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FAMILY

  • PCA9539 PCA9539R 16-bit I2C-bu

    The PCA9539; PCA9539R is a 24-pin CMOS device that provides 16 bits of GeneralPurpose parallel Input/Output (GPIO) expansion with interrupt and reset forI2C-bus/SMBus applications and was developed to enhance the NXP SemiconductorsFAMILY of I2C-bus I/O expanders. I/O expanders provide a simple solution when additionalI/O is needed for ACPI power switches, sensors, push buttons, LEDs, fans, etc.

    标签: 9539 PCA 9539R C-bu

    上传时间: 2013-11-10

    上传用户:ewtrwrtwe

  • PCA9555 16bit I2C-bus and SMBu

    The PCA9555 is a 24-pin CMOS device that provides 16 bits of General Purpose parallelInput/Output (GPIO) expansion for I2C-bus/SMBus applications and was developed toenhance the NXP Semiconductors FAMILY of I2C-bus I/O expanders. The improvementsinclude higher drive capability, 5 V I/O tolerance, lower supply current, individual I/Oconfiguration, and smaller packaging. I/O expanders provide a simple solution whenadditional I/O is needed for ACPI power switches, sensors, push buttons, LEDs, fans, etc.The PCA9555 consists of two 8-bit Configuration (Input or Output selection); Input, Outputand Polarity Inversion (active HIGH or active LOW operation) registers. The systemmaster can enable the I/Os as either inputs or outputs by writing to the I/O configurationbits. The data for each Input or Output is kept in the corresponding Input or Outputregister. The polarity of the read register can be inverted with the Polarity Inversionregister. All registers can be read by the system master. Although pin-to-pin and I2C-busaddress compatible with the PCF8575, software changes are required due to theenhancements, and are discussed in Application Note AN469.

    标签: C-bus 9555 SMBu PCA

    上传时间: 2013-11-13

    上传用户:fredguo

  • PCA9670 Remote 8-bit IO expand

    The PCA9670 provides general purpose remote I/O expansion for most microcontrollerfamilies via the two-line bidirectional bus (I2C-bus) and is a part of the Fast-mode PlusFAMILY.The PCA9670 is a drop-in upgrade for the PCF8574 providing higher Fast-mode Plus(Fm+) I2C-bus speeds (1 MHz versus 400 kHz) so that the output can support PWMdimming of LEDs, higher I2C-bus drive (30 mA versus 3 mA) so that many more devicescan be on the bus without the need for bus buffers, higher total package sink capacity(200 mA versus 100 mA) that supports having all 25 mA LEDs on at the same time andmore device addresses (64 versus 8) are available to allow many more devices on the buswithout address conflicts.

    标签: Remote expand 9670 PCA

    上传时间: 2013-10-15

    上传用户:stella2015

  • PCA9671 Remote 16-bit IO expan

    The PCA9671 provides general purpose remote I/O expansion for most microcontrollerfamilies via the two-line bidirectional bus (I2C-bus) and is a part of the Fast-mode Plus(Fm+) FAMILY.The PCA9671 is a drop in upgrade for the PCF8575 providing higher I2C-bus speeds(1 MHz versus 400 kHz) so that the output can support PWM dimming of LEDs, higherI2C-bus drive (30 mA versus 3 mA) so that many more devices can be on the bus withoutthe need for bus buffers, higher total package sink capacity (400 mA versus 100 mA) thatsupports having all 25 mA LEDs on at the same time and more device addresses (64versus 8) to allow many more devices on the bus without address conflicts.

    标签: Remote expan 9671 PCA

    上传时间: 2013-10-12

    上传用户:laomv123

  • PCA9672 Remote 8-bit IO expand

    The PCA9672 provides general purpose remote I/O expansion for most microcontrollerfamilies via the two-line bidirectional bus (I2C-bus) and is a part of the Fast-mode PlusFAMILY.The PCA9672 is a drop-in upgrade for the PCF8574 providing higher Fast-mode Plus(Fm+) I2C-bus speeds (1 MHz versus 400 kHz) so that the output can support PWMdimming of LEDs, higher I2C-bus drive (30 mA versus 3 mA) so that many more devicescan be on the bus without the need for bus buffers, higher total package sink capacity(200 mA versus 100 mA) that supports having all LEDs on at the same time and moredevice addresses (16 versus 8) are available to allow many more devices on the buswithout address conflicts.

