• DocumentCode
    80107
  • Title

    SFQ Circuits With Ground Plane Hole-Assisted Inductive Coupling Designed With InductEx

  • Author

    Fourie, Coenrad J. ; Wetzstein, Olaf ; Kunert, Juergen ; Meyer, Hans-Georg

  • Author_Institution
    Stellenbosch Univ., Stellenbosch, South Africa
  • Volume
    23
  • Issue
    3
  • fYear
    2013
  • fDate
    Jun-13
  • Firstpage
    1300705
  • Lastpage
    1300705
  • Abstract
    The design of single flux-quantum (SFQ) circuits requires well-defined inductances. In many cases these are created by irregular geometries and a computer-aided design tool is necessary for inductance calculations. This becomes a challenging task in cases where no ground plane is used and thus three-dimensional calculations are required. For this purpose, InductEx was developed and verified successfully for simple structures. In this work we take the next step and demonstrate the applicability of InductEx to the design of rapid single flux-quantum (RSFQ) cells. We use InductEx for inductance modeling as an integral part of the design cycle for an RSFQ cell with flux quantum transfer via mutual inductance and for a DC-reprogrammable logic circuit with similar inductive coupling. The relation between coupling factor and self-inductance is optimized in the circuit layout. All coupling structures are duplicated in SQUID modulation test circuits to measure and verify calculation accuracy. We find excellent agreement between the calculated and measured inductance values. Furthermore, the operational area of the basic cell is determined and compared with similar investigations reported earlier. Based on this comparison we conclude that InductEx is a valuable inductance design tool, and that mutual coupling in structures using ground plane holes and RSFQ-compatible self-inductances can be modeled and designed reliably.
  • Keywords
    circuit layout; inductance; logic circuits; 3D inductance calculation; DC reprogrammable logic circuit; InductEx; RSFQ cell; RSFQ compatible self inductances; SFQ circuits; SQUID modulation test circuit; circuit layout; computer aided design tool; coupling factor; flux quantum transfer; ground plane holes; hole assisted inductive coupling; inductance design tool; mutual coupling; mutual inductance modeling; rapid single flux quantum cell; single flux quantum circuits; Couplings; Inductance; Inductance measurement; Layout; SQUIDs; Tongue; Current recycling; InductEx; LR-biasing; dc-reprogrammable logic; ground plane holes; inductance calculations; inductive coupling; layout extraction; low-power rapid single flux-quantum (RSFQ); serial biasing;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/TASC.2012.2231134
  • Filename
    6365239