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  • TI OMAP2 2009-09-22 22:16
  • Fast Spice技术介绍 2009-09-22 22:14
    为了克服第一代SPICE仿真工具(如Spectre、PSPICE)在仿真容量(约50K)和速度上的缺陷,第二代SPICE技术即Fast SPICE仿真器采用电路分块、多速率、简化模型等加速仿真技术。 传统SPICE仿真器将电路作为一个矩阵,随着电路规模的增加,矩阵的求解速度显著下降。Fast SPICE把相关的电路模块放在一起,将大矩阵分成许多小矩阵,减小计算量。此外,事件驱动技术可忽略不活动的电路,进一步降低运算量。 电路分块的另一个优点是可采用多速率仿真。各个电路模块往往存在不同的工作频率,因此仿真中不同的电路块可以采用不同的仿真步长。这样,既可...

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  • 关于汉芯造假 2009-09-22 22:14
    It's obviously true. Gump has received email from Freescale member telling the details about this cheat. In fact we have heard a lot about this incident in Freescale these days. Jason in Freescale who has joined Sjtu working with Chen Jing told me he believe this, Chen Jin is stealing.

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  • Hittite Microwave 2009-09-22 22:13
    Founded in 1985, Hittite Microwave Corporation is an innovative designer and manufacturer of analog/digital ICs and MIC module assemblies for RF and microwave applications covering DC to 110 GHz. Hittite’s RFIC/MMIC products are developed using state-of-the-art GaAs, InGaP/GaAs, InP, SOI and SiGe semiconductor processes utilizing MESFET, PHEMT and HBT devices.

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  • 考前押题 2009-09-22 22:12
    9号上午考微分方程数值解,复习了好几天了,来押一把: 有限元和边界元部分: 1。写有限元线性代数方程; 2。Lax-Milgram定理证明方程适定性; 3。边界元分段基函数及计算。 常微分方程部分: 线性多步法绝对稳定区间或PMECME算法。 偏微分方程差分法部分: 1。椭圆型:Laplace方程五点差分格式稳定性分析; 2。抛物型:一维热传导方程加权C-N格式稳定性分析; 3。双曲型方程:特征线法求解拟线性方程。   哈哈,明天考完了验证一下。

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  • What is DigRF? 2009-09-22 22:12
    The DigRF digital interface standard defines an efficient physical interconnection between baseband and RF integrated circuits for digital cellular terminals. It ensures that ICs complying with the standard can, when correctly configured, always communicate with each other, leading to an open market in digital terminal components. The standard places as few constraints on the internal architectures of the ICs themselves as possible, to allow suppliers space for competition based on innovation an...

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  • Done 2009-09-22 22:11
    I get the right results tonight. Beautiful waveforms. Analog Source --> Sampling --> Quantification --> Coding  --> Encoding  -->Low-Pass Filter, then I get the reconstructed signal.

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  • What is Direct Digital Synthesis? Direct digital synthesis (DDS) is a method of producing an analog waveform -- usually a sine wave -- by generating a time-varying signal in digital form and then performing a digital-to-analog conversion. Because operations within a DDS device are primarily digital, it can offer fast switching between output frequencies, fine frequency resolution, and operation over a broad spectrum of frequencies. With advances in design and process technology, today's DDS dev...

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  • Matlab goes on... 2009-09-22 22:10
    Zhu's girlfriend came here yesterday so I had to go to Zhu Chao's dormitory the last evening. We spend this all day on studying in the classroom. After the supper I come back to my place and i can go on with my projects of communication. I came accross difficulty yesterday, I had tried almost every solution but couldn't get the right results. I decide to struglle to the end. And I got it in the end. The results are just the right results. I fullfill Creating Analog Source, Sampling, Quantificat...

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  • Periodic Rectangular Wave 2009-09-22 22:09
    It is a problem of communication that ask you utilize Fourier Series to create a periodic rectangular wave with the frequency of 1000Hz. I'd like to fullfill it using Matlab which I have never come accross before. I hope this is a nice work and i began yesterday. It is easy in fact, however, there seems something wrong with the function of integral. As you know, we must do the integral when we work out the fourier series of any function. I have tryed almost every method but it didn't work still....

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  • Cadence 发布了RF系统互连和PCB设计工具最新版本Allegro ® RF PCB V1.2。RF PCB V1.2 是专为Cadence用户提供的一种基于Allegro平台的RF和混合信号设计的完整、有效和便捷的解决方案。包括RF器件库设计、RF原理参数化设计以及RF PCB 布局、布线和RF互连设计;RF元件的形状修改和编辑;RF电气设计以及设计模块复用等功能。使射频和混合设计用户易于生成各种RF元件(形状)库并为他们提供一套快捷灵活的RF互连设计方法。   RF PCB V1.2由Cadence位于上海浦东的亚太高速技术中心开发并且已经在无线电讯领域的电子设计中获得了许多用户的好评...

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  • 认知无线电技术 2009-09-22 22:07
    从FDMA到TDMA再到如今的CDMA、UWB,飞速演进的无线技术让我们眼花缭乱,但是,伴随无线技术的高歌猛进,有一种矛盾显得日益突出,这就是如何更有效地利用频谱资源的问题。在这方面,美国国防高级研究计划局(DARPA)已经率先进行了这方面的研究,2003年,从事高尖端军事设备开发的美国雷声公司从DARPA手中接下了有关研发下一代无线(XG)通信计划的合同,进行下一代无线技术研究和开发。 XG计划将研制系统方法和关键技术,以实现通信和传感器系统中的动态频谱应用。雷声公司称其论证的频谱效率可使目前的频谱利用率提高10到20倍!该公司目...

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  •       图10. 数模转换器通过一致改变LED 的正向电流来控制LED 的调光。   使色彩坐标不发生移动的调光方案叫做脉宽调制。它能够由绝大多数可以提供使能或者关断控制的电源器件实现。例如,通过拉低EN电平禁止器件工作时,MAX1916可以将流经LED的泄漏电流限定在1μA,使发射光为零。拉高EN电平可以管理可控的LED正向电流。如果给EN引脚加脉宽调制信号,那么亮度就与该信号的占空比成正比。   由于流经每个LED的正向电流持续保持一致,因而色彩坐标不会偏移。但是,肉眼会感觉到占空比改变带来的光强变化。人眼无法分...

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  •         图6. 增加的正向电流通过改变其发射波长而改变了蓝光LED 的色彩。   当正向电流高至10mA 时,正向电压的变化很大。变化量的范围大约为800mV (有些二极管型号变化会更大一些)。电池放电引起的工作电压的变化因此会改变色彩,因为工作电压的变化改变了正向电流。在10mA正向电流时,正向电压大约为3.4V (该数值会随供应商的不同而有所不同,范围从3.1V至4.0V)。同样,不同LED之间的电流-电压特性也有较大差异。直接用电池驱动LED是很困难的,因为绝大数电池会随着放电使电压低于LED所需要的最小正向导通电压...

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  • 很多年来,发光二极管(LED)广泛的应用于状态显示与点阵显示板。现在,不仅可以选择近期刚刚研发出来的蓝光和白光产品(普遍用于便携设备),而且也能在已有的绿光、红光和黄光产品中选择。例如,白光LED被认为是彩色显示器的理想背光源。但是,必须注意这些新型LED 产品的固有特性,需要为其设计适当的供电电源。本文描述了新、旧类型LED的特性,以及对驱动电源的性能要求。        标准红光、绿光和黄光LED   使LED 工作的最简单的方式是,用一个电压源通过串接一个电阻与LED 相连。只要工作电压(VB)保持恒...

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