This article details the design of an electronically scanning phased array antenna with proposed fabrication process steps. Structure is based upon RF micro-electromechanical system (MEMS) technology. Capacitive type shunt switches have been implemented here to cater high frequency operation. The architecture, which is deigned at 30 GHz, consists of 3-bit (11.25º, 22.5º and 45º) integrated Switched-line phase shifter and a linearly polarized microstrip patch antenna. Detailed design tricks of the Ka-band phase shifter is outlined here. The whole design is targeted for future monolithic integration. So, the substrate of choice is High Resistive Silicon (ρ > 8kΩ-cm, tan δ =0.01 and ϵr =11.8). The overall circuit occupies an cross-sectional...
This work present the design, and manufacturing of a novel K-band 5-bit MEMS phase shifter for appli...
This work presents the design of three K-band 5-bit MEMS phase shifters for Phased Array Antennas. ...
International audienceThis study investigates a new concept of waveguide-based W-band phase shifters...
This article details the design of an electronically scanning phased array antenna with proposed fab...
This paper presents a novel electronically scanning phased-array antenna with 128 switches monolithi...
This thesis presents a novel monolithic phased array implemented using the RF MEMS technology. The s...
This paper reports a monolithic phased array implemented using RF MEMS technology. The phased array ...
This paper presents the development of three different 5-bit K-band MEMS phase shifters monolithical...
Recent developments in the area of microfabrication technologies, has enabled the fabrication of man...
The design, fabrication and measurement of a 5 bit Ku band MEMS phase shifter in different configura...
The design, fabrication and measurement of a 5 bit Ku band MEMS phase shifter in different configura...
This work presents the latest progress on the CONFIRM \u201creCONFIrable circuits by Rf Mems\u201d p...
This work presents the latest progress on the CONFIRM “reCONFIrable circuits by Rf Mems” project. Pr...
This work presents the design, manufacturing, and testing of three 5-bit K-band Micro-Electro-Mechan...
Beam forming and scanning at microwave and millimetre-wave frequencies (1 GHz – 100 GHz) using elect...
This work present the design, and manufacturing of a novel K-band 5-bit MEMS phase shifter for appli...
This work presents the design of three K-band 5-bit MEMS phase shifters for Phased Array Antennas. ...
International audienceThis study investigates a new concept of waveguide-based W-band phase shifters...
This article details the design of an electronically scanning phased array antenna with proposed fab...
This paper presents a novel electronically scanning phased-array antenna with 128 switches monolithi...
This thesis presents a novel monolithic phased array implemented using the RF MEMS technology. The s...
This paper reports a monolithic phased array implemented using RF MEMS technology. The phased array ...
This paper presents the development of three different 5-bit K-band MEMS phase shifters monolithical...
Recent developments in the area of microfabrication technologies, has enabled the fabrication of man...
The design, fabrication and measurement of a 5 bit Ku band MEMS phase shifter in different configura...
The design, fabrication and measurement of a 5 bit Ku band MEMS phase shifter in different configura...
This work presents the latest progress on the CONFIRM \u201creCONFIrable circuits by Rf Mems\u201d p...
This work presents the latest progress on the CONFIRM “reCONFIrable circuits by Rf Mems” project. Pr...
This work presents the design, manufacturing, and testing of three 5-bit K-band Micro-Electro-Mechan...
Beam forming and scanning at microwave and millimetre-wave frequencies (1 GHz – 100 GHz) using elect...
This work present the design, and manufacturing of a novel K-band 5-bit MEMS phase shifter for appli...
This work presents the design of three K-band 5-bit MEMS phase shifters for Phased Array Antennas. ...
International audienceThis study investigates a new concept of waveguide-based W-band phase shifters...