Invention Grant
- Patent Title: Systems and methods for superconducting devices used in superconducting circuits and scalable computing
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Application No.: US16098801Application Date: 2017-05-03
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Publication No.: US11127893B2Publication Date: 2021-09-21
- Inventor: Mark W. Johnson , Paul I. Bunyk , Andrew J. Berkley , Richard G. Harris , Kelly T. R. Boothby , Loren J. Swenson , Emile M. Hoskinson , Christopher B. Rich , Jan E. S. Johansson
- Applicant: D-WAVE SYSTEMS INC.
- Applicant Address: CA Burnaby
- Assignee: D-WAVE SYSTEMS INC.
- Current Assignee: D-WAVE SYSTEMS INC.
- Current Assignee Address: CA Burnaby
- Agency: Cozen O'Connor
- International Application: PCT/US2017/030857 WO 20170503
- International Announcement: WO2017/192733 WO 20171109
- Main IPC: G06N10/00
- IPC: G06N10/00 ; H01L39/22 ; H01L39/02

Abstract:
Approaches useful to operation of scalable processors with ever larger numbers of logic devices (e.g., qubits) advantageously take advantage of QFPs, for example to implement shift registers, multiplexers (i.e., MUXs), de-multiplexers (i.e., DEMUXs), and permanent magnetic memories (i.e., PMMs), and the like, and/or employ XY or XYZ addressing schemes, and/or employ control lines that extend in a “braided” pattern across an array of devices. Many of these described approaches are particularly suited for implementing input to and/or output from such processors. Superconducting quantum processors comprising superconducting digital-analog converters (DACs) are provided. The DACs may use kinetic inductance to store energy via thin-film superconducting materials and/or series of Josephson junctions, and may use single-loop or multi-loop designs. Particular constructions of energy storage elements are disclosed, including meandering structures. Galvanic connections between DACs and/or with target devices are disclosed, as well as inductive connections.
Public/Granted literature
- US20210013391A1 SYSTEMS AND METHODS FOR SUPERCONDUCTING DEVICES USED IN SUPERCONDUCTING CIRCUITS AND SCALABLE COMPUTING Public/Granted day:2021-01-14
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