WMSIC Electronic Components

PCA9575PW2,118 PCA9575PW2

ModelPCA9575PW2,118
PackageTSSOP-28
BrandNXP
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
NXP PCA9575PW2, 118
Type
NXP
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
NXP
Electronic Component
PCA9575PW2,118
Electronic Component
1
Package
TSSOP-28
Electronic Component
I / O Expander
Electronic Component
0.16g
Electronic Component
1
I / O
16
Features
positions; and; IOLevel
Electronic Component
BM0242331621
Operating Temperature
40℃~+85℃
Operating Voltage
1.1V~3.6V
Interface Type
I2C;SMBus
Output Type
Electronic Component
Current(IOH)
1mA

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

PCA9575PW2,118 产品概述

一、产品简介

PCA9575PW2,118 是恩智浦(NXP)推出的一款16位I/O扩展器,通过I²C/SMBus总线与主控通信。器件支持高达400kHz的时钟速率,工作电压范围宽(1.1V~3.6V),具有中断输出和推挽式输出驱动,静态电流极低(Iq ≈ 2µA),非常适合对GPIO数量有扩展需求且关注功耗和尺寸的嵌入式系统与便携设备。

二、主要特性

  • 接口:I²C / SMBus,兼容标准总线协议,最高工作频率 400 kHz。
  • I/O 数量:16 位通用GPIO,可作为输入或输出使用。
  • 地址扩展:通过地址引脚支持多达16个器件接入同一I²C总线,便于系统扩展。
  • 中断输出:具备中断输出功能,用于在输入状态变化时通知主机,提高响应效率。
  • 输出类型:推挽式输出,驱动能力(典型)灌电流 IOL = 3 mA,拉电流 IOH = 1 mA。
  • 电源与温度:工作电压 1.1 V ~ 3.6 V,工作温度范围 -40 ℃ ~ +85 ℃。
  • 低功耗:静态电流约 2 µA,适合电池供电应用。
  • 封装:TSSOP-28(PCA9575PW2 型号封装),便于PCB布局。

三、功能要点与寄存器(概述)

PCA95xx 系列常见功能在 PCA9575 上体现为:输入寄存器(读入端口电平)、输出寄存器(写出端口电平)、配置寄存器(设置每位为输入或输出)以及极性反转寄存器(可选反转输入极性)。中断输出可在某些输入变化发生时驱动中断线,减少轮询开销。具体寄存器地址与访问方式请参照器件手册。

四、电气性能与限制

  • 输出驱动能力有限:IOL(灌电流)3 mA、IOH(拉电流)1 mA,适用于指示灯、逻辑驱动和小电流负载;驱动较大负载或继电器需外接驱动器或晶体管。
  • 电源和信号完整性:推荐在VCC旁加 0.1 µF 陶瓷去耦电容,I²C 总线侧使用合适阻值上拉电阻(根据总线速度与线长选择),避免总线反射与时序问题。
  • 多器件连接:支持最多16个器件并联,但要注意总线上总的上拉电阻、容性负载和地址冲突。
  • 环境与可靠性:工作温度覆盖工业级范围,适合工业与消费级应用。

五、封装与布局建议

TSSOP-28 封装体积紧凑,建议布局时:

  • VCC 与 GND 靠近器件并放置去耦电容。
  • 将中断线拉至主控中断输入,并考虑添加上拉/滤波以避免毛刺误触发。
  • 地址引脚应便于配置(焊盘或跳线),以支持现场配置或批量生产不同地址版本。

六、典型应用场景

  • 嵌入式主控GPIO扩展:用于触摸按键、指示灯、开关状态监测。
  • 电池供电设备:低静态电流适合手持设备、遥控器等。
  • 工业控制与楼宇自动化:用于读取多路传感器或驱动逻辑等级信号。
  • 消费电子:面板按键矩阵、状态指示和外设控制。

七、设计与使用建议

  • 在需要更大电流驱动时,用外部驱动级(MOSFET、晶体管或专用驱动器)来保护扩展器。
  • 若主控工作电压超出器件范围,需使用电平翻译或选择合适电源域。
  • 利用中断引脚减少主控轮询,配合极性反转寄存器可简化输入逻辑处理。
  • 在多器件系统中,检查地址分配并测试总线在最大速率与最大挂载情况下的信号完整性。

总结:PCA9575PW2,118 提供了一个低功耗、可扩展且功能完整的16位I/O扩展解决方案,适合对GPIO数量、功耗和可靠性有严格要求的嵌入式与工业应用。在实际设计中需注意输出电流限制、总线去耦与地址规划,以确保稳定可靠的系统运行。

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