Patents by Inventor Alex Kirichenko
Alex Kirichenko has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250150077Abstract: A superconducting controller for a superconducting qubit to execute high fidelity quantum gates using magnetic flux drive. The controller comprises: an inductance forming an inductive loop and configured to be inductively coupled to a qubit with a small mutual inductance; a pulse shaping circuit configured to apply a current pulse with a predefined shape across the inductance. The pulse shaping circuit comprises: a superconducting circuit configured to output single flux quanta (SFQ) pulses and a digital counter circuit configured to produce the shape of the current (magnetic flux) pulse by controlling the number of SFQ pulses applied to the inductive loop by incrementing or decrementing the current across the inductance by one SFQ pulse at a time.Type: ApplicationFiled: January 13, 2025Publication date: May 8, 2025Inventors: Alex Kirichenko, Maxim Vavilov, Oleg Mukhanov
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Patent number: 12199603Abstract: A superconducting controller for a superconducting qubit to execute high fidelity quantum gates using magnetic flux drive. The controller comprises: an inductance forming an inductive loop and configured to be inductively coupled to a qubit with a small mutual inductance; a pulse shaping circuit configured to apply a current pulse with a predefined shape across the inductance. The pulse shaping circuit comprises: a superconducting circuit configured to output single flux quanta (SFQ) pulses and a digital counter circuit configured to produce the shape of the current (magnetic flux) pulse by controlling the number of SFQ pulses applied to the inductive loop by incrementing or decrementing the current across the inductance by one SFQ pulse at a time.Type: GrantFiled: May 12, 2023Date of Patent: January 14, 2025Assignee: SEEQC, INC.Inventors: Alex Kirichenko, Maxim Vavilov, Oleg Mukhanov
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Publication number: 20240380399Abstract: A superconducting controller for a superconducting qubit to execute high fidelity quantum gates using magnetic flux drive. The controller comprises: an inductance forming an inductive loop and configured to be inductively coupled to a qubit with a small mutual inductance; a pulse shaping circuit configured to apply a current pulse with a predefined shape across the inductance. The pulse shaping circuit comprises: a superconducting circuit configured to output single flux quanta (SFQ) pulses and a digital counter circuit configured to produce the shape of the current (magnetic flux) pulse by controlling the number of SFQ pulses applied to the inductive loop by incrementing or decrementing the current across the inductance by one SFQ pulse at a time.Type: ApplicationFiled: May 12, 2023Publication date: November 14, 2024Inventors: Alex KIRICHENKO, Maxim VAVILOV, Oleg MUKHANOV
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Publication number: 20220237495Abstract: The technology disclosed in this patent document can be implemented to combine quantum computing, classical qubit control/readout, and classical digital computing in a scalable computing system based on superconducting qubits and special interconnection designs for connecting hardware components within a multi-stage cryogenic system to provide fast communications between the quantum computing module and its controller while allowing efficient management of wiring with other modules.Type: ApplicationFiled: October 14, 2021Publication date: July 28, 2022Inventors: Daniel Yohannes, Igor Vernik, Caleb Jordan, Patrick Truitt, Alex Kirichenko, Amir Jafari Salim, Naveen Katam, Oleg Mukhanov
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Patent number: 9747968Abstract: A magnetic random access memory (MRAM) array including: a plurality of MRAM cells arranged in an array configuration, each comprising a first type nTron and a magnetic memory element; a wordline select circuit comprising of a second type nTron to drive a plurality of parallel wordlines; and a plurality of bitline select circuits, each comprising of said second type nTron for writing to and reading from a column of memory cells in the array and each capable of selecting a single MRAM cell for a memory read or write operation, wherein the second nTron has a higher current drive than the first nTron.Type: GrantFiled: November 18, 2016Date of Patent: August 29, 2017Assignees: Raytheon BBN Technologies Corp, Hypres, Inc.Inventors: Thomas Ohki, Oleg Mukhanov, Alex Kirichenko
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Publication number: 20170069367Abstract: A magnetic random access memory (MRAM) array including: a plurality of MRAM cells arranged in an array configuration, each comprising a first type nTron and a magnetic memory element; a wordline select circuit comprising of a second type nTron to drive a plurality of parallel wordlines; and a plurality of bitline select circuits, each comprising of said second type nTron for writing to and reading from a column of memory cells in the array and each capable of selecting a single MRAM cell for a memory read or write operation, wherein the second nTron has a higher current drive than the first nTron.Type: ApplicationFiled: November 18, 2016Publication date: March 9, 2017Inventors: Thomas Ohki, Oleg Mukhanov, Alex Kirichenko
