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CHAPTER 28 256-KBIT FLASH MEMORY
28.5
Checking the Automatic Algorithm Execution Status
As the flash memory uses the automatic algorithm for a process flow for programming/
erasing, you can check its internal operating status with hardware sequence flags.
■
Hardware Sequence Flag
●
Overview of hardware sequence flag
The hardware sequence flag consists of the following 5-bit outputs:
•
Data polling flag (DQ7)
•
Toggle bit flag (DQ6)
•
Execution time-out flag (DQ5)
•
Toggle bit 2 flag (DQ2)
The hardware sequence flags tell whether the write (program) or chip-erase command has been terminated
and whether an erase code write can be performed.
You can reference hardware sequence flags by read access to the address of each relevant sector in flash
memory after setting a command sequence. Note, however, that hardware sequence flags are output only
for the bank on a command-issued side.
Table 28.5-1 shows the bit allocation of the hardware sequence flags.
•
To know whether the automatic write or chip-erase command is being executed or has been terminated,
check the hardware sequence flags or the flash memory program/erase status bit in the flash memory
status register (FSR:RDY). After programming/erasing is terminated, flash memory returns to the read/
reset state.
•
When creating a write/erase program, read data after checking the termination of automatic writing/
erasing with the DQ7, DQ6, DQ5, and DQ2 flags.
Table 28.5-1 Bit Allocation of Hardware Sequence Flags
Bit No.
7
6
5
4
3
2
1
0
Hardware sequence flag
DQ7
DQ6
DQ5
-
-
DQ2
-
-
Summary of Contents for F2 MC-8FX Family
Page 2: ......
Page 4: ......
Page 34: ...20 CHAPTER 1 DESCRIPTION ...
Page 38: ...24 CHAPTER 2 HANDLING DEVICES ...
Page 39: ...25 CHAPTER 3 MEMORY SPACE This chapter describes memory space 3 1 Memory Space 3 2 Memory Map ...
Page 56: ...42 CHAPTER 5 CPU ...
Page 73: ...59 CHAPTER 6 CLOCK CONTROLLER ...
Page 96: ...82 CHAPTER 6 CLOCK CONTROLLER ...
Page 104: ...90 CHAPTER 7 RESET ...
Page 105: ...91 CHAPTER 8 INTERRUPTS This chapter explains the interrupts 8 1 Interrupts ...
Page 174: ...160 CHAPTER 10 TIMEBASE TIMER ...
Page 184: ...170 CHAPTER 10 TIMEBASE TIMER ...
Page 218: ...204 CHAPTER 13 WATCH PRESCALER ...
Page 257: ...243 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Page 261: ...247 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Page 288: ...274 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Page 301: ...287 CHAPTER 17 16 BIT PPG TIMER ...
Page 316: ...302 CHAPTER 17 16 BIT PPG TIMER ...
Page 382: ...368 CHAPTER 21 UART SIO DEDICATED BAUD RATE GENERATOR ...
Page 390: ...376 CHAPTER 22 I2C ...
Page 395: ...381 CHAPTER 22 I2C ...
Page 399: ...385 CHAPTER 22 I2C ...
Page 430: ...416 CHAPTER 23 10 BIT A D CONVERTER ...
Page 476: ...462 CHAPTER 24 LCD CONTROLLER ...
Page 482: ...468 CHAPTER 25 LOW VOLTAGE DETECTION RESET CIRCUIT ...
Page 494: ...480 CHAPTER 26 CLOCK SUPERVISOR ...
Page 507: ...493 CHAPTER 27 REAL TIME CLOCK ...
Page 523: ...509 CHAPTER 27 REAL TIME CLOCK ...
Page 532: ...518 CHAPTER 27 REAL TIME CLOCK ...
Page 536: ...522 CHAPTER 28 256 KBIT FLASH MEMORY ...
Page 554: ...540 CHAPTER 28 256 KBIT FLASH MEMORY ...
Page 564: ...550 CHAPTER 29 EXAMPLE OF SERIAL PROGRAMMING CONNECTION ...
Page 595: ...581 INDEX INDEX The index follows on the next page This is listed in alphabetic order ...
Page 596: ...582 INDEX Index ...
Page 597: ...583 INDEX ...
Page 600: ...586 Pin Function Index ...
Page 602: ......