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STSPIN32F0602Q 数据表(PDF) 21 Page - STMicroelectronics |
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STSPIN32F0602Q 数据表(HTML) 21 Page - STMicroelectronics |
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21 / 32 page ![]() The device features an embedded programmable voltage detector (PVD) that monitors the VDD power supply and compares it to the VPVD threshold. An interrupt can be generated when VDD drops below the VPVD threshold and/or when VDD is higher than the VPVD threshold. The interrupt service routine can then generate a warning message and/or put the MCU into a safe state. The PVD is enabled by software. The MCU supports three low-power modes to achieve the best compromise between low power consumption, short startup time and available wakeup sources: • Sleep mode In Sleep mode, only the CPU is stopped. All peripherals continue to operate and can wake up the CPU when an interrupt/event occurs. • Stop mode Stop mode achieves very low power consumption while retaining the content of SRAM and registers. All clocks in the 1.8 V domain are stopped, the PLL, the HSI RC and the HSE crystal oscillators are disabled. The voltage regulator can also be put either in normal or in low power mode. The device can be woken up from Stop mode by any of the EXTI lines (one of the 16 external lines, the PVD output, RTC, I2C1 or USART1). • Standby mode The Standby mode is used to achieve the lowest power consumption. The internal voltage regulator is switched off so that the entire 1.8 V domain is powered off. The PLL, the HIS RC and the HSE crystal oscillators are also switched off. After entering Standby mode, SRAM and register contents are lost except for registers in the RTC domain and Standby circuitry. The device exits Standby mode when an external reset (NRST pin), an IWDG reset, a rising edge on the WKUP pins, or an RTC event occurs. 6.2.3 High-speed external clock source The high-speed external (HSE) clock can be generated from external clock signal or supplied with a 4 to 32 MHz crystal/ceramic resonator oscillator (see Figure 11). In the application, the resonator and the load capacitors have to be placed as close as possible to the oscillator pins in order to minimize output distortion and startup stabilization time. Figure 11. Typical application with 8 MHz crystal 1. The REXT value depends on the crystal characteristics (refer to the crystal resonator manufacturer for more details on them). 2. The external clock signal has to respect the I/O characteristics and follows recommended clock input waveform (refer to Figure 12). Figure 12. HSE clock source timing diagram STSPIN32F0601, STSPIN32F0602 Microcontroller unit DS12981 - Rev 5 page 21/32 |
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