most citedBimorph Lithium Niobate Piezoelectric Micromachined Ultrasonic Transducers

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physics.app-ph2025

Thermal Endurance of Suspended Thin-Film Lithium Niobate up to 800 °C

Mihir Chaudhari, Lezli Matto, Naveed Ahmed +8

The need for high-temperature piezoelectric microelectromechanical systems (MEMS) requires pushing piezoelectric platforms to their thermal limits. In harsh thermal environments, p…

physics.app-ph2025

An 11.7-GHz ScAlN FBAR Filter: Case Study on Scaling Limits and Challenges

Sinwoo Cho, Byeongjin Kim, Lezli Matto +9

This paper reports an 11.7 GHz compact 50 ohm ladder filter based on single layer Scandium Aluminum Nitride (ScAlN) film bulk acoustic resonators (FBARs) with platinum (Pt) electro…

physics.app-ph2025

Periodically Poled Piezoelectric Lithium Niobate Resonator for Piezoelectric Power Conversion

Ziqian Yao, Clarissa Daniel, Lezli Matto +8

As the demand for compact and efficient power conversion systems increases, piezoelectric power converters have gained attention for their ability to replace bulky magnetic inducto…

physics.app-ph2025

Acoustic resonators above 100 GHz

Jack Kramer, Bryan T. Bosworth, Lezli Matto +8

Piezoelectric resonators are a common building block for signal processing because of their miniature size, low insertion loss, and high quality factor. As consumer electronics pus…

physics.app-ph2025

Thin-film scandium aluminum nitride bulk acoustic resonator with high Q of 208 and K2 of 9.5% at 12.5 GHz

Sinwoo Cho, Yinan Wang, Eugene Kwon +9

This work describes sputtered scandium aluminum nitride (ScAlN) thin-film bulk acoustic resonators (FBAR) at 12.5 GHz with high electromechanical coupling (k2) of 9.5% and quality…