首页> 外文会议>Conference on Microelectronics: Design, Technology, and Packaging; Dec 10-12, 2003; Perth, Australia >Differential optoelectronic subtractor using self electro-optic effect devices for use in sigma-delta modulation
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Differential optoelectronic subtractor using self electro-optic effect devices for use in sigma-delta modulation

机译:使用自电光效应器件的差分光电减法器,用于sigma-delta调制

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As the demand for analog-to-digital (A/D) conversion with greater bandwidths increase, it is necessary to look at other alternatives to electronics for integrated circuit design. One such approach to utilise is a combination of optics and electronics, or opto-electronics, at all levels of the system hierarchy. A device that has these properties is the Self Electro-optic Effect Device (SEED), and combining this with oversampling techniques for data conversion can meet the demands for direct digitisation of radio frequency (RF) signals. One form of A/D oversampling conversion method is Sigma-Delta modulation. A key element of this technique is the subtractor and in this paper we will discuss the implementation of a differential subtractor using SEEDs as part of a Sigma-Delta Modulator. This paper will detail simulation results based on experimental data to predict the behaviour of two types of differential subtractors, one of which will be compared with experimental results.
机译:随着对具有更大带宽的模数(A / D)转换的需求的增加,有必要寻找集成电路设计中电子学的其他替代方案。一种使用的方法是在系统层次结构的所有级别上将光学和电子学或光电子学结合起来。具有这些特性的设备是自电光效应设备(SEED),并将其与过采样技术相结合进行数据转换可以满足对射频(RF)信号直接数字化的需求。 A / D过采样转换方法的一种形式是Sigma-Delta调制。该技术的关键要素是减法器,在本文中,我们将讨论使用SEED作为Sigma-Delta调制器一部分的差分减法器的实现。本文将基于实验数据详细说明仿真结果,以预测两种类型的差分减法器的性能,其中一种将与实验结果进行比较。

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