采用等宽抖动电极的单相单向传感器

P. Wright, D. F. Thompson, R. Chang
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引用次数: 15

摘要

介绍了一种新的抖动单相单向换能器(DSPUDT)结构。这些结构由非均匀网格上的均匀宽度的单电平电极组成。它们是1992年引入的均匀采样3/spl lambda//8和5/spl lambda//8双电平SPUDT配置的扩展。在这些新结构中,通过抖动电极的位置来实现单向性,而不是采用双层金属化。这种技术非常强大,因为它允许传感器中的反射率函数以接近模拟的方式实现,而不是离散的近似。除了3/spl lambda//8和5/spl lambda//8的平均采样率外,其他采样率一般被认为是m/spl lambda//n和(1-m/n)/spl lambda/,其中m和n是整数,m/spl les/n/2。这些额外的采样率为在最小临界几何形状、实现耦合和反射系数以及换能器中不期望的带外响应方面进行设计权衡提供了额外的灵活性。使用这些采样率的组合,可以构建具有优异抑制特性的滤波器。这些新型换能器的大临界几何尺寸允许在超过1ghz的频率下轻松制造低损耗滤波器,具有非常线性的群延迟和高带外抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-phase unidirectional transducers employing uniform-width dithered electrodes
A new family of Dithered Single-Phase Unidirectional Transducer (DSPUDT) configurations is described. These structures are comprised of uniform width single-level electrodes on a non-uniform grid. They are an extension of the uniformly-sampled 3/spl lambda//8 and 5/spl lambda//8 double-level SPUDT configurations introduced in 1992. Instead of employing a double-level metalization, unidirectionality is achieved in these new structures by dithering the position of the electrodes. This technique is very powerful as it allows the reflectivity function in the transducer to be implemented in a near analogue fashion, rather than a discrete approximation. In addition to mean sampling rates of 3/spl lambda//8 and 5/spl lambda//8, other sampling rates are considered of the general form m/spl lambda//n and (1-m/n)/spl lambda/, where m and n are integers and m/spl les/n/2. These additional sampling rates provide additional flexibility for making design tradeoffs in the minimum critical geometry, implemented coupling and reflection coefficients, and undesired out-of-band responses in the transducer. Using combinations of these sampling rates, filters with excellent rejection characteristics can be constructed. The large critical geometry's possible with these new transducers permits low-loss filters to be easily fabricated at frequencies in excess of 1 GHz with very linear group-delay and high out-of-band rejection.
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