A Low-Loss Hybrid Acoustic Bandpass Filter with Continuously Tunable Fractional Bandwidth

This research proposes a low-loss hybrid acoustic bandpass filter with continuously tunable fractional bandwidth. A reconfigurable acoustic-wave-lumped-element resonator (AWLR) module with a varactor diode is studied. Based on the reconfigurable AWLR modules, two ladder-type tunable filters, including a single-series/single-shunt configuration (Type I) and a single-series/two-shunt configuration (Type II), are designed. Their analytical expressions are derived to directly predict their electrical characteristics. Their calculated and simulated insertion loss and 3 dB fractional bandwidth show good agreement, which validates the correctness of the theoretical analysis. The proposed two configurations of the reconfigurable AWLR-based filters are fabricated and measured. The Type I filter achieves a 3 dB fractional bandwidth tuning range from 1.16kt2 to 1.76kt2 with a minimum insertion loss of 1.2 dB and a maximum of 2.2 dB. The Type II filter provides a wider tuning range from 0.96kt2 to 1.85kt2 with a minimum insertion loss of 1.7 dB and a maximum of 2.7 dB. The results indicate that the proposed filter offers a favorable balance between bandwidth tunability and insertion loss.

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Publication Details

Journal
Micromachines
Published
2026-09-21
DOI
https://doi.org/10.3390/mi17091101
Primary Topic
Acoustic Wave Resonator Technologies
Type
article
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article

A Low-Loss Hybrid Acoustic Bandpass Filter with Continuously Tunable Fractional Bandwidth

Xianli Tang, Yuandong Alex Gu, Yonghao Jia
Micromachines
Acoustic Wave Resonator Technologies
article

A Low-Loss Hybrid Acoustic Bandpass Filter with Continuously Tunable Fractional Bandwidth

Xianli Tang, Yuandong Alex Gu, Yonghao Jia
article en

Abstract

This research proposes a low-loss hybrid acoustic bandpass filter with continuously tunable fractional bandwidth. A reconfigurable acoustic-wave-lumped-element resonator (AWLR) module with a varactor diode is studied. Based on the reconfigurable AWLR modules, two ladder-type tunable filters, including a single-series/single-shunt configuration (Type I) and a single-series/two-shunt configuration (Type II), are designed. Their analytical expressions are derived to directly predict their electrical characteristics. Their calculated and simulated insertion loss and 3 dB fractional bandwidth show good agreement, which validates the correctness of the theoretical analysis. The proposed two configurations of the reconfigurable AWLR-based filters are fabricated and measured. The Type I filter achieves a 3 dB fractional bandwidth tuning range from 1.16kt2 to 1.76kt2 with a minimum insertion loss of 1.2 dB and a maximum of 2.2 dB. The Type II filter provides a wider tuning range from 0.96kt2 to 1.85kt2 with a minimum insertion loss of 1.7 dB and a maximum of 2.7 dB. The results indicate that the proposed filter offers a favorable balance between bandwidth tunability and insertion loss.

MicromachinesVol. 17(9)
Shanghai University (CN), Southeast University (BD), Southeast University (CN)
Openalex Percentile: Top 21%
Acoustic Wave Resonator Technologies
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A Low-Loss Hybrid Acoustic Bandpass Filter with Continuously Tunable Fractional Bandwidth — Xianli Tang, Yuandong Alex Gu, et al. · Micromachines (2026) | TGRS Research Map | TGRS