Transmission of single-flux-quantum pulse between superconductor chips

Single-flux-quantum (SFQ) pulse transmission between superconductor chips mounted on a passive microstrip carrier is reported. In contrast to the earlier work based on a double-flux-quantum (DFQ) driver, we used an SFQ driver; that is, the simplest driver. To deal with transmission loss at solder-bu...

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Veröffentlicht in:Applied physics letters 2005-02, Vol.86 (7), p.072502-072502-3
Hauptverfasser: Hashimoto, Yoshihito, Yorozu, Shinichi, Miyazaki, Toshiyuki
Format: Artikel
Sprache:eng
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Zusammenfassung:Single-flux-quantum (SFQ) pulse transmission between superconductor chips mounted on a passive microstrip carrier is reported. In contrast to the earlier work based on a double-flux-quantum (DFQ) driver, we used an SFQ driver; that is, the simplest driver. To deal with transmission loss at solder-bump bonds, we improved the receiver's sensitivity by reducing its critical current, and optimized the SFQ driver to have as large an output amplitude as possible with a sufficient bias margin. Chip-to-chip transmission on a passive microstrip carrier with 50 μ m solder-bump bonds up to 60 Gbps has been achieved at a junction critical current density of 2.5 KA ∕ cm 2 .
ISSN:0003-6951
1077-3118
DOI:10.1063/1.1864239