A29040B Series
Autoselect Mode
The autoselect mode provides manufacturer and device
identification, and sector protection verification, through
identifier codes output on I/O7 - I/O0. This mode is primarily
intended for programming equipment to automatically match
appropriate highest order address bits. Refer to the
corresponding Sector Address Tables. The Command
Definitions table shows the remaining address bits that are
don't care. When all necessary bits have been set as
required, the programming equipment may then read the
corresponding identifier code on I/O7 - I/O0.To access the
autoselect codes in-system, the host system can issue the
autoselect command via the command register, as shown in
the Command Definitions table. This method does not
require VID. See "Command Definitions" for details on using
the autoselect mode.
a
device to be programmed with its corresponding
programming algorithm. However, the autoselect codes can
also be accessed in-system through the command register.
When using programming equipment, the autoselect mode
requires VID (11.5V to 12.5 V) on address pinA9. Address
pins A6, A1, and AO must be as shown in Autoselect Codes
(High Voltage Method) table. In addition, when verifying
sector protection, the sector address must appear on the
Table 3. A29040B Autoselect Codes (High Voltage Method)
Identifier Code on
I/O7 - I/O0
Description
A18 - A16 A15 - A10
A9 A8 - A7
A5 - A2
A6
A1
AO
Manufacturer ID: AMIC
Device ID: A29040B
X
X
X
X
VID
VID
X
X
VIL
VIL
X
X
VIL
VIL
VIL
VIH
37h
86h
01h (protected)
00h (unprotected)
Sector Protection
Verification
Sector
Address
X
X
VID
X
X
VIL
X
X
VIH
VIH
VIL
VIH
Continuation ID
X
VID
VIL
7Fh
Sector Protection/Unprotection
Power-Up Write Inhibit
The hardware sector protection feature disables both
program and erase operations in any sector. The hardware
sector unprotection feature re-enables both program and
erase operations in previously protected sectors.
Sector protection/unprotection must be implemented using
programming equipment. The procedure requires a high
voltage (VID) on address pin A9 and the control pins.
The device is shipped with all sectors unprotected.
If
=
= VIL and
= VIH during power up, the
OE
WE
CE
device does not accept commands on the rising edge of
. The internal state machine is automatically reset to
WE
reading array data on the initial power-up.
Command Definitions
Writing specific address and data commands or sequences
into the command register initiates device operations. The
Command Definitions table defines the valid register
command sequences. Writing incorrect address and data
values or writing them in the improper sequence resets the
device to reading array data.
It is possible to determine whether a sector is protected or
unprotected. See "Autoselect Mode" for details.
Hardware Data Protection
The requirement of command unlocking sequence for
programming or erasing provides data protection against
inadvertent writes (refer to the Command Definitions table).
In addition, the following hardware data protection measures
prevent accidental erasure or programming, which might
otherwise be caused by spurious system level signals during
VCC power-up transitions, or from system noise. The device
is powered up to read array data to avoid accidentally writing
data to the array.
All addresses are latched on the falling edge of
or
,
CE
WE
whichever happens later. All data is latched on the rising
edge of or , whichever happens first. Refer to the
WE
CE
appropriate timing diagrams in the "AC Characteristics"
section.
Reading Array Data
The device is automatically set to reading array data
after device power-up. No commands are required to
retrieve data. The device is also ready to read array
data after completing an Embedded Program or
Embedded Erase algorithm. After the device accepts
an Erase Suspend command, the device enters the
Erase Suspend mode. The system can read array
data using the standard read timings, except that if it
reads at an address within erase-suspended sectors,
the device outputs status data. After completing a
programming operation in the Erase Suspend mode, the
Write Pulse "Glitch" Protection
Noise pulses of less than 5ns (typical) on
do not initiate a write cycle.
,
or
WE
OE CE
Logical Inhibit
Write cycles are inhibited by holding any one of
=VIL,
OE
CE
= VIH or
= VIH. To initiate a write cycle,
and
WE
CE
must be a logical zero while
is a logical one.
WE
OE
PRELIMINARY
(December, 2004, Version 0.2)
6
AMIC Technology, Corp.