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ACE24LA128AFMTH データシート(PDF) 6 Page - ACE Technology Co., LTD.

部品番号 ACE24LA128AFMTH
部品情報  Two-wire Serial EEPROM
PDF  18 Pages
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メーカー  ACE [ACE Technology Co., LTD.]
ホームページ  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE24LA128AFMTH データシート(HTML) 6 Page - ACE Technology Co., LTD.

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ACE24LA128A
Two-wire Serial EEPROM
VER 1.1
6
Figure 3: Output Acknowledge
Device Addressing
The 128K EEPROM devices all require an 8-bit device address word following a start condition to enable
the chip for a read or write operation (see Figure 4)
MSB
LSB
1
0
1
0
A2
A1
A0
R/W
Figure 4: Device Address
The device address word consists of a mandatory "1", "0" sequence for the first four most significant bits
as shown. This is common to all the Serial EEPROM devices.
The 128K EEPROM uses A2, A1 and A0 device address bits to allow as much as eight devices on the
same bus. These 3 bits must be compared to their corresponding hardwired input pins. The A2, A1 and
A0 pins use an internal proprietary circuit that biases them to a logic low condition if the pins are allowed
to float.
The eighth bit of the device address is the read/write operation select bit. A read operation is initiated if
this bit is high and a write operation is initiated if this bit is low.
Upon a compare of the device address, the EEPROM will output a "0". If a compare is not made, the chip
will return to a standby state.
DATA SECURITY:
The ACE24LA128A has a hardware data protection scheme that allows the user to write protect the entire
memory when the WP pin is at VCC.
Write Operations
Byte Write:
A write operation requires an 8-bit data word address following the device address word and
acknowledgment. Upon receipt of this address, the EEPROM will again respond with a "0" and then clock
in the first 8-bit data word. Following receipt of the 8-bit data word, the EEPROM will output a "0" and the
addressing device, such as a microcontroller, must terminate the write sequence with a stop condition. At
this time the EEPROM enters an internally timed write cycle, tWR to the nonvolatile memory. All inputs are
disabled during this write cycle and the EEPROM will not respond until the write is complete (see Figure
5).



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