The low-cost large-scale fabrication of microlens arrays (MLAs) with precise alignment, great uniformity of focusing, and good converging performance are of great importance for integral imaging 3D display. In this work, a simple and effective method for large-scale polymer microlens arrays using screen printing has been successfully presented. The results show that the MLAs possess high-quality surface morphology and excellent optical performances. Furthermore, the microlens’ shape and size, i.e., the diameter, the height, and the distance between two adjacent microlenses of the MLAs can be easily controlled by modifying the reflowing time and the size of open apertures of the screen. MLAs with the neighboring microlenses almost tangent ca...
This paper presents a series of three dimensional (3D) LIGA-like processes to fabricate microlens ar...
In this study, a high volume low cost manufacturing method for microoptical microlens arrays on stee...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...
This paper presents a new microlens array fabrication method that controls the printing gap in the U...
High fill-factor microlens arrays (MLA) are key for improving photon collection efficiency in light-...
Microlens arrays fabricated by a direct ink-jet printing of UV-curable hybrid polymer are reported. ...
A simple and effective method for fabricating a high fill-factor triangular microlens array using th...
AbstractIn this paper is presented a fabrication process for obtaining refractive microlenses arrays...
This paper presents a simple and effective method to fabricate a polydimethyl-siloxane (PDMS) microl...
The proposed work targets a fundamental challenge in heads-up display technology—in that such displ...
The proposed work targets a fundamental challenge in heads-up display technology—in that such displ...
In recent years, flexible microlens arrays (MLAs) have attracted attention owing to their characteri...
In recent years, flexible microlens arrays (MLAs) have attracted attention owing to their characteri...
This paper presents a fabrication process for obtaining refractive microlenses arrays with high repr...
The fabrication of arrays consisting of densely ordered circular convex microlenses with diameters o...
This paper presents a series of three dimensional (3D) LIGA-like processes to fabricate microlens ar...
In this study, a high volume low cost manufacturing method for microoptical microlens arrays on stee...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...
This paper presents a new microlens array fabrication method that controls the printing gap in the U...
High fill-factor microlens arrays (MLA) are key for improving photon collection efficiency in light-...
Microlens arrays fabricated by a direct ink-jet printing of UV-curable hybrid polymer are reported. ...
A simple and effective method for fabricating a high fill-factor triangular microlens array using th...
AbstractIn this paper is presented a fabrication process for obtaining refractive microlenses arrays...
This paper presents a simple and effective method to fabricate a polydimethyl-siloxane (PDMS) microl...
The proposed work targets a fundamental challenge in heads-up display technology—in that such displ...
The proposed work targets a fundamental challenge in heads-up display technology—in that such displ...
In recent years, flexible microlens arrays (MLAs) have attracted attention owing to their characteri...
In recent years, flexible microlens arrays (MLAs) have attracted attention owing to their characteri...
This paper presents a fabrication process for obtaining refractive microlenses arrays with high repr...
The fabrication of arrays consisting of densely ordered circular convex microlenses with diameters o...
This paper presents a series of three dimensional (3D) LIGA-like processes to fabricate microlens ar...
In this study, a high volume low cost manufacturing method for microoptical microlens arrays on stee...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...