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BANDWIDTH RELATIONSHIPS APPLICABLE IN ELECTRONIC DIGITAL SIGNAL COMMUNICATIONS

机译:适用于电子数字信号通信的带宽关系

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General Bandwidth relationships [in terms of Trise (digital pulse rise time) - fc (upper critical frequency) product function correlations] are derived applicable to digital signal electronic communication characterization based upon two basic elementary response models: that of a simple RC circuit (Part I) and a Gaussian filter circuit (Part II), respectively. Two results per model are obtained: (1) 'general results' which are a specific function of two parameters (P1 & P2), traditionally held constant but treated now as variables; and (2) 'reduced results' for common standard conditions. The latter is shown, for the RC model case, to be in exact agreement with the familiar and classic -3 dB relationship: (f_c * Trise) = 0.35 (where per standard conditions, P1 is defined as the relative voltage sweep interval between [v1 - v2] = [10% - 90%] levels or segments of a rising (or falling) digital waveform; and P2 is defined as -x dB = -3 dB down value, or standard filter response characteristic defining the upper frequency 1/2 - power point). Extension of the analytical treatment to a Gaussian-like filter response model (Part II) yields a similar but quantitatively different relationship, also parametric in the now variable parameters P1 & P2, respectively. Sensitivity of the bandwidth product relationship to these same parameters is established for both models respectively.
机译:一般带宽关系[根据三刻(数字脉冲上升时间) - FC(上临界频率)产品功能相关性]可用于基于两个基本的基本响应模型的数字信号电子通信表征:简单的RC电路(部分i)分别和高斯滤波器电路(第二部分)。获得每个模型的两个结果:(1)'一般结果',其是两个参数的特定功能(P1&P2),传统上保持恒定,但现在被视为变量; (2)常见标准条件的“降低结果”。对于RC模型案例,后者显示,与熟悉的和经典-3 dB关系确切一致:(f_c * trise)= 0.35(如果每个标准条件,p1被定义为[)之间的相对电压扫描间隔v1-v2] = [10%-90%]升级(或下降)数字波形的级别或段; P2定义为-x db = -3 dB下值,或定义上频率1的标准滤波器响应特性/ 2 - 电力点)。扩展到高斯的滤波器响应模型(第二部分)的分析处理产生类似但定量地不同的关系,也分别参数分别参数分别参数P1&P2。分别为两个模型建立了与这些相同参数的带宽产品关系的敏感性。

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