PCA6408ABS 产品信息|NXP

PCA6408ABS

正常供应

PCA6408ABS

正常供应

特点


Low-voltage, 8-bit I2C-bus and SMBus I/O expander with interrupt output, reset, and configuration registers

封装


HVQFN16: plastic thermal enhanced very thin quad flat package; no leads; 16 terminals; body 3 x 3 x 0.85 mm

购买选项

工作特点

参数
No of bits
8
VDD [min]
1.65
VDD [max]
5.5
Over volt tolerant
Y
No of supplies
2
Standby current [typ] (µA)
0.5
Max Sink Current per bit (mA)
25
Max Sink Current, per package (mA)
200
Source Current per bit (mA)
10
参数
Interrupt output pin
Y
Reset input pin
Y
Output mode
Totem pole
Input mode: invert option
Y
Internal pull-up resistor per bit (kOhm)
No
I2C-bus (kHz)
400
Footprint body and leads
9.61
Operating Temperature (°C)
-40~85
No of Addresses
2

环境

部件/12NC无铅欧盟 RoHS无卤素RHF指标REACH SVHC重量(mg)
PCA6408ABSHP(935296014128)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
DREACH SVHC
22.48004

质量

部件/12NC安全保障功能安全湿度灵敏度等级(MSL)封装体峰值温度(PPT)(C°)适合MTBFIR
铅焊接无铅焊接铅焊接无铅焊接
PCA6408ABSHP
(935296014128)
No
1
1
240
260
4.0
2.5E8
0.0

配送

部件/12NC协调关税 (美国)免责声明
PCA6408ABSHP
(935296014128)
854239

更多信息 PCA6408A

The PCA6408A is an 8-bit general purpose I/O expander that provides remote I/O expansion for most microcontroller families via the I²C-bus interface.

NXP I/O expanders provide a simple solution when additional I/Os are needed while keeping interconnections to a minimum, for example, in battery-powered mobile applications for interfacing to sensors, push buttons, keypad, etc. In addition to providing a flexible set of GPIOs, it simplifies interconnection of a processor running at one voltage level to I/O devices operating at a different (usually higher) voltage level. The PCA6408A has built-in level shifting feature that makes these devices extremely flexible in mixed signal environments where communication between incompatible I/O voltages is required. Its wide VDD range of 1.65 V to 5.5 V on the dual power rail allows seamless communications with next-generation low voltage microprocessors and microcontrollers on the interface side (SDA/SCL) and peripherals at a higher voltage on the port side.

There are two supply voltages for PCA6408A: VDD(I²C-bus) and VDD(P). VDD(I²C-bus) provides the supply voltage for the interface at the controller side (for example, a microcontroller) and the VDD(P) provides the supply for core circuits and Port P. The bidirectional voltage level translation in the PCA6408A is provided through VDD(I²C-bus). VDD(I²C-bus) should be connected to the VDD of the external SCL/SDA lines. This indicates the VDD level of the I²C-bus to the PCA6408A. The voltage level on Port P of the PCA6408A is determined by the VDD(P).

The PCA6408A consists of one 8-bit Configuration (input or output selection), Input, Output, and Polarity Inversion (active HIGH) register. At power-on, the I/Os are configured as inputs. However, the system controller can enable the I/Os as either inputs or outputs by writing to the I/O configuration bits. The data for each input or output is kept in the corresponding Input or Output register. The polarity of the Input port register can be inverted with the Polarity Inversion register, saving interrupts.

The system controller can reset the PCA6408A in the event of a time-out or other improper operation by asserting a LOW in the RESET input. The power-on reset puts the registers in their default state and initializes the I²C-bus/SMBus state machine. The RESET pin causes the same reset/initialization to occur without de-powering the part.

The PCA6408A open-drain interrupt (INT) output is activated when any input state differs from its corresponding Input port register state and is used to indicate to the system controller that an input state has changed.

INT can be connected to the interrupt input of a microcontroller. By sending an interrupt signal on this line, the remote I/O can inform the microcontroller if there is incoming data on its ports without having to communicate via the I²C-bus. Thus, the PCA6408A can remain a simple target device.

The device Port P outputs have 25 mA sink capabilities for directly driving LEDs while consuming low device current.

One hardware pin (ADDR) can be used to program and vary the fixed I²C-bus address and allow up to two devices to share the same I²C-bus or SMBus.

更多