    标签: Remote expand 9672 PCA

    上传时间: 2013-10-23

    上传用户:jasonheung

  • PCA9673 Remote 16-bit IO expan

    The PCA9673 provides general purpose remote I/O expansion for most microcontrollerfamilies via the two-line bidirectional bus (I2C-bus) and is a part of the Fast-mode PlusFAMILY.The PCA9673 is a drop in upgrade for the PCF8575 providing higher Fast-mode Plus(Fm+) I2C-bus speeds (1 MHz versus 400 kHz) so that the output can support PWMdimming of LEDs, higher I2C-bus drive (30 mA versus 3 mA) so that many more devicescan be on the bus without the need for bus buffers, higher total package sink capacity(400 mA versus 100 mA) that supports having all 25 mA LEDs on at the same time andmore device addresses (16 versus 8) are available to allow many more devices on the buswithout address conflicts.

    标签: Remote expan 9673 PCA

    上传时间: 2013-10-29

    上传用户:wkchong

  • ADC Oversampling Techniques fo

    Luminary Micro provides an analog-to-digital converter (ADC) module on some members of theStellaris microcontroller FAMILY. The hardware resolution of the ADC is 10 bits; however, due to noiseand other accuracy-diminishing factors, the true accuracy is less than 10 bits. This application noteprovides a software-based oversampling technique, resulting in an improved Effective Number OfBits (ENOB) in the conversion result. This document describes methods of oversampling an inputsignal, and the impact on precision and overall system performance.

    标签: Oversampling Techniques ADC fo

    上传时间: 2013-12-17

    上传用户:zhyiroy

  • PCA954X家庭的I C SMBus多路复用器与开关

    The Philips FAMILY of Multiplexers and Switches consists of bi-directional translating switches controlled via the I2C or SMBus to fan out an upstream SCL/SDA pair to 2, 4 or 8 downstream channels of SCx/SDx pairs. The Multiplexers allow only one downstream channel to be selected at a time, while the Switches allow any individual downstream channel or combination of downstream channels to be selected, depending on the content of the programmable control register. Once one or several channels have been selected, the device acts as a wire, allowing the master on the upstream channel to send commands to devices on all the active downstream channels, and devices on the active downstream channels to communicate with each other and the master. External pull-up resistors are used to pull each individual channel up to the desired voltage level. Combined interrupt output and hardware reset input are device options that are featured.

    标签: SMBus 954X PCA 954

    上传时间: 2013-10-11

    上传用户:dianxin61

  • AN255-02 IC SMBus REPEATERS HU

    PCA9511, PCA9512, PCA9513, PCA9514, PCA9515, PCA9516, PCA9518,P82B96, P82B715Abstract - Philips Semiconductors FAMILY of Repeaters, Hubs and Expanders are detailed in this application notethat discusses device operation, maximum cable length and frequency calculations and typical applications.

