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  • 线性低压差 (LDO) 稳压器解决方案

    We offer a broad line of high performance low dropout (LDO) linear regulators with fasttransient response, excellent line and load regulation, and very wide input voltage rangefrom 0.9V to 100V. Output currents range from 20mA to 10A, with positive, negative andmultiple output versions available. Many devices offer output voltage operation <0.8V andsome feature operation as low as 0V, even with a single supply. Most are stable with ceramicoutput capacitors. LDO regulators can be applied in virtually any application.

    标签: LDO 线性 低压差 稳压器

    上传时间: 2013-11-15

    上传用户:努力努力再努力

  • DN492-双单片降压集成温度监控模块

      Multioutput monolithic regulators are easy to use and fi tinto spaces where multichip solutions cannot. Nevertheless,the popularity of multioutput regulators is temperedby a lack of options for input voltages above 30V andsupport of high output currents. The LT3692A fi lls thisgap with a dual monolithic regulator that operates frominputs up to 36V. It also includes a number of channeloptimization features that allow the LT3692A’s per-channelperformance to rival that of multichip solutions.

    标签: 492 DN 降压 温度监控

    上传时间: 2014-01-03

    上传用户:Huge_Brother

  • RT9018,RT9018AB-05 datasheet pdf

    The RT9018A/B is a high performance positive voltage regulator designed for use in applications requining very low Input voltage and very low dropout voltage at up to 3A(peak).

    标签: 9018 datasheet RT

    上传时间: 2013-10-10

    上传用户:geshaowei

  • LPC314x系列ARM微控制器用户手册

    The NXP LPC314x combine a 270 MHz ARM926EJ-S CPU core, High-speed USB 2.0OTG, 192 KB SRAM, NAND flash controller, flexible external bus interface, three channel10-bit A/D, and a myriad of serial and parallel interfaces in a single chip targeted atconsumer, industrial, medical, and communication markets. To optimize system powerconsumption, the LPC314x have multiple power domains and a very flexible ClockGeneration Unit (CGU) that provides dynamic clock gating and scaling.

    标签: 314x LPC 314 ARM

    上传时间: 2013-10-11

    上传用户:yuchunhai1990

  • LPC4300系列ARM双核微控制器产品数据手册

    The LPC4350/30/20/10 are ARM Cortex-M4 based microcontrollers for embeddedapplications. The ARM Cortex-M4 is a next generation core that offers systemenhancements such as low power consumption, enhanced debug features, and a highlevel of support block integration.The LPC4350/30/20/10 operate at CPU frequencies of up to 150 MHz. The ARMCortex-M4 CPU incorporates a 3-stage pipeline, uses a Harvard architecture withseparate local instruction and data buses as well as a third bus for peripherals, andincludes an internal prefetch unit that supports speculative branching. The ARMCortex-M4 supports single-cycle digital signal processing and SIMD instructions. Ahardware floating-point processor is integrated in the core.The LPC4350/30/20/10 include an ARM Cortex-M0 coprocessor, up to 264 kB of datamemory, advanced configurable peripherals such as the State Configurable Timer (SCT)and the Serial General Purpose I/O (SGPIO) interface, two High-speed USB controllers,Ethernet, LCD, an external memory controller, and multiple digital and analog peripherals

    标签: 4300 LPC ARM 双核微控制器

    上传时间: 2013-10-28

    上传用户:15501536189

  • LPC1300系列产品勘误数据手册

    On the LPC13xx, programming, erasure and re-programming of the on-chip flash can be performed using In-System Programming (ISP) via the UART serial port, and also, can be performed using In-Application Programming (IAP) calls directed by the end-user code. For In-System Programming (ISP) via the UART serial port, the ISP command handler (resides in the bootloader) allows erasure of one or more sector (s) of the on-chip flash memory.

    标签: 1300 LPC 勘误 数据手册

    上传时间: 2013-12-13

    上传用户:lmq0059

  • LPC315x系列ARM微控制器用户手册

    The NXP LPC315x combine an 180 MHz ARM926EJ-S CPU core, High-speed USB 2.0OTG, 192 KB SRAM, NAND flash controller, flexible external bus interface, an integratedaudio codec, Li-ion charger, Real-Time Clock (RTC), and a myriad of serial and parallelinterfaces in a single chip targeted at consumer, industrial, medical, and communicationmarkets. To optimize system power consumption, the LPC315x have multiple powerdomains and a very flexible Clock Generation Unit (CGU) that provides dynamic clockgating and scaling.The LPC315x is implemented as multi-chip module with two side-by-side dies, one fordigital fuctions and one for analog functions, which include a Power Supply Unit (PSU),audio codec, RTC, and Li-ion battery charger.

