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This paper presents a 60GHz planar on-chip antenna fabricated with a standard 0.18-μm CMOS process. The antenna has a U-shaped radiating patch, which is fed by a 50-Ω coplanar waveguide (CPW). It has a compact size of 1.5mm × 1.5mm × 0.26mm. The simulation work is optimized by using an FEM-based 3-D commercial EM software Ansoft HFSS. Simulated results shows that the on-chip antenna has a good impedance...
This paper presents a 45GHz on-chip antenna for Q-LINKPAN applications. The antenna has a simple triangle radiating patch that is fed by a 50-Ω modified coplanar waveguide (CPW) structure. Implemented results denote this antenna has a favorable impedance bandwidth from 40–50 GHz, where nearly omni-directional radiation patterns and stable gain are also obtained and shown. Besides, it has a very compact...
This paper presents a 60GHz planar on-chip antenna fabricated with a standard 0.18-μm CMOS process. The antenna has a U-shaped radiating patch, which is fed by a 50-Ω coplanar waveguide (CPW). It has a compact size of 1.5mm × 1.5mm × 0.26mm. The simulation work is optimized by using an FEM-based 3-D commercial EM software Ansoft HFSS. Simulated results shows that the on-chip antenna has a good impedance...
This paper presents a 45GHz on-chip antenna for Q-LINKPAN applications. The antenna has a simple triangle radiating patch that is fed by a 50-Ω modified coplanar waveguide (CPW) structure. Implemented results denote this antenna has a favorable impedance bandwidth from 40–50 GHz, where nearly omni-directional radiation patterns and stable gain are also obtained and shown. Besides, it has a very compact...
With the rapid development of EDA technology, many universities have set up the digital design course in the computer science speciality. The digital design course needs SOPC system board to mount FPGA and the appropriate support circuitry. This paper presented the design of extensible SOPC system board. This board has compact structure and embodies the characteristics of SOPC system such as high...
This paper reports a comprehensive theoretical, finite element analysis of cantilever-based and magnetic bead-based immunosensor for realizing the high-throughput identification and quantitation of a large number of biological molecules, at the time, realizing the sensor reusable. Especially, this immunosensor can be easily fabricated with the micro-electro-mechanical systems (MEMS) technology. Meanwhile,...
This paper reports a comprehensive theoretical, finite element analysis of immunosensor for realizing the high-throughput identification and quantitation of a large number of biological molecules, at the time, realizing the immunosensor reusable based on MEMS technology. These methods and some conclusions can be applicable to realize the system-on-chip (SOC) in the biological molecules testing
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