Sun Wen-Shing, Tien Chuen-Lin, Liu Yi-Hong, Huang Guan-Er, Hsu Ying-Shun, Su Yi-Lun
Department of Optics and Photonics, National Central University, Taoyuan 32001, Taiwan.
Department of Electrical Engineering, Feng Chia University, Taichung 40724, Taiwan.
Micromachines (Basel). 2023 Dec 28;15(1):0. doi: 10.3390/mi15010064.
This study proposes a three-lens design with a short lens length and explores the curved imaging plane and performs a relative illumination analysis. There are two ways to reduce the lens length: shortening the back focal and lens group lengths. We derived the relevant parameter relationships of three lenses using the first-order geometric optics theory. The optical lens length can be controlled within 2 mm. The shorter the lens length, the larger the angle of the chief ray in the image space, resulting in an increase in the field curvature and astigmatism. Third-order Seidel aberrations can be effectively reduced by a curved image plane. We also derived the equations for relative illuminance, solid angle, surface transmittance, and internal transmittance for the short three-lens design. The optical lens design uses a curved image plane to shorten the distance from the off-axis beam image space to the image plane and reduce the incident angle of the chief ray on the image plane. The formula and design results verified by Code V software (version 11.2) show that both the solid angle and relative contrast of the lens can be increased. For the proposed three-lens design with a short lens length, the semi-field angle is 32°, F/# is 2.7, the effective focal length is 1.984 mm, the image plane area is 2.16 mm × 1.22 mm, and the curvature radius of the concave image plane is 3.726 mm. Moroever, the MTF (100 lp/mm) is larger than 52%, the lateral color aberration is less than 2.12 μm, the optical distortion is less than 2.00%, and the relative illumination is greater than 68%.
本研究提出了一种短透镜长度的三透镜设计,探索了弯曲成像平面并进行了相对照度分析。有两种方法可以缩短透镜长度:缩短后焦距和透镜组长度。我们利用一阶几何光学理论推导了三个透镜的相关参数关系。光学透镜长度可控制在2毫米以内。透镜长度越短,像空间中主光线的角度越大,导致像面弯曲和像散增加。弯曲的像平面可以有效降低三阶赛德尔像差。我们还推导了短三透镜设计的相对照度、立体角、表面透过率和内部透过率的方程。光学透镜设计采用弯曲的像平面来缩短离轴光束像空间到像平面的距离,并减小主光线在像平面上的入射角。经Code V软件(版本11.2)验证的公式和设计结果表明,透镜的立体角和相对对比度均可提高。对于所提出的短透镜长度的三透镜设计,半视场角为32°,F/#为2.7,有效焦距为1.984毫米,像平面面积为2.16毫米×1.22毫米,凹像平面的曲率半径为3.726毫米。此外,调制传递函数(100 lp/mm)大于52%,横向色差小于2.12微米,光学畸变小于2.00%,相对照度大于68%。