DocumentCode :
1237219
Title :
Two-phase 50 GHz on-chip long Josephson junction clock source
Author :
Vernik, Igor V. ; Gupta, Deepnarayan
Author_Institution :
HYPRES Inc., Elmsford, NY, USA
Volume :
13
Issue :
2
fYear :
2003
fDate :
6/1/2003 12:00:00 AM
Firstpage :
587
Lastpage :
590
Abstract :
On-chip, high-frequency clock sources are essential for the future development of superconductor digital circuits and systems. We have developed clock sources for rapid single flux quantum (RSFQ) digital circuits using high-quality long Josephson junction (LJJ) resonant oscillators that offer extremely low jitter. To meet the requirement for time-interleaved clock signals of complementary phase, two-phase 30 and 50 GHz clock sources using LJJ´s have been developed with both linear and annular geometry. Unperturbed by reflections from boundaries and collisions among the fluxons (flux quanta), the annular LJJ oscillator has demonstrated superior stability and higher quality factor (>106) than the linear LJJ oscillator. The LJJ oscillator with linear geometry is easier to interface with RSFQ circuitry since it has well-defined boundaries at either end, facilitating a two-phase clock source. On the other hand, multiple clock phases may be derived from an annular LJJ oscillator by connecting interface circuitry at various points around the circular junction, if the interface circuitry does not interfere with the fluxon(s) in the annular junction. Experimental results for two-phase RSFQ clock sources based on linear and annular LJJ oscillators are presented.
Keywords :
circuit stability; clocks; superconducting integrated circuits; superconducting resonators; 30 GHz; 50 GHz; Josephson junction resonant oscillators; annular geometry; linear geometry; on-chip long Josephson junction clock source; quality factor; rapid single flux quantum circuits; stability; superconductor digital circuits; time-interleaved clock signals; two-phase clock source; Circuit stability; Clocks; Digital circuits; Geometry; Jitter; Josephson junctions; Oscillators; Reflection; Resonance; System-on-a-chip;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2003.813953
Filename :
1211671
Link To Document :
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