    标签: REPEATERS SMBus 255 AN

    上传时间: 2013-11-21

    上传用户:wlcaption

  • MSP430系列超低功耗16位单片机原理与应用

    MSP430系列超低功耗16位单片机原理与应用TI公司的MSP430系列微控制器是一个近期推出的单片机品种。它在超低功耗和功能集成上都有一定的特色,尤其适合应用在自动信号采集系统、液晶显示智能化仪器、电池供电便携式装置、超长时间连续工作设备等领域。《MSP430系列超低功耗16位单片机原理与应用》对这一系列产品的原理、结构及内部各功能模块作了详细的说明,并以方便工程师及程序员使用的方式提供软件和硬件资料。由于MSP430系列的各个不同型号基本上是这些功能模块的不同组合,因此,掌握《MSP430系列超低功耗16位单片机原理与应用》的内容对于MSP430系列的原理理解和应用开发都有较大的帮助。《MSP430系列超低功耗16位单片机原理与应用》的内容主要根据TI公司的《MSP430 FAMILY Architecture Guide and Module Library》一书及其他相关技术资料编写。  《MSP430系列超低功耗16位单片机原理与应用》供高等院校自动化、计算机、电子等专业的教学参考及工程技术人员的实用参考,亦可做为应用技术的培训教材。MSP430系列超低功耗16位单片机原理与应用 目录  第1章 MSP430系列1.1 特性与功能1.2 系统关键特性1.3 MSP430系列的各种型号??第2章 结构概述2.1 CPU2.2 代码存储器?2.3 数据存储器2.4 运行控制?2.5 外围模块2.6 振荡器、倍频器和时钟发生器??第3章 系统复位、中断和工作模式?3.1 系统复位和初始化3.2 中断系统结构3.3 中断处理3.3.1 SFR中的中断控制位3.3.2 外部中断3.4 工作模式3.5 低功耗模式3.5.1 低功耗模式0和模式13.5.2 低功耗模式2和模式33.5.3 低功耗模式43.6 低功耗应用要点??第4章 存储器组织4.1 存储器中的数据4.2 片内ROM组织4.2.1 ROM表的处理4.2.2 计算分支跳转和子程序调用4.3 RAM与外围模块组织4.3.1 RAM4.3.2 外围模块--地址定位4.3.3 外围模块--SFR??第5章 16位CPU?5.1 CPU寄存器5.1.1 程序计数器PC5.1.2 系统堆栈指针SP5.1.3 状态寄存器SR5.1.4 常数发生寄存器CG1和CG2?5.2 寻址模式5.2.1 寄存器模式5.2.2 变址模式5.2.3 符号模式5.2.4 绝对模式5.2.5 间接模式5.2.6 间接增量模式5.2.7 立即模式5.2.8 指令的时钟周期与长度5.3 指令集概述5.3.1 双操作数指令5.3.2 单操作数指令5.3.3 条件跳转5.3.4 模拟指令的简短格式5.3.5 其他指令5.4 指令分布??第6章 硬件乘法器?6.1 硬件乘法器的操作6.2 硬件乘法器的寄存器6.3 硬件乘法器的SFR位6.4 硬件乘法器的软件限制6.4.1 硬件乘法器的软件限制--寻址模式6.4.2 硬件乘法器的软件限制--中断程序??第7章 振荡器与系统时钟发生器?7.1 晶体振荡器7.2 处理机时钟发生器7.3 系统时钟工作模式7.4 系统时钟控制寄存器7.4.1 模块寄存器7.4.2 与系统时钟发生器相关的SFR位7.5 DCO典型特性??第8章 数字I/O配置?8.1 通用端口P08.1.1 P0的控制寄存器8.1.2 P0的原理图8.1.3 P0的中断控制功能8.2 通用端口P1、P28.2.1 P1、P2的控制寄存器8.2.2 P1、P2的原理图8.2.3 P1、P2的中断控制功能8.3 通用端口P3、P48.3.1 P3、P4的控制寄存器8.3.2 P3、P4的原理图8.4 LCD端口8.5 LCD端口--定时器/端口比较器??第9章 通用定时器/端口模块?9.1 定时器/端口模块操作9.1.1 定时器/端口计数器TPCNT1--8位操作9.1.2 定时器/端口计数器TPCNT2--8位操作9.1.3 定时器/端口计数器--16位操作9.2 定时器/端口寄存器9.3 定时器/端口SFR位9.4 定时器/端口在A/D中的应用9.4.1 R/D转换原理9.4.2 分辨率高于8位的转换??