![Samsung S3C2416 Скачать руководство пользователя страница 94](http://html.mh-extra.com/html/samsung/s3c2416/s3c2416_user-manual_340824094.webp)
SYSTEM CONTROLLER
S3C2416X RISC MICROPROCESSOR
2-16
6.2.4 SLEEP
MODE
In the SLEEP Mode, all the clock sources are off and also the internal logic-power is not supplied except for the
wake-up logic circuitry. In this mode, the static power-dissipation of internal logic can be minimized.
SLEEP Mode Entering sequence is as follows.
1. User writes command into the system controller’s PWRMODE[15:0] register to let system enter into the
SLEEP Mode.
2. System controller requests bus controller to finish bus transactions of ARM Core.
3. System controller disable ARM clock after getting ARM Down acknowledge.
4. System controller requests bus controller to finish current transactions.
5. Bus controller send acknowledge to system controller after completed bus transactions.
6. System controller request memory controller to enter self refresh mode. It is for preserving contents in
SDRAM.
7. System controller wait for self refresh acknowledge from memory controller.
8. After receiving the self-refresh acknowledge, System controller disable system clocks(HCLK, PCLK and so
on).
9. System controller asserts control signals to mask unknown state of ALIVE logics and to preserve data of
retention Pads.
10. System controller asserts PWR_EN pin and disables the X-tal and PLL oscillation. PWR_EN pin is used to
indicate the readiness for external power OFF and to enable and disable of of the power regulator which
produces internal-logic power.
SLEEP Mode Exiting sequence is as follows.
1. System controller enable external power source by deactivation of the PWR_EN pin and wait power settle
down time (it is programmable by a register in the PWRSETCNT field of RSTCON register).
2. System controller asserts HRESETn and consequently all bus down, self refresh requests and acknowledge
signals will be their reset state.
3. System controller release the HRESETn(synchronously, relatively to the system clock) after the power supply
is stabilized.
Содержание S3C2416
Страница 33: ...S3C2416X RISC MICROPROCESSOR PRODUCT OVERVIEW 1 5 3 BLOCK DIAGRAM Figure 1 1 S3C2416X Block Diagram ...
Страница 38: ...PRODUCT OVERVIEW S3C2416X RISC MICROPROCESSOR 1 10 153 AIN 1 U14 195 EINT 10 GPG2 K15 237 SDATA 14 C18 ...
Страница 122: ...BUS MATRIX EBI S3C2416X RISC MICROPROCESSOR 3 4 NOTES ...
Страница 204: ...DMA CONTROLLER S3C2416X RISC MICROPROCESSOR 8 18 NOTES ...
Страница 284: ...WATCHDOG TIMER S3C2416X RISC MICROPROCESSOR 11 6 NOTES ...
Страница 320: ...REAL TIME CLOCK S3C2416X RISC MICROPROCESSOR 13 16 NOTES ...
Страница 344: ...UART S3C2416X RISC MICROPROCESSOR 14 24 NOTES ...
Страница 380: ...USB2 0 DEVICE S3C2416X RISC MICROPROCESSOR 16 34 NOTES ...
Страница 432: ...2D S3C2416X RISC MICROPROCESSOR 18 38 NOTES ...
Страница 446: ...HS_SPI CONTROLLER S3C2416X RISC MICROPROCESSOR 19 14 NOTES ...
Страница 455: ...S3C2416X RISC MICROPROCESSOR HSMMC CONTROLLER 20 9 4 9 SD COMMAND ISSUE SEQUENCE Figure 20 9 Timeout Setting Sequence ...
Страница 604: ...S3C2416X RISC MICROPROCESSOR S3C2416X RISC MICROPROCESSOR 23 22 NOTES ...
Страница 638: ...PCM AUDIO INTERFACE S3C2416X RISC MICROPROCESSOR 25 18 NOTES ...
Страница 653: ...S3C2416X RISC MICROPROCESSOR ELECTRICAL DATA 26 15 Figure 26 14 SDRAM READ WRITE Timing Trp 2 Trcd 2 Tcl 2 DW 16 bit ...
Страница 670: ...ELECTRICAL DATA S3C2416X RISC MICROPROCESSOR 26 32 NOTES ...
Страница 672: ...MECHANICAL DATA S3C2416X RISC MICROPROCESSOR 30 2 Figure 27 2 330 FBGA 1414 Package Dimension 2 Bottom View ...