DocumentCode :
1084235
Title :
Investigation of parylene-C on the performance of millimeter-wave circuits
Author :
Kärnfelt, Camilla ; Tegnander, Christina ; Rudnicki, Janusz ; Starski, J. Piotr ; Emrich, Anders
Author_Institution :
Microwave Electron. Lab., Univ. of Technol., Goteborg
Volume :
54
Issue :
8
fYear :
2006
Firstpage :
3417
Lastpage :
3425
Abstract :
Parylene-C is a polymeric material primarily used in hybrid manufacturing for humidity protection and dielectric isolation. In this study, the influence of Parylene-C on passive millimeter-wave circuits such as transmission lines and resonators is investigated in electromagnetic simulations up to 100 GHz and measurements up to 67 GHz. It is demonstrated that when applying 5-mum Parylene-C, the resonance frequency of a resonator is shifted 0.4% and the Q value is changed slightly. The dissipation factor of the Parylene-C versus frequency has been calculated from measured data. The flip-chip mounted broadband traveling-wave monolithic-microwave integrated-circuit (MMIC) amplifier is also investigated. A 5-mum-thick Parylene-C coat results in a total loss of 1.04 dB. A positive side effect of the Parylene-C is that it allows heat, dissipated in the amplifier, to spread over a larger area, consequently lowering the backside temperature of the flipped MMIC with as much as 10 degC. The results from this study demonstrate that, concerning the electrical performance, Parylene-C is very well suited as protective coating in millimeter-wave applications and can be used as an alternative to a hermetic package in the frequency range from dc to 67 GHz to reduce weight and cost
Keywords :
MIMIC; MMIC amplifiers; flip-chip devices; humidity; polymer films; 1.04 dB; 5 micron; 67 to 100 GHz; Parylene-C; dielectric isolation; flip chip devices; humidity protection; monolithic microwave integrated circuits; monolithic-microwave integrated-circuit amplifier; polymer coatings; Broadband amplifiers; Dielectric materials; Electromagnetic measurements; Frequency; Humidity; MMICs; Manufacturing; Millimeter wave circuits; Polymers; Protection; Coatings; Parylene; dielectric loss; dissipation factor; flip chip; humidity protection; monolithic microwave integrated circuits (MMICs); poly-para-xylylene; resonators;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2006.877834
Filename :
1668360
Link To Document :
بازگشت