## Abstract A microstrip antenna embedded inside a dielectric medium representing the building material is investigated for its gain. It is shown that coupling the embedded antenna to a parasitic patch, placed outside the embedding material, can increase the antenna gain significantly. In addition,
De-embedding techniques for embedded microstrips
β Scribed by J. M. Song; F. Ling; W. Blood; E. Demircan; K. Sriram; G. Flynn; K.-H. To; R. Tsai; Q. Li; T. Myers; M. Petras; A. Dengi
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 115 KB
- Volume
- 42
- Category
- Article
- ISSN
- 0895-2477
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β¦ Synopsis
Abstract
Three parameters are needed to model symmetrical adapters, but not enough equations can be found to solve them. The proposed twoβimpedance model with one shunt and one series impedance gives consistent results when applied to three different lengths of embedded microstrip transmission lines. This model can be used with more complicated structures than the singleβimpedance model. Β© 2004 Wiley Periodicals, Inc. Microwave Opt Technol Lett 42: 50β54, 2004; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/mop.20204
π SIMILAR VOLUMES
Several studies [ 1-41 have recently been published on de-embedding the results of electromagnetic analyses. This letter is to comment on issues raised in these papers. First, we point out a minor oversight in ref. 2,
It has been reported that the chaos attractor generated from a differential equation containing a delay often attains a high dimension. When the high-dimensional time series data generated from a system containing a delay are analyzed, it is expected that the orbital reconstruction by the Takens emb
## Abstract A microstrip antenna structure with RF components embedded inside the structure is proposed for satellite radio applications. The space to embed the RF components is created by a metal cavity inside the substrate of the antenna structure. With the increasing use of MMIC techniques, the
A design of broadband circular microstrip antenna with embedded reactiΒ¨e loading directly matched to a 50 β microstrip feed line is presented. This design is achieΒ¨ed owing to the integrated reactiΒ¨e loading, a T-shaped microstrip-line section embedded in a nearly rectangular slot cut near the patch