6.6 Low Power Consumption Modes
The
TMPM3V6/M3V4
has the low power consumption modes: IDLE, SLEEP and STOP. To shift to the low
pow-er consumption mode, specify the mode in the system control register CGSTBYCR<STBY[2:0]> and
execute the
WFI (Wait For Interrupt) instruction. In this case, execute reset or generate the interrupt to release the
mode. Releas-ing by the interrupt requires settings in advance. See the chapter "Exceptions" for details.
Note 1: This product does not offer any event for releasing the low power consumption mode. Transition to the low pow-
er consumption mode by executing the WFE (Wait For Event) instruction is prohibited.
Note 2: This product does not support the low power consumption mode configured with the SLEEPDEEP bit in the Cor-
tex-M3 core. Setting the <SLEEPDEEP> bit of the system control register is prohibited.
The features of IDLE, SLEEP, STOP mode are described as follows.
6.6.1 IDLE mode
Only the CPU is stopped in this mode. Each peripheral function has one bit in its control register for ena-
bling or disabling operation in the IDLE mode. When the IDLE mode is entered, peripheral functions for
which operation in the IDLE mode is disabled stop operation and hold the state at that time.
The following peripheral functions can be enabled or disabled in the IDLE mode. For setting details, see
the chapter on each peripheral function.
・
16-bit timer/event counter (TMRB)
・
Serial channel (SIO/UART)
・
Serial bus interface (I2C/SIO)
・
Analog Digital converter (ADC)
・
Watchdog timer (WDT)
Note:
WDT should be stopped before entering IDLE mode.
6.6.2 SLEEP mode
In the SLEEP mode, the external low-speed oscillator, real time clock, RMC can be operated.
By releasing the SLEEP mode, the device returns to the preceding mode of the SLEEP mode and starts op-
eration.
TMPM3V6/M3V4
6. Clock/Mode control
6.6 Low Power Consumption Modes
Page 64
2019-02-06
Содержание TMPM3V4
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Страница 2: ... 2019 Toshiba Electronic Devices Storage Corporation ...
Страница 7: ...Revision History Date Revision Comment 2019 02 06 1 First Release ...
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Страница 52: ...TMPM3V6 M3V4 3 Processor Core 3 6 Exclusive access Page 30 2019 02 06 ...
Страница 148: ...TMPM3V6 M3V4 7 Exceptions 7 6 Exception Interrupt Related Registers Page 126 2019 02 06 ...
Страница 178: ...TMPM3V6 M3V4 9 Input Output port 9 2 Block Diagrams of Ports Page 156 2019 02 06 ...
Страница 206: ...TMPM3V6 M3V4 10 16 bit Timer Event Counters TMRB 10 7 Applications using the Capture Function Page 184 2019 02 06 ...
Страница 232: ...TMPM3V6 M3V4 11 Universal Asynchronous Receiver Transmitter Circuit UART 11 4 Operation Description Page 210 2019 02 06 ...
Страница 354: ...TMPM3V6 M3V4 14 Synchronous Serial Port SSP 14 6 Frame Format Page 332 2019 02 06 ...
Страница 419: ...TMPM3V6 M3V4 Page 397 2019 02 06 ...
Страница 420: ...TMPM3V6 M3V4 16 Analog Digital Converter ADC 16 6 Timing chart of AD conversion Page 398 2019 02 06 ...
Страница 462: ...TMPM3V6 M3V4 21 Watchdog Timer WDT 21 5 Control register Page 440 2019 02 06 ...
Страница 510: ...TMPM3V6 M3V4 22 Flash Memory Operation 22 4 Programming in the User Boot Mode Page 488 2019 02 06 ...
Страница 538: ...TMPM3V6 M3V4 25 Electrical Characteristics 25 7 Recommended Oscillation Circuit Page 516 2019 02 06 ...
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