Title :
Compact PCB embedded tunable filter for UHF TV broadcasting
Author :
Lee, Tae C. ; Park, Jae Y.
Author_Institution :
Micro/Nano Devices&Packaging Lab. Dept. of Electron. Eng., Kwangwoon Univ., Seoul, South Korea
Abstract :
In this paper, fully embedded tunable bandpass filter (BPF) with inductive coupling circuit was newly designed and demonstrated for UHF TV tuner applications ranged from 500 MHz to 900 MHz. Conventional RF tunable filter with an electromagnetic coupled tuning circuit has several problems such as large size, high volume, and high cost, since the electromagnetic coupled filter is comprised of several passive components and air core inductors to be assembled and controlled manually. To address these obstacles, compact tunable filter with inductive coupling circuit was embedded into low cost organic package substrate. The embedded filter was optimally designed to obtain high performance by using high Q spiral stacked inductors, high dielectric BaTiO3 composite MIM capacitors, varactor diodes. It exhibited low insertion loss of approximately -2 dB, high return loss of below -10 dB, and large tuning range of 56.3%. It had an extremely compact volume of 3.4 times 4.4 times 0.5 mm3.
Keywords :
MIM devices; UHF filters; band-pass filters; circuit tuning; electromagnetic coupling; inductors; printed circuits; television broadcasting; varactors; Q spiral stacked inductor; UHF TV broadcasting; air core inductor; compact PCB embedded tunable bandpass filter; dielectric composite MIM capacitor; electromagnetic coupled tuning circuit; frequency 500 MHz to 900 MHz; inductive coupling circuit; organic package substrate; passive component; varactor diode; Band pass filters; Costs; Coupling circuits; Dielectric substrates; Electromagnetic coupling; Electromagnetic induction; Inductors; Passive filters; TV broadcasting; Tunable circuits and devices; RF tuning circuit; embedded passives; inductive coupling; organic package; tunable filter; varactor;
Conference_Titel :
Microwave Symposium Digest, 2009. MTT '09. IEEE MTT-S International
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-2803-8
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2009.5165744