Hashimoto Masaaki, Taguchi Yoshihiro
Opt Express. 2020 Jun 8;28(12):17457-17467. doi: 10.1364/OE.394908.
This paper proposes an electrothermally-actuated circular pyramidal kirigami microscanner with a millimeter-range low-power lens drive for endoscopic biomedical applications. A variation of Japanese origami art, kirigami involves creation of out-of-plane structures by paper cutting and folding. The proposed microscanner is composed of freestanding kirigami film on which the spiral-curved thermal bimorphs are strategically placed. The kirigami microscanner is electrothermally transformed into an out-of-plane circular multistep pyramid by Joule heating. The circular pyramidal kirigami microscanner on a small footprint of 4.5 mm × 4.5 mm was fabricated by microelectromechanical system processes. A large four-step pyramidal actuation was successfully demonstrated, and a large 1.1-mm lens travel range at only 128 mW was achieved.
本文提出了一种用于内窥镜生物医学应用的电热驱动圆形金字塔形折纸微扫描仪,其具有毫米级低功率透镜驱动。折纸是日本折纸艺术的一种变体,它通过剪纸和折叠来创建平面外结构。所提出的微扫描仪由独立的折纸薄膜组成,在其上战略性地放置了螺旋弯曲的热双压电晶片。通过焦耳加热,折纸微扫描仪被电热转换为平面外的圆形多级金字塔。采用微机电系统工艺制造了占地面积仅为4.5 mm×4.5 mm的圆形金字塔形折纸微扫描仪。成功演示了大型四步金字塔驱动,并在仅128 mW的功率下实现了1.1 mm的大透镜行程范围。