In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial is investigated. The proposed design is based on a transmission line loaded with split-ring resonators (SRRs) on a cotton substrate for filter signal application. The proposed design provides a stop band between 2.7 GHz and 4.7 GHz, considering a four stage SRR topology. Experimental results showed stop band levels higher than -30 dB for the proposed compact embroidered metamaterial e-textiles. The validated results confirmed embroidery as a useful technique to obtain customized electromagnetic filter properties, such as transmitted signal filtering and control, on wearable tech device applications.This work was supported by the Ministry of Econ...
Designing high-efficiency antennas on textiles is fundamental for the development of wirelessly-conn...
We report a commercially attractive approach to manufacturing conducting textiles which is based on ...
In this work, the design, implementation and test of double ring resonator (DRR) wearable antennas i...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this work, the utilization of different textile materials for manufacturing of metamaterial with ...
This paper presents an alternative process to fabricate flexible bandpass filters by using an embroi...
A novel wearable Frequency Selective Surface (FSS) created using fabric materials capable of blockin...
Metamaterials are artificial pseudo-homogeneous structures with electromagnetic properties not found...
In this paper, woven wearable metamaterials are developed. For this purpose, several frequency selec...
A new approach to the manufacture of conducting textiles for operation at microwave frequencies is r...
Frequency selective surfaces (FSSs) are electromagnetic spatial filters designed to pass or block pa...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim In this work, an embroidered metamaterial monopole...
A band stop filter developed on a denim textile substrate is presented. The filter geometry is compo...
In this paper, we report an embroidered rectangular split-ring resonator (SRR) operating at S band f...
Designing high-efficiency antennas on textiles is fundamental for the development of wirelessly-conn...
We report a commercially attractive approach to manufacturing conducting textiles which is based on ...
In this work, the design, implementation and test of double ring resonator (DRR) wearable antennas i...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this work, the utilization of different textile materials for manufacturing of metamaterial with ...
This paper presents an alternative process to fabricate flexible bandpass filters by using an embroi...
A novel wearable Frequency Selective Surface (FSS) created using fabric materials capable of blockin...
Metamaterials are artificial pseudo-homogeneous structures with electromagnetic properties not found...
In this paper, woven wearable metamaterials are developed. For this purpose, several frequency selec...
A new approach to the manufacture of conducting textiles for operation at microwave frequencies is r...
Frequency selective surfaces (FSSs) are electromagnetic spatial filters designed to pass or block pa...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim In this work, an embroidered metamaterial monopole...
A band stop filter developed on a denim textile substrate is presented. The filter geometry is compo...
In this paper, we report an embroidered rectangular split-ring resonator (SRR) operating at S band f...
Designing high-efficiency antennas on textiles is fundamental for the development of wirelessly-conn...
We report a commercially attractive approach to manufacturing conducting textiles which is based on ...
In this work, the design, implementation and test of double ring resonator (DRR) wearable antennas i...