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STM32H7B3AI Datasheet(PDF) 17 Page - STMicroelectronics |
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STM32H7B3AI Datasheet(HTML) 17 Page - STMicroelectronics |
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17 / 238 page ![]() 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®-M7 core is set after returning from an interrupt service routine. The CPU domain can enter low-power mode (DStop or DStop2) when the processor, its subsystem and the peripherals allocated in the domain enter low-power mode. If part of the domain is not in low-power mode, the domain remains in the current mode. Finally the system can enter Stop or Standby when all EXTI wakeup sources are cleared and the power domains are in DStop or DStop2 mode. Table 2. System vs domain low-power mode System power mode CD domain power mode SRD domain power mode Run DRun/DStop/DStop2 DRun Stop DStop/DStop2 DStop Standby Standby Standby Some GPIO pins can be used to monitor CPU and domain power states: Table 3. Overview of low-power mode monitoring pins Power state monitoring pins Description PWR_CSLEEP CPU clock OFF PWR_CSTOP CPU domain in low-power mode PWR_NDSTOP2 CPU domain retention mode selection 3.7 Reset and clock controller (RCC) The clock and reset controller is located in the SRD domain. The RCC manages the generation of all the clocks, as well as the clock gating and the control of the system and peripheral resets. It provides a high flexibility in the choice of clock sources and allows to apply clock ratios to improve the power consumption. In addition, on some communication peripherals that are capable to work with two different clock domains (either a bus interface clock or a kernel peripheral clock), the system frequency can be changed without modifying the baud rate. 3.7.1 Clock management The devices embed four internal oscillators, two oscillators with external crystal or resonator, two internal oscillators with fast startup time and three PLLs. The RCC receives the following clock source inputs: • Internal oscillators: – 64 MHz HSI clock (1% accuracy) – 48 MHz RC oscillator – 4 MHz CSI clock – 32 kHz LSI clock • External oscillators: – 4-50 MHz HSE clock – 32.768 kHz LSE clock The RCC provides three PLLs: one for system clock, two for kernel clocks. The system starts on the HSI clock. The user application can then select the clock configuration. A high precision can be achieved for the 48 MHz clock by using the embedded clock recovery system (CRS). It uses the USB SOF signal, the LSE or an external signal (SYNC) to fine tune the oscillator frequency on-the- fly. STM32H7B3xI Reset and clock controller (RCC) DS13139 - Rev 8 page 17/238 |
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