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Am29LV640DH101REEN Schematic ( PDF Datasheet ) - Advanced Micro Devices

Teilenummer Am29LV640DH101REEN
Beschreibung 64 Megabit (4 M x 16-Bit) CMOS 3.0 Volt-only Uniform Sector Flash Memory with VersatileI Control
Hersteller Advanced Micro Devices
Logo Advanced Micro Devices Logo 




Gesamt 57 Seiten
Am29LV640DH101REEN Datasheet, Funktion
Am29LV640D/Am29LV641D
Data Sheet
July 2003
The following document specifies Spansion memory products that are now offered by both Advanced
Micro Devices and Fujitsu. Although the document is marked with the name of the company that orig-
inally developed the specification, these products will be offered to customers of both AMD and
Fujitsu.
Continuity of Specifications
There is no change to this datasheet as a result of offering the device as a Spansion product. Any
changes that have been made are the result of normal datasheet improvement and are noted in the
document revision summary, where supported. Future routine revisions will occur when appropriate,
and changes will be noted in a revision summary.
Continuity of Ordering Part Numbers
AMD and Fujitsu continue to support existing part numbers beginning with “Am” and “MBM”. To order
these products, please use only the Ordering Part Numbers listed in this document.
For More Information
Please contact your local AMD or Fujitsu sales office for additional information about Spansion
memory solutions.
Publication Number 22366 Revision B Amendment +8 Issue Date September 20, 2002






Am29LV640DH101REEN Datasheet, Funktion
CONNECTION DIAGRAMS
A15
A14
A13
A12
A11
A10
A9
A8
A21
A20
WE#
RESET#
ACC
WP#
A19
A18
A17
A7
A6
A5
A4
A3
A2
A1
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
48-Pin Standard TSOP
(Am29LV641DH/DL only)
48 A16
47 VIO
46 VSS
45 DQ15
44 DQ7
43 DQ14
42 DQ6
41 DQ13
40 DQ5
39 DQ12
38 DQ4
37 VCC
36 DQ11
35 DQ3
34 DQ10
33 DQ2
32 DQ9
31 DQ1
30 DQ8
29 DQ0
28 OE#
27 VSS
26 CE#
25 A0
A16
VIO
VSS
DQ15
DQ7
DQ14
DQ6
DQ13
DQ5
DQ12
DQ4
VCC
DQ11
DQ3
DQ10
DQ2
DQ9
DQ1
DQ8
DQ0
OE#
VSS
CE#
A0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
48-Pin Reverse TSOP
(Am29LV641DH/DL only)
48 A15
47 A14
46 A13
45 A12
44 A11
43 A10
42 A9
41 A8
40 A21
39 A20
38 WE#
37 RESET#
36 ACC
35 WP#
34 A19
33 A18
32 A17
31 A7
30 A6
29 A5
28 A4
27 A3
26 A2
25 A1
September 20, 2002
Am29LV640D/Am29LV641D
5

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Am29LV640DH101REEN pdf, datenblatt
DEVICE BUS OPERATIONS
This section describes the requirements and use of
the device bus operations, which are initiated through
the internal command register. The command register
itself does not occupy any addressable memory loca-
tion. The register is a latch used to store the com-
mands, along with the address and data information
needed to execute the command. The contents of the
register serve as inputs to the internal state machine.
The state machine outputs dictate the function of the
device. Table 1 lists the device bus operations, the in-
puts and control levels they require, and the resulting
output. The following subsections describe each of
these operations in further detail.
Table 1. Device Bus Operations
Operation
Read
Write (Program/Erase)
Accelerated Program
Standby
Output Disable
Reset
CE# OE# WE# RESET# WP#
L LH
H
X
L HL
H (Note 3)
L HL
H (Note 3)
VCC ±
0.3 V
X
X
VCC ±
0.3 V
X
L HH
H
X
X XX
L
X
Sector Group Protect (Note 2) L H L
Sector Group Unprotect
(Note 2)
Temporary Sector Group
Unprotect
L HL
X XX
VID
VID
VID
H
H
H
ACC
X
X
VHH
H
X
X
X
X
X
Addresses
(Note 2)
AIN
AIN
AIN
X
X
X
SA, A6 = L,
A1 = H, A0 = L
SA, A6 = H,
A1 = H, A0 = L
AIN
DQ0
DQ15
DOUT
(Note 4)
(Note 4)
High-Z
High-Z
High-Z
(Note 4)
(Note 4)
(Note 4)
Legend: L = Logic Low = VIL, H = Logic High = VIH, VID = 8.512.5 V, VHH = 11.512.5 V, X = Dont Care, SA = Sector Address,
AIN = Address In, DIN = Data In, DOUT = Data Out
Notes:
1. Addresses are A21:A0. Sector addresses are A21:A15.
2. The sector protect and sector unprotect functions may also be implemented via programming equipment. See the Sector Group
Protection and Unprotectionsection.
3. If WP# = VIL, the first or last sector remains protected. If WP# = VIH, the first or last sector will be protected or unprotected as
determined by the method described in Sector Group Protection and Unprotection. All sectors are unprotected when shipped
from the factory (The SecSi Sector may be factory protected depending on version ordered.)
4. DIN or DOUT as required by command sequence, data polling, or sector protect algorithm (see Figure 2).
VersatileIO(VIO) Control
The VersatileIO(VIO) control allows the host system
to set the voltage levels that the device generates and
tolerates on CE# and DQ I/Os to the same voltage
level that is asserted on VIO. VIO is available in two
configurations (1.82.9 V and 3.05.0 V) for operation
in various system environments.
For example, a VI/O of 4.55.0 volts allows for I/O at
the 5 volt level, driving and receiving signals to and
from other 5 V devices on the same data bus.
Requirements for Reading Array Data
To read array data from the outputs, the system must
drive the CE# and OE# pins to VIL. CE# is the power
control and selects the device. OE# is the output con-
trol and gates array data to the output pins. WE#
should remain at VIH.
The internal state machine is set for reading array data
upon device power-up, or after a hardware reset. This
ensures that no spurious alteration of the memory
content occurs during the power transition. No com-
mand is necessary in this mode to obtain array data.
Standard microprocessor read cycles that assert valid
addresses on the device address inputs produce valid
September 20, 2002
Am29LV640D/Am29LV641D
11

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