DocumentCode :
3479140
Title :
Electrical properties and practical applications of Liquid Crystal Polymer flex
Author :
Takata, Katsumi ; Pham, Anh-Vu
Author_Institution :
Nippon Steel Chem. Co. Ltd., Chiba
fYear :
2007
fDate :
Jan. 16 2007-Yearly 18 2007
Firstpage :
67
Lastpage :
72
Abstract :
We present the electrical characterization of our Liquid Crystal Polymer (LCP) at microwave and millimeter frequencies and the applications of LCP to circuit components. We use several methodologies to determine the electrical characteristics of LCP for microwave and millimeter wave frequencies. Cavity resonators [1], microstrip T-resonators [2], and microstrip ring resonators [1, 3] are measured in order to characterize both the dielectric constant and loss tangent up to 40 GHz. The measured dielectric constant is shown to be steady near 3.0, and the loss tangent stays below 0.002, which is better than conventional FR-4, BT, and polyimide materials. Furthermore, microstrip lines are designed and fabricated on both LCP substrate and other conventional materials in order to compare loss characteristics. The measured insertion loss at 40 GHz of microstrip lines on a LCP substrate (25 mum) and a polyimide substrate (25 mum) is 0.11dB/mm and 0.18 dB/mm, respectively. These results show that LCP has excellent and stable dielectric properties at high frequencies and the data suggests that this material can be used for applications extending through millimeter wave frequencies. LCP´s inherent properties such as multi-layer capabilities, excellent electrical properties, flexibility, and near hermetic nature suit it to a wide range of applications such as passive devices, packages, and RF cables. Finally, we demonstrate the development of a banpass filter on LCP flex to achieve an insertion loss less than 1 dB at 6 GHz in the passband, which is comparable to that of LTCC. The microwave characteristics of LCP have provided the feasibility of this material for low cost and high performance substrates for microwave and millimeter wave applications.
Keywords :
cavity resonators; dielectric materials; liquid crystal polymers; microstrip resonators; microwave technology; permittivity; cavity resonator; circuit components; dielectric constant measurement; electrical property; liquid crystal polymer flex; microstrip T-resonator; microstrip ring resonators; microwave application; millimeter wave application; polyimide substrate; Dielectric constant; Dielectric loss measurement; Dielectric materials; Dielectric measurements; Dielectric substrates; Frequency; Liquid crystal polymers; Loss measurement; Microstrip resonators; Millimeter wave technology; Liquid Crystal Polymer (LCP); dielectric constant; loss tangent; transmission line;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Polymers and Adhesives in Microelectronics and Photonics, 2007. Polytronic 2007. 6th International Conference on
Conference_Location :
Odaiba, Tokyo
Print_ISBN :
978-1-4244-1186-3
Electronic_ISBN :
978-1-4244-1186-3
Type :
conf
DOI :
10.1109/POLYTR.2007.4339140
Filename :
4339140
Link To Document :
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