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RF Signal Multiplexer Embedded Into Multifunctional Composite Structure

机译:射频信号复用器嵌入多功能复合结构

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摘要

This article describes the design and fabrication of an active four-port microwave switching network embedded into a multilayer aerospace composite structure. The multifunctional design is based on three broadband Integrated Device Technology (IDT) F2972 single-pole-double-throw (SP2T) RF switches and also includes a control and power supply circuit. The composite structure has been developed using a preimpregnated structural glass (S-Glass) material (Hexcel HexPly 914E). The conductive tracks of the switch and its ground plane have been fabricated using a nonwoven carbon-nickel-copper (CNC) veil material and a semiflexible conducting silver ink. This article contains an analysis of the electrical properties of both materials at microwave frequencies. The equivalent electrical conductivities of materials were determined using a curve fitting method that was then used to verify the computational modeling of the switching network. The RF switching network was developed based on a hybrid manufacturing approach. The RF transmission lines and a component of the control circuitry were transferred onto uncured pre-preg material using a laser to ablate select regions of the CNC veil material. Postcuring, flexible silver ink was additively printed onto the surface to create the remaining control circuits. The RF performance of the design has been evaluated, and it indicates that the overall performance was consistent with the measured S-parameters of the same circuit fabricated on Rogers 5880 substrate.
机译:本文介绍了嵌入多层航空航天复合材料结构中的有源四端口微波交换网络的设计和制造。多功能设计基于三个宽带集成器件技术 (IDT) F2972 单刀双掷 (SP2T) 射频开关,还包括一个控制和电源电路。复合结构是使用预浸渍结构玻璃(S-Glass)材料(Hexcel HexPly 914E)开发的。开关及其接地层的导电走线采用无纺布碳镍铜 (CNC) 面纱材料和半柔性导电银墨水制成。本文分析了两种材料在微波频率下的电学特性。使用曲线拟合方法确定材料的等效电导率,然后用于验证开关网络的计算建模。射频开关网络是基于混合制造方法开发的。使用激光将射频传输线和控制电路的一个组件转移到未固化的预浸料材料上,以烧蚀CNC面纱材料的选定区域。在表面添加固化后,柔性银墨水以创建剩余的控制电路。对设计的射频性能进行了评估,表明整体性能与在罗杰斯 5880 基板上制造的相同电路的测得 S 参数一致。

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