A compact bandwidth enhanced antenna using metamaterial single Rectangular Split Ring Resonator (RSRR) for WLAN/WiMAX/Satellite applications is presented. As the wireless modules continue to shrink, there exists a drastic demand for a compact antenna. In addition to this, the effective integration of an antenna in wireless devices acts as stand-alone implement to mitigate the effects of noise fading. The presented antenna consists of three metamaterial single RSRR and a coaxial feed. Compactness in the design is achieved with the help of coaxial feeding technique. The etching of Upper metamaterial single RSRR creates a resonance at 6 GHz (WLAN) band, with S11 < -10 dB bandwidth ranging from 5.46 – 6.7 GHz (1240 MHz). Bandwidth enhancemen...
Abstract: In this paper, a microstrip monopole antenna with dual wideband is presented for simultane...
Abstract—A novel tri-band printed monopole antenna with an etched ∩-shaped slot and a parasitic ring...
AbstractIn this paper a novel design for a tri-band monopole antenna coupled with metamaterial units...
An omnidirectional compact antenna based on dual-band Split Ring Resonators (SRRs) for 2.45 GHz wire...
The present wireless applications demand a compact, multi-operated, and stable radiation pattern ant...
A novel miniaturized multiband, single-feed microstrip patch antenna is presented in this paper for ...
In this paper, a novel compact dual-band complementary split ring resonator (CSRR)-loaded microstrip...
A novel miniaturized multiband, single-feed microstrip patch antenna is presented in this paper for ...
A dual-band antenna is used for several wireless networks like ISM, WLAN, WiMAX, and WiFi. The anten...
A novel compact size ultrawide band planar antenna with band notched characteristics is present. The...
A planar CPW fed SRR loaded monopole antenna based on split ring resonator with triple-band operatio...
A new simple design of a triple-band microstrip antenna using metamaterial concept is presented in t...
In this paper a novel design for a tri-band monopole antenna coupled with metamaterial units is intr...
This paper represents a metamaterial (MTM) integrated bandwidth-enhanced antenna for modern wireless...
This paper presents the design of compact microstrip patch antenna operating at multiple frequency ...
Abstract: In this paper, a microstrip monopole antenna with dual wideband is presented for simultane...
Abstract—A novel tri-band printed monopole antenna with an etched ∩-shaped slot and a parasitic ring...
AbstractIn this paper a novel design for a tri-band monopole antenna coupled with metamaterial units...
An omnidirectional compact antenna based on dual-band Split Ring Resonators (SRRs) for 2.45 GHz wire...
The present wireless applications demand a compact, multi-operated, and stable radiation pattern ant...
A novel miniaturized multiband, single-feed microstrip patch antenna is presented in this paper for ...
In this paper, a novel compact dual-band complementary split ring resonator (CSRR)-loaded microstrip...
A novel miniaturized multiband, single-feed microstrip patch antenna is presented in this paper for ...
A dual-band antenna is used for several wireless networks like ISM, WLAN, WiMAX, and WiFi. The anten...
A novel compact size ultrawide band planar antenna with band notched characteristics is present. The...
A planar CPW fed SRR loaded monopole antenna based on split ring resonator with triple-band operatio...
A new simple design of a triple-band microstrip antenna using metamaterial concept is presented in t...
In this paper a novel design for a tri-band monopole antenna coupled with metamaterial units is intr...
This paper represents a metamaterial (MTM) integrated bandwidth-enhanced antenna for modern wireless...
This paper presents the design of compact microstrip patch antenna operating at multiple frequency ...
Abstract: In this paper, a microstrip monopole antenna with dual wideband is presented for simultane...
Abstract—A novel tri-band printed monopole antenna with an etched ∩-shaped slot and a parasitic ring...
AbstractIn this paper a novel design for a tri-band monopole antenna coupled with metamaterial units...