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National Science Foundation

Cyber-Physical Systems Virtual Organization

Read-only archive of site from September 29, 2023.

CPS-VO

5G resonators

biblio

Visible to the public Single Crystalline Scandium Aluminum Nitride: An Emerging Material for 5G Acoustic Filters

Submitted by aekwall on Mon, 01/13/2020 - 12:07pm
  • Si
  • material candidate
  • next generation wireless communication devices
  • operation frequencies
  • Piezoelectric devices
  • piezoelectric material needs
  • Q-factor
  • quality factors
  • RF front-end
  • SC
  • scandium
  • scandium compounds
  • Scandium Doping
  • semiconductor growth
  • III-V semiconductors
  • Single Crystalline
  • single-crystal
  • size 400.0 nm
  • sputter deposition
  • sputtering techniques
  • steep skirts
  • sub-micron ranges
  • surface acoustic wave devices
  • thin films
  • ultra-thin films
  • wide band gap semiconductors
  • acoustic coupling
  • bulk acoustic wave resonators
  • Resiliency
  • Human behavior
  • pubcrawl
  • 5G mobile communication
  • piezoelectric materials
  • 5G acoustic filters
  • 5G resonators
  • acoustic filters
  • acoustic resonators
  • AlN
  • aluminium compounds
  • Aluminum Nitride
  • bulk acoustic wave devices
  • Scalability
  • electromechanical coupling
  • emerging material
  • Film bulk acoustic resonators
  • film thickness
  • filter bandwidth
  • filtering applications
  • form factor
  • frequency 3.0 GHz to 10.0 GHz
  • high crystal quality
  • high electromechanical coupling
  • high-performance filters
  • high-quality single-crystalline

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