Hong Inpyo, Choi Su Seok
Graduate School of Semiconductor Technology, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Graduate School of Electrical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Adv Sci (Weinh). 2025 Jul;12(27):e2414691. doi: 10.1002/advs.202414691. Epub 2025 Apr 25.
Beyond visual quality, features like sound and tactile feedback have become essential to enhancing user experience, resulting in more immersive, realistic displays. Multisensory displays engaging multiple senses are increasingly in demand. Panel-integrated piezoelectric speakers represent a major advancement in audio-visual technology, merging sound generation with display panels to enable compact, versatile designs in thin, flexible formats. However, challenges like sound crosstalk between exciters and non-uniform frequency responses often compromise audio quality. To address these issues, frame-based sound vibration isolation strategies are explored to localize surface vibrations and reduce interference across multiple exciters. Through experimental measurements and Finite Element Method (FEM) simulations, it is found that increasing frame height and width, along with using materials with different acoustic impedance for the diaphragm, significantly improved frequency response uniformity and reduced Total Harmonic Distortion (THD). These enhancements simplify speaker response compensation, ensuring reliable, high-quality sound output. As demonstrated on a practical 13-inch OLED display, these results confirm that vibration-isolated, localized sound in multi-array exciters overcomes prior limitations, advancing the acoustic performance of piezoelectric panel speakers. This study provides valuable insights for future developments in thin, flexible, display-integrated audio systems, offering new possibilities in immersive, multisensory user experiences.
除了视觉质量外,声音和触觉反馈等功能对于提升用户体验变得至关重要,从而带来更具沉浸感、更逼真的显示效果。融合多种感官的多感官显示器需求日益增长。集成在面板中的压电扬声器代表了视听技术的一项重大进步,它将声音产生与显示面板相结合,以实现薄型、灵活形式的紧凑、多功能设计。然而,诸如激励器之间的声音串扰和频率响应不均匀等挑战常常会损害音频质量。为了解决这些问题,人们探索了基于框架的声音隔振策略,以定位表面振动并减少多个激励器之间的干扰。通过实验测量和有限元方法(FEM)模拟发现,增加框架高度和宽度,以及使用具有不同声阻抗的材料制作振膜,可显著提高频率响应均匀性并降低总谐波失真(THD)。这些改进简化了扬声器响应补偿,确保了可靠、高质量的声音输出。正如在实际的13英寸OLED显示屏上所展示的那样,这些结果证实,多阵列激励器中隔振、局部化的声音克服了先前的限制,提升了压电面板扬声器的声学性能。这项研究为薄型、灵活的集成显示音频系统的未来发展提供了宝贵的见解,为沉浸式多感官用户体验带来了新的可能性。