DocumentCode :
1547669
Title :
CSD filter design for VLSI implementation of GA-VSB receiver
Author :
Lee, Myeong-Hwan
Author_Institution :
Signal Process. Lab., Samsung Electron. Co., Suwon, South Korea
Volume :
43
Issue :
2
fYear :
1997
fDate :
5/1/1997 12:00:00 AM
Firstpage :
197
Lastpage :
206
Abstract :
We present several filters for the Grand Alliance (GA) vestigial sideband (VSB) receiver. Especially, we design the digital filters for the digital frequency and phase lock loop (DFPLL), which can be easily integrated in a single VLSI chip, with limited bit length coefficients using canonic signed digit (CSD) code and evaluate the performance of the designed filters by comparing the frequency characteristics with the real coefficient filters. The CSD code conversion is a class of quantization in which the filter coefficients are quantized. A filter represented by a CSD code is called the CSD filter. The quantized coefficients which are restricted to the set of representable numbers by and digit CSD code with 2 nonzero digit (L=2, M=7) are considered. In spite of the simplified hardware (H/W) structure for implementation, it is shown that the CSD filters attain little difference compare to the case of real filters using real coefficients. When we select SEC STD60, the ASIC implementation of filters for the DFPLL using CSD filters requires about 30~35 K gates
Keywords :
VLSI; application specific integrated circuits; digital filters; digital phase locked loops; digital signal processing chips; high definition television; television receivers; video coding; ASIC; CSD code conversion; CSD filter; CSD filter design; DFPLL; GA-VSB receiver; Grand Alliance; HDTV; SEC STD60; VLSI implementation; canonic signed digit; digital filter design; digital frequency lock loop; digital phase lock loop; frequency characteristics; hardware structure; performance evaluation; quantization; quantized coefficients; real coefficient filters; single VLSI chip; vestigial sideband receiver; Algorithm design and analysis; Application specific integrated circuits; CMOS technology; Digital filters; Digital modulation; Finite impulse response filter; Frequency; Matched filters; Quantization; Very large scale integration;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/30.585542
Filename :
585542
Link To Document :
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