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3-D Printed Flexible Heterogeneous Substrates with Customizable Gain and Bandwidth

机译:具有可定制增益和带宽的3D打印柔性异质衬底

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This paper presents a 3-D printed flexible heterogeneous substrate for wearable antennas with customizable bandwidth and gain. These performance parameters are modified by varying the ratio of percentage area of Acrylonitrile Butadiene Styrene (ABS) to NinjaFlex. Five flexible 3-D printed mlcrostrlp patch antenna (MPA) prototypes are designed, realized and measured each with different percentage area ratios, where the MPA's RF performance is characterized with curvature. The live substrate designs are based on a combination of rigid ABS tiles of triangular shape surrounded with flexible NinjaFlex. All five designs show minimal antenna sensitivity to curvature, with a minimum resonant frequency shift of less than 1.2%. Results closely agree with simulations. Increasing the ABS area increases the MPA's gain, but reduces the bandwidth and increases substrate rigidity. This results in a highly customizable and cost-effective substrate that allows the antenna designer flexibility in the choice of design parameters.
机译:本文提出了一种可穿戴天线的3D打印柔性异质基板,具有可定制的带宽和增益。通过更改丙烯腈丁二烯苯乙烯(ABS)与NinjaFlex的面积百分比之比可以修改这些性能参数。设计,实现和测量了五个灵活的3D打印mlcrostrlp贴片天线(MPA)原型,每个原型均具有不同的百分比面积比,其中MPA的RF性能以曲率为特征。带电基材的设计基于三角形的刚性ABS瓷砖和柔性NinjaFlex的组合。所有这五种设计均显示出天线对曲率的最小灵敏度,最小谐振频率偏移小于1.2%。结果与模拟非常吻合。增加ABS面积会增加MPA的增益,但会减小带宽并增加基板的刚度。这导致了高度可定制且具有成本效益的基板,使天线设计人员可以灵活地选择设计参数。

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