Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications.
碩士 === 國立聯合大學 === 電機工程學系碩士班 === 100 === This thesis shows the preparation of the microwave dielectric materials, and the design of compact microstrip antenna wth different substrates.Firstly, the (Ca(0.4-x)A(x))Sm0.4TiO3(A = Mg2+ or Sr2+) and Ca0.4Sm0.4(Ti(1-x)B(x))O3(B = Zr4+) ceramics were prepare...
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ndltd-TW-100NUUM04420062015-10-13T21:07:21Z http://ndltd.ncl.edu.tw/handle/89986434630932494138 Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. 無線通訊系統用微波介電材料之開發與其天線設計之研究 Tsai,Shanghung 蔡尚宏 碩士 國立聯合大學 電機工程學系碩士班 100 This thesis shows the preparation of the microwave dielectric materials, and the design of compact microstrip antenna wth different substrates.Firstly, the (Ca(0.4-x)A(x))Sm0.4TiO3(A = Mg2+ or Sr2+) and Ca0.4Sm0.4(Ti(1-x)B(x))O3(B = Zr4+) ceramics were prepared by using conventional solid-state methods and were characterized . It is interesting to study the influence of dielectric properties on the different substitutions in the A-sites or B-sites in the material system.On the other hand, due to compensated the near–zero τf value, CaTiO3, having a larger positive τf, was selected as a compensator and add to ZnAl2O4 to form a near-zero τf ceramic system (1-x)ZnAl2O4-(x)CaTiO3. The experimental results show that the excellent microwave dielectric properties (εr~10.69,Q×fvalue ~32000 GHz,τf~0 ) can be obtained for 0.92ZnAl2O4-0.08CaTiO3 sintered at 1400℃ for 4 h.Finally, a microstrip antenna has been designed and fabricated with different substrates such as 0.92ZnAl2O4-0.08CaTiO3 ceramic substrate and FR4 substrate. Key words: Microwave ceramic material, microstrip antenna Hsu,Chenghsing 許正興 2012 學位論文 ; thesis 148 zh-TW |
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碩士 === 國立聯合大學 === 電機工程學系碩士班 === 100 === This thesis shows the preparation of the microwave dielectric materials, and the design of compact microstrip antenna wth different substrates.Firstly, the (Ca(0.4-x)A(x))Sm0.4TiO3(A = Mg2+ or Sr2+) and Ca0.4Sm0.4(Ti(1-x)B(x))O3(B = Zr4+) ceramics were prepared by using conventional solid-state methods and were characterized . It is interesting to study the influence of dielectric properties on the different substitutions in the A-sites or B-sites in the material system.On the other hand, due to compensated the near–zero τf value, CaTiO3, having a larger positive τf, was selected as a compensator and add to ZnAl2O4 to form a near-zero τf ceramic system (1-x)ZnAl2O4-(x)CaTiO3. The experimental results show that the excellent microwave dielectric properties (εr~10.69,Q×fvalue ~32000 GHz,τf~0 ) can be obtained for 0.92ZnAl2O4-0.08CaTiO3 sintered at 1400℃ for 4 h.Finally, a microstrip antenna has been designed and fabricated with different substrates such as 0.92ZnAl2O4-0.08CaTiO3 ceramic substrate and FR4 substrate.
Key words: Microwave ceramic material, microstrip antenna
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author2 |
Hsu,Chenghsing |
author_facet |
Hsu,Chenghsing Tsai,Shanghung 蔡尚宏 |
author |
Tsai,Shanghung 蔡尚宏 |
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Tsai,Shanghung 蔡尚宏 Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
author_sort |
Tsai,Shanghung |
title |
Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
title_short |
Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
title_full |
Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
title_fullStr |
Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
title_full_unstemmed |
Fabrication and of Microwave Dielectric Materials and Design of Antenna for Wireless Communication Applications. |
title_sort |
fabrication and of microwave dielectric materials and design of antenna for wireless communication applications. |
publishDate |
2012 |
url |
http://ndltd.ncl.edu.tw/handle/89986434630932494138 |
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