Dana Weinstein
Engineering · Purdue University West Lafayette
Publications
104
Citations
1,340
Est. group size
~6
Recurring co-author estimate
Active years
36
Publishing since 1989
Dana Weinstein's research focuses on tiny mechanical devices called MEMS (microelectromechanical systems) and acoustic wave resonators, which are components that vibrate at very high frequencies and are used in wireless communication and sensing. A key theme is integrating these resonators directly into standard computer chip manufacturing processes (like CMOS and FinFET) and into materials such as gallium nitride (GaN), aiming to make radio-frequency devices smaller, faster, and more efficient.
Publication output rose from 2017 through a peak around 2021-2022, then declined sharply in 2023-2024, suggesting a slowing pace in the most recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Acoustoelectric Effect in Sezawa Mode Saw Devices on Algan/Gan/Sic Heterostructure AT 9.7 GHZ
2024
- Super-High-Frequency Low-Loss Sezawa Mode SAW Devices in a GaN/SiC Platform
IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control · 2023
- Large-Signal Behavior of Ferroelectric Micro-Electromechanical Transducers
arXiv (Cornell University) · 2023
- Integrated acoustic resonators in commercial fin field-effect transistor technology
Nature Electronics · 2022
- Analysis and Modeling of an 11.8 GHz Fin Resonant Body Transistor in a 14 nm FinFET CMOS Process
IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control · 2022
- Design and Applications of Integrated Transducers in Commercial CMOS Technology
Frontiers in Mechanical Engineering · 2022
- GaN-on-SiC Surface Acoustic Wave Devices Up to 14.3 GHz
2022 IEEE 35th International Conference on Micro Electro Mechanical Systems Conference (MEMS) · 2022
- Dataset for "Integrated acoustic resonators in commercial fin field-effect transistor technology"
Zenodo (CERN European Organization for Nuclear Research) · 2022
- Super-High-Frequency Low-Loss Sezawa Mode SAW Devices in a GaN/SiC Platform
arXiv (Cornell University) · 2022
- Dataset for "Integrated acoustic resonators in commercial fin field-effect transistor technology"
Zenodo (CERN European Organization for Nuclear Research) · 2022
- Switchable Transduction in GAN MEMS with Off-State Shunt
2021
- X-Band Fin Resonant Body Transistors in 14nm CMOS Technology
arXiv (Cornell University) · 2021
- Factors Affecting Selenium Status in Infants on Parenteral Nutrition Therapy
Journal of Pediatric Gastroenterology and Nutrition · 2021
- In Situ Direct Laser Writing of 3D Graphene‐Laden Microstructures
Advanced Materials Technologies · 2021
- Switchable Transducers in GaN MEMS Resonators: Performance Comparison and Analysis
Micromachines · 2021
- arXiv (Cornell University)×8
- IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control×3
- Advanced Materials Technologies×2
- IEEE Transactions on Electron Devices×2
- Nonlinear Dynamics×2
- Sudhanshu Tiwari
Engineering · Purdue University West Lafayette
- Anuj Ashok
Engineering · Purdue University West Lafayette
- Sen Dai
Engineering · Purdue University West Lafayette
- Connor Devitt
Engineering · Purdue University West Lafayette
- Félix A. Miranda
Engineering · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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