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LNBH29 Datasheet(PDF) 14 Page - STMicroelectronics

Part # LNBH29
Description  LNB supply and control IC with step-up and I²C interface
PDF  31 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

LNBH29 Datasheet(HTML) 14 Page - STMicroelectronics

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I²C bus interface
LNBH29
14/31
DocID023065 Rev 3
6
I²C bus interface
Data transmission from the main microprocessor to the LNBH29 and vice versa takes place
through the 2-wire I²C bus interface, consisting of the 2 lines SDA and SCL (pull-up resistors
to positive supply voltage must be externally connected).
6.1
Data validity
As shown in Figure 7, the data on the SDA line must be stable during the high semi-period
of the clock. The HIGH and LOW state of the data line can only change when the clock
signal on the SCL line is LOW.
6.2
Start and stop condition
As shown in Figure 8, a start condition is a HIGH to LOW transition of the SDA line while
SCL is HIGH. The stop condition is a LOW to HIGH transition of the SDA line while SCL is
HIGH. A stop condition must be sent before each start condition.
6.3
Byte format
Every byte transferred to the SDA line must contain 8 bits. Each byte must be followed by an
acknowledge bit. The MSB is transferred first.
6.4
Acknowledge
The master (microprocessor) puts a resistive HIGH level on the SDA line during the
acknowledge clock pulse (see Figure 9). The peripheral (LNBH29) that acknowledges must
pull down (LOW) the SDA line during the acknowledge clock pulse, so that the SDA line is
stable LOW during this clock pulse. The peripheral which has been addressed must
generate an acknowledge after the reception of each byte, otherwise the SDA line remains
at the HIGH level during the ninth clock pulse time. In this case the master transmitter can
generate the STOP information in order to abort the transfer. The LNBH29 does not
generate an acknowledge if the VCC supply is below the undervoltage lockout threshold (4.7
V typ.).
6.5
Transmission without acknowledge
If the detection of an acknowledge from the LNBH29 is not required, the microprocessor can
use a simpler transmission: it simply waits one clock cycle without checking the slave
acknowledging, and sends the new data. This approach is of course less protected from
misworking and decreases the noise immunity.



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