    标签: 315x LPC 315 ARM

    上传时间: 2014-01-17

    上传用户:Altman

  • ibis模型理解说明

    IBIS 模型在做类似板级SI 仿真得到广泛应用。在做仿真的初级阶段,经常对于ibis 模型的描述有些疑问,只知道把模型拿来转换为软件所支持的格式或者直接使用,而对于IBIS 模型里面的数据描述什么都不算很明白,因此下面的一些描述是整理出来的一点对于ibis 的基本理解。在此引用很多presention来描述ibis 内容(有的照抄过来,阿弥陀佛,不要说抄袭,只不过习惯信手拈来说明一些问题),仅此向如muranyi 等ibis 先驱者致敬。本文难免有些错误或者考虑不周,随时欢迎进行讨论并对其进行修改!IBIS 模型的一些基本概念IBIS 这个词是Input/Output buffer information specification 的缩写。本文是基于IBIS ver3.2 所撰写出来(www.eigroup.org/IBIS/可下载到各种版本spec),ver4.2增加很多新特性,由于在目前设计中没用到不予以讨论。。。在业界经常会把spice 模型描述为transistor model 是因为它描述很多电路细节问题。而把ibis 模型描述为behavioral model 是因为它并不象spice 模型那样描述电路的构成,IBIS 模型描述的只不过是电路的一种外在表现,象个黑匣子一样,输入什么然后就得到输出结果,而不需要了解里面驱动或者接收的电路构成。因此有所谓的garbage in, garbage out,ibis 模型的仿真精度依赖于模型的准确度以及考虑的worse case,因此无论你的模型如何精确而考虑的worse case 不周全或者你考虑的worse case 如何周全而模型不精确,都是得不到较好的仿真精度。

    标签: ibis 模型

    上传时间: 2013-10-16

    上传用户:zhouli

  • MAXQUSBJTAGOW评估板软件

    MAXQUSBJTAGOW评估板软件:关键特性 Easily Load and Debug Code Interface Provides In-Application Debugging Features Step-by-Step Execution Tracing Breakpointing by Code Address, Data Memory Address, or Register Access Data Memory View and Edit Supports Logic Levels from 1.1V to 3.6V Supports JTAG and 1-Wire Protocols Each Adapter Has Its Own Unique Serial ID, Allowing Multiple Adapters to be Connected Without COM Port Conflicts Has In-Field Upgradable Capability if Firmware Needs to be Upgraded Enclosure Protects from Shorts and ESD

    标签: MAXQUSBJTAGOW 评估板 软件

    上传时间: 2013-10-24

    上传用户:teddysha

  • 温湿度传感器 sht11 仿真程序下载

    温湿度传感器 sht11 仿真程序 sbit out =P3^0; //加热口  //sbit input =P1^1;//检测口  //sbit speek =P2^0;//报警  sbit clo =P3^7;//时钟  sbit ST =P3^5;//开始  sbit EOC =P3^6;//成功信号  sbit gwei =P3^4;//个位  sbit swei =P3^3;//十位 sbit bwei =P3^2;//百位 sbit qwei =P3^1;//千位 sbit speak =P0^0;//报警音 sbit bjled =P0^1;//报警灯 sbit zcled =P0^2;//正常LED  int count;  uchar xianzhi;//取转换结果 uchar seth;//高时间 uchar setl;//低时间 uchar seth_mi;//高时间 uchar setl_mi;//低时间  bit  hlbz;//高低标志  bit  clbz;  bit  spbz;       ///定时中断程序/// void t0 (void) interrupt 1 using 0 {     TH0=(65536-200)/256;//5ms*200=1000ms=1s   TL0=(65536-200)%256;  clo=!clo;//产生时钟      if(count>5000)   {     if(hlbz)            {       if(seth_mi==0){seth_mi=seth;hlbz=0;out=0;}    else seth_mi--;       }     if(!hlbz)            {       if(setl_mi==0){setl_mi=setl;hlbz=1;out=1;}    else setl_mi--;       }   count=0;   }      else count++;         } ///////////// ///////延时/////// delay(int i) {    while(--i);          }     ///////显示处理/////// xianshi() {      int   abcd=0;     int i;     for (i=0;i<5;i++) {   abcd=xianzhi;  gwei=1;  swei=1;  bwei=1;  qwei=1;  P1=dispcode[abcd/1000];   qwei=0;  delay(70);   qwei=1;  abcd=abcd%1000;  P1=dispcode[abcd/100];  bwei=0;  delay(70);  bwei=1;   abcd=abcd%100;  P1=dispcode[abcd/10];  swei=0;  delay(70);  swei=1;  abcd=abcd%10;  P1=dispcode[abcd];  gwei=0;  delay(70);  gwei=1;  } }   doing()   {     if(xianzhi>100)     {bjled=0;speak=1;zcled=1;}  else {bjled=1;speak=0;zcled=0;}   }   void main(void)  {  seth=60;//h60秒  setl=90;//l90秒  seth_mi=60;//h60秒  setl_mi=90;//l90秒  TMOD=0X01;//定时0 16位工作模式   TH0=(65536-200)/256;   TL0=(65536-200)%256;    TR0=1; //开始计时  ET0=1;   //开定时0中断  EA=1;    //开全中断  while(1)  {      ST=0;    _nop_();     ST=1;    _nop_();     ST=0;  //   EOC=0;          xianshi();       while(!EOC)   {         xianshi();    }        xianzhi=P2;             xianshi();     doing();  }  }

    标签: sht 11 温湿度传感器 仿真程序

    上传时间: 2013-11-07

    上传用户:我们的船长