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Chapter 8
WKPU: Wakeup Unit
1.
Low power consumption modes
There are three low power user modes: HALT, STOP and STANDBY. We will not go into details
about HALT, as it is very similar to STOP but cannot process wakeup signals.
1.1.
STOP
The STOP mode is a configurable low power mode where the clock to the core is disabled and
most peripherals can be disabled for efficient power saving. It has a realtively quick wakeup
latency and it can only be entered with software request from RUN0…3 modes. On a wakeup
event, the device goes back to the RUN0…3 modes, continuing from where the program was left.
Figure 79 : STOP Mode Configuration Register (R.M. Rev8 – Fig. 8-15)
The stop mode can run on all clocks except the FMPLL. The system clock is by default on FIRC
clock but it can be disabled. Data and Code flash memories are by default powered down, but can
be activated, and the main voltage regulator is switched on.
The PDO field in this configuration registers, can be used to power down the I/O, by default the
pads power driver is enabled (‘0’) but by setting this bits it can be disabled while still keeping
the output states.
1.2.
STANDBY
The STANDBY mode is the most power saving mode among others where most of the power
supply is cut off and with the exception of wakeup pins, all pins are in high impedance mode. It
can be entered from DRUN or RUN0…3 modes and, at a wakeup event, after its relatively long
wakeup latency, the device goes back to DRUN mode, reinitialising the device. The previous
memory content is lost, but it can be restored from backup.
Содержание MPC5604B
Страница 1: ...LAAS CNRS Quick Start to MPC5604B Embedded Development Sahin Serdar 21 06 2013...
Страница 31: ...Figure 33 INTC SW HW mode comparison Freescale Tutorial...
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Страница 133: ...127 Appendix 2 Pad Configurations...
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Страница 141: ...Appendix 3 Peripheral input pin selection...
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Страница 143: ...137 Appendix 4 Interrupt Vector Table...
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Страница 148: ...Appendix 5 I C Baud Rate Prescaler Values...
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