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Patent number: 9552862Abstract: A magnetic random access memory (MRAM) array including: a plurality of MRAM cells arranged in an array configuration, each comprising a first type nTron and a magnetic memory element; a wordline select circuit comprising of a second type nTron to drive a plurality of parallel wordlines; and a plurality of bitline select circuits, each comprising of said second type nTron for writing to and reading from a column of memory cells in the array and each capable of selecting a single MRAM cell for a memory read or write operation, wherein the second nTron has a higher current drive than the first nTron.Type: GrantFiled: July 29, 2015Date of Patent: January 24, 2017Assignees: RAYTHEON BBN TECHNOLOGIES CORP., HYPRES, INC.Inventors: Thomas Ohki, Oleg Mukhanov, Alex Kirichenko
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Publication number: 20070194958Abstract: A high-speed lookup table is designed using Rapid Single Flux Quantum (RSFQ) logic elements and fabricated using superconducting integrated circuits. The lookup table is composed of an address decoder and a programmable read-only memory array (PROM). The memory array has rapid parallel pipelined readout and slower serial reprogramming of memory contents. The memory cells are constructed using standard non-destructive reset-set flip-flops (RSN cells) and data flip-flops (DFF cells). An n-bit address decoder is implemented in the same technology and closely integrated with the memory array to achieve high-speed operation as a lookup table. The circuit architecture is scalable to large two-dimensional data arrays.Type: ApplicationFiled: February 23, 2006Publication date: August 23, 2007Inventors: Alex Kirichenko, Timur Filippov, Deepnarayan Gupta
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Publication number: 20050235027Abstract: The present invention discloss an ALU that can be operated as an OR gate, an AND gate, an adder gate and an exclusive OR gate using a half adder that uses a superconductor rapid single flux quantum logic device. The ALU using a half adder includes a half adder using a superconductor rapid single flux quantum logic device as a logic circuit, and a switching unit that has input ports respectively connected to a sum output port and a carry output port of the half adder and is operated as an OR gate, an AND gate, an adder gate and an exclusive OR gate using output signals of the half adder. The switching unit includes a first switch having an input port connected to the sum output port of the half adder, a second switch having an input port connected to the carry output port of the half adder and an output port connected to an output port of the first switch, and a third switch having an input port connected to the carry output port of the half adder.Type: ApplicationFiled: May 20, 2004Publication date: October 20, 2005Inventors: Ku Jung, Jun Kang, Alex Kirichenko, Saad Sarwana
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Patent number: 6653962Abstract: A dual function superconducting digitizer circuit which can selectively function either as an analog-to-digital converter (ADC) or as a time-to-digital converter (TDC). Superconducting ADCs and TDCs can provide performance far superior to that obtained using conventional electronics by taking advantage of the intrinsic properties—high switching speed, quantum accuracy, dispersion-less transmission lines, radiation hardness, and extremely low power dissipation—of superconductivity. Since both ADC and TDC functions are desired in most measurement systems, a dual-function digitizer is not only more attractive from a system integration perspective but is also more marketable.Type: GrantFiled: October 19, 2001Date of Patent: November 25, 2003Inventors: Deepnarayan Gupta, Saad Sarwana, Alex Kirichenko, Oleg Mukhanov
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Publication number: 20030076251Abstract: A dual function superconducting digitizer circuit which can selectively function either as an analog-to-digital converter (ADC) or as a time-to-digital converter (TDC). Superconducting ADCs and TDCs can provide performance far superior to that obtained using conventional electronics by taking advantage of the intrinsic properties—high switching speed, quantum accuracy, dispersion-less transmission lines, radiation hardness, and extremely low power dissipation—of superconductivity. Since both ADC and TDC functions are desired in most measurement systems, a dual-function digitizer is not only more attractive from a system integration perspective but is also more marketable.Type: ApplicationFiled: October 19, 2001Publication date: April 24, 2003Inventors: Deepnarayan Gupta, Saad Sarwana, Alex Kirichenko, Oleg Mukhanov