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首页> 外文期刊>Journal of Microelectromechanical Systems >4.5 GHz Lithium Niobate MEMS Filters With 10% Fractional Bandwidth for 5G Front-Ends
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4.5 GHz Lithium Niobate MEMS Filters With 10% Fractional Bandwidth for 5G Front-Ends

机译:适用于5G前端的4.5 GHz铌酸锂MEMS滤波器,具有10%的部分带宽

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摘要

This paper presents a new class of micro-electro-mechanical system (MEMS) C-band filters for 5G front-ends. The filter is comprised of resonators based on the first-order asymmetric Lamb wave (A1) mode in thin-film lithium niobate. Two filters have been demonstrated at 4.5 GHz with sharp roll-off, flat in-band group delay, and spurious-free response over a wide frequency range. The first design shows a 3-dB fractional bandwidth (FBW) of 10%, an insertion loss (IL) of 1.7 dB, an out-of-band (OoB) rejection of -13 dB, and a compact footprint of 0.36 mm(2), while the second design shows a 3-dB FBW of 8.5%, an IL of 2.7 dB, an OoB rejection of -25 dB, and a footprint of 0.9 mm(2). The demonstrations herein mark the largest FBW achieved for acoustic-only filters at 5G frequencies.
机译:本文提出了一种用于5G前端的新型微机电系统(MEMS)C带滤波器。该滤波器由薄膜铌酸锂中基于一阶不对称Lamb波(A1)模式的谐振器组成。两个滤波器已在4.5 GHz频率下进行了演示,具有陡峭的滚降,平坦的带内群延迟和在很宽的频率范围内无杂散的响应。第一种设计显示3%的分数带宽(FBW)为10%,插入损耗(IL)为1.7 dB,带外(OoB)抑制为-13 dB,紧凑型封装为0.36 mm( 2),而第二种设计显示3-dB FBW为8.5%,IL为2.7 dB,OoB抑制为-25 dB和占位面积为0.9 mm(2)。本文中的演示标志着在5G频率下仅声学滤波器获得的最大FBW。

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