Micro-lens array manufacturing by using an inkjet printing technology allows for the manufacturing of large area arrays on lithographically structured substrates that contain oleophobic and oleophilic surface patterns. An inkjet printing process deposits the high performance, hybrid polymer ORMOCER on the oleophilic pattern. The material forms by means of surface tension and wetting boundaries a lens shape, while the inkjet printing process itself enables for a highly parallel manufacturing of many lenses at the same time. A typical geometrical deviation <2% of the radius of curvature for lenses with diameters of <1 mm, ROC’s of ca. <2 mm and sag heights of <100 microns was achieved. Also a specific lithography processing regime was derived...
It is known that organic light emitting diodes (OLEDs) can reach an internal quantum efficiency clos...
The demand for optical components such as microlenses has been growing at a rapid rate in recent yea...
We report of a method for fabricating two-dimensional, regular arrays of polymer microlenses with fo...
Precise positioning of microlenses with well-defined optical characteristics is key in the further d...
Microlens arrays fabricated by a direct ink-jet printing of UV-curable hybrid polymer are reported. ...
Abstract. Microlenses made of hybrid organic-inorganic materials have been fabricated on glass subst...
Ink-jet processes using either a drop-on-demand or a dosing system have been applied to the depositi...
Microlenses made of hybrid organic-inorganic materials have been fabricated on glass substrates usin...
We review recent advances in optical microlens array fabrication using piezoelectric microchannel mo...
Drop-on-demand (DoD) inkjet printing is an efficient process for controlling the exact position, siz...
Microlenses printed by inkjet have been studied since at least two decades but are not yet implement...
Microlenses made of hybrid organic-inorganic materials have been fabricated on glass substrates usin...
Inkjet printing of functional materials, photolithography and micromolding are 3 different technique...
This paper describes a novel method to fabricate polymer MEMS based on the inkjet printing of SU-8, ...
Ink-jet printing of optical ink over SU-8 pillars is here proposed as a technology for obtaining mic...
It is known that organic light emitting diodes (OLEDs) can reach an internal quantum efficiency clos...
The demand for optical components such as microlenses has been growing at a rapid rate in recent yea...
We report of a method for fabricating two-dimensional, regular arrays of polymer microlenses with fo...
Precise positioning of microlenses with well-defined optical characteristics is key in the further d...
Microlens arrays fabricated by a direct ink-jet printing of UV-curable hybrid polymer are reported. ...
Abstract. Microlenses made of hybrid organic-inorganic materials have been fabricated on glass subst...
Ink-jet processes using either a drop-on-demand or a dosing system have been applied to the depositi...
Microlenses made of hybrid organic-inorganic materials have been fabricated on glass substrates usin...
We review recent advances in optical microlens array fabrication using piezoelectric microchannel mo...
Drop-on-demand (DoD) inkjet printing is an efficient process for controlling the exact position, siz...
Microlenses printed by inkjet have been studied since at least two decades but are not yet implement...
Microlenses made of hybrid organic-inorganic materials have been fabricated on glass substrates usin...
Inkjet printing of functional materials, photolithography and micromolding are 3 different technique...
This paper describes a novel method to fabricate polymer MEMS based on the inkjet printing of SU-8, ...
Ink-jet printing of optical ink over SU-8 pillars is here proposed as a technology for obtaining mic...
It is known that organic light emitting diodes (OLEDs) can reach an internal quantum efficiency clos...
The demand for optical components such as microlenses has been growing at a rapid rate in recent yea...
We report of a method for fabricating two-dimensional, regular arrays of polymer microlenses with fo...