## Abstract In this paper, we describe a new GaAsβbased micromachined microstrip line, supported by an electrically supported airβgapped microstrip line (DAML) structure and developed using RF MEMS techniques to achieve low losses at millimeterβwave frequency bands with wide impedance ranges. The m
β¦ LIBER β¦
Propagation Parameters of Coupled Microstrip-Like Transmission Lines for Millimeter-Wave Applications
β Scribed by Koul, S.K.; Bhat, B.
- Book ID
- 114657834
- Publisher
- IEEE
- Year
- 1981
- Tongue
- English
- Weight
- 595 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0018-9480
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
New micromachined microstrip transmissio
β
Han-Shin Lee; Sung-Chan Kim; Byoung-Ok Lim; Kyoung-Man Kim; Won-Young Uhm; Young
π
Article
π
2003
π
John Wiley and Sons
π
English
β 199 KB
Characterization of Differential Transmi
β
Hamidipour, A.; Jahn, M.; Jaeger, H.; Stelzer, A.
π
Article
π
2012
π
IEEE
π
English
β 537 KB
Lumped Capacitance, Open-Circuit End Eff
β
Bhat, B.; Koul, S.K.
π
Article
π
1984
π
IEEE
π
English
β 647 KB
An analysis of substrate effects on tran
β
Jin-Fa Chang; Yo-Sheng Lin; Chi-Chen Chen; Chang-Zhi Chen; Pen-Li Huang; Tao Wan
π
Article
π
2008
π
John Wiley and Sons
π
English
β 333 KB
A FBG was apodized using the simple, reproducible, and fully automated electric arc discharge technique. The improvement of this apodization technique, which may be applied to any type of FBG, requires the definition of a preconditioning refractive index and/or photosensitivity response profile usin
Transmission-Line Identities for a Class
β
Saleh, A.A.M.
π
Article
π
1980
π
IEEE
π
English
β 893 KB
Modeling of Multilayer Suspended Microst
β
Prasad, Manish ;Gaur, Arun S. ;Sharma, Vivek K. ;Pathak, Nagendra P.
π
Article
π
2008
π
Springer
π
English
β 522 KB