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Design and Modelling of Miniaturized Bandgap Structure for Wideband GHz-Noise Suppression Based on LTCC Technology

机译:基于LTCC技术的宽带GHz噪声抑制的微型带隙结构设计与建模

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摘要

A novel electromagnetic bandgap (EBG) structure is proposed for broadband suppression of gigahertz simultaneous switching noise. The structure is composed of three-dimensional interdigital capacitors (3D-IDC) and series U-shaped transmission lines periodically. The EBG structure can be miniaturized based on the LTCC fabrication technology. A theoretical circuit model which considers the inductive coupling in the 3D-IDC will be developed to predict the stopband. The accuracy of the proposed model will be verified by comparing with both the full-wave simulation and the measurement results. This modeling method is also employed to study the variation of bandgap dependent on different geometrical parameters for the 3D-IDC and the U-shaped transmission line. A prototype is implemented using the LTCC technology with the dimension $1.2 {hbox {mm}}times 3.8 {hbox {mm}}times 0.728 {hbox {mm}}$. Both simulation and measurement show the rejection band is from 2 to 5.5 GHz. Over 45 dB noise reduction in the stop band could be achieved. In addition, the suppressive ability is also verified in the chip-package co-simulation. From the simulation result, significant reduction of power noise could be found both in digital and mixed signal circuits.
机译:提出了一种新颖的电磁带隙(EBG)结构,用于宽带抑制千兆赫兹同时开关噪声。该结构由三维交指电容器(3D-IDC)和周期性的U形传输线组成。 EBG结构可以基于LTCC制造技术实现小型化。将建立一个考虑3D-IDC中电感耦合的理论电路模型来预测阻带。通过与全波仿真和测量结果进行比较,可以验证所提出模型的准确性。该建模方法还用于研究3D-IDC和U形传输线取决于不同几何参数的带隙变化。使用LTCC技术实现的原型的尺寸为$ 1.2 {hbox {mm}}乘以3.8 {hbox {mm}}乘以0.728 {hbox {mm}} $。仿真和测量均显示出抑制频带为2至5.5 GHz。阻带的噪声降低超过45 dB。此外,在芯片封装协同仿真中也验证了抑制能力。从仿真结果可以发现,数字和混合信号电路中的功率噪声都大大降低了。

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