Abstract
Interdigitated transducers (IDTs) were originally designed as delay lines for radars. Half a century later, they have found new life as actuators for microfluidic systems. By generating strong acoustic fields, they trigger nonlinear effects that enable pumping and mixing of fluids, and moving particles without contact. However, the transition from signal processing to actuators comes with a range of challenges concerning power density and spatial resolution that have spurred exciting developments in solid-state acoustics and especially in IDT design. Assuming some familiarity with acoustofluidics, this paper aims to provide a tutorial for IDT design and characterization for the purpose of acoustofluidic actuation. It is targeted at a diverse audience of researchers in various fields, including fluid mechanics, acoustics, and microelectronics.
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CITATION STYLE
Song, S., Wang, Q., Zhou, J., & Riaud, A. (2022, September 1). Design of interdigitated transducers for acoustofluidic applications. Nanotechnology and Precision Engineering. American Institute of Physics Inc. https://doi.org/10.1063/10.0013405
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