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Modelling the shape, length and radiation characteristics of bond wire antennas

机译:模拟键合线天线的形状,长度和辐射特性

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Novel analytical models for accurately modelling the shape and length of bond wires in dependence on the loop height (Lhmax), distance between the bonding positions (dbp) and the thickness of the metallisation (tmet.) on which the wires are bonded, are derived in this work. These analytical models, which are based on the Gaussian distribution function, are applied to (i) develop realistic three-dimensional electromagnetic models of bond wire antennas and study their radiation characteristics and (ii) study the impact of process tolerances of bond wire parameters on the performance of the antennas. For these studies, a 42 GHz halfloop bond wire antenna is considered as an example. It is designed, fabricated and measured. Our results reveal that dbp has the most significant impact on the antenna performance. For example, -10% fluctuations in dbp causes ~2.5 GHz shift in the resonance frequency and 24% reduction in the maximum realised gain. Since this may completely detune the antenna, it is recommended that fluctuations in dbp should be kept below 10% during the manufacturing process. Good correlation is obtained between measurement and simulation results.
机译:新颖的分析模型,可根据环高度(Lh max ),键合位置之间的距离(d bp )和厚度精确建模键合线的形状和长度在这项工作中,得出了金属丝在其上结合的金属化程度(t met。)的分布。这些基于高斯分布函数的分析模型可用于(i)建立键合天线的逼真的三维电磁模型并研究其辐射特性,以及(ii)研究键合参数对工艺公差的影响。天线的性能。对于这些研究,以42 GHz半环键合线天线为例。它被设计,制造和测量。我们的结果表明,d bp 对天线性能的影响最大。例如,d bp 的-10%波动会导致共振频率偏移〜2.5 GHz,最大实现增益降低24%。由于这可能会使天线完全失谐,因此建议在制造过程中将d bp 的波动保持在10%以下。测量和仿真结果之间具有良好的相关性。

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