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AIN MEMS filters with extremely high bandwidth widening capability

Engineering and Technology

AIN MEMS filters with extremely high bandwidth widening capability

A. Gao, K. Liu, et al.

Discover groundbreaking advancements in RF MEMS filters, showcasing an unprecedented bandwidth widening capability by Anming Gao, Kangfu Liu, Junrui Liang, and Tao Wu. This innovative approach using hybrid configurations can potentially revolutionize 5G NR bands.... show more
Abstract
This paper presents radio frequency (RF) microelectromechanical system (MEMS) filters with extremely high bandwidth widening capability. The proposed filtering topologies include hybrid configurations consisting of piezoelectric MEMS resonators and surface-mounted lumped elements. The MEMS resonators set the center frequency and provide electromechanical coupling to construct the filters, while the lumped-element-based matching networks help widen the bandwidth (BW) and enhance the out-of-band rejection. Aluminum nitride (AIN) SO Lamb wave resonators are then applied to the proposed filtering topologies. AIN SO first- and second-order wideband filters are studied and have shown prominent performance. Finally, the AIN SO first-order wideband filter is experimentally implemented and characterized. The demonstrated first-order filter shows a large fractional bandwidth (FBW) of 5.6% (achieved with a resonator coupling of 0.94%) and a low insertion loss (IL) of 1.84 dB. The extracted bandwidth widening factor (BWF) is 6, which is approximately 12 times higher than those of the current ladder or lattice filtering topologies. This impressive bandwidth widening capability holds great potential for satisfying the stringent BW requirements of bands n77, n78, and n79 of 5G new radio (NR) and will overcome an outstanding technology hurdle in placing 5G NR into the marketplace.
Publisher
Microsystems & Nanoengineering
Published On
Jan 01, 2020
Authors
Anming Gao, Kangfu Liu, Junrui Liang, Tao Wu
Tags
RF MEMS filters
bandwidth widening
piezoelectric resonators
Aluminum nitride
5G NR bands
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