AT45DB642D-CNU Atmel, AT45DB642D-CNU Datasheet - Page 4

IC FLASH 64MBIT 66MHZ 8CASON

AT45DB642D-CNU

Manufacturer Part Number
AT45DB642D-CNU
Description
IC FLASH 64MBIT 66MHZ 8CASON
Manufacturer
Atmel
Datasheet

Specifications of AT45DB642D-CNU

Format - Memory
FLASH
Memory Type
DataFLASH
Memory Size
64M (8192 pages x 1056 bytes)
Speed
66MHz
Interface
Parallel/Serial
Voltage - Supply
2.7 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Package / Case
8-CASON
Package
8CASON
Density
64 Mb
Architecture
Sectored
Block Organization
Symmetrical
Typical Operating Supply Voltage
3.3 V
Sector Size
256KByte x 32
Timing Type
Synchronous
Interface Type
Parallel|Serial-SPI
Data Bus Width
8 bit
Supply Voltage (max)
3.6 V
Supply Voltage (min)
2.7 V
Maximum Operating Current
15 mA
Mounting Style
SMD/SMT
Organization
256 KB x 32
Ic Interface Type
Parallel, Serial
Clock Frequency
66MHz
Supply Voltage Range
2.7V To 3.6V
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Table 2-1.
4
Symbol
SER/BYTE
V
GND
V
GNDP
Figure 2-1.
CC
CCP
RDY/BUSY
SCK/CLK
RESET
GND
VCC
AT45DB642D
WP
NC
NC
NC
NC
NC
SO
CS
SI
Name and Function
Serial/8-bit Interface Control: The DataFlash may be configured to utilize either its serial port or
8-bit port through the use of the serial/8-bit control pin (SER/BYTE). When the SER/BYTE pin is
held high, the serial port (SI and SO) of the DataFlash will be used for all data transfers, and the
8-bit port (I/O7 - I/O0) will be in a high impedance state. Any data presented on the 8-bit port
while SER/BYTE is held high will be ignored. When the SER/BYTE is held low, the 8-bit port will
be used for all data transfers, and the SO pin of the serial port will be in a high impedance state.
While SER/BYTE is low, any data presented on the SI pin will be ignored. Switching between the
serial port and 8-bit port should only be done while the CS pin is high and the device is not busy
in an internally self-timed operation.
The SER/BYTE pin is internally pulled high; therefore, if the 8-bit port is never to be used, then
connection of the SER/BYTE pin is not necessary. In addition, if the SER/BYTE pin is not
connected or if the SER/BYTE pin is always driven high externally, then the 8-bit input/output pins
(I/O7-I/O0), the VCCP pin, and the GNDP pin should be treated as “no connect”.
Device Power Supply: The V
Operations at invalid V
Ground: The ground reference for the power supply. GND should be connected to the system
ground.
8-bit Port Supply Voltage: The VCCP pin is used to supply power for the 8-bit input/output pins
(I/O7-I/O0). The VCCP pin needs to be used if the 8-bit port is to be utilized; however, this pin
should be treated as “no connect” if the SER/BYTE pin is not connected or if the SER/BYTE pin is
always driven high externally.
8-bit Port Ground: The GNDP pin is used to provide ground for the 8-bit input/output pins (I/O7-
I/O0). The GNDP pin needs to be used if the 8-bit port is to be utilized; however, this pin should
be treated as “no connect” if the SER/BYTE pin is not connected or if the SER/BYTE pin is
always driven high externally.
Pin Configurations (Continued)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
TSOP Top View: Type 1
CC
voltages may produce spurious results and should not be attempted.
CC
pin is used to supply the source voltage to the device.
28
27
26
25
24
23
22
21
20
19
18
17
16
15
NC
NC
I/O7
I/O6
I/O5
I/O4
VCCP
GNDP
I/O3
I/O2
I/O1
I/O0
SER/BYTE
NC
Figure 2-2.
Figure 2-3.
A
B
C
D
E
BGA Package Ball-Out (Top View)
CASON Top View through Package
RESET
SCK
CS
NC
NC
NC
NC
1
SI
1
2
3
4
SCK
NC
CS
SO
NC
2
RDY/BSY
GND
NC
NC
3
SI
RESET
VCC
NC
WP
NC
4
8
7
6
5
SO
GND
VCC
WP
NC
NC
NC
NC
NC
5
Asserted
State
3542K–DFLASH–04/09
Low
Ground
Ground
Power
Power
Type
Input

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