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STM32H747AI Fiches technique(PDF) 29 Page - STMicroelectronics |
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STM32H747AI Fiches technique(HTML) 29 Page - STMicroelectronics |
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29 / 252 page ![]() DS12930 Rev 1 19/242 STM32H747xI/G Functional overview 46 The SMPS step-down converter can be used for the following purposes: • Direct supply of the VCORE domain – the SMPS step-down converter operating modes follow the device system operating modes (Run, Stop, Standby). – the SMPS step-down converter output voltage are set according to the selected VOS and SVOS bits (voltage scaling) • Delivery of an intermediate voltage level to supply the internal voltage regulator (LDO) – SMPS step-down converter operating modes When the SDEXTHP bit is equal to 0 in the PWR_CR3 register, the SMPS step- down converter follows the device system operating modes (Run, Stop and Standby). When the SDEXTHP bit is equal to 1 in PWR_CR3, the SMPS step-down converter is forced to High-performance mode and does not follow the device system operating modes (Run, Stop and Standby). – The SMPS step-down converter output equals 1.8 V or 2.5 V according to the selected SD level • Delivery of an external supply – The SMPS step-down converter is forced to High-performance mode (provided SDEXTHP bit is equal to 1 in PWR_CR3) – The SMPS step-down converter output equals 1.8 V or 2.5 V according to the selected SD level 3.6 Low-power strategy There are several ways to reduce power consumption on STM32H747xI/G: • Select the SMPS step-down converter as VCORE supply voltage source, as it allows to enhance power efficiency. • Select the adequate voltage scaling • Decrease the dynamic power consumption by slowing down the system clocks even in Run mode, and by individually clock gating the peripherals that are not used. • Save power consumption when one or both CPUs are idle, by selecting among the available low-power mode according to the user application needs. This allows achieving the best compromise between short startup time, low-power consumption, as well as available wakeup sources. The devices feature several low-power modes: • CSleep (CPU clock stopped) • CStop (CPU sub-system clock stopped) • DStop (Domain bus matrix clock stopped) • Stop (System clock stopped) • DStandby (Domain powered down) • Standby (System powered down) CSleep and CStop low-power modes are entered by the MCU when executing the WFI (Wait for Interrupt) or WFE (Wait for Event) instructions, or when the SLEEPONEXIT bit of the Cortex®-Mx core is set after returning from an interrupt service routine. |
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