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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Inkjet-Printed Multilayer Bandpass Filter Using Liquid Crystal Polymer System-on-Package Technology
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Inkjet-Printed Multilayer Bandpass Filter Using Liquid Crystal Polymer System-on-Package Technology

机译:使用液晶聚合物封装系统技术的喷墨印刷多层带通滤光片

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摘要

This paper presents the fabrication of an inkjet-printed multilayer bandpass filter using the liquid crystal polymer (LCP) system-on-package (SOP) technology. The LCP-SOP technology adopted by lamination bonding process reduces the occupied area of a device and is suitable for radio frequency (RF) package applications. The surface morphologies and RF performance of the inkjet-printed silver film on an LCP substrate after the lamination bonding process, which entails applying high temperatures and pressures, were observed and analyzed. Acceptable performance of the inkjet-printed silver film of an optimal lamination bonding condition was 0.69 MPa at 270 °C. Using the inkjet-printing and LCP-SOP technologies, a miniature bandpass filter was created with a minimal value and a maximal value of −1.5 and −17.4 dB at 10.6–14.5-GHz passband, respectively. A strain effect of silver line and bandpass filter was also analyzed. The results demonstrated the effectiveness of the proposed design methodology and the fabrication technique.
机译:本文介绍了使用液晶聚合物(LCP)叠装系统(SOP)技术制造喷墨印刷的多层带通滤波器。层压键合工艺采用的LCP-SOP技术减少了设备的占用面积,适用于射频(RF)封装应用。观察并分析了层压粘合工艺后,LCP基板上喷墨印刷银膜的表面形貌和RF性能,这需要施加高温和高压。最佳层压粘合条件的喷墨印刷银膜在270°C下的可接受性能为0.69 MPa。使用喷墨打印和LCP-SOP技术,创建了一个微型带通滤波器,在10.6-14.5GHz通带处的最小值和最大值分别为-1.5和-17.4 dB。还分析了银线和带通滤波器的应变效应。结果证明了所提出的设计方法和制造技术的有效性。

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