Presentation 2008-01-24
Current Status of Real-Time Waveform Monitoring and Sampling Clock Improvement by Superconductivity Devices
Mutsuo HIDAKA, Hideo SUZUKI, Yoshihito HASHIMOTO, Michitaka MARUYAMA, Kan FUJIWARA,
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Abstract(in English) Real-time monitoring method is able to observe nonperiodical waveform. This method is indispensable for future network monitoring and its higher sampling clock will be demanded. We report commercial available semiconductor real-time oscilloscope with the focus on input band width and sampling clock. TeKtronix, Agilent and LeCroy are leading companies to supply the oscilloscope. Catalog specifications of band-width and sampling clock are 16GHz and 50GS/s for TeKtronix, 12GHz and 40GS/s for Agilent and 18GHz and 60GS/s for LeCroy, respectively. However, it is difficult to make a sweeping judgment about which oscilloscope is the best, because they improve the band width and sampling clock by using hardware and software interleaves. On the other hand, superconductive single flux quantum (SFQ) circuit has a chance to increase the band width and sampling clock without interleave, since it can implement high-speed and high-reliable AD converter by using its high-speed and periodic nature. We proposed a new SFQ AD converter circuit and confirmed its high-sampling clocks of over 150GS/s by computer simulations.
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Keyword(in English) real-time oscilloscope / Sampling clock / Superconductor / SFQ circuit / AD converter
Paper # TM2007-43,IA2007-41,OIS2007-85
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Committee IA
Conference Date 2008/1/17(1days)
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Registration To Internet Architecture(IA)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Current Status of Real-Time Waveform Monitoring and Sampling Clock Improvement by Superconductivity Devices
Sub Title (in English)
Keyword(1) real-time oscilloscope
Keyword(2) Sampling clock
Keyword(3) Superconductor
Keyword(4) SFQ circuit
Keyword(5) AD converter
1st Author's Name Mutsuo HIDAKA
1st Author's Affiliation Superconductivity Research Laboratory()
2nd Author's Name Hideo SUZUKI
2nd Author's Affiliation Superconductivity Research Laboratory
3rd Author's Name Yoshihito HASHIMOTO
3rd Author's Affiliation Superconductivity Research Laboratory
4th Author's Name Michitaka MARUYAMA
4th Author's Affiliation Superconductivity Research Laboratory
5th Author's Name Kan FUJIWARA
5th Author's Affiliation Superconductivity Research Laboratory:Japan Society for the Promotion of Science
Date 2008-01-24
Paper # TM2007-43,IA2007-41,OIS2007-85
Volume (vol) vol.107
Number (no) 449
Page pp.pp.-
#Pages 6
Date of Issue