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AT25DF321A Datasheet(PDF) 9 Page - List of Unclassifed Manufacturers

Part # AT25DF321A
Description  32-Mbit 2.7V Minimum Serial Peripheral Interface Serial Flash Memory
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Manufacturer  ETC2 [List of Unclassifed Manufacturers]
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AT25DF321A Datasheet(HTML) 9 Page - List of Unclassifed Manufacturers

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9
3686F–DFLASH–1/2014
AT25DF321A
Figure 7-2.
Read Array – 0Bh Opcode
Figure 7-3.
Read Array – 03h Opcode
7.2
Dual-Output Read Array
The Dual-Output Read Array command is similar to the standard Read Array command and can be used to sequentially read a
continuous stream of data from the device by simply providing the clock signal once the initial starting address has been
specified. Unlike the standard Read Array command, however, the Dual-Output Read Array command allows two bits of data
to be clocked out of the device on every clock cycle rather than just one.
The Dual-Output Read Array command can be used at any clock frequency up to the maximum specified by fRDDO. To
perform the Dual-Output Read Array operation, the CS pin must first be asserted and the opcode of 3Bh must be clocked into
the device. After the opcode has been clocked in, the three address bytes must be clocked in to specify the starting address
location of the first byte to read within the memory array. Following the three address bytes, a single dummy byte must also be
clocked into the device.
After the three address bytes and the dummy byte have been clocked in, additional clock cycles will result in data being output
on both the SO and SIO pins. The data is always output with the MSB of a byte first, and the MSB is always output on the SO
pin. During the first clock cycle, bit 7 of the first data byte will be output on the SO pin while bit 6 of the same data byte will
be output on the SIO pin. During the next clock cycle, bits 5 and 4 of the first data byte will be output on the SO and SIO pins,
respectively. The sequence continues with each byte of data being output after every four clock cycles. When the last byte
(3FFFFFh) of the memory array has been read, the device will continue reading back at the beginning of the array (000000h).
No delays will be incurred when wrapping around from the end of the array to the beginning of the array.
Deasserting the CS pin will terminate the read operation and put the SO and SIO pins into a high-impedance state. The CS pin
can be deasserted at any time and does not require that a full byte of data be read.
SCK
CS
SI
SO
MSB
MSB
23
1
0
00001011
67
5
410 11
9
812
39
42 43
41
40
37 38
33
36
35
34
31 32
29 30
44
47 48
46
45
OPCODE
AAAA
AAA
A
A
MSB
XXXXXXX
X
MSB
MSB
DDDDDDD
D
D
D
ADDRESS BITS A23-A0
DON'T CARE
DATA BYTE 1
HIGH-IMPEDANCE
SCK
CS
SI
SO
MSB
MSB
23
1
0
00000011
67
5
410 11
9
812
37 38
33
36
35
34
31 32
29 30
39 40
OPCODE
AAAA
AAA
A
A
MSB
MSB
DDDDDDD
D
D
D
ADDRESS BITS A23-A0
DATA BYTE 1
HIGH-IMPEDANCE


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