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The preeminent microwave characteristics with the higher breakdown voltage of the proposed GaN-based HEMT are the expected to be the most optimistic applicant for future high power millimeter wave applications.
RT duriod 5880 substrate is most suitable for millimeter wave applications like RADAR and 5G.
The proposed method is experimentally demonstrated to be an effective approach for designing dual-band and multi-band dielectric radome walls for both centimeter and millimeter wave applications.
In this paper, an A-sandwich radome wall structure made of quartz is designed for both centimeter and millimeter wave applications at high temperatures.
The superior static and dynamic characteristics of obtained InAlN/GaN HEMTs undoubtedly placed the device at the forefront for high power millimeter wave applications.
In this paper, a compact stair-case multi-finger capacitive structure is proposed which is then loaded on to a patch antenna, to design a ZOR antenna for millimeter wave applications.
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In this paper, we present high performance quadruple sub-harmonic mixers for millimeter-wave applications.
The ridge gap waveguide is a new transmission line for millimeter-wave applications.
This proof-of-concept opens up the possibility for realizing compact self-oscillating mixer at millimeter-wave applications.
We have fabricated antenna-coupled superconducting transition edge sensor (TES) arrays for far-infrared and millimeter-wave applications.
This article describes design and modeling of MEMS-based variable capacitors with rf performance acceptable for microwave and millimeter-wave applications.
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