For sub-millimeter and millimeter wave applications rectangular waveguides are an ideal transmission medium. Compared to conventional, metal-milled rectangular waveguides, silicon micromachined waveguides offer a number of advantages. In this paper we present a low-loss silicon micromachined waveguide technology based on a double H-plane split for the frequency bands of 110 – 170 GHz and 220 – 330 GHz. For the upper band a reduced height waveguide is presented, which achieves a loss per unit length of 0.02 – 0.10 dB/mm. This technology has been further adapted to implement a full height waveguide for the lower frequency band of 110 – 170 GHz. The full height waveguide takes advantage of the benefits of the double H-plane split technique to ...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
In this paper two calibrated measurement methods for submillimeter circuits are presented and microm...
Rectangular waveguides are fundamental structures for the transmission of signals at millimetre and ...
For sub-millimeter and millimeter wave applications rectangular waveguides are an ideal transmission...
This letter reports for the first time on a very low loss silicon micromachined waveguide technology...
A very low-loss micromachined waveguide bandpassfilter for use in D-band (110–170GHz) telecommunicat...
Abstract-Rectangular waveguide is commonly used up to high millimeter-wave frequencies. However, con...
The development of micromachining techniques to create silicon-based waveguide circuits, which can o...
The fabrication and characterization of micromachined reduced-height air-filled rectangular waveguid...
The majority of radio receivers, transmitters, and components operating at millimeter and submillime...
Abstract—In this paper, we present for the first time on, to the best of our knowledge, the first si...
A J-band (220-325 GHz) silicon micromachined waveguide power divider based on a tee-shape topology i...
In this article, we report for the first time on a low-loss compact platform that enables the integr...
This paper reports for the first time on micromachined waveguides with integrated micromachined sili...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
In this paper two calibrated measurement methods for submillimeter circuits are presented and microm...
Rectangular waveguides are fundamental structures for the transmission of signals at millimetre and ...
For sub-millimeter and millimeter wave applications rectangular waveguides are an ideal transmission...
This letter reports for the first time on a very low loss silicon micromachined waveguide technology...
A very low-loss micromachined waveguide bandpassfilter for use in D-band (110–170GHz) telecommunicat...
Abstract-Rectangular waveguide is commonly used up to high millimeter-wave frequencies. However, con...
The development of micromachining techniques to create silicon-based waveguide circuits, which can o...
The fabrication and characterization of micromachined reduced-height air-filled rectangular waveguid...
The majority of radio receivers, transmitters, and components operating at millimeter and submillime...
Abstract—In this paper, we present for the first time on, to the best of our knowledge, the first si...
A J-band (220-325 GHz) silicon micromachined waveguide power divider based on a tee-shape topology i...
In this article, we report for the first time on a low-loss compact platform that enables the integr...
This paper reports for the first time on micromachined waveguides with integrated micromachined sili...
A novel co-designed transition from InP monolithic microwave integrated circuits to silicon micromac...
In this paper two calibrated measurement methods for submillimeter circuits are presented and microm...
Rectangular waveguides are fundamental structures for the transmission of signals at millimetre and ...