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FM24C64LZ データシート(PDF) 8 Page - Fairchild Semiconductor

部品番号 FM24C64LZ
部品情報  64K-Bit Standard 2-Wire Bus Interface Serial EEPROM
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メーカー  FAIRCHILD [Fairchild Semiconductor]
ホームページ  http://www.fairchildsemi.com
Logo FAIRCHILD - Fairchild Semiconductor

FM24C64LZ データシート(HTML) 8 Page - Fairchild Semiconductor

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FM24C64 Rev. C
Pin Descriptions
Serial Clock (SCL)
The SCL input is used to clock all data into and out of the device.
Serial Data (SDA)
SDA is a bi-directional pin used to transfer data into and out of the
device. It is an open drain output and may be wire–ORed with any
number of open drain or open collector outputs.
Write Protect (WP)
If tied to V
CC, PROGRAM operations onto the entire memory will
not be executed. READ operations are possible. If tied to V
SS,
normal operation is enabled, READ/WRITE over the entire memory
is possible.
This feature allows the user to assign the entire memory as ROM
which can be protected against accidental programming. When
write is disabled, slave address and word address will be acknowl-
edged but data will not be acknowledged.
This pin has an internal pull-down circuit. However, on systems
where write protection is not required it is recommended that this
pin is tied to V
SS.
Device Selection Inputs A2, A1 and A0 (as
appropriate)
These inputs collectively serve as “chip select” signal to an
EEPROM when multiple EEPROMs are present on the same IIC
bus. Hence these inputs should be connected to VCC or VSS in a
unique manner to allow proper selection of an EEPROM amongst
multiple EEPROMs. During a typical addressing sequence, every
EEPROM on the IIC bus compares the configuration of these
inputs to the respective 3 bit “Device/Page block selection”
information (part of slave address) to determine a valid selection.
For e.g. if the 3 bit “Device/Page block selection” is 1-0-1, then the
EEPROM whose “Device Selection inputs” (A2, A1 and A0) are
connected to V
CC-VSS-VCC respectively, is selected.
Device Operation
The FM24C64 supports a bi-directional bus oriented protocol. The
protocol defines any device that sends data onto the bus as a
transmitter and the receiving device as the receiver. The device
controlling the transfer is the master and the device that is
controlled is the slave. The master will always initiate data
transfers and provide the clock for both transmit and receive
operations. Therefore, the FM24C64 will be considered a slave in
all applications.
Clock and Data Conventions
Data states on the SDA line can change only during SCL LOW.
SDA state changes during SCL HIGH are reserved for indicating
start and stop conditions. Refer
Figure 1.
Start Condition
All commands are preceded by the start condition, which is a
HIGH to LOW transition of SDA when SCL is HIGH. The FM24C64
continuously monitors the SDA and SCL lines for the start condi-
tion and will not respond to any command until this condition has
been met. Refer
Figure 2.
Stop Condition
All communications are terminated by a stop condition, which is a
LOW to HIGH transition of SDA when SCL is HIGH. The stop
condition is also used by the FM24C64 to place the device in the
standby power mode. Refer
Figure 2.
FM24C64 Array Addressing
During Read/Write operations, addressing the EEPROM memory
array involves in providing 2 address bytes, “Word Address 1” and
“Word Address 0." However on FM24C64 only the 5 least signifi-
cant bits (LSB) of “Word Address 1” byte are used in decoding the
access location. The remaining 3 bits are not used and are
recommended to be set to “0." All 8 bits of the “Word Address 0”
byte are used in decoding the access location.


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