In this article, an antenna design is presented based on three horizontally staggered microstrip lines for wearable telemedicine devices. The antenna is excited through a 50-ohm microstrip line. The proposed antenna was fabricated using conductive copper tape of 35μm thickness and printed on a flexible photo paper suitable for telemedicine applications. The proposed antenna has physical dimensions of 40 × 35 ×0.635 mm3. It was designed to operate at the ISM band 2.45 GHz. The proposed antenna design was simulated and optimized using Computer Simulation Technology of Microwave Studio software (CSTMWS). The design of the antenna was then validated through measurement. The results show good agreement between the simulated and measured results....
A wearable probe-fed microstrip antenna manufactured from conductive textile fabric designed for mul...
Here, in this article we are presenting the design of Microstrip antenna at 2.4 GHz for wearable app...
With today's advanced technology microstrip patch antennas are more flexible and stronger than ever ...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using r...
In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using r...
A compact and flexible millimeter-wave (mmWave) antenna with central resonance frequency of 60 GHz h...
Wearable antenna is a flexible antenna that is made up with fabrics as their substrate, whether full...
In this paper a compact patch antenna has been modelled using copper and graphite as its conducting ...
In this dissertation, I propose design of wearable antennas for micro-and millimeter wave WBAN appli...
Novel flexible and wearable antenna for remote health monitoring is presented. The patch antenna sim...
Some results on embedded antennas for medical wireless communication systems are presented. Medical ...
A wearable probe-fed microstrip antenna manufactured from conductive textile fabric designed for mul...
Here, in this article we are presenting the design of Microstrip antenna at 2.4 GHz for wearable app...
With today's advanced technology microstrip patch antennas are more flexible and stronger than ever ...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this article, an antenna design is presented based on three horizontally staggered microstrip lin...
In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using r...
In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using r...
A compact and flexible millimeter-wave (mmWave) antenna with central resonance frequency of 60 GHz h...
Wearable antenna is a flexible antenna that is made up with fabrics as their substrate, whether full...
In this paper a compact patch antenna has been modelled using copper and graphite as its conducting ...
In this dissertation, I propose design of wearable antennas for micro-and millimeter wave WBAN appli...
Novel flexible and wearable antenna for remote health monitoring is presented. The patch antenna sim...
Some results on embedded antennas for medical wireless communication systems are presented. Medical ...
A wearable probe-fed microstrip antenna manufactured from conductive textile fabric designed for mul...
Here, in this article we are presenting the design of Microstrip antenna at 2.4 GHz for wearable app...
With today's advanced technology microstrip patch antennas are more flexible and stronger than ever ...