Low Power Modes - ST STM32L1 Series Application Note

Current consumption measurement and touch sensing demonstration firmware
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AN3413
power and Halt modes I
performed again.
1.6

Low power modes

The low power modes used in this application are listed below. The microcontroller can be
woken up from any power saving mode by an external wake-up event generated by counter
U3.
Sleep mode: The CPU is stopped, the peripherals kept running. The system is clocked
by the MSI oscillator at a frequency of 4 MHz.
Low power run mode: The CPU and some of the peripherals are running. During Low
power run mode, the code is executed from RAM and the CPU is clocked at a
frequency of 32 kHz by the MSI oscillator. Flash and data EEPROM are stopped and
the voltage regulator is configured in Ultra low power mode.
Low power sleep mode: The CPU is stopped. The system clock frequency is reduced
to 32 kHz. Flash and Data EEPROM are in power down mode and the voltage
regulator is configured in Ultra low power mode.
Stop mode: The Core is in Deepsleep mode, Flash, Data EEPROM and all clocks
except LSE are in power down mode. All peripherals except the LCD are disabled. The
voltage regulator is in low power mode.
Stop mode without LCD: This is the same as Stop mode except that the LCD
controller is also disabled in this case.
Standby mode: This is the deepest low power mode. The voltage regulator is
disabled. Core, peripherals, RAM, Flash and Data EEPROM are powered off. Power is
maintained for the RTC registers, backup registers and standby circuitry. Device wake-
up is done by an external wake-up event, generating a system reset.
For further information, please refer to STM32L15x reference manual (RM0038) where you
can find more details about all the available configurations for each STM32L15x low power
mode.
measurements, the bias current record operation should be
DD
DocID018933 Rev 2
Application description
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