DocumentCode
1167651
Title
Digital time-division multiplexed N-path system
Author
Glaser, Axel
Volume
17
Issue
4
fYear
1970
fDate
11/1/1970 12:00:00 AM
Firstpage
600
Lastpage
604
Abstract
The use of a time-division multiplexed digital filter as the time-invariant part of an
-path filter is proposed and examined. The use of a digital filter, and the resultant requirements for only one input modulator, alleviates the problem of closely matching the transmission characteristics of the paths. As a consequence of the improving matching, the time-varying modulation products in the output signal should be suppressed 10-15 dB more than in conventional implementations. The center frequency, bandwidth, and passband shape of the filter are all electronically adjustable. It is possible to time division multiplex a processor using serial arithmetic for a bandpass filter with a bandwidth of several kilohertz using high-speed bipolar logic circuits. The speed requirements for the memory are such that MOS circuitry, with its attendant size advantage, is suitable. This approach to realizing an inductorless, electronically adjustable bandpass filter should become economical in the near future because of the decreasing cost and the increasingly complex functions available in both bipolar and MOS circuitry.
-path filter is proposed and examined. The use of a digital filter, and the resultant requirements for only one input modulator, alleviates the problem of closely matching the transmission characteristics of the paths. As a consequence of the improving matching, the time-varying modulation products in the output signal should be suppressed 10-15 dB more than in conventional implementations. The center frequency, bandwidth, and passband shape of the filter are all electronically adjustable. It is possible to time division multiplex a processor using serial arithmetic for a bandpass filter with a bandwidth of several kilohertz using high-speed bipolar logic circuits. The speed requirements for the memory are such that MOS circuitry, with its attendant size advantage, is suitable. This approach to realizing an inductorless, electronically adjustable bandpass filter should become economical in the near future because of the decreasing cost and the increasingly complex functions available in both bipolar and MOS circuitry.Keywords
Digital filters; N-path filters; Time-division multiplexing; Time-varying and switched networks; Arithmetic; Band pass filters; Bandwidth; Cost function; Digital filters; Digital modulation; Frequency; Logic circuits; Passband; Shape;
fLanguage
English
Journal_Title
Circuit Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9324
Type
jour
DOI
10.1109/TCT.1970.1083194
Filename
1083194
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