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STM32H533CE 数据表(PDF) 39 Page - STMicroelectronics

部件名 STM32H533CE
功能描述  Arm® Cortex®-M33 32-bit MCUTrustZone® FPU, 375 DMIPS 250 MHz, 512-Kbyte flash, 272-Kbyte RAM, cryptography
PDF  231 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

STM32H533CE 数据表(HTML) 39 Page - STMicroelectronics

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DS14539 Rev 1
39/231
STM32H533xx
Functional overview
60
3.22.1
Analog temperature sensor
This sensor generates a voltage (VSENSE) that varies linearly with temperature. It is
internally connected to an ADC input channel used to convert the output voltage into a
digital value.
The sensor provides good linearity but it must be calibrated to obtain a good accuracy of the
temperature measurement. As the offset of the temperature sensor varies from chip to chip
due to process variation, the uncalibrated internal temperature sensor is suitable for
applications that detect only temperature changes.
To improve the measurement accuracy, each device is individually factory-calibrated by ST.
The calibration data are stored in the system memory area, accessible in read-only mode.
3.22.2
Internal voltage reference (VREFINT)
The internal voltage reference (VREFINT) provides a stable (bandgap) voltage output for
the ADC. The VREFINT is internally connected to ADC input channel.
The precise voltage of VREFINT is individually measured for each part by
STMicroelectronics during production test and stored in the system memory area. It is
accessible in read-only mode.
3.22.3
VBAT battery voltage monitoring
This embedded hardware enables the application to measure the VBAT battery voltage using
ADC or input channel. As the VBAT voltage may be higher than the VDDA, and thus outside
the ADC input range, the VBAT pin is internally connected to a bridge divider by four. As a
consequence, the converted digital value is a quarter of the VBAT voltage.
3.23
Digital temperature sensor (DTS)
The devices embeds a sensor that converts the temperature into a square wave, whose
frequency is proportional to the temperature. The PCLK or the LSE clock can be used as
reference clock for the measurements. Use the formula given in the product reference
manual to calculate the temperature according to the measured frequency stored in the
DTS_DR register.
3.24
Digital to analog converter (DAC)
The DAC module is a 12-bit, voltage output digital-to-analog converter. The DAC can be
configured in 8- or 12-bit mode, and can be used in conjunction with the DMA controller. In
12-bit mode, the data may be left- or right-aligned.
The DAC features two output channels, each with its own converter. In dual DAC channel
mode, conversions can be done independently or simultaneously when both channels are
grouped together for synchronous update operations. An input reference pin, VREF+
(shared with others analog peripherals) is available for better resolution. An internal
reference can also be set on the same input.
The DAC_OUTx pin can be used as general purpose input/output (GPIO) when the DAC
output is disconnected from output pad and connected to on chip peripheral. The DAC
output buffer can be optionally enabled to allow a high drive output current. An individual



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