19.3 GHz Acoustic Filter with High Close-in Rejection in Tri-layer Thin-Film Lithium Niobate

Fuente: arXiv
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Hauptverfasser: Barrera, Omar, Cho, Sinwoo, Kramer, Jack, Chulukhadze, Vakhtang, Hsu, Tzu-Hsuan, Lu, Ruochen
Format: Preprint
Veröffentlicht: 2025
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author Barrera, Omar
Cho, Sinwoo
Kramer, Jack
Chulukhadze, Vakhtang
Hsu, Tzu-Hsuan
Lu, Ruochen
author_facet Barrera, Omar
Cho, Sinwoo
Kramer, Jack
Chulukhadze, Vakhtang
Hsu, Tzu-Hsuan
Lu, Ruochen
contents Acoustic filters are preferred front-end solutions at sub-6 GHz due to their superior frequency selectivity compared to electromagnetic (EM) counterparts. With the ongoing development of 5G and the evolution toward 6G, there is a growing need to extend acoustic filter technologies into frequency range 3 (FR3), which spans 7 to 24 GHz to accommodate emerging high-frequency bands. However, scaling acoustic filters beyond 10 GHz presents significant challenges, as conventional platforms suffer from increased insertion loss (IL) and degraded out-of-band (OoB) rejection at higher frequencies. Recent innovations have led to the emergence of periodically poled piezoelectric lithium niobate (P3F LN) laterally excited bulk acoustic resonators (XBARs), offering low-loss and high electromechanical coupling performance above 10 GHz. This work presents the first tri-layer P3F LN filter operating at 19.3 GHz, achieving a low IL of 2.2 dB, a 3-dB fractional bandwidth (FBW) of 8.5%, and an impressive 49 dB close in rejection. These results demonstrate strong potential for integration into FR3 diplexers.
format Preprint
id arxiv_https___arxiv_org_abs_2506_22411
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle 19.3 GHz Acoustic Filter with High Close-in Rejection in Tri-layer Thin-Film Lithium Niobate
Barrera, Omar
Cho, Sinwoo
Kramer, Jack
Chulukhadze, Vakhtang
Hsu, Tzu-Hsuan
Lu, Ruochen
Signal Processing
Acoustic filters are preferred front-end solutions at sub-6 GHz due to their superior frequency selectivity compared to electromagnetic (EM) counterparts. With the ongoing development of 5G and the evolution toward 6G, there is a growing need to extend acoustic filter technologies into frequency range 3 (FR3), which spans 7 to 24 GHz to accommodate emerging high-frequency bands. However, scaling acoustic filters beyond 10 GHz presents significant challenges, as conventional platforms suffer from increased insertion loss (IL) and degraded out-of-band (OoB) rejection at higher frequencies. Recent innovations have led to the emergence of periodically poled piezoelectric lithium niobate (P3F LN) laterally excited bulk acoustic resonators (XBARs), offering low-loss and high electromechanical coupling performance above 10 GHz. This work presents the first tri-layer P3F LN filter operating at 19.3 GHz, achieving a low IL of 2.2 dB, a 3-dB fractional bandwidth (FBW) of 8.5%, and an impressive 49 dB close in rejection. These results demonstrate strong potential for integration into FR3 diplexers.
title 19.3 GHz Acoustic Filter with High Close-in Rejection in Tri-layer Thin-Film Lithium Niobate
topic Signal Processing
url https://arxiv.org/abs/2506.22411