Sun Wen-Shing, Hsu Ying-Shun, Tien Chuen-Lin, Lin Wen-Kai, Su Yi-Lun, Yu Jun-Yi, Zhou Shao-Kui, Liang Yuan-Yan, Tsai Wan-Pin, Sun Chi, Lee Tsung-Xian, Su Wei-Chia, Lin Shiuan-Huei, Sun Ching-Cherng
Department of Optics and Photonics, National Central University, Chungli 32001, Taiwan.
Department of Electrical Engineering, Feng Chia University, Taichung 40724, Taiwan.
Micromachines (Basel). 2024 Sep 27;15(10):1198. doi: 10.3390/mi15101198.
A projection lens with a 30-degree field of view is developed for use in augmented reality (AR) glasses, including a waveguide combiner designed for a 0.35-inch LCoS panel. The entrance pupil diameter of the lens is 14 mm and the lens has an effective focal length of 16.443 mm; an F-number of 1.175. This paper has four key issues: optical projection lens design, lens manufacturing and assembly tolerance analysis, projection lens resolution testing, and AR glasses system resolution testing of panel images projected by the projection lens. After lens manufacture, the lens was tested, achieving a central field image quality of 57 cycles/mm, an angular resolution of 33 pixels per degree (PPD), a 0.7 field image quality of 40.3 cycles/mm, and an angular resolution of 23 pixels per degree (PPD). Imaging performance testing based on a diffraction-type waveguide shows a resolution of 57 cycles/mm in the center area and an angular resolution of 33 PPD.
一种用于增强现实(AR)眼镜的具有30度视野的投影镜头被开发出来,包括为0.35英寸LCoS面板设计的波导组合器。该镜头的入瞳直径为14毫米,有效焦距为16.443毫米;F数为1.175。本文有四个关键问题:光学投影镜头设计、镜头制造与装配公差分析、投影镜头分辨率测试以及由该投影镜头投射的面板图像的AR眼镜系统分辨率测试。镜头制造完成后进行了测试,中心视野图像质量达到57线对/毫米,角分辨率为每度33像素(PPD),0.7视野图像质量为40.3线对/毫米,角分辨率为每度23像素(PPD)。基于衍射型波导的成像性能测试显示,中心区域分辨率为57线对/毫米,角分辨率为33PPD。