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题名

Thermal characterization of ceramic pills at millimeter waves with a TE01δ cavity resonator

作者
通讯作者Salski,Bartlomiej
发表日期
2024-09-01
DOI
发表期刊
ISSN
0025-5408
卷号177
摘要
The progress in 5G/6G technology prompts a demand for new materials operating at millimeter waves that can be exploited as substrates for electronic devices or antennas. In particular, a rapid development of millimeter wave band communication technology demands ceramic materials, which could be applied in low temperature cofired ceramic (LTCC) techniques. This kind of ceramics should possess a low dielectric constant (ε), a low loss tangent (tanδ) and a near-zero temperature coefficient. In the view of above, there is an urgent need for accurate and reliable material microwave characterization techniques that can operate at frequencies well above 15 GHz. Due to the fact that the majority of LTCC ceramic materials can be produced in a cylindrical shape, a suitable characterization method exploits a cylindrical resonator operating at a TE mode, which is dedicated to the characterization of low-loss materials also as a function of temperature.
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相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
ESI学科分类
MATERIALS SCIENCE
Scopus记录号
2-s2.0-85192341171
来源库
Scopus
引用统计
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/760966
专题南方科技大学
作者单位
1.Warsaw University of Technology,Institute of Microelectronics and Optoelectronics,Poland
2.Southern University of Science and Technology,China
3.Warsaw University of Technology,Institute of Radioelectronics and Multimedia Technology,Poland
推荐引用方式
GB/T 7714
Krupka,Jerzy,Chen,Xianqiang,Xu,Xinwei,et al. Thermal characterization of ceramic pills at millimeter waves with a TE01δ cavity resonator[J]. Materials Research Bulletin,2024,177.
APA
Krupka,Jerzy.,Chen,Xianqiang.,Xu,Xinwei.,Guo,Biao.,Wang,Hongye.,...&Kopyt,Pawel.(2024).Thermal characterization of ceramic pills at millimeter waves with a TE01δ cavity resonator.Materials Research Bulletin,177.
MLA
Krupka,Jerzy,et al."Thermal characterization of ceramic pills at millimeter waves with a TE01δ cavity resonator".Materials Research Bulletin 177(2024).
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