8 Mbit 1.8V SPI Serial Flash
A Microchip Technology Company
SST25WF080
Not Recommended for New Designs
Status Register
The software status register provides status on whether the flash memory array is available for any
Read or Write operation, whether the device is Write enabled, and the state of the Memory Write pro-
tection. During an internal Erase or Program operation, the status register may be read only to deter-
mine the completion of an operation in progress. Table 4 describes the function of each bit in the
software status register.
Table 4: Software Status Register
Default at
Bit
0
Name
BUSY
Function
1 = Internal Write operation is in progress
Power-up
0
Read/Write
R
0 = No internal Write operation is in progress
1
WEL
1 = Device is memory Write enabled
0
R
0 = Device is not memory Write enabled
2
3
4
5
6
BP0
BP1
BP2
BP3
AAI
Indicate current level of block write protection (See Table 5)
Indicate current level of block write protection (See Table 5)
Indicate current level of block write protection (See Table 5)
Indicate current level of block write protection (See Table 5)
Auto Address Increment Programming status
1
1
1
0
0
R/W
R/W
R/W
R/W
R
1 = AAI programming mode
0 = Byte-Program mode
7
BPL
1 = BP3, BP2, BP1 and BP0 are read-only bits
0
R/W
0 = BP3, BP2, BP1 and BP0 are read/writable
T4.1 25024
Busy
The Busy bit determines whether there is an internal Erase or Program operation in progress. A ‘1’ for
the Busy bit indicates the device is busy with an operation in progress. A ‘0’ indicates the device is
ready for the next valid operation.
Write Enable Latch (WEL)
The Write-Enable-Latch bit indicates the status of the internal Write-Enable-Latch memory. If the WEL
bit is set to ‘1’, it indicates the device is Write enabled. If the bit is set to ‘0’ (reset), it indicates the
device is not Write enabled and does not accept any Write (Program/Erase) commands. The Write-
Enable-Latch bit is automatically reset under the following conditions:
?
?
?
?
?
?
?
?
?
Device Reset
Power-up
Write-Disable (WRDI) instruction completion
Byte-Program instruction completion
Auto Address Increment (AAI) programming is completed or reached its highest unpro-
tected memory address
Sector-Erase instruction completion
Block-Erase instruction completion
Chip-Erase instruction completion
Write-Status-Register instructions
?2012 Silicon Storage Technology, Inc.
9
DS25024B
03/12
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