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Tape is often slit with a sinuous centerline ("country laning"). When this tape travels through a transport, the recording on one track shows a varying time displacement with respect to that on another track. When the same signal is recorded on two tracks, and the reproduced signals are subsequently combined, the time displacement produces a "comb filter" frequency response. The output of a full-track head shows a response which is similar up to the first output null. This filter response is used here as a "slope detector" to measure the short-term time azimuth angle variations. Typical peak to peak azimuth angle variations are 600 microradians (0.03 degrees, or 2 minutes); this sets a limit to the interchannel time-displacement performance of recording systems, and to the accuracy of azimuth angle measurements.
Author (s): McKnight, John G.;
Affiliation:
Magnetic Reference Laboratory, Mountain View, CA
(See document for exact affiliation information.)
AES Convention: 66
Paper Number:1666
Publication Date:
1980-05-06
DOI:
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McKnight, John G.; 1980; Azimuth and Interchannel Time Displacement Error in Multi-Track Magnetic Tape Recording [PDF]; Magnetic Reference Laboratory, Mountain View, CA; Paper 1666; Available from: https://aes.org/publications/elibrary-page/?id=3710
McKnight, John G.; Azimuth and Interchannel Time Displacement Error in Multi-Track Magnetic Tape Recording [PDF]; Magnetic Reference Laboratory, Mountain View, CA; Paper 1666; 1980 Available: https://aes.org/publications/elibrary-page/?id=3710
@inproceedings{McKnight1980azimuth,
title={{Azimuth and Interchannel Time Displacement Error in Multi-Track Magnetic Tape Recording}},
author={McKnight, John G.},
year={1980},
month={may},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 1666; AES Convention 66; May 1980},
number={1666},
organization={AES},
}
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