Realizing radio frequency acoustic delays and transversal filtering with sub-2 dB insertion loss and 10% fractional bandwidth

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Abstract

This work demonstrates a lithium niobate thin film-based radio frequency (RF) acoustic delay structure with a low insertion loss (IL) of 2 dB and a fractional bandwidth (FBW) of 10%. In both aspects, this work surpasses the state of the art (SOA) delay lines.

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APA

Manzaneque, T., Lu, R., Yang, Y., & Gong, S. (2018). Realizing radio frequency acoustic delays and transversal filtering with sub-2 dB insertion loss and 10% fractional bandwidth. In 2018 Solid-State Sensors, Actuators and Microsystems Workshop, Hilton Head 2018 (pp. 242–244). Transducer Research Foundation. https://doi.org/10.31438/trf.hh2018.70

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