The uv-reaction molding technology enabling for the fabrication of microoptical elements with rectangular, triangular or circular cross-sections (waveguides, prisms, lenses) in optical polymers is described. Multimode waveguide optical interconnects, coupling prisms and holding structures for fibers can be fabricated in one step. A three-dimensional monomode waveguide interconnection module is presented. Stability tests of the microoptical elements are reported
Polymer replication technique enables for low cost devices even in the case of aspheric or irregular...
Increasing bandwidth demands for cloud computing and autonomous applications push the need for syste...
We present a fabrication technology for integrating polymer waveguides and 45 degrees micromirror co...
Integrated optical circuits are one of the key building blocks of present and future telecom and dat...
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...
This paper describes the fabrication and characterization of optical/electrical printed circuit boar...
This paper describes the fabrication and characterization of optical/electrical printed circuit boar...
The limited scalability of high-speed electrical interconnects drives research on optical interconne...
The limited scalability of high-speed electrical interconnects drives research on optical interconne...
Hybrid integration of polymer-based micro-optical technologies allows implementing high-bit-rate opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
Polymer replication technique enables for low cost devices even in the case of aspheric or irregular...
Increasing bandwidth demands for cloud computing and autonomous applications push the need for syste...
We present a fabrication technology for integrating polymer waveguides and 45 degrees micromirror co...
Integrated optical circuits are one of the key building blocks of present and future telecom and dat...
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...
This paper describes the fabrication and characterization of optical/electrical printed circuit boar...
This paper describes the fabrication and characterization of optical/electrical printed circuit boar...
The limited scalability of high-speed electrical interconnects drives research on optical interconne...
The limited scalability of high-speed electrical interconnects drives research on optical interconne...
Hybrid integration of polymer-based micro-optical technologies allows implementing high-bit-rate opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
We present the design and fabrication of a complete optical interconnection scheme including the opt...
Polymer replication technique enables for low cost devices even in the case of aspheric or irregular...
Increasing bandwidth demands for cloud computing and autonomous applications push the need for syste...
We present a fabrication technology for integrating polymer waveguides and 45 degrees micromirror co...