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PIC18F44800TE/ML Datasheet(PDF) 103 Page - Microchip Technology

Part # PIC18F44800TE/ML
Description  28/40/44-Pin Enhanced Flash Microcontrollers with ECAN Technology, 10-Bit A/D and nanoWatt Technology
PDF  484 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

PIC18F44800TE/ML Datasheet(HTML) 103 Page - Microchip Technology

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 2004 Microchip Technology Inc.
Preliminary
DS39637A-page 101
PIC18F2480/2580/4480/4580
6.5
Writing to Flash Program Memory
The minimum programming block is 4 words or 8 bytes.
Word or byte programming is not supported.
Table writes are used internally to load the holding
registers needed to program the Flash memory. There
are 8 holding registers used by the table writes for
programming.
Since the Table Latch (TABLAT) is only a single byte,
the TBLWT instruction may need to be executed 8 times
for each programming operation. All of the table write
operations will essentially be short writes because only
the holding registers are written. At the end of updating
the 8 holding registers, the EECON1 register must be
written to in order to start the programming operation
with a long write.
The long write is necessary for programming the inter-
nal Flash. Instruction execution is halted while in a long
write cycle. The long write will be terminated by the
internal programming timer.
The EEPROM on-chip timer controls the write time.
The write/erase voltages are generated by an on-chip
charge pump, rated to operate over the voltage range
of the device.
FIGURE 6-5:
TABLE WRITES TO FLASH PROGRAM MEMORY
6.5.1
FLASH PROGRAM MEMORY WRITE
SEQUENCE
The sequence of events for programming an internal
program memory location should be:
1.
Read 32 bytes into RAM.
2.
Update data values in RAM as necessary.
3.
Load Table Pointer register with address being
erased.
4.
Execute the row erase procedure.
5.
Load Table Pointer register with address of first
byte being written.
6.
Write the 8 bytes into the holding registers with
auto-increment.
7.
Set the EECON1 register for the write operation:
• set EEPGD bit to point to program memory;
• clear the CFGS bit to access program memory;
• set WREN to enable byte writes.
8.
Disable interrupts.
9.
Write 55h to EECON2.
10. Write 0AAh to EECON2.
11. Set the WR bit. This will begin the write cycle.
12. The CPU will stall for duration of the write (about
2 ms using internal timer). After writing to the
holding registers, it will be set to 0xFF.
13. Repeat the question three more times.
14. Re-enable interrupts.
15. Verify the memory (table read).
This procedure will require about 8 ms to update one
row of 32 bytes of memory. An example of the required
code is given in Example 6-3.
Note:
The default value of the holding registers on
device Resets and after write operations is
FFh. A write of FFh to a holding register
does not modify that byte. This means that
individual bytes of program memory may be
modified, provided that the change does not
attempt to change any bit from a ‘0’ to a ‘1’.
When modifying individual bytes, it is not
necessary to load all 8 holding registers
before executing a write operation.
TBLPTR = xxxxxF
TBLPTR = xxxxx1
TBLPTR = xxxxx0
TBLPTR = xxxxx2
Program Memory
Holding Register
Holding Register
Holding Register
Holding Register
8
8
8
8
TABLAT
Write Register
Note:
Before setting the WR bit, the Table
Pointer address needs to be within the
intended address range of the 32 bytes in
the holding register.



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