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STM32L100X6 Datasheet(PDF) 25 Page - STMicroelectronics |
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STM32L100X6 Datasheet(HTML) 25 Page - STMicroelectronics |
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25 / 102 page ![]() DocID025966 Rev 5 25/102 STM32L100x6/8/B-A Functional overview 40 enables accurate monitoring of the VDD value. The precise voltage of VREFINT is individually measured for each part by ST during production test and stored in the system memory area. It is accessible in read-only mode see Table 17: Embedded internal reference voltage. 3.11 DAC (digital-to-analog converter) The two 12-bit buffered DAC channels can be used to convert two digital signals into two analog voltage signal outputs. The chosen design structure is composed of integrated resistor strings and an amplifier in non-inverting configuration. This dual digital Interface supports the following features: • two DAC converters: one for each output channel • left or right data alignment in 12-bit mode • synchronized update capability • noise-wave generation • triangular-wave generation • dual DAC channels’ independent or simultaneous conversions • DMA capability for each channel (including the underrun interrupt) • external triggers for conversion Eight DAC trigger inputs are used in the STM32L100x6/8/B-A devices. The DAC channels are triggered through the timer update outputs that are also connected to different DMA channels. 3.12 Ultra-low-power comparators and reference voltage The STM32L100x6/8/B-A devices embed two comparators sharing the same current bias and reference voltage. The reference voltage can be internal or external (coming from an I/O). • one comparator with fixed threshold • one comparator with rail-to-rail inputs, fast or slow mode. The threshold can be one of the following: – DAC output – External I/O – Internal reference voltage (VREFINT) or VREFINT submultiple (1/4, 1/2, 3/4) Both comparators can wake up from Stop mode, and be combined into a window comparator. The internal reference voltage is available externally via a low-power / low-current output buffer (driving current capability of 1 µA typical). 3.13 Routing interface The highly flexible routing interface allows the application firmware to control the routing of different I/Os to the TIM2, TIM3 and TIM4 timer input captures. It also controls the routing of internal analog signals to ADC1, COMP1 and COMP2 and the internal reference voltage VREFINT |
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