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首页> 外文期刊>Applied optics >Simple-structured capillary-force-dominated tunable-focus liquid lens based on the higher-order-harmonic resonance of a piezoelectric ring transducer
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Simple-structured capillary-force-dominated tunable-focus liquid lens based on the higher-order-harmonic resonance of a piezoelectric ring transducer

机译:基于压电环传感器高次谐波共振的结构简单的毛细管力主导的可调焦液体透镜

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摘要

This paper proposes a tunable-focus liquid lens implemented with a simple cylindrical container structure and liquid as the lens material. The cylindrical container was constructed using a Pb [Zr_(0.52)Ti_(0.48)]O_3 (PZT) ring transducer and a polydimethylsiloxane membrane that was attached to a flat side of the transducer. The free surface of the liquid in the cylindrical container can be driven as a static-like convex lens with different curvatures because the higher-order harmonic resonance of the PZT transducer was electrically controlled. Based on a capillary-force-dominant design, the activated liquid lens maintained surface curvature in an arbitrary orientation without a gravitational effect. Profiles of the liquid lenses were characterized with the driving voltages of the transducer ranging from 12 to 60 V peak-to-peak (Vpp) at a resonant frequency of 460 kHz. The temperature effects on the lenses caused by the continuous operation of the transducer were measured. Images showed the various curvatures of the lenses with a range of actuation voltages. A change in focal length of eight times (5.72 to 46.03 cm) was demonstrated within the 10 Vpp variation of the driving voltage. For the characterized liquid lenses, the distortion was less than 2%, and the modulation transfer function reached 63 line pairs per mm (lp/mm) using ZEMAX analysis.
机译:本文提出了一种可调焦液体透镜,其采用简单的圆柱形容器结构并以液体作为透镜材料。使用Pb [Zr_(0.52)Ti_(0.48)] O_3(PZT)环形传感器和附着在传感器平坦侧的聚二甲基硅氧烷膜构造圆柱形容器。圆柱形容器中液体的自由表面可以作为具有不同曲率的类静态凸透镜来驱动,因为PZT换能器的高次谐波谐振是通过电控制的。基于毛细作用力为主的设计,活化液体透镜可将表面曲率保持在任意方向,而不会产生重力作用。液体透镜的轮廓通过传感器的驱动电压在460 kHz的谐振频率范围为12至60 V峰峰值(Vpp)进行表征。测量了由换能器的连续操作引起的对透镜的温度影响。图像显示了在一定范围的驱动电压下,镜片的各种曲率。在驱动电压的10 Vpp变化范围内,焦距变化了八倍(5.72至46.03 cm)。对于特征液体透镜,使用ZEMAX分析,畸变小于2%,并且调制传递函数达到每毫米63行对(lp / mm)。

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