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AT25DF321A-MH-Y Datenblatt(PDF) 23 Page - ATMEL Corporation

Teilenummer AT25DF321A-MH-Y
Bauteilbeschribung  32-Mbit 2.7V Minimum Serial Peripheral Interface Serial Flash Memory
PDF  52 Pages
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Hersteller  ATMEL [ATMEL Corporation]
Direct Link  http://www.atmel.com
Logo ATMEL - ATMEL Corporation

AT25DF321A-MH-Y Datenblatt(HTML) 23 Page - ATMEL Corporation

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3686D–DFLASH–12/09
Atmel AT25DF321A
If the desire is to only change the SPRL bit without performing a Global Protect or Global Unprotect, then the system can
simply write a 0Fh to the first byte of the Status Register to change the SPRL bit from a logical “1” to a logical “0”
provided the WP pin is deasserted. Likewise, the system can write an F0h to change the SPRL bit from a logical “0” to a
logical “1” without affecting the current sector protection status (no changes will be made to the Sector Protection
Registers).
When writing to the first byte of the Status Register, bits five, four, three and two will not actually be modified but will be
decoded by the device for the purposes of the Global Protect and Global Unprotect functions. Only bit seven, the SPRL bit,
will actually be modified. Therefore, when reading the first byte of the Status Register, bits five, four, three and two will not
reflect the values written to them but will instead indicate the status of the WP pin and the sector protection status. Please
refer to “Read Status Register” on page 30 and Table 11-1 on page 30 for details on the Status Register format and what
values can be read for bits five, four, three and two.
9.6
Read Sector Protection Registers
The Sector Protection Registers can be read to determine the current software protection status of each sector. Reading
the Sector Protection Registers, however, will not determine the status of the WP pin.
To read the Sector Protection Register for a particular sector, the CS pin must first be asserted and the opcode of 3Ch must
be clocked in. Once the opcode has been clocked in, three address bytes designating any address within the sector must
be clocked in. After the last address byte has been clocked in, the device will begin outputting data on the SO pin during
every subsequent clock cycle. The data being output will be a repeating byte of either FFh or 00h to denote the value of
the appropriate Sector Protection Register.
At clock frequencies above f
CLK, the first byte of data output will not be valid. Therefore, if operating at clock frequencies
above f
CLK, at least two bytes of data must be clocked out from the device in order to determine the correct status of the
appropriate Sector Protection Register.
Deasserting the CS pin will terminate the read operation and put the SO pin 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.
In addition to reading the individual Sector Protection Registers, the Software Protection Status (SWP) bits in the Status
Register can be read to determine if all, some, or none of the sectors are software protected (refer to “Read Status
Register” on page 30
for more details).
Figure 9-5.
Read Sector Protection Register
Table 9-3.
Read Sector Protection Register-Output Data
Output Data
Sector Protection Register Value
00h
Sector Protection Register value is 0 (sector is unprotected).
FFh
Sector Protection Register value is 1 (sector is protected).
SCK
CS
SI
SO
MSB
MSB
23
1
0
00111100
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
HIGH-IMPEDANCE



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