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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Multilayer Broadside-Coupled Dispersive Delay Structures for Analog Signal Processing
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Multilayer Broadside-Coupled Dispersive Delay Structures for Analog Signal Processing

机译:用于模拟信号处理的多层宽带耦合色散延迟结构

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摘要

A compact multilayer non-commensurate C-section dispersive delay structure (DDS) is proposed for analog signal processing (ASP) applications. In contrast to a previously reported C-section DDS, which was uniplanar and used edge-coupled C-sections, this DDS is based on broadside-coupled C-sections, and hence achieves a much larger ratio of group delay swing to frequency bandwidth, leading to higher ASP resolution. Moreover, it is much more compact, while maintaining acceptable insertion loss. After a parametric characterization of a mono-block commensurate multilayer DDS, with varied strip widths, two multiblock non-commensurate DDSs with linear group delay slopes are demonstrated by full-wave simulation and experimental low-temperature co-fired ceramics results. The proposed DDS exhibits a significant footprint reduction factor of around 7 compared to its uniplanar edge-coupled counterpart.
机译:提出了一种紧凑的多层非对等C截面色散延迟结构(DDS),用于模拟信号处理(ASP)应用。与以前报道的C型DDS是单平面的并且使用边缘耦合C型截面相比,此DDS基于宽边耦合C型截面,因此可以实现更大的群时延摆幅与频率带宽之比,导致更高的ASP分辨率。而且,它更加紧凑,同时保持可接受的插入损耗。在对具有不同条带宽度的单块相称多层DDS进行参数表征后,通过全波模拟和实验性低温共烧陶瓷结果证明了两个具有线性基团延迟斜率的多块非相称DDS。与单面边缘耦合的同类产品相比,拟议的DDS具有显着的占位面积减小系数约7。

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