D-Band GCPW-to-Waveguide Transition Using Silicon Micromachined Technology for Planar Integrated MMIC and Aperture Antenna

Переход GCPW—волновод в диапазоне D с использованием кремниевой микромеханической технологии для планарного интегрированного MMIC и щелевой антенны
Yizhu Shen, Sanming Hu, Sen Lu, Yifan Ding
2024-10-08

D-bandGCPW-to-waveguide transitionWR-6 waveguide (reduced height 150 µm)magnetic coupling structure (short-circuit end and same-layer coupling aperture)silicon micromachined technology
This letter proposes a D-band transversal transition from a ground coplanar waveguide (GCPW) to an air waveguide. Such design is critical to the radio frequency (RF) front end between the monolithic microwave integration circuit (MMIC) and aperture antenna especially in sub-terahertz frequency due to the high loss in dielectric substrate. Silicon micromachined technology, as an advanced packaging technology, not only features a multilayer arrangement similar to the printed circuit board (PCB) technology, but also supports the development of air cavities inside it, such as the rectangular waveguide. Adopting this technology, a WR-6 waveguide with a reduced height of 150 µm is developed within silicon substrates. Moreover, inspired by the classical aperture-coupled antenna, a magnetic coupling structure comprising a short-circuit end and a same-layer coupling aperture are proposed to facilitate the mode transformation from quasi-TEM to TE<sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">10</sub>. Benefiting from this structure, the signal from GCPW is effectively transmitted to the waveguide. Measurements of two back-to-back prototypes indicate that the average insertion loss of one proposed transition is 0.355 dB within D band, and the 1 mm-length waveguide induces loss of 0.075 dB, respectively. The transition is with low profile of 400 µm and a wide bandwidth of 42.9%, which is promising for planar sub-terahertz system.
1
A D-band transversal transition from GCPW to an air waveguide is proposed for MMIC-to-aperture antenna interconnection in sub-terahertz systems.
2
A magnetic coupling structure (short-circuit end plus same-layer coupling aperture) enables mode transformation from quasi-TEM to TE10 for efficient signal transfer.
3
Measured loss of a 1 mm-length waveguide is 0.075 dB, demonstrating low propagation loss in the micromachined waveguide.
4
Measurements of two back-to-back prototypes show average insertion loss of one transition is 0.355 dB within D band.
5
Silicon micromachined technology is used to realize a WR-6 rectangular waveguide with reduced height of 150 µm inside silicon substrates.
6
The transition achieves a low profile of 400 µm and a wide bandwidth of 42.9%, suitable for planar sub-terahertz systems.

D-band transversal transition from a ground coplanar waveguide (GCPW) to an air rectangular WR-6 waveguide implemented with silicon micromachined technology

Mode transformation and RF transmission performance (insertion loss, bandwidth, profile/height, and waveguide loss) of the proposed GCPW-to-waveguide transition enabling quasi-TEM to TE10 conversion using a same-layer coupling aperture and short-circuit end

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2024-10-08
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Authors
Yizhu Shen
Sanming Hu
Sen Lu
Yifan Ding
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