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AN4102 датащи(PDF) 12 Page - STMicroelectronics

номер детали AN4102
подробное описание детали  Introducing the low-power concept in automotive applications using the STM8AL board of the STM8A-DISCOVERY
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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AN4102 датащи(HTML) 12 Page - STMicroelectronics

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Managing power consumption in automotive applications
AN4102
12/16
Doc ID 023129 Rev 1
3
Managing power consumption in automotive
applications
3.1
Low-power application description
The idea behind the low-power concept is that the application may be active for a small
percentage of the time to perform some of its dedicated tasks, but can be placed into an idle
mode for a remaining period when activity from the MCU is not required. This is especially
important at a time where, in the electronics world, energy saving is becoming more and
more important. For example, 8-bit microcontrollers in the automotive domain are
sometimes dedicated to a single task and do not need to be active 100% of the time to
perform their operation (wiper systems, rain sensors, door mechatronics, etc…). The idea is
to be able to switch the microcontroller into a low-power mode for the maximum time to save
energy. Figure 7 shows a graphical representation of a low-power application over time. The
activity of the MCU can be broken down into three phases.
●
MCU active is the time during which tasks from the microcontroller are performed.
●
MCU idle is the time during which neither MCU activity nor resources are required.
●
MCU wakeup is the time necessary for the microcontroller to switch from the idle to the
active state.
Figure 7.
Typical sequence of a low-power application
If we assume that the power consumption of these three phases is equivalent to:
●
IActive for the MCU active phase during tActive
●
IIdle for the MCU idle phase during tIdle
●
Iwu for the MCU wakeup phase tWu
and that tperiod is the total time for these three phases, then the IDD average current can be
calculated with the following formula.
Iavg=(tActive × IActive+tIdle ×IIdle+tWu ×IWu )/tperiod
MCU active
MCU active
IDD
MCU wakeup
MCU wakeup
tWu
tIdle
IActive
IWu
t
MCU idle
IIdle
Iavg
tperiod
tActive



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