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IS25LE02GG-RHLA2:P-TY 数据表(PDF) 43 Page - Integrated Silicon Solution, Inc

部件名 IS25LE02GG-RHLA2:P-TY
功能描述  SERIAL FLASH MEMORY 133MHZ MULTI I/O SPI & QUAD I/O QPI DTR INTERFACE WITH ON-CHIP ECC
PDF  187 Pages
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制造商  ISSI [Integrated Silicon Solution, Inc]
网页  http://www.issi.com
标志 ISSI - Integrated Silicon Solution, Inc

IS25LE02GG-RHLA2:P-TY 数据表(HTML) 43 Page - Integrated Silicon Solution, Inc

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IS25LE02GG
IS25WE02GG
Integrated Silicon Solution, Inc.- www.issi.com
43
Rev. A1
10/02/2025
Persistent Protection Bits (PPBs)
The Persistent Protection Bits (PPBs) are unique for each sector/block and non-volatile (refer to Figure 7.1, Table
7.2, and Table 7.3). It is programmed individually but must be erased as a group, similar to the way individual words
may be programmed in the main array but an entire sector/block must be erased at the same time. The PPBs have
the same endurances as the Flash memory. Preprogramming and verification prior to erasure are handled by the
device, and therefore do not require system monitoring. Programming a PPB bit requires the typical page
programming time. Erasing all the PPBs requires typical sector erase time. During PPB bit programming and PPB
bit erasing, status is available by reading the Status Register or Extended Read Register. Reading of a PPB bit
requires the initial access time of the device.
Notes:
1. Each PPB is individually programmed to “0” and all are erased to “1” in parallel.
2. The PPB Lock bit must be cleared first before changing the status of a PPB.
3. While programming PPB, array data cannot be read from any sectors/blocks.
4. When reading the PPB of the desired sector/block the address should be location zero within the sector/block. The high
order address bits not used must be zero.
5. There are no means for individually erasing a specific PPB and no specific sector/block address is required for this operation.
6. The state of the PPB for a given sector/block can be verified by using a PPB Read command.
7. When the parts are first shipped, the PPBs are cleared (erased to “1”).
Dynamic Protection Bits (DYBs)
Dynamic Protection Bits (DYBs) are volatile and unique for each sector/block and can be individually modified.
DYBs only control the protection for unprotected sectors/blocks that have their PPBs cleared (erased to “1”). By
issuing the Write DYB command, the DYBs are cleared to “0” or set to “1”, thus placing each sector/block in the
protected or unprotected state respectively. This feature allows software to easily protect sectors/blocks against
inadvertent changes, yet does not prevent the easy removal of protection when changes are needed. The DYBs
can be set or cleared as often as needed as they are volatile bits.
Persistent Protection Bit (PPB) Lock Bit
The PPB Lock bit is a volatile bit for protecting all PPB bits. When cleared to “0”, it locks all PPBs and when set to
“1”, it allows the PPBs to be changed. . If the PPB Lock bit is “0”, the PPB Program or Erase command does not
execute and fails without programming or erasing the PPB.
In Persistent Protection mode, the PPB Lock bit is set to “1” during power up or Hardware Reset. When cleared to
“0”, no software command sequence can set the PPB Lock bit to “1”, only another Hardware Reset or power-up
can set the PPB Lock bit.
In the Password Protection mode, the PPB Lock bit is cleared to “0” during power up or a Hardware Reset during
power up or a Hardware Reset during power up or a Hardware Reset. The PPB Lock bit can only be set to “1” by
the Password Unlock command.
The PPB Lock bit must be cleared to “0” only after all PPBs are configured to the desired settings.



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