Title :
Organic-Based RF Capacitors with Ceramic-Like Properties
Author :
Hwang, Jin-Hyun ; Raj, P. Markondeya ; Abothu, Isaac Robin ; Yoon, Chong ; Iyer, Mahadevan ; Jung, Hyung-Mi ; Hong, Jong-Kuk ; Tummala, Rao
Author_Institution :
Georgia Inst. of Technol., Atlanta
fDate :
May 29 2007-June 1 2007
Abstract :
RF capacitor applications for filtering and signal matching need stringent tolerances in Temperature Coefficient of Capacitance (TCC) and Quality factor (Q). In this paper, the temperature dependence of the dielectric properties of polymer-ceramic composites was discussed, with particular emphasis on high Q polymers and paraelectric ceramic particles. This includes the important role of ceramic paraelectric particles such as A12O3, SiO2, Ta2O5 etc. as ceramic fillers and high Q polymers such as benzocyclobutene (BCB) in the development of high Q and low TCC dielectrics for embedded RF capacitors. High Q polymer by itself showed a negative TCC of about -250 ppm/ degC but the composite approach with A12O3, SiO2 and Ta2O5 fillers improved the TCC to -190, -130, +20 ppm/ degC , respectively, between temperatures ranging from room temperature to 125degC. Liquid coatable high Q polymer-based composites with 3-4X improvement in dielectric constant and nearly-zero TCC of approximately within plusmn30 ppm/degC were developed with Ta2O5 as the inorganic filler. This effect can be ascribed to the TCC compensation between negative TCC of high Q polymer and the positive TCC of paraelectric ceramic particle selected. The distribution of the particles in the polymer matrix is also a crucial aspect of this application.
Keywords :
capacitors; ceramics; dielectric properties; ceramic fillers; ceramic paraelectric particles; dielectric properties; inorganic filler; organic-based RF capacitors; paraelectric ceramic particles; polymer matrix; polymer-ceramic composites; quality factor; signal filtering; signal matching; temperature coefficient of capacitance; temperature dependence; Capacitance; Capacitors; Ceramics; Dielectrics; Filtering; Matched filters; Polymers; RF signals; Radio frequency; Temperature distribution;
Conference_Titel :
Electronic Components and Technology Conference, 2007. ECTC '07. Proceedings. 57th
Conference_Location :
Reno, NV
Print_ISBN :
1-4244-0985-3
Electronic_ISBN :
0569-5503
DOI :
10.1109/ECTC.2007.374052