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STM32U545NET3QTR 数据表(PDF) 45 Page - STMicroelectronics |
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STM32U545NET3QTR 数据表(HTML) 45 Page - STMicroelectronics |
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45 / 283 page ![]() DS14216 Rev 1 45/283 STM32U545xx Functional overview 88 Depending on the peripherals, these interconnections can operate in Run, Sleep, Low-power Run and Sleep, Stop 0, Stop 1 and Stop 2 modes. 3.11 Reset and clock controller (RCC) The RCC (reset and clock control) manages the different reset types, and generates all clocks for the bus and peripherals. The RCC distributes the clocks coming from the different oscillators to the core and to the peripherals. It also manages the clock gating for low-power modes and ensures the clock robustness. It features: • Clock prescaler: in order to get the best trade-off between speed and current consumption, the clock frequency to the CPU and peripherals can be adjusted by a programmable prescaler. • Clock security system: clock sources can be changed safely on-the-fly in Run mode through a configuration register. • Clock management: in order to reduce the power consumption, the clock controller can stop the clock to the core, individual peripherals or memory. • System clock source: four different clock sources can be used to drive the master clock SYSCLK: – HSE (4 to 50 MHz high-speed external crystal or ceramic resonator) that can supply a PLL. The HSE can also be configured in bypass mode for an external clock. – HSI16 (16 MHz high-speed internal RC oscillator) trimmable by software, that can supply a PLL. – MSI (multispeed internal RC oscillator) trimmable by software, that can generate 16 frequencies from 100 kHz to 48 MHz. When a 32.768 kHz clock source is available in the system (LSE), the MSI frequency can be automatically trimmed by hardware to reach better than ±0.25% accuracy. In this mode the MSI can feed the USB device, saving the need of an external high-speed crystal (HSE). The MSI can supply a PLL. – System PLL that can be fed by HSE, HSI16 or MSI, with a maximum frequency at 160 MHz. • HSI48 (RC48 with clock recovery system) internal 48 MHz clock source that can be used to drive the USB, the SDMMC or the RNG peripherals. This clock can be output on the MCO. • Auxiliary clock source: two ultra-low-power clock sources that can be used to drive the real-time clock: – LSE (32.768 kHz low-speed external crystal), supporting three drive capability modes. The LSE can also be configured in bypass mode for an external clock. – LSI (32 kHz low-speed internal RC), also used to drive the independent watchdog. The LSI clock accuracy is ±5% accuracy. The LSI clock can be divided by 128 to output a 250 Hz as source clock. • Peripheral clock sources: several peripherals have their own independent clock whatever the system clock. Three PLLs, each having three independent outputs allowing the highest flexibility, can generate independent clocks for the ADC, USB, SDMMC, RNG, MDF, ADF, FDCAN1, OCTOSPI and SAI. |
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