Tunable Imaging Distance Focusing Module Directly Driven by a Thin‐plate Piezoelectric Actuator

材料科学 执行机构 压电 声学 纳米技术 光电子学 复合材料 计算机科学 人工智能 物理
作者
Yingzhi Wang,Jie Deng,Shuo Ma,Weishan Chen,Shijing Zhang,Yingxiang Liu
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:35 (8) 被引量:25
标识
DOI:10.1002/adfm.202415918
摘要

Abstract With the advancement of imaging technology, the performance of optical focusing modules becomes crucial for determining imaging quality. Conventional focusing modules frequently face challenges of excessive bulk and weight, complicating the integrated design and limiting application fields. Herein, this study presents a piezo‐actuated optical focusing module (POFM) and the construction strategy to alleviate these issues. A novel radial‐bending resonant‐type piezoelectric actuator (RB‐RPA) is developed to directly drive the POFM. The RB‐RPA, which features a hollow structure (27 × 27 × 7 mm 3 ), utilizes both radial and bending vibration modes of a thin metal plate. It achieves a speed of 122.93 mm s −1 , a thrust force of 0.14 N, and a displacement resolution of 0.52 µm. Employing the proposed construction strategy, RB‐RPA is integrated with imaging components to fabricate a POFM prototype. Furthermore, the micrometer‐level displacement resolution of POFM facilitates optical focusing on imaging targets, allowing the acquisition of sharp images within 70 ms. It achieves an image resolution of 119.57 lp mm −1 within a 42 mm segment of the captured image. Finally, a QT‐based interface for the POFM, enables real‐time image capture and sharpness evaluation, thereby enhancing imaging efficiency and integration. This work provides a potential candidate for next‐generation imaging devices.
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