An ultra-thin electromagnetic bandgap (EBG) backed antenna is presented for 24 GHz ISM band wearable applications. The antenna is a slotted bow-tie, with an overall dimension of 0.91 x 0.8 x 0.01 lamdba_0, backed by a 5 x 5 element 0.01 lambda_0 thick EBG structure: it is manufactured on a flexible substrate (relative permittivity = 2.2). The performance of the EBG-backed antenna in terms of reflection coefficient and free-space radiation patterns is investigated in scenarios with and without structural bending. It is shown that the integration of the EBG enhances the antenna's front-lobe gain by 2.6dB, decreases back-lobe radiation by 12.2dB, and decreases the specific absorption rate (SAR (1g)) from > 28 W/kg to < 1.93 W/kg, significant...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact, ultra-thin, electromagnetic bandgap (EBG) backed antenna is presented for the 24 GHz ISM ...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
A compact fabric antenna structure integrated with electromagnetic bandgap structures (EBGs) coverin...
A compact wearable bent slot antenna with a compact electromagnetic band gap (EBG) structure for wir...
A millimeter-wave (mm-Wave) multiple input multiple output (MIMO) antenna operating at 24 GHz (ISM b...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact wearable antenna with a novel miniatur-ized electromagnetic bandgap (EBG) structure at 2.4...
A compact wearable antenna with a novel miniaturized electromagnetic bandgap (EBG) structure at 2.4...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact, ultra-thin, electromagnetic bandgap (EBG) backed antenna is presented for the 24 GHz ISM ...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
A compact fabric antenna structure integrated with electromagnetic bandgap structures (EBGs) coverin...
A compact wearable bent slot antenna with a compact electromagnetic band gap (EBG) structure for wir...
A millimeter-wave (mm-Wave) multiple input multiple output (MIMO) antenna operating at 24 GHz (ISM b...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact fabric antenna structure integrated with a miniature electromagnetic band-gap structures (...
A compact wearable antenna with a novel miniatur-ized electromagnetic bandgap (EBG) structure at 2.4...
A compact wearable antenna with a novel miniaturized electromagnetic bandgap (EBG) structure at 2.4...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Are...