to Section 3.17.2:
Internal reset OFF).
4. Prefetch is not available.
5. The voltage range for USB full speed PHYs 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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