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AN4232 数据表(PDF) 8 Page - STMicroelectronics

部件名 AN4232
功能描述  Getting started with analog comparators for STM32F3 series
PDF  17 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

AN4232 数据表(HTML) 8 Page - STMicroelectronics

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Application examples
AN4232
8/17
DocID024134 Rev 2
2
Application examples
This section describes how the analog comparators embedded in STM32F30x and
STM32F37x devices can be used in applicative examples such as humidity measurement,
cycle-by-cycle motor control, voltage monitoring, and PWM control.
2.1
Cycle-by-cycle current control (peak current control)
Cycle-by-cycle current control (also called peak current control) is a technique broadly used
for power conversion, typically for DC-DC converters, lighting or motor drives.
The current sensor output (for instance a shunt or a current transformer) is connected to the
comparator non-inverting (ISENSED) input and compared against a current limit which is set
on the inverting input (either a simple resistor divider or the embedded DAC if the set-point
has to be adjusted dynamically). When the monitored current exceeds the current limit, the
comparator output goes high and disables the PWM outputs for the remaining time in the
PWM cycle. On the next cycle, if the comparator output is back to zero (i.e. the current is
below the limit), the PWM output is enabled again.
As displayed in Figure 4, STM32F30x and STM32F37x devices are designed for these
kinds of applications, where the timer can be used in PWM mode to control the motor. The
analog comparator can be used to monitor the motor current on-the-fly. The comparator
output can be internally redirected to the OCREFCLR signal which controls the PWM state.
The embedded Digital Analog Converter can be internally connected to the inverting input of
the comparator.
In Figure 4. both the real PWM (solid line) and the programmed PWM (dotted line) values (if
there were no OCrefClr feedback) are displayed.



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