학술논문

1–3 piezocomposite design optimised for high frequency kerfless transducer arrays
Document Type
Conference
Source
2009 IEEE International Ultrasonics Symposium Ultrasonics Symposium (IUS), 2009 IEEE International. :1-4 Sep, 2009
Subject
Components, Circuits, Devices and Systems
Engineered Materials, Dielectrics and Plasmas
Signal Processing and Analysis
Design optimization
Frequency
Ceramics
Biomedical transducers
Electrodes
Fabrication
Shape
Biomedical imaging
Acoustic transducers
Optical arrays
micromoulding
1–3 composite
high-frequency array
Language
ISSN
1051-0117
1948-5727
1948-5719
Abstract
Piezocomposites that can operate at frequencies above 30 MHz without spurious modes are required in order to develop sufficiently sensitive high frequency arrays for high resolution imaging. However, scaling down of conventional piezocomposite fabrication techniques becomes increasingly difficult as dimensions decrease with increasing frequency. The approach presented here is to use micro-moulded 1–3 piezocomposites and a distribution of piezoelectric segment size and separation. Innovative approaches to composite pattern design, based on a randomized spatial distribution, are presented. Micro-moulding techniques are shown to be suitable for fabricating composites with dimensions required for high frequency composites. Randomized piezocomposite patterns are modeled and are shown to suppress spurious modes.