N25Q128A11B1240E NUMONYX, N25Q128A11B1240E Datasheet - Page 49

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N25Q128A11B1240E

Manufacturer Part Number
N25Q128A11B1240E
Description
Manufacturer
NUMONYX
Datasheet

Specifications of N25Q128A11B1240E

Cell Type
NOR
Density
128Mb
Access Time (max)
7ns
Interface Type
Serial (SPI)
Boot Type
Bottom
Address Bus
1b
Operating Supply Voltage (typ)
1.8V
Operating Temp Range
-40C to 85C
Package Type
TBGA
Program/erase Volt (typ)
1.7 to 2/8.5 to 9.5V
Sync/async
Synchronous
Operating Temperature Classification
Industrial
Operating Supply Voltage (min)
1.7V
Operating Supply Voltage (max)
2V
Word Size
8b
Number Of Words
16M
Supply Current
20mA
Mounting
Surface Mount
Pin Count
24
Lead Free Status / Rohs Status
Supplier Unconfirmed
Table 9.
0
0
1
1
Lock Down bit
Sector Lock Register
The Lock Registers can be read and written using the Read Lock Register (RDLR) and
Write to Lock Register (WRLR) instructions.
In each Lock Register two bits control the protection of each sector: the Write Lock bit and
the Lock Down bit.
The definition of the Lock Register bits is given in Table 9: Lock Register out.
SPM2
The second software protected mode (SPM2) uses the Block Protect bits (BP3, BP2, BP1,
BP0) and the Top/Bottom bit (TB bit) to allow part of the memory to be configured as read-
only. See
Software protection truth table (Sectors 0 to 255, 64 Kbyte)
As a second level of protection, the Write Protect signal (applied on the W/VPP pin) can
freeze the Status Register in a read-only mode. In this mode, the Block Protect bits (BP3,
BP2, BP1, BP0) and the Status Register Write Disable bit (SRWD) are protected.
0
1
0
1
Write Lock bit
Write Lock bit: The Write Lock bit determines whether the contents of the sector can be
modified (using the Write, Program, or Erase instructions). When the Write Lock bit is
set to '1', the sector is write protected - any operations that attempt to change the data
in the sector will fail. When the Write Lock bit is reset to '0', the sector is not write
protected by the Lock Register, and may be modified.
Lock Down bit: The Lock Down bit provides a mechanism for protecting software data
from simple hacking and malicious attack. When the Lock Down bit is set to '1', further
modification to the Write Lock and Lock Down bits cannot be performed. A powerup is
required before changes to these bits can be made. When the Lock Down bit is reset to
'0', the Write Lock and Lock Down bits can be changed.
Section 16: Ordering
Sector unprotected from Program/Erase/Write operations, protection status
reversible.
Sector protected from Program/Erase/Write operations, protection status
reversible.
Sector unprotected from Program/Erase/Write operations.
Sector protection status cannot be changed except by a power-up.
Sector protected from Program/Erase/Write operations.
Sector protection status cannot be changed except by a power-up.
information.
Protection Status
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