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April 27, 2026Journal of Electrical Engineering1 citationsOpen Access

Low-element FPGA beamforming: A ZCU102 demonstration of directed ultrasonic inspection

DVDénes VargaGLGábor Lencse

Key Points

  • The study aimed to design and implement a compact FPGA-based ultrasonic transducer system for effective beam steering.
  • Utilized three elementary ultrasonic transducers to create a steerable ultrasound beam.
  • Controlled beam steering by adjusting phase differences between transducers.
  • Demonstrated performance with radar-style beamforming plots on a ZCU102 development board.
  • Achieved an effective aperture angle of 74°-101° with initial angles ranging from 50°-130°.
  • Demonstrated the system's application in Non-Destructive Testing (NDT) with a wood inspection example.
  • Highlighted compactness and cost-effectiveness for practical ultrasonic inspection use.

Abstract

Abstract This paper presents the design and implementation of a compact FPGA-based (Field-Programmable Gate Array) controlled ultrasonic transducer system. Our aim was to achieve ultrasound beam steering using three elementary ultrasonic transducers. The transducers generated a steerable beam through ultrasound interference, which was controlled by adjusting the phase differences between them. The system’s performance was demonstrated using a radar-style beamforming plot. Using elementary transmitters with an initial aperture angle of 50°-130°, an effective aperture angle of 74°-101° was achieved. The core of the device was implemented on a ZCU102 development panel, which had a considerable impact on the following development phase. Our proposed approach offers a compact and cost-effective solution for Non-Destructive Testing (NDT) systems; its applicability was demonstrated on a wood inspection example. Finally, potential directions for further development toward a fully functional device are discussed.

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Cite This Study

Varga et al. (2026) studied this question.

synapsesocial.com/papers/69eefdb5fede9185760d46d1https://doi.org/10.2478/jee-2026-0015
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