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부품번호 | PCA9539 기능 |
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기능 | 16-bit I2C and SMBus low power I/O port | ||
제조업체 | NXP Semiconductors | ||
로고 | |||
전체 21 페이지수
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PCA9539
16-bit I2C and SMBus, low power I/O port
with interrupt and reset
Product data sheet
Supersedes data of 2004 Aug 27
2004 Sep 30
Philips
Semiconductors
Philips Semiconductors
16-bit I2C and SMBus, low power I/O port
with interrupt and reset
Product data sheet
PCA9539
BLOCK DIAGRAM
PCA9539
A0
A1
SCL
SDA
VDD
RESET
VSS
INPUT
FILTER
POWER-ON
RESET
8-BIT
INPUT/
OUTPUT
PORTS
WRITE pulse
READ pulse
I2C/SMBUS
CONTROL
8-BIT
WRITE pulse
INPUT/
OUTPUT
PORTS
READ pulse
I/O1.0
I/O1.1
I/O1.2
I/O1.3
I/O1.4
I/O1.5
I/O1.6
I/O1.7
I/O0.0
I/O0.1
I/O0.2
I/O0.3
I/O0.4
I/O0.5
I/O0.6
I/O0.7
VCC
LP
FILTER
NOTE: ALL I/Os ARE SET TO INPUTS AT RESET
SW02202
Figure 3. Block diagram
INT
2004 Sep 30
4
4페이지 Philips Semiconductors
16-bit I2C and SMBus, low power I/O port
with interrupt and reset
Product data sheet
PCA9539
BUS TRANSACTIONS
Writing to the port registers
Data is transmitted to the PCA9539 by sending the device address
and setting the least significant bit to a logic 0 (see Figure 5 for
device address). The command byte is sent after the address and
determines which register will receive the data following the
command byte.
The eight registers within the PCA9539 are configured to operate
as four register pairs. The four pairs are Input Ports, Output Ports,
Polarity Inversion Ports, and Configuration Ports. After sending data
to one register, the next data byte will be sent to the other register in
the pair (see Figures 6 and 7). For example, if the first byte is sent to
Output Port (register 3), then the next byte will be stored in Output
Port 0 (register 2). There is no limitation on the number of data bytes
sent in one write transmission. In this way, each 8-bit register may
be updated independently of the other registers.
Reading the port registers
In order to read data from the PCA9539, the bus master must first
send the PCA9539 address with the least significant bit set to a
logic 0 (see Figure 5 for device address). The command byte is sent
after the address and determines which register will be accessed.
After a restart, the device address is sent again but this time, the
least significant bit is set to a logic 1. Data from the register defined
by the command byte will then be sent by the PCA9539 (see
Figures 8 , 9, and 10). Data is clocked into the register on the falling
edge of the acknowledge clock pulse. After the first byte is read,
additional bytes may be read but the data will now reflect the
information in the other register in the pair. For example, if you read
Input Port 1, then the next byte read would be Input Port 0. There is
no limitation on the number of data bytes received in one read
transmission but the final byte received, the bus master must not
acknowledge the data.
Interrupt Output
The open-drain interrupt output is activated when one of the port
pins change state and the pin is configured as an input. The
interrupt is deactivated when the input returns to its previous state or
the input port register is read (see Figure 9). A pin configured as an
output cannot cause an interrupt. Since each 8-bit port is read
independently, the interrupt caused by Port 0 will not be cleared by a
read of Port 1 or the other way around.
Note that changing an I/O from an output to an input may cause a
false interrupt to occur if the state of the pin does not match the
contents of the Input Port register.
2004 Sep 30
7
7페이지 | |||
구 성 | 총 21 페이지수 | ||
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