We demonstrate first results towards sub-THz integration system based on micromachined waveguides on Silicon. The demonstrated components at 270 GHz include waveguides, filters and vias, as well as a loss-low transition between the waveguide and the MMIC. The developed process relies on well known MEMS manufacturing methods and Silicon wafer substrates, promising scalable and cost efficient system integration method for future communication and sensing applications
This paper presents design, fabrication and measurement results of sub-THz silicon dielectric wavegu...
Waveguide component technology at terahertz frequencies has come of age in recent years. Essential c...
Abstract-Rectangular waveguide is commonly used up to high millimeter-wave frequencies. However, con...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate a sub-terahertz (THz) and THz integration platform based on micromachined waveguides ...
We demonstrate a sub-terahertz (THz) and THz integration platform based on micromachined waveguides ...
A new integration concept for terahertz (THz) systems is presented in this article, wherein patterne...
A new integration concept for terahertz (THz) systems is presented in this article, wherein patterne...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
We demonstrate sub-THz waveguides, low-pass and band-pass micromachined filters at frequency range 2...
This paper presents design, fabrication and measurement results of sub-THz silicon dielectric wavegu...
Waveguide component technology at terahertz frequencies has come of age in recent years. Essential c...
Abstract-Rectangular waveguide is commonly used up to high millimeter-wave frequencies. However, con...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate first results towards sub-THz integration system based on micromachined waveguides on...
We demonstrate a sub-terahertz (THz) and THz integration platform based on micromachined waveguides ...
We demonstrate a sub-terahertz (THz) and THz integration platform based on micromachined waveguides ...
A new integration concept for terahertz (THz) systems is presented in this article, wherein patterne...
A new integration concept for terahertz (THz) systems is presented in this article, wherein patterne...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
We demonstrate sub-THz waveguides, low-pass and band-pass micromachined filters at frequency range 2...
This paper presents design, fabrication and measurement results of sub-THz silicon dielectric wavegu...
Waveguide component technology at terahertz frequencies has come of age in recent years. Essential c...
Abstract-Rectangular waveguide is commonly used up to high millimeter-wave frequencies. However, con...