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CHAPTER 19 512 KBIT FLASH MEMORY
19.7.3
Timing Limit Over Flag (DQ5)
The timing limit over flag (DQ5) is a hardware sequence flag that notifies flash memory
that the execution of the automatic algorithm has exceeded a prescribed time (the time
required for programming/erasing).
■
Timing Limit Over Flag (DQ5)
"State Transition of Timing Limit Over Flag (State Change at Normal Operation)" and
"State Transition of Timing Limit Over Flag (State Change at Abnormal Operation"
give the state transition of the timing limit over flag.
●
At programming and chip/sector erasing
•
If a read access is made after starting the automatic algorithm for programming or chip /sector
erasing and it is within a prescribed time (the time required for programming/erasing), the
timing limit over flag (DQ5) outputs 0. If it exceeds the prescribed time, the timing limit over
flag (DQ5) outputs 1.
•
The timing limit over flag (DQ5) can be used to identify the success or failure of programming/
erasing, regardless of whether the automatic algorithm is in progress or terminated. If the
automatic algorithm by the data polling or the toggle bit function is in execution when the
timing limit over flag (DQ5) outputs 1, programming can be identified as a failure.
•
For example, when 1 is set to the flash memory address with 1 set the flash memory,
programming fails. In this case, the flash memory will be locked and the automatic algorithm
will not complete. Therefore, no valid data is output from the data polling flag (DQ7). Also, the
toggle bit flag (DQ6) does not stop the toggle operation and exceeds the time limit, causing the
timing limit over flag (DQ5) to output 1. This state means that the flash memory is not being
used correctly; it does not mean that the flash memory is faulty. When this state occurs,
execute the reset command.
Table 19.7-7 State Transition of Timing Limit Over Flag (State Change at Normal Operation)
Operating State
Programming
→
Completed
Chip and
Sector Erasing
→
Completed
Wait for Sector
Erasing
→
Started
Sector Erasing
→
Erasing
Suspended
(Sector being
Erased)
Sector Erasing
Suspended
→
Resume
(Sector being
Erased)
Sector Erasing
being
Suspended
(Sector not
being Erased)
DQ5
0
→
DATA
:5
0
→
1
0
0
0
DATA
:5
Table 19.7-8 State Transition of Timing Limit Over Flag (State Change at Abnormal Operation
Operating
State
Programming
Chip and
Sector Erasing
DQ5
1 1
Содержание F2MC-16LX Series
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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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