Polymer replication technique enables for low cost devices even in the case of aspheric or irregular shaped surfaces, submicron or other challenging structures. The use of UV-reaction moulding on semiconductors, glass or other inorganic substrates as the replication technique leads to a high degree of stability and allows for the simultaneous integration of optoelectronics or ion exchanged GRIN elements. Thin polymer layers on inorganic substrates show high flatness and lower wavefront deviations with respect to all?polymer elements. They show low lateral shrinkage during the UV-polymerisation, and the lateral thermal expansion is determined by the substrate. Furthermore, sensitive substrates can be used because the process does not involve...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
This paper describes a promising fabrication technique for rapid replication of high aspect ratio mi...
A replication technique allowing for the wafer scale integration of microoptical elements is present...
A solution is described for replication of polymer microoptical elements on arbitrary substrates. Th...
The potential and limits of micromoulding technology for the wafer scale hybrid integration of micro...
In high-tech products, there is an increasing demand to integrate glass lenses into complex micro sy...
We report on the fabrication of high-optical-quality microlens arrays based on ultraviolet (UV)-cura...
A new technology called 3D UV-microforming consisting of an advanced resist preparation process, UV ...
We report on the fabrication of high-optical-quality microlens arrays based on ultraviolet (UV)-cura...
The uv-reaction molding technology enabling for the fabrication of microoptical elements with rectan...
textThe advancement of the microelectronics industry is heavily dependent on the design, synthesis,...
textThe advancement of the microelectronics industry is heavily dependent on the design, synthesis,...
As demonstrated in microelectronics, the batch fabrication based on the processing of wafers can lea...
Photolithography remains the most efficient method to create semiconductor devices. Moore's law stat...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
This paper describes a promising fabrication technique for rapid replication of high aspect ratio mi...
A replication technique allowing for the wafer scale integration of microoptical elements is present...
A solution is described for replication of polymer microoptical elements on arbitrary substrates. Th...
The potential and limits of micromoulding technology for the wafer scale hybrid integration of micro...
In high-tech products, there is an increasing demand to integrate glass lenses into complex micro sy...
We report on the fabrication of high-optical-quality microlens arrays based on ultraviolet (UV)-cura...
A new technology called 3D UV-microforming consisting of an advanced resist preparation process, UV ...
We report on the fabrication of high-optical-quality microlens arrays based on ultraviolet (UV)-cura...
The uv-reaction molding technology enabling for the fabrication of microoptical elements with rectan...
textThe advancement of the microelectronics industry is heavily dependent on the design, synthesis,...
textThe advancement of the microelectronics industry is heavily dependent on the design, synthesis,...
As demonstrated in microelectronics, the batch fabrication based on the processing of wafers can lea...
Photolithography remains the most efficient method to create semiconductor devices. Moore's law stat...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
We have developed a soft lithography method to replicate polymeric integrated optical devices. In th...
This paper describes a promising fabrication technique for rapid replication of high aspect ratio mi...