參數(shù)資料
型號(hào): 90S1200
廠商: Atmel Corp.
元件分類: 8位微控制器
英文描述: -bit AVR Microcontroller with 8K Bytes In- System Programmable Flash
中文描述: 位AVR微控制器具有8K字節(jié)的系統(tǒng)內(nèi)可編程閃存
文件頁(yè)數(shù): 40/71頁(yè)
文件大小: 1416K
代理商: 90S1200
40
AT90S1200
0838H
AVR
03/02
4.
Give XTAL1 a positive pulse. This loads the command.
B: Load Address High Byte
1.
Set XA1, XA0 to
00
. This enables address loading.
2.
Set BS to
1
. This selects high byte.
3.
Set DATA = Address high byte ($00 - $01).
4.
Give XTAL1 a positive pulse. This loads the address high byte.
C: Load Address Low Byte
1.
Set XA1, XA0 to
00
. This enables address loading.
2.
Set BS to
0
. This selects low byte.
3.
Set DATA = Address low byte ($00 - $FF).
4.
Give XTAL1 a positive pulse. This loads the address low byte.
D: Load Data Low Byte
1.
Set XA1, XA0 to
01
. This enables data loading.
2.
Set DATA = Data low byte ($00 - $FF).
3.
Give XTAL1 a positive pulse. This loads the data low byte.
E: Write Data Low Byte
1.
Set BS to
0
. This selects low data.
2.
Give WR a negative pulse. This starts programming of the data byte. RDY/BSY
goes low.
3.
Wait until RDY/BSY goes high to program the next byte.
(See Figure 31 for signal waveforms.)
F: Load Data High Byte
1.
Set XA1, XA0 to
01
. This enables data loading.
2.
Set DATA = Data high byte ($00 - $FF).
3.
Give XTAL1 a positive pulse. This loads the data high byte.
G: Write Data High Byte
1.
Set BS to
1
. This selects high data.
2.
Give WR a negative pulse. This starts programming of the data byte. RDY/BSY
goes low.
3.
Wait until RDY/BSY goes high to program the next byte.
(See Figure 32 for signal waveforms.)
The loaded command and address are retained in the device during programming. For
efficient programming, the following should be considered:
The command needs only be loaded once when writing or reading multiple memory
locations.
Address high byte needs only be loaded before programming a new 256-word page
in the Flash.
Skip writing the data value $FF; that is, the contents of the entire Flash and
EEPROM after a Chip Erase.
These considerations also apply to EEPROM programming and Flash, EEPROM and
signature byte reading.
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