The emerging fifth-generation (5G) wireless and mobile communications demand high-performance phase shifters to enable the multi-channel transmit/receive systems with phase control ability. In this work, a size-miniaturized wideband phase shifter based on slow-wave half-mode substrate integrated waveguide (SW-HMSIW) is presented. The proposed SW-HMSIW is consisting of conventional HMSIW section and periodically-patterned non-uniform microtrip polyline unit cells. Patterning polyline unit cells in HMSIW can effectively enhance the product of the equivalent permittivity and permeability of SW-HMSIW, so that the slow-wave effect can be exhibited and its associated size reduction will be further achieved. Moreover, lengths and widths of segment...
International audienceThis paper addresses the design, the simulations and the measurements results ...
This paper presents substrate integrated waveguide (SIW) phase shifter that can be reconfigured usin...
An integrated silicon-on-insulator microwave photonic phase shifter is demonstrated, based on an opt...
The emerging fifth-generation (5G) wireless and mobile communications demand high-performance phase ...
This work presents a novel compact and broadband electronically controllable substrate integrated wa...
This paper presents a highly miniaturized tuneable microstrip line phase shifter for 5 GHz to 67 GH...
Abstract—This paper presents the first substrate integrated waveguide (SIW) phase shifter that can b...
This article presents the first substrate integrated waveguide (SIW) phase shifter that can be recon...
This paper presents a compact and low-loss V-band waveguide phase shifter based on glidesymmetric p...
This paper presents a proof of concept demonstrator for a pair of novel phase shifters based on subs...
A linear, tunable, and self-compensating phase shifter based on liquid metal (LM) is proposed in thi...
With the unprecedented growth in the number of connected devices and demand for larger amount of dat...
In this paper, we introduce a novel reconfigurable antenna for implementation in 5G wireless systems...
International audienceA low-loss phase shifter made based on air-filled Substrate Integrated Wavegui...
International audienceThis paper addresses the design, the simulations and the measurements results ...
This paper presents substrate integrated waveguide (SIW) phase shifter that can be reconfigured usin...
An integrated silicon-on-insulator microwave photonic phase shifter is demonstrated, based on an opt...
The emerging fifth-generation (5G) wireless and mobile communications demand high-performance phase ...
This work presents a novel compact and broadband electronically controllable substrate integrated wa...
This paper presents a highly miniaturized tuneable microstrip line phase shifter for 5 GHz to 67 GH...
Abstract—This paper presents the first substrate integrated waveguide (SIW) phase shifter that can b...
This article presents the first substrate integrated waveguide (SIW) phase shifter that can be recon...
This paper presents a compact and low-loss V-band waveguide phase shifter based on glidesymmetric p...
This paper presents a proof of concept demonstrator for a pair of novel phase shifters based on subs...
A linear, tunable, and self-compensating phase shifter based on liquid metal (LM) is proposed in thi...
With the unprecedented growth in the number of connected devices and demand for larger amount of dat...
In this paper, we introduce a novel reconfigurable antenna for implementation in 5G wireless systems...
International audienceA low-loss phase shifter made based on air-filled Substrate Integrated Wavegui...
International audienceThis paper addresses the design, the simulations and the measurements results ...
This paper presents substrate integrated waveguide (SIW) phase shifter that can be reconfigured usin...
An integrated silicon-on-insulator microwave photonic phase shifter is demonstrated, based on an opt...