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High frequency piezoelectric MEMS ultrasound transducers
Ioanna G. Mina
, Hyunsoo Kim
, Insoo Kim
, Sung Kyu Park
,
Kyusun Choi
,
Thomas N. Jackson
, Richard L. Tutwiler
,
Susan Trolier-McKinstry
Materials Research Institute (MRI)
Materials Science and Engineering
Nanofabrication Laboratory
Computer Science and Engineering
Electrical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
55
Scopus citations
Overview
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Keyphrases
Pb(Zr,Ti)O3
100%
Ultrasound Transducer
100%
Piezoelectric MEMS
100%
Electronic Circuit
66%
Close-coupling
66%
Imaging Systems
33%
High-resolution Imaging
33%
Circuitry
33%
Processing Methods
33%
Large-scale Structure
33%
Piezoelectric Transducer
33%
Piezoelectric Thin Film
33%
High-frequency Ultrasound
33%
Film Thickness
33%
Operating Frequency
33%
Driving Voltage
33%
On chip
33%
Beamforming
33%
Piezoelectric Layer
33%
Process Technology
33%
Mist Deposition
33%
Analog-to-digital Converter
33%
Transceiver chip
33%
Ultrasonic Transducer Arrays
33%
Xylophone
33%
Array Transducer
33%
Buffer Space
33%
Complementary Metal Oxide Semiconductor
33%
Electroplated Ni
33%
Engineering
Piezoelectric
100%
Transducer
100%
Microelectromechanical System
100%
Thin Films
33%
High Resolution
16%
Imaging Systems
16%
Transceiver
16%
Processing Method
16%
Complementary Metal-Oxide-Semiconductor
16%
Operating Frequency
16%
Front End
16%
Analog-to-Digital Converter
16%
Drive Voltage
16%
Element Array
16%
Buffer Memory
16%
Beamforming
16%
Material Science
Piezoelectricity
100%
Microelectromechanical System
100%
Film
50%
Thin Films
50%
Film Thickness
25%
Complementary Metal-Oxide-Semiconductor Device
25%