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AT24CSW01X 데이터시트(PDF) 14 Page - Microchip Technology

부품명 AT24CSW01X
상세설명  I짼C-Compatible (Two-Wire) Serial EEPROM with a Security Register and Software Write Protection 1?멚bit (128 x 8), 2?멚bit (256 x 8)
PDF  41 Pages
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제조업체  MICROCHIP [Microchip Technology]
홈페이지  http://www.microchip.com
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AT24CSW01X 데이터시트(HTML) 14 Page - Microchip Technology

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5.3
Acknowledge and No-Acknowledge
After every byte of data is received, the receiving device must confirm to the transmitting device that it has
successfully received the data byte by responding with what is known as an Acknowledge (ACK). An ACK is
accomplished by the transmitting device first releasing the SDA line at the falling edge of the eighth clock cycle
followed by the receiving device responding with a logic ‘0’ during the entire high period of the ninth clock cycle.
When the AT24CSW01X/AT24CSW02X is transmitting data to the host, the host can indicate that it is done receiving
data and wants to end the operation by sending a logic ‘1’ response to the AT24CSW01X/AT24CSW02X instead of
an ACK response during the ninth clock cycle. This is known as a No-Acknowledge (NACK) and is accomplished by
the host sending a logic ‘1’ during the ninth clock cycle, at which point the AT24CSW01X/AT24CSW02X will release
the SDA line so the host can then generate a Stop condition.
The transmitting device, which can be the bus host or the Serial EEPROM, must release the SDA line at the
falling edge of the eighth clock cycle to allow the receiving device to drive the SDA line to a logic ‘0’ to ACK the
previous 8-bit word. The receiving device must release the SDA line at the end of the ninth clock cycle to allow the
transmitter to continue sending new data. A timing diagram has been provided in Figure 5-1 to better illustrate these
requirements.
Figure 5-1. Start Condition, Data Transitions, Stop Condition and Acknowledge
SCL
SDA
SDA
Must Be
Stable
SDA
Change
Allowed
SDA
Change
Allowed
Acknowledge
Valid
Stop
Condition
Start
Condition
1
2
8
9
SDA
Must Be
Stable
Acknowledge Window
The transmitting device (Host or Client)
must release the SDA line at this point to allow
the receiving device (Host or Client) to drive the
SDA line low to ACK the previous 8-bit word.
The receiver (Host or Client)
must release the SDA line at
this point to allow the transmitter
to continue sending new data.
5.4
Standby Mode
The AT24CSW01X/AT24CSW02X features a low-power Standby mode that is enabled when any one of the following
occurs:
• A valid power-up sequence is performed (see Power-Up Requirements and Reset Behavior).
• A Stop condition is received by the device unless it initiates an internal write cycle (see Write Operations).
• At the completion of an internal write cycle (see Write Operations).
• An unsuccessful match of the device type identifier or hardware address in the device address byte occurs (see
Device Addressing).
• The bus host does not ACK the receipt of data read out from the device; instead it sends a NACK response (see
Read Operations).
5.5
Software Reset
After an interruption in protocol, power loss or system Reset, any two‑wire device can be protocol reset by clocking
SCL until SDA is released by the EEPROM and goes high. The number of clock cycles until SDA is released by the
EEPROM will vary. The software Reset sequence should not take more than nine dummy clock cycles. Once the
software Reset sequence is complete, new protocol can be sent to the device by sending a Start condition followed
by the protocol. Refer to Figure 5-2 for an illustration.
AT24CSW01X/AT24CSW02X
Device Operation and Communication
© 2020-2021 Microchip Technology Inc.
and its subsidiaries
Datasheet
DS20006396B-page 14



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