Superconducting Electronics
Digital, mixed-signal, RF and neuromorphic circuits built around superconducting devices, Josephson junctions and single-flux-quantum logic.

Separate superconducting electronics from quantum computing: SFQ/QFP logic can be an advanced classical electronics technology with its own fabrication, clocking, memory and cryogenic packaging problems.
Architecture is stable; technology maturity is not assumed. Public claims are anchored to current authoritative sources and are separated from Aurora concept work.
Technical coverage
Six focused routes keep device physics, interfaces, packaging, controls and verification separable.

Josephson-Junction Devices
Critical current, junction fabrication, biasing and device variability.
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SFQ Digital Logic
Single-flux-quantum pulses, logic families, timing and high-speed operation.
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QFP & Adiabatic Logic
Low-energy superconducting logic and energy/reversibility tradeoffs.
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Superconducting Memory
State storage, density, access and integration with SFQ logic.
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Mixed-Signal & RF
Converters, waveform generation, RF/digital interfaces and metrology.
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Cryogenic Packaging
Multichip modules, flip-chip, thermal anchoring and interconnect.
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Separate superconducting electronics from quantum computing: SFQ/QFP logic can be an advanced classical electronics technology with its own fabrication, clocking, memory and cryogenic packaging problems.