Patents by Inventor Alexander DUNNING
Alexander DUNNING 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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Patent number: 12625266Abstract: A lidar system for detection of a gas comprises an optical transceiver for transmitting and receiving optical radiation. A method of operating the system comprises performing spatially scanned sensing measurements of the gas across a system field of view, and analyzing the sensing measurements to determine the presence and location of excess of the gas in the system field of view. Based on the determined location, an adjusted system field of view is determined and spatially scanned sensing measurements of the gas are performed across the adjusted system field of view to obtain sensing measurements at higher spatial resolution.Type: GrantFiled: June 8, 2022Date of Patent: May 12, 2026Assignee: QLM Technology LimitedInventors: Xiao Ai, James Titchener, Alexander Dunning
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Patent number: 12350670Abstract: A microfluidic device for manipulating microdroplets is provided. It includes (a) a microfluidic space defined at least in part by juxtaposition of opposed containing walls and (b) disposed on or within at least one of the containing walls optoelectrowetting electrode locations arranged in a pathway characterised in that in at least one direction substantially parallel to that of the pathway a region of the microfluidic space continuously varies or may be caused to continuously vary in depth; for example by tapering or cantilevering a resilient part of one of the walls. The device and its associated method of use are suitable components for nucleic acid sequencers and biomedical analytical devices.Type: GrantFiled: May 17, 2019Date of Patent: July 8, 2025Assignee: LIGHTCAST DISCOVERY LTD.Inventors: Alexander Dunning, Andreas Michael Waeber
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Publication number: 20230161042Abstract: A lidar system for detection of a gas comprises an optical transceiver for transmitting and receiving optical radiation. A method of operating the system comprises performing spatially scanned sensing measurements of the gas across a system field of view, and analyzing the sensing measurements to determine the presence and location of excess of the gas in the system field of view. Based on the determined location, an adjusted system field of view is determined and spatially scanned sensing measurements of the gas are performed across the adjusted system field of view to obtain sensing measurements at higher spatial resolution.Type: ApplicationFiled: June 8, 2022Publication date: May 25, 2023Applicant: QLM Technology LimitedInventors: Xiao Ai, James Titchener, Alexander Dunning
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Patent number: 11644576Abstract: A lidar system for detection of a gas comprises an optical transceiver for transmitting and receiving optical radiation. A method of operating the system comprises performing spatially scanned sensing measurements of the gas across a system field of view, and analyzing the sensing measurements to determine the presence and location of excess of the gas in the system field of view. Based on the determined location, an adjusted system field of view is determined and spatially scanned sensing measurements of the gas are performed across the adjusted system field of view to obtain sensing measurements at higher spatial resolution.Type: GrantFiled: July 8, 2022Date of Patent: May 9, 2023Assignee: QLM Technology LimitedInventors: Xiao Ai, James Titchener, Alexander Dunning
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Publication number: 20230007979Abstract: The present invention relates to a lidar (1000) comprising an emitter (1100) and a receiver (1200), wherein the receiver (1200) comprises a discrete amplification photon detector (1210), wherein the receiver (1200) comprises a discriminator (1220), wherein the discriminator (1220) has an input connected to an output signal of the discrete amplification photon detector (1210), and wherein the discriminator (1220) is configured to output a signal indicating that the output signal of the discrete amplification photon detector (1210) is higher than a predetermined threshold.Type: ApplicationFiled: December 2, 2020Publication date: January 12, 2023Applicant: ID Quantique SAInventors: Alexander DUNNING, Gianluca BOSO, Felix BUSSIERES
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Publication number: 20220397672Abstract: A lidar system for detection of a gas comprises an optical transceiver for transmitting and receiving optical radiation. A method of operating the system comprises performing spatially scanned sensing measurements of the gas across a system field of view, and analyzing the sensing measurements to determine the presence and location of excess of the gas in the system field of view. Based on the determined location, an adjusted system field of view is determined and spatially scanned sensing measurements of the gas are performed across the adjusted system field of view to obtain sensing measurements at higher spatial resolution.Type: ApplicationFiled: July 8, 2022Publication date: December 15, 2022Applicant: QLM Technology LimitedInventors: Xiao Ai, James Titchener, Alexander Dunning
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Publication number: 20220390566Abstract: An optical assembly for a laser projection and return laser light detection device comprises a housing; a first series of components arranged in the housing to define an exit path for laser radiation entering from a laser source and then exiting from the housing; a second series of components arranged in the housing to define a return path for scattered returns of the laser radiation entering the housing and passing to a detector; a polarising beam splitter/combiner common to the exit path and the return path arranged to polarise laser light exiting from the housing and to separate scattered laser light returned to the assembly, that is orthogonally polarised to the exiting laser radiation. The polarising beam splitter/combiner forms a window to the housing.Type: ApplicationFiled: May 12, 2022Publication date: December 8, 2022Applicant: QLM Technology LimitedInventors: Xiao Ai, James Titchener, Murray Reed, Alexander Dunning
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Publication number: 20210213453Abstract: A microfluidic device for manipulating microdroplets is provided. It includes (a) a microfluidic space defined at least in part by juxtaposition of opposed containing walls and (b) disposed on or within at least one of the containing walls optoelectrowetting electrode locations arranged in a pathway characterised in that in at least one direction substantially parallel to that of the pathway a region of the microfluidic space continuously varies or may be caused to continuously vary in depth; for example by tapering or cantilevering a resilient part of one of the walls. The device and its associated method of use are suitable components for nucleic acid sequencers and biomedical analytical devices.Type: ApplicationFiled: May 17, 2019Publication date: July 15, 2021Applicant: LIGHTCAST DISCOVERY LTD.Inventors: Alexander DUNNING, Andreas Michael WAEBER