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MAX7300 Ver la hoja de datos (PDF) - Maxim Integrated

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MAX7300 Datasheet PDF : 20 Pages
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2-Wire-Interfaced, 2.5V to 5.5V, 20-Port or
28-Port I/O Expander
SDA
tSU, DAT
tLOW
SCL
tHD, DAT
tHD, STA
START CONDITION
tHIGH
tR
tF
Figure 2. 2-Wire Serial Interface Timing Details
SDA
tSU, STA
tHD, STA
REPEATED START CONDITION
tBUF
tSU, STO
STOP CONDITION START CONDITION
SCL
S
START
CONDITION
Figure 3. Start and Stop Conditions
P
STOP
CONDITION
SDA
SCL
DATA LINE STABLE; DATA VALID CHANGE OF DATA ALLOWED
Figure 4. Bit Transfer
Any bytes received after the command byte are consid-
ered data bytes. The first data byte goes into the inter-
nal register of the MAX7300 selected by the command
byte (Figure 8). If multiple data bytes are transmitted
before a STOP condition is detected, these bytes are
generally stored in subsequent MAX7300 internal regis-
ters because the command byte address generally
autoincrements (Table 4).
Message Format for Reading
The MAX7300 is read using the MAX7300’s internally
stored command byte as address pointer, the same way
the stored command byte is used as address pointer for
a write. The pointer generally autoincrements after each
data byte is read using the same rules as for a write
(Table 4). Thus, a read is initiated by first configuring the
MAX7300’s command byte by performing a write (Figure
7). The master can now read ‘n’ consecutive bytes from
the MAX7300, with the first data byte being read from the
register addressed by the initialized command byte
(Figure 9). When performing read-after-write verification,
remember to reset the command byte’s address
because the stored control byte address generally has
been autoincremented after the write (Table 4). Table 5
is the register address map.
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