A small loop antenna for WLAN applications is proposed, which is comprised of an inverted-L loop and an inner rectangular loop achieving dual-band resonances within a compact size of 4.5 mm x 6.5 mm. A series capacitor in the feeding loop is employed for impedance matching of both bands and a shunt capacitor for high band, respectively. The proposed compact antenna is able to achieve -10 dB impedance bandwidth of 120 and 1260 MHz and average radiation efficiency of 69 and 61% in the 2.4 GHz band and the 5 GHz band, respectively.This work was supported by the ICT R&D program of MSIP/IITP, Republic of Korea, [B0101-15-1271, ground radiation technique for mobile devices]
In this paper a G-shaped dual-band monopole antenna with a shorted strip fed by a coupling microstri...
A compact dual-band antenna for smart wristbands was proposed. The proposed antenna consisted of a s...
This letter reports on a compact planar dual-band Multiple-Input and Multiple-Output (MIMO) antenna ...
A compact ground radiation method for 2.45 and 5.5 GHz wireless local area network (WLAN) applicatio...
A highly compact and an optimized design of an Inverted L shaped printed monopole antenna with a sim...
A dual band loop-type ground antenna is proposed. Loop-type feeding structures and capacitors have b...
A compact dual-band uniplanar antenna for operation in the 2.4/5.2/5.8 GHz WLAN/HIPERLAN2 communicat...
A compact planar monopole antenna with dual-band operation suitable for wireless local area network ...
A triple-band ground radiation antenna is proposed that can cover the 1575 MHz global positioning sy...
A dual-band dipole antenna that consists of a horn- and a C-shaped metallic arm is presented. Depend...
A dual-band frequency tunable loop antenna that utilized a circuit model was introduced. An open loo...
A novel dual-band inverted H-shaped slot circular patch antenna is presented in this paper. A rectan...
This paper presents a compact planar monopole antenna with dual-band operation suitable for wireless...
A compact dual-band printed antenna covering the 2.4 GHz (2400-2485 MHz) and 5.2 GHz (5150-5350 MHz)...
Abstract—An ultra-compact dual-band printed antenna is proposed. Connective and concentric double sp...
In this paper a G-shaped dual-band monopole antenna with a shorted strip fed by a coupling microstri...
A compact dual-band antenna for smart wristbands was proposed. The proposed antenna consisted of a s...
This letter reports on a compact planar dual-band Multiple-Input and Multiple-Output (MIMO) antenna ...
A compact ground radiation method for 2.45 and 5.5 GHz wireless local area network (WLAN) applicatio...
A highly compact and an optimized design of an Inverted L shaped printed monopole antenna with a sim...
A dual band loop-type ground antenna is proposed. Loop-type feeding structures and capacitors have b...
A compact dual-band uniplanar antenna for operation in the 2.4/5.2/5.8 GHz WLAN/HIPERLAN2 communicat...
A compact planar monopole antenna with dual-band operation suitable for wireless local area network ...
A triple-band ground radiation antenna is proposed that can cover the 1575 MHz global positioning sy...
A dual-band dipole antenna that consists of a horn- and a C-shaped metallic arm is presented. Depend...
A dual-band frequency tunable loop antenna that utilized a circuit model was introduced. An open loo...
A novel dual-band inverted H-shaped slot circular patch antenna is presented in this paper. A rectan...
This paper presents a compact planar monopole antenna with dual-band operation suitable for wireless...
A compact dual-band printed antenna covering the 2.4 GHz (2400-2485 MHz) and 5.2 GHz (5150-5350 MHz)...
Abstract—An ultra-compact dual-band printed antenna is proposed. Connective and concentric double sp...
In this paper a G-shaped dual-band monopole antenna with a shorted strip fed by a coupling microstri...
A compact dual-band antenna for smart wristbands was proposed. The proposed antenna consisted of a s...
This letter reports on a compact planar dual-band Multiple-Input and Multiple-Output (MIMO) antenna ...