第10章 定时器?10.1 Basic Timer110.1.1 Basic Timer1寄存器10.1.2 SFR位10.1.3 Basic Timer1的操作10.1.4 Basic Timer1的操作--LCD时钟信号fLCD?10.2 8位间隔定时器/计数器10.2.1 8位定时器/计数器的操作10.2.2 8位定时器/计数器的寄存器10.2.3 与8位定时器/计数器有关的SFR位10.2.4 8位定时器/计数器在UART中的应用10.3 看门狗定时器11.1.3 比较模式11.1.4 输出单元11.2 TimerA的寄存器11.2.1 TimerA控制寄存器TACTL11.2.2 捕获/比较控制寄存器CCTL11.2.3 TimerA中断向量寄存器11.3 TimerA的应用11.3.1 TimerA增计数模式应用11.3.2 TimerA连续模式应用11.3.3 TimerA增/减计数模式应用11.3.4 TimerA软件捕获应用11.3.5 TimerA处理异步串行通信协议11.4 TimerA的特殊情况11.4.1 CCR0用做周期寄存器11.4.2 定时器寄存器的启/停11.4.3 输出单元Unit0??第12章 USART外围接口--UART模式?12.1 异步操作12.1.1 异步帧格式12.1.2 异步通信的波特率发生器12.1.3 异步通信格式12.1.4 线路空闲多处理机模式12.1.5 地址位格式12.2 中断与控制功能12.2.1 USART接收允许12.2.2 USART发送允许12.2.3 USART接收中断操作12.2.4 USART发送中断操作12.3 控制与状态寄存器12.3.1 USART控制寄存器UCTL12.3.2 发送控制寄存器UTCTL12.3.3 接收控制寄存器URCTL12.3.4 波特率选择和调制控制寄存器12.3.5 USART接收数据缓存URXBUF12.3.6 USART发送数据缓存UTXBUF12.4 UART模式--低功耗模式应用特性12.4.1 由UART帧启动接收操作12.4.2 时钟频率的充分利用与UART模式的波特率12.4.3 节约MSP430资源的多处理机模式12.5 波特率的计算??第13章 USART外围接口--SPI模式?13.1 USART的同步操作13.1.1 SPI模式中的主模式--MM=1、SYNC=113.1.2 SPI模式中的从模式--MM=0、SYNC=113.2 中断与控制功能13.2.1 USART接收允许13.2.2 USART发送允许13.2.3 USART接收中断操作13.2.4 USART发送中断操作13.3 控制与状态寄存器13.3.1 USART控制寄存器13.3.2 发送控制寄存器UTCTL13.3.3 接收控制寄存器URCTL13.3.4 波特率选择和调制控制寄存器13.3.5 USART接收数据缓存URXBUF13.3.6 USART发送数据缓存UTXBUF??第14章 液晶显示驱动?14.1 LCD驱动基本原理14.2 LCD控制器/驱动器14.2.1 LCD控制器/驱动器功能14.2.2 LCD控制与模式寄存器14.2.3 LCD显示内存14.2.4 LCD操作软件例程14.3 LCD端口功能14.4 LCD与端口模式混合应用实例??第15章 A/D转换器?15.1 概述15.2 A/D转换操作15.2.1 A/D转换15.2.2 A/D中断15.2.3 A/D量程15.2.4 A/D电流源15.2.5 A/D输入端与多路切换15.2.6 A/D接地与降噪15.2.7 A/D输入与输出引脚15.3 A/D控制寄存器??第16章 其他模块16.1 晶体振荡器16.2 上电电路16.3 晶振缓冲输出??附录A 外围模块地址分配?附录B 指令集描述?B1 指令汇总B2 指令格式B3 不增加ROM开销的指令模拟B4 指令说明B5 用几条指令模拟的宏指令??附录C EPROM编程?C1 EPROM操作C2 快速编程算法C3 通过串行数据链路应用\"JTAG\"特性的EPROM模块编程C4 通过微控制器软件实现对EPROM模块编程??附录D MSP430系列单片机参数表?附录E MSP430系列单片机产品编码?附录F MSP430系列单片机封装形式?

    标签: MSP 430 超低功耗 位单片机

    上传时间: 2014-05-07

    上传用户:lwq11