Half Speed Recording with Ferrite Heads and High Energy Tape

International Telemetering Conference Proceedings / September 27-29, 1971 / Washington Hilton Hotel, Washington, D.C. === This paper describes the results obtained with several new techniques which are being used to extend the frequency bandwidth limits and the signal to noise ratios of instrumentat...

Full description

Bibliographic Details
Main Authors: Price, R. L., Youngquist, R. J.
Other Authors: Minnesota Mining and Manufacturing Co.
Language:en_US
Published: International Foundation for Telemetering 1971
Online Access:http://hdl.handle.net/10150/607057
http://arizona.openrepository.com/arizona/handle/10150/607057
id ndltd-arizona.edu-oai-arizona.openrepository.com-10150-607057
record_format oai_dc
spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6070572016-04-27T03:01:00Z Half Speed Recording with Ferrite Heads and High Energy Tape Price, R. L. Youngquist, R. J. Minnesota Mining and Manufacturing Co. International Telemetering Conference Proceedings / September 27-29, 1971 / Washington Hilton Hotel, Washington, D.C. This paper describes the results obtained with several new techniques which are being used to extend the frequency bandwidth limits and the signal to noise ratios of instrumentation magnetic tape record/ reproduce systems. During the past decade, wideband magnetic tape information recording densities have advanced in several stages to the currently used 60 to 80 micro inch wavelengths. The new techniques described in this paper now make it practical to record and reproduce wavelengths in the order of 30 to 40 micro inches. This results in a frequency bandwidth of 1.0 MHz at a tape speed of 30 inches per second. In comparison with present wideband systems this means an improvement of 2X in bandwidth, or a reduction of tape speed by one half is now possible while maintaining approximately 20 dB broadband signal to noise ratio with a track width of .025 inches. This width provides 28 tracks per inch of tape width. This improved performance has been obtained by combining recent improvements in "High Energy" tape, narrow gap ferrite record heads and ferrite reproduce heads. Using a systems approach, electronic signal processing circuits have been developed which coordinate these improvements in tape and heads, resulting in optimized "high performance" record/ reproduce systems. 1971-09 text Proceedings 0884-5123 0074-9079 http://hdl.handle.net/10150/607057 http://arizona.openrepository.com/arizona/handle/10150/607057 International Telemetering Conference Proceedings en_US http://www.telemetry.org/ Copyright © International Foundation for Telemetering International Foundation for Telemetering
collection NDLTD
language en_US
sources NDLTD
description International Telemetering Conference Proceedings / September 27-29, 1971 / Washington Hilton Hotel, Washington, D.C. === This paper describes the results obtained with several new techniques which are being used to extend the frequency bandwidth limits and the signal to noise ratios of instrumentation magnetic tape record/ reproduce systems. During the past decade, wideband magnetic tape information recording densities have advanced in several stages to the currently used 60 to 80 micro inch wavelengths. The new techniques described in this paper now make it practical to record and reproduce wavelengths in the order of 30 to 40 micro inches. This results in a frequency bandwidth of 1.0 MHz at a tape speed of 30 inches per second. In comparison with present wideband systems this means an improvement of 2X in bandwidth, or a reduction of tape speed by one half is now possible while maintaining approximately 20 dB broadband signal to noise ratio with a track width of .025 inches. This width provides 28 tracks per inch of tape width. This improved performance has been obtained by combining recent improvements in "High Energy" tape, narrow gap ferrite record heads and ferrite reproduce heads. Using a systems approach, electronic signal processing circuits have been developed which coordinate these improvements in tape and heads, resulting in optimized "high performance" record/ reproduce systems.
author2 Minnesota Mining and Manufacturing Co.
author_facet Minnesota Mining and Manufacturing Co.
Price, R. L.
Youngquist, R. J.
author Price, R. L.
Youngquist, R. J.
spellingShingle Price, R. L.
Youngquist, R. J.
Half Speed Recording with Ferrite Heads and High Energy Tape
author_sort Price, R. L.
title Half Speed Recording with Ferrite Heads and High Energy Tape
title_short Half Speed Recording with Ferrite Heads and High Energy Tape
title_full Half Speed Recording with Ferrite Heads and High Energy Tape
title_fullStr Half Speed Recording with Ferrite Heads and High Energy Tape
title_full_unstemmed Half Speed Recording with Ferrite Heads and High Energy Tape
title_sort half speed recording with ferrite heads and high energy tape
publisher International Foundation for Telemetering
publishDate 1971
url http://hdl.handle.net/10150/607057
http://arizona.openrepository.com/arizona/handle/10150/607057
work_keys_str_mv AT pricerl halfspeedrecordingwithferriteheadsandhighenergytape
AT youngquistrj halfspeedrecordingwithferriteheadsandhighenergytape
_version_ 1718248447470993408