Impedance matching for UHF band antennas on ceramic substrate

Author(s):  
Calin Mircea ◽  
Svasta Paul
Author(s):  
Ramesh P. ◽  
V. Mathivanan

<p>In this paper, the ultra high frequency of yagi-uda antenna for navigational has been designed to improve the usable bandwidth by improving the stability of the radiation patterns. The frequency band of ultra high frequency is 300-3000 MHZ. The main aim of this paper is to reduce the loss, improve the gain and also to enhance the efficiency of ultra high frequency yagi-uda antenna for utilizing the navigational aids. The proposed UHF band of Yagi-Uda antenna has been designed by using ANSYS HFSS tool for the application of navigational aids. The characteristics specifications of yagi-uda antenna such as Radiation pattern, S11 (return loss), impedance matching and gain are analyzed in this work.</p>


Author(s):  
Z.G. Wen ◽  
F.D. Wang ◽  
D.Y. Zhao ◽  
Y.B. Wang
Keyword(s):  
Rfid Tag ◽  

Author(s):  
Prabjit Singh ◽  
Ying Yu ◽  
Robert E. Davis

Abstract A land-grid array connector, electrically connecting an array of plated contact pads on a ceramic substrate chip carrier to plated contact pads on a printed circuit board (PCB), failed in a year after assembly due to time-delayed fracture of multiple C-shaped spring connectors. The land-grid-array connectors analyzed had arrays of connectors consisting of gold on nickel plated Be-Cu C-shaped springs in compression that made electrical connections between the pads on the ceramic substrates and the PCBs. Metallography, fractography and surface analyses revealed the root cause of the C-spring connector fracture to be plating solutions trapped in deep grain boundary grooves etched into the C-spring connectors during the pre-plating cleaning operation. The stress necessary for the stress corrosion cracking mechanism was provided by the C-spring connectors, in the land-grid array, being compressed between the ceramic substrate and the printed circuit board.


Ceramist ◽  
2018 ◽  
Vol 21 (2) ◽  
pp. 195-200
Author(s):  
Danbi Kim ◽  
◽  
Nu Si A Eom ◽  
Jiwon Kim ◽  
Jae-Hong Lim ◽  
...  

2020 ◽  
Vol 35 (10) ◽  
pp. 991-999
Author(s):  
Yu-ming YANG ◽  
◽  
Yan LI ◽  
Huai-wen ZHENG ◽  
Fei YU ◽  
...  

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