Utilizing Lateral Plate Transducer Modes for High Quality Acoustofluidics in Silicon-Based Chips

Activity: Talk or presentationPoster presentationscience-to-science

Description

By establishing and exploring a numeric model of an acoustofluidic device driven by a piezoelectric plate transducer, we discovered simple and distinct vibrational patterns with high displacement amplitudes for a lateral vibrational mode of the transducer plate. With the design based on a numerically optimized chip-geometry for this particular lateral mode, we fabricated high-performant chips enabling rapid and accurate particle focusing, where the acoustic energy density is exceeding 100 J/m3 at actuation frequencies around 540 kHz, while heat generation remains low. We excite higher order harmonics leading to multiple separate lines of particles along the channel. With the custommade chip holder featuring integrated fluid connections and transducer support, we are moreover able to swiftly mount microfluidic chips directly after dicing without any further preparation.
Period31 Oct 2022
Event titleIEEE Sensors 2022 Conference
Event typeConference
LocationUnited StatesShow on map

Fields of science

  • 202028 Microelectronics
  • 202027 Mechatronics
  • 202037 Signal processing
  • 202036 Sensor systems
  • 202 Electrical Engineering, Electronics, Information Engineering
  • 202021 Industrial electronics
  • 203017 Micromechanics
  • 202019 High frequency engineering

JKU Focus areas

  • Digital Transformation