2022-07-11 12:32 AM
Hi all,
I am using the STM32L452RET6 On my board and i have 2 quiestion regarding it:
1) VDD12 Net - how to set my hardware when i am not using external DC/DC? floating? GND? just a cap? if so what size?
2) when entering boot mode and going over the i/o voltage i noticed a few anomalies -
a) some USART legs were 3.3V and some not (USART1 both 0V, USART2 only one is 3.3V and USART3 Both were 3.3V) - why is that?
b) PA0 GPIO is 3.3V for some reason - why is that? couldn't find a purpose on datasheet.
Thanks in advance,
Ido
2022-07-11 02:31 AM
Note, that there are two different versions of STM32L452RET6 - VDD12 pin is present only on models with external SMPS, i.e. with P suffix.
Pins in bootloader may have enabled internal pullups/pulldowns, see AN2606.
JW
2022-07-11 03:34 AM
its the STM32L452RET6P vresion.
If External SMPS is not required, What do i do with it?
2022-07-15 02:19 AM
Hi @iHamd.1 ,
I suggest you refer to the following application notes:
-Amel
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2022-07-17 12:42 AM
Hi Amel,
Thank you for your suggestion.
I already went through these applications...
In AN4978 it says: From these sentences, can i assume that if i leave VDD12 with NO EXT SMPS AT ALL it is okay since the internal LDO will supply the internal logic?
Also, what do i do with these pins? i examined the STM32L452RETP NUCLEO Evaluation board and saw 2 1nF caps for the VDD12 pins.
So what do i do with the VDD12 Pins if i do not use ANY EXT SMPS?:
1) Leave floating
2) Connect a cap to GND.
Thanks in advance,
Ido
2022-09-14 11:47 PM
Hello,
here I have the same question about VDD12, leave floating or connect a cap to GND?
Can somebody says what we should do with this?
thanks
2022-09-15 01:50 PM
From AN4555.
Section 2.1 Power supplies:
VDD12 ... It does not need any external capacitance and cannot drive an external load.
Section 2.2 Power supply schemes:
As these VDD12 pin are also connected to internal regulators, they cannot accommodate a decoupling capacitance, neither can they be shared with an external circuitry for other purposes.
Figure 3. Power supply scheme: no components connected to VDD12.