A Dual Band Microstrip-fed Slot Antenna
- Design Of A Novel Microstrip-fed Dual-band Slot Antenna For Wlan Applications
- A Dual Band Microstrip-fed Slot Antenna Tuner
- A Dual Band Microstrip-fed Slot Antennas
- A Dual Band Microstrip-fed Slot Antenna Booster
- A Dual Band Microstrip-fed Slot Antenna Combo
Ring slot 1, L slotted microstrip fed monopole antenna2 indicates that the antenna proposed in this paper is relatively compact and simple in design, which would prove to be beneficial in manufacturing the antenna. In this paper, a T shaped patched antenna is presented which covers the WLAN 2.4 GHz and WiMAX 2.4 GHz. In this paper a novel design of microstrip-fed slot antenna with dual-band characteristics is proposed. The proposed antenna has advantages such as simple structure, compact size and easy fabrication. By introducing a pair of U-shaped strips to the antenna, dual-band operation and good radiation performance suitable for the WLAN systems can be.
Source
2006 IEEE Antennas and Propagation Society International Symposium>3597 - 3600
Abstract
Identifiers
book ISBN : | 1-4244-0123-2 |
DOI | 10.1109/APS.2006.1711398 |
Authors
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Yijun Liu
Design Of A Novel Microstrip-fed Dual-band Slot Antenna For Wlan Applications
- Sch. of Electr.&Electron. Eng., Nanyang Technol. Univ.
Boyu Zheng
- Sch. of Electr.&Electron. Eng., Nanyang Technol. Univ.
Zhongxiang Shen
- Sch. of Electr.&Electron. Eng., Nanyang Technol. Univ.
Keywords
UHF antennasantenna feedsantenna radiation patternsbroadband antennasmultifrequency antennasslot antenna arrays1800 MHzdual-band microstrip-fed cavity-backed subarraywide-band cavity-backed slot antenna subarrayridged slotsfeeding networksreturn loss bandwidthradiation patterns900 MHz
A Dual Band Microstrip-fed Slot Antenna Tuner
UHF antennasantenna feedsantenna radiation patternsbroadband antennasmultifrequency antennasslot antenna arrays1800 MHzdual-band microstrip-fed cavity-backed subarraywide-band cavity-backed slot antenna subarrayridged slotsfeeding networksreturn loss bandwidthradiation patterns900 MHz