GSM/DCS/IMT-2000 triple-band built-in antenna for wireless terminals
The development of electrically small antennas plays an important role in the rapidly growing mobile communication market. This work presents a novel design technique for a triple-band small internal antenna which covers the GSM/DCS/IMT-2000 bands. The proposed antenna consists of double shorting po...
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Veröffentlicht in: | IEEE antennas and wireless propagation letters 2004-01, Vol.3, p.104-107 |
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creator | Shin, Yong-Sun Kim, Byoung-Nam Kwak, Won-Il Park, Seong-Ook |
description | The development of electrically small antennas plays an important role in the rapidly growing mobile communication market. This work presents a novel design technique for a triple-band small internal antenna which covers the GSM/DCS/IMT-2000 bands. The proposed antenna consists of double shorting posts, feed post, and dual-crossed C-slot patch radiators. A high-frequency structure simulator simulation is employed for optimizing the design parameters, and the simulation results agree with the measured data. The IE3D simulation is also used to obtain the current distribution at the resonant frequencies. The maximum gains at the frequencies 950 and 1860 MHz are measured to be about 1.58 and 1.3 dBi, respectively. These positive antenna gains and triple-bands of the proposed antenna are very attractive features for GSM/DCS/IMT-2000 bands handset applications. |
doi_str_mv | 10.1109/LAWP.2004.830021 |
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This work presents a novel design technique for a triple-band small internal antenna which covers the GSM/DCS/IMT-2000 bands. The proposed antenna consists of double shorting posts, feed post, and dual-crossed C-slot patch radiators. A high-frequency structure simulator simulation is employed for optimizing the design parameters, and the simulation results agree with the measured data. The IE3D simulation is also used to obtain the current distribution at the resonant frequencies. The maximum gains at the frequencies 950 and 1860 MHz are measured to be about 1.58 and 1.3 dBi, respectively. These positive antenna gains and triple-bands of the proposed antenna are very attractive features for GSM/DCS/IMT-2000 bands handset applications.</description><identifier>ISSN: 1536-1225</identifier><identifier>EISSN: 1548-5757</identifier><identifier>DOI: 10.1109/LAWP.2004.830021</identifier><identifier>CODEN: IAWPA7</identifier><language>eng</language><publisher>New York: IEEE</publisher><subject>Antenna feeds ; Antenna measurements ; Antennas ; Bands ; Current distribution ; Design optimization ; Design parameters ; Distributed control ; Frequency measurement ; Gain ; GSM ; Mobile antennas ; Mobile communication ; Optimization ; Radiators ; Resonant frequency ; Simulation ; Terminals</subject><ispartof>IEEE antennas and wireless propagation letters, 2004-01, Vol.3, p.104-107</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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This work presents a novel design technique for a triple-band small internal antenna which covers the GSM/DCS/IMT-2000 bands. The proposed antenna consists of double shorting posts, feed post, and dual-crossed C-slot patch radiators. A high-frequency structure simulator simulation is employed for optimizing the design parameters, and the simulation results agree with the measured data. The IE3D simulation is also used to obtain the current distribution at the resonant frequencies. The maximum gains at the frequencies 950 and 1860 MHz are measured to be about 1.58 and 1.3 dBi, respectively. These positive antenna gains and triple-bands of the proposed antenna are very attractive features for GSM/DCS/IMT-2000 bands handset applications.</description><subject>Antenna feeds</subject><subject>Antenna measurements</subject><subject>Antennas</subject><subject>Bands</subject><subject>Current distribution</subject><subject>Design optimization</subject><subject>Design parameters</subject><subject>Distributed control</subject><subject>Frequency measurement</subject><subject>Gain</subject><subject>GSM</subject><subject>Mobile antennas</subject><subject>Mobile communication</subject><subject>Optimization</subject><subject>Radiators</subject><subject>Resonant frequency</subject><subject>Simulation</subject><subject>Terminals</subject><issn>1536-1225</issn><issn>1548-5757</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2004</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNp9kE1Lw0AURQdRsFb3gpvgQlfTvvnMZFlarYUWhRZcDmnyAlPSpM4kiP_ehAiCC1f3Lc698A4htwwmjEEyXc_e3yYcQE6MAODsjIyYkoaqWMXn_S00ZZyrS3IVwgGAxVqJEVkst5vpYr6drjY72tUharw7lUj3aZVH-9aVDXVVlFYNVlUaFbWPPp3HEkOIGvRHV6VluCYXRRd485Njsnt-2s1f6Pp1uZrP1jQTSjSUKcWAsT1XoCGVXCgUiErHuZZZHnOJYJjOE6lBxoXKZab2UsVZbAphAMSYPA6zJ19_tBgae3Qhw7JMK6zbYBOWJFwyrTvy4V-SG246A6ID7_-Ah7r1_U_WGKEFF0J2EAxQ5usQPBb25N0x9V-Wge3l216-7eXbQX5XuRsqDhF_cQG8mxXfnSx7hg</recordid><startdate>20040101</startdate><enddate>20040101</enddate><creator>Shin, Yong-Sun</creator><creator>Kim, Byoung-Nam</creator><creator>Kwak, Won-Il</creator><creator>Park, Seong-Ook</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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This work presents a novel design technique for a triple-band small internal antenna which covers the GSM/DCS/IMT-2000 bands. The proposed antenna consists of double shorting posts, feed post, and dual-crossed C-slot patch radiators. A high-frequency structure simulator simulation is employed for optimizing the design parameters, and the simulation results agree with the measured data. The IE3D simulation is also used to obtain the current distribution at the resonant frequencies. The maximum gains at the frequencies 950 and 1860 MHz are measured to be about 1.58 and 1.3 dBi, respectively. These positive antenna gains and triple-bands of the proposed antenna are very attractive features for GSM/DCS/IMT-2000 bands handset applications.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/LAWP.2004.830021</doi><tpages>4</tpages></addata></record> |
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subjects | Antenna feeds Antenna measurements Antennas Bands Current distribution Design optimization Design parameters Distributed control Frequency measurement Gain GSM Mobile antennas Mobile communication Optimization Radiators Resonant frequency Simulation Terminals |
title | GSM/DCS/IMT-2000 triple-band built-in antenna for wireless terminals |
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