604
CHAPTER 19 512 KBIT FLASH MEMORY
19.8.4
Erasing Any Data in Flash Memory (Sector Erasing)
This section explains the procedure for inputting the sector erase command to erase
any data in flash memory. Sector-by-sector erasing is enabled and multiple sectors can
be specified at the same time.
■
Erasing Any Data in Flash Memory (Sector Erasing)
Any sector in flash memory can be erased by continuously transmitting the sector erase
command in the command sequence table from CPU to flash memory.
●
How to specify sector
•
The sector erase command is executed in six bus operations. By setting the address on the
sixth cycle on the even address in the target sector and programming the sector erase code
(30
H
) to data, a 50
µ
s sector erasing wait is started
•
When erasing more than one sector, the sector erase code (30
H
) is programmed to the sector
address to be erased, following the above.
●
Notes on specifying multiple sectors
•
Sector erasing is started after a 50
µ
s period waiting for sector erasing is completed after the
last sector erase code has been programmed.
•
That is, when erasing more than one sector simultaneously, the address of erase sector
address and the sector code must be input within 50
µ
s. If the sector erase code is input 50
µ
s
or later, it cannot be accepted.
•
Whether continuous programming of the sector erase code is enabled can be checked by the
sector erase timer flag (DQ3).
•
In this case, the address from which the sector erase timer flag (DQ3) is read should
correspond to the sector to be erased.
■
Erasing Procedure for Flash Memory Sectors
•
The state of the automatic algorithm in the flash memory can be determined using the
hardware sequence flag. Figure 19.7-2 "Example of Sector Erasing Procedure" gives an
example of the flash memory sector erase procedure. In this example, the toggle bit flag (DQ6)
is used to check that erase ends.
•
DQ6 terminates toggling concurrently with the change of the timing limit over flag (DQ5) to 1,
so the DQ6 must be checked even when DQ5 is 1.
•
Similarly, the data polling flag (DQ7) changes concurrently with the transition of the DQ5, so
DQ7 must be checked.
■
Note on Sector Erasing
•
If the hardware reset is generated during erase operation, the data of flash memory is not
guaranteed. Please re-try sector erase.
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Страница 676: ...658 APPENDIX Table A 9 3 Bit Operation Instruction Map first byte 6CH ...
Страница 677: ...659 APPENDIX A Instructions Table A 9 4 Character String Operation Instruction Map first byte 6EH ...
Страница 678: ...660 APPENDIX Table A 9 5 2 byte Instruction Map first byte 6FH MUL MULW DIVU A A A ...
Страница 680: ...662 APPENDIX Table A 9 7 ea Instruction 2 first byte 71H ...
Страница 681: ...663 APPENDIX A Instructions Table A 9 8 ea Instruction 3 first byte 72H ...
Страница 682: ...664 APPENDIX Table A 9 9 ea Instruction 4 first byte 73H ...
Страница 683: ...665 APPENDIX A Instructions Table A 9 10 ea Instruction 5 first byte 74H ...
Страница 684: ...666 APPENDIX Table A 9 11 ea Instruction 6 first byte 75H ...
Страница 685: ...667 APPENDIX A Instructions Table A 9 12 ea Instruction 7 first byte 76H ...
Страница 686: ...668 APPENDIX Table A 9 13 ea Instruction 8 first byte 77H ...
Страница 687: ...669 APPENDIX A Instructions Table A 9 14 ea Instruction 9 first byte 78H ...
Страница 688: ...670 APPENDIX Table A 9 15 MOVEA RWi ea Instruction first byte 79H ...
Страница 689: ...671 APPENDIX A Instructions Table A 9 16 MOV Ri ea Instruction first byte 7AH ...
Страница 690: ...672 APPENDIX Table A 9 17 MOVW RWi ea Instruction first byte 7BH ...
Страница 691: ...673 APPENDIX A Instructions Table A 9 18 MOV ea Ri Instruction first byte 7CH ...
Страница 692: ...674 APPENDIX Table A 9 19 MOVW ea Rwi Instruction first byte 7DH ...
Страница 693: ...675 APPENDIX A Instructions Table A 9 20 XCH Ri ea Instruction first byte 7EH ...
Страница 694: ...676 APPENDIX Table A 9 21 XCHW RWi ea Instruction first byte 7FH ...
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