A bulk acoustic resonator with vertical electrodes for wideband filters

Fuente: arXiv
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Main Authors: Stettler, Silvan, Navarro-Gesse, Edgar, Collado, Carlos, Mateu, Jordi, Villanueva, Luis G.
Format: Preprint
Published: 2026
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_version_ 1866914303450284032
author Stettler, Silvan
Navarro-Gesse, Edgar
Collado, Carlos
Mateu, Jordi
Villanueva, Luis G.
author_facet Stettler, Silvan
Navarro-Gesse, Edgar
Collado, Carlos
Mateu, Jordi
Villanueva, Luis G.
contents Radiofrequency (RF) front ends for current and next generation (5G and 6G) wireless communication demand acoustic filters that combine wide bandwidth, high power capability, and thermal stability. Existing surface and bulk acoustic wave (SAW and BAW) technologies face inherent trade-offs between electromechanical coupling, lithographic tunability, and robustness. Here we introduce the bulk acoustic resonator with vertical electrodes (VBAR), a device that combines the advantages of suspended and solidly mounted resonators. VBARs use lithium niobate (LiNbO3) ridges with sidewall electrodes to excite a shear-horizontal bulk acoustic resonance, providing frequency control through lithography in a configuration that is mechanically anchored to the substrate. Fabricated VBARs exhibit electromechanical coupling coefficients exceeding 30% in the 2-4 GHz range, enabling ladder filters with fractional bandwidths of nearly 20%. While further optimization is necessary to minimize losses, the VBAR concept offers an alternative route toward wideband and robust RF filters for next-generation wireless systems.
format Preprint
id arxiv_https___arxiv_org_abs_2602_02782
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A bulk acoustic resonator with vertical electrodes for wideband filters
Stettler, Silvan
Navarro-Gesse, Edgar
Collado, Carlos
Mateu, Jordi
Villanueva, Luis G.
Applied Physics
Radiofrequency (RF) front ends for current and next generation (5G and 6G) wireless communication demand acoustic filters that combine wide bandwidth, high power capability, and thermal stability. Existing surface and bulk acoustic wave (SAW and BAW) technologies face inherent trade-offs between electromechanical coupling, lithographic tunability, and robustness. Here we introduce the bulk acoustic resonator with vertical electrodes (VBAR), a device that combines the advantages of suspended and solidly mounted resonators. VBARs use lithium niobate (LiNbO3) ridges with sidewall electrodes to excite a shear-horizontal bulk acoustic resonance, providing frequency control through lithography in a configuration that is mechanically anchored to the substrate. Fabricated VBARs exhibit electromechanical coupling coefficients exceeding 30% in the 2-4 GHz range, enabling ladder filters with fractional bandwidths of nearly 20%. While further optimization is necessary to minimize losses, the VBAR concept offers an alternative route toward wideband and robust RF filters for next-generation wireless systems.
title A bulk acoustic resonator with vertical electrodes for wideband filters
topic Applied Physics
url https://arxiv.org/abs/2602.02782