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See
for more information about power modes.
7.5 Entering and exiting power modes
The WFI instruction invokes wait and stop modes for the chip. The processor exits the
low-power mode via an interrupt.
For LLS/VLLS modes, the wake-up sources are limited to LLWU generated wake-ups,
LPTMR, CMP, RTC, NMI_b pin, or RESET_b pin assertions. When the NMI_b pin or
RESET_b pin have been disabled through associated FTFA_FOPT settings, then these
pins are ignored as wakeup sources. The wake-up flow from VLLSx is always through
reset.
Before executing the WFI instruction, the last register written to must be read back. This
ensures that all register writes associated with setting up the low power mode being
entered have completed before the MCU enters the low power mode. Failure to do this
may result in the low power mode not being entered correctly.
NOTE
The WFE instruction can have the side effect of entering a low-
power mode, but that is not its intended usage. See Arm
documentation for more on the WFE instruction.
On VLLS recoveries, the I/O pins continue to be held in a static state after code execution
begins, allowing software to reconfigure the system before unlocking the I/O.
7.6 Module operation in low-power modes
The table found here illustrates the functionality of each module while the chip is in each
of the low power modes.
The standard behavior is shown with some exceptions for Compute Operation (CPO) and
Partial Stop2.
Debug modules are discussed separately; see
. Number
ratings (such as 8 MHz and 2 Mbit/s) represent the maximum frequencies or maximum
data rates per mode. A list of terms are used in the following table:
• FF = Full functionality. In VLPR and VLPW, the system frequency is limited, but if
a module does not have a limitation in its functionality, it is still listed as FF.
• Async = Fully functional with alternate clock source, provided the selected clock
source remains enabled
• SR = Module state is retained but not functional.
Entering and exiting power modes
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