An active three-dimensional GPS patch antenna using MID-technology

A. Friedrich, L. Berkelmann, T. Martinelli, Bernd Geck, Oliver Klemp, I. Kriebitzsch
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引用次数: 5

Abstract

This contribution contains the design of a three-dimensional (3d) active antenna operating in the civil global positioning satellite system (GPS) for an automotive application. Designing the antenna a new approach is used combining a slotted patch antenna with a 3d surface modulation of the antenna substrate. Thus, an optimization of the antenna dimensions is achieved considering a given installation space. In addition, the space gained due to the modulation of the antenna surface is used to integrate the circuit of a low noise amplifier (LNA). This two stage LNA designed especially for this application is positioned directly underneath the 3d surface of the antenna ensuring minimal transmission line length between feeding point and input of the LNA. A prototypical realization is done using 3d molded interconnect devices (MID) technology metalizing the 3d surface with laser direct structuring (LDS) method. The simulated and measured RF characteristics are discussed.
采用中等技术的有源三维GPS贴片天线
该贡献包括用于汽车应用的民用全球定位卫星系统(GPS)的三维(3d)有源天线的设计。天线的设计采用了一种新的方法,将开槽贴片天线与天线基片的三维表面调制相结合。因此,考虑给定的安装空间,实现了天线尺寸的优化。此外,由于天线表面调制而获得的空间用于集成低噪声放大器(LNA)的电路。专为这种应用设计的两级LNA直接位于天线的3d表面下方,确保LNA馈电点和输入点之间的传输线长度最小。采用三维模制互连器件(MID)技术,采用激光直接结构(LDS)方法对三维表面进行了金属化处理。讨论了仿真和实测的射频特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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