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Design of Novel Highly Integrated Passive Devices for Digital Broadcasting Satellite/802.11 Home Networking Solution in Liquid Crystal Polymer (LCP) Based Organic Substrates

机译:基于液晶聚合物(LCP)有机基材的数字广播卫星/ 802.11家庭网络溶液的新型高度集成无源装置的设计

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The use of high performance Integrated Passive Devices (IPD) allows an optimum solution in the tradeoff between integration and flexibility for design modification. The paper presents the integration of sub-circuits into IPD's for WLAN and distributed broadcasting satellite (DBS) applications on Liquid Polymer Crystal (LCP)-based organic substrate technology. An integrated diplexer-coupler-harmonic filter for dual-band WLAN applications and a diplexer-balun chipset for DBS applications are presented. The WLAN IPD measures 5×6mm, exhibits directivities of 27dB and 16dB in the 2.4GHz and 5GHz band, and provides 45dB of second harmonic rejection. The DBS diplexer provides 45dBc rejection. Finally, the 2×1.25mm DBS balun utilizing high-inductive coupling shows a measured amplitude and phase balance of 0.5dB and 5° and a minimum return loss of 10dB.
机译:使用高性能集成无源设备(IPD)允许在集成和灵活性之间进行设计修改之间的权衡中的最佳解决方案。本文介绍了子电路在液体聚合物晶体(LCP)的有机基材技术上的WLAN和分布式广播卫星(DBS)应用的IPD中的集成。提出了一种用于双频WLAN应用的集成双工器 - 耦合器 - 谐波滤波器和用于DBS应用程序的DIPLERER-BALUN芯片组。 WLAN IPD测量为5×6mm,在2.4GHz和5GHz波段中展示27dB和16dB的指令,并提供45dB的二次谐波抑制。 DBS双工器提供45dBC排斥。最后,利用高感应耦合的2×1.25mm DBS Balan表示测量的幅度和相位平衡为0.5dB和5°,最小返回损耗为10dB。

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