DocumentCode
2912297
Title
High attenuation SAW IF filter for digital terrestrial TV
Author
Wachi, H. ; Orito, S. ; Tanaka, T. ; Wada, K. ; Ooura, T. ; Ichikawa, S. ; Takezaki, T. ; Mitobe, S. ; Koshino, M. ; Ebata, Y.
Author_Institution
SAW Devices Div., Fujitsu Media Devices Ltd., Yokohama, Japan
Volume
1
fYear
2003
fDate
5-8 Oct. 2003
Firstpage
811
Abstract
In digital terrestrial broadcasting system, adjacent high-level signals of coexistence analog system act as a spurious signal, which causes the generation of intermodulation and a bit error after digital demodulation. Therefore, a band pass filter with a large out-of-band rejection is required in IF stage in digital TV receiver set. Generally, for a high-rejection transversal SAW filter with apodized transducer, overlapped length of comb finger tends to be very narrow in side-lobe portion of apodized transducer. In spite of compensating diffraction effect, the high suppression level cannot be realized due to second order effects in such narrow overlapped region. The developed SAW filter has dual-track structure. It consists of a main track of conventional apodized IDT and a sub truck of just narrow overlapped IDT. The total aperture length increases only about 5% to conventional single-track structure. The sub track set inversion phase with main track. The developed filter achieves 50dB attenuation level with 31-lambda total aperture. The improved attenuation level is successfully realized with the same chip size.
Keywords
band-pass filters; demodulation; digital television; interdigital transducers; intermodulation; surface acoustic wave filters; television broadcasting; television equipment; 50 dB; analog system; apodized IDT; band pass filter; bit error; diffraction effect; digital TV receiver set; digital demodulation; digital terrestrial TV; digital terrestrial broadcasting system; dual track structure; high attenuation SAW IF filter; interdigital transducer; intermodulation; surface acoustic wave infrared filter; Apertures; Attenuation; Band pass filters; Demodulation; Digital filters; SAW filters; Signal generators; Surface acoustic waves; TV broadcasting; Transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics, 2003 IEEE Symposium on
Print_ISBN
0-7803-7922-5
Type
conf
DOI
10.1109/ULTSYM.2003.1293524
Filename
1293524
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