A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering 2.4 GHz frequency band is presented. The incorporated EBG with antenna reduces the radiation into the human body around 17 dB and decreases the impacts of frequency detuning. The overall dimension of the antenna integrated with EBG is 56 x 56 x 4 mm3 with relative impedance bandwidth of 8.3% is achieved. The proposed design has improved the gain up to 7 dBi. Specific absorption rate (SAR) assessment is also studied to certify the performance of the antenna when it is located proximity to human tissue. The flexible antenna with aforementioned performances could be chosen as a good candidate for integration into a range of wearable devices for ...
An ultra-thin electromagnetic bandgap (EBG) backed antenna is presented for 24 GHz ISM band wearable...
A compact wearable antenna with a novel miniaturized electromagnetic bandgap (EBG) structure at 2.4...
The recent advancement in the wireless technology has led to the advent of wearable antennas. These...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
The recent advancement in the wireless technology has led to the advent of wearable antennas. These ...
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 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 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 wearable antenna with a novel miniatur-ized electromagnetic bandgap (EBG) structure at 2.4...
An ultra-thin electromagnetic bandgap (EBG) backed antenna is presented for 24 GHz ISM band wearable...
A compact wearable antenna with a novel miniaturized electromagnetic bandgap (EBG) structure at 2.4...
The recent advancement in the wireless technology has led to the advent of wearable antennas. These...
A robust and low-profile electromagnetic band-gap (EBG) based on flexible wearable antenna covering ...
The recent advancement in the wireless technology has led to the advent of wearable antennas. These ...
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 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 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 wearable antenna with a novel miniatur-ized electromagnetic bandgap (EBG) structure at 2.4...
An ultra-thin electromagnetic bandgap (EBG) backed antenna is presented for 24 GHz ISM band wearable...
A compact wearable antenna with a novel miniaturized electromagnetic bandgap (EBG) structure at 2.4...
The recent advancement in the wireless technology has led to the advent of wearable antennas. These...