Patents by Inventor Scott Burroughs

Scott Burroughs 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).

  • Patent number: 10530130
    Abstract: A laser diode includes a semiconductor structure of a lower Bragg reflector layer, an active region, and an upper Bragg reflector layer. The upper Bragg reflector layer includes a lasing aperture having an optical axis oriented perpendicular to a surface of the active region. The active region includes a first material, and the lower Bragg reflector layer includes a second material, where respective lattice structures of the first and second materials are independent of one another. Related laser arrays and methods of fabrication are also discussed.
    Type: Grant
    Filed: April 12, 2018
    Date of Patent: January 7, 2020
    Assignee: Sense Photonics, Inc.
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Patent number: 10522973
    Abstract: A laser array includes a plurality of laser diodes arranged and electrically connected to one another on a surface of a non-native substrate. Respective laser diodes of the plurality of laser diodes have different orientations relative to one another on the surface of the non-native substrate. The respective laser diodes are configured to provide coherent light emission in different directions, and the laser array is configured to emit an incoherent output beam comprising the coherent light emission from the respective laser diodes. The output beam may include incoherent light having a non-uniform intensity distribution over a field of view of the laser array. Related devices and fabrication methods are also discussed.
    Type: Grant
    Filed: April 12, 2018
    Date of Patent: December 31, 2019
    Assignee: Sense Photonics, Inc.
    Inventors: Scott Burroughs, Brent Fisher, James Carter, Russell Kanjorski
  • Patent number: 10483722
    Abstract: A laser array includes a plurality of laser emitters arranged in a plurality of rows and a plurality of columns on a substrate that is non-native to the plurality of laser emitters, and a plurality of driver transistors on the substrate adjacent one or more of the laser diodes. A subset of the plurality of laser emitters includes a string of laser emitters that are connected such that an anode of at least one laser emitter of the subset is connected to a cathode of an adjacent laser emitter of the subset. A driver transistor of the plurality of driver transistors is configured to control a current flowing through the string.
    Type: Grant
    Filed: April 12, 2018
    Date of Patent: November 19, 2019
    Assignee: Sense Photonics, Inc.
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Publication number: 20190310375
    Abstract: A LIDAR system includes an emitter array configured to illuminate a field of view, a detector array configured to image the field of view, and a control circuit. The emitter array includes one or more emitter elements that are configured to emit respective optical signals responsive to respective emitter control signals. The detector array includes one or more detector elements configured to output respective detection signals responsive to light incident thereon. The control circuit is configured to generate the respective emitter control signals based on the respective detection signals and respective spatial correlations of the one or more emitter elements and the one or more detector elements with respect to the field of view. Related devices and methods of operation are also discussed.
    Type: Application
    Filed: April 8, 2019
    Publication date: October 10, 2019
    Inventors: Hod Finkelstein, Scott Burroughs, Russell Kanjorski, Brent Fisher
  • Patent number: 10416425
    Abstract: CPV modules include a back plate having an array of 1 mm2 or smaller solar cells thereon. A backplane interconnect network is also provided on the back plate. This backplane interconnect network operates to electrically connect the array of solar cells together. A front plate, which is spaced-apart from the back plate, is provided. This front plate includes an array of primary lenses thereon that face the array of solar cells. The front plate can be configured to provide a greater than 1000× lens-to-cell light concentration to the array of solar cells. To achieve this 1000× lens-to-cell light concentration, the primary lenses can be configured as plano-convex lenses having a lens sag of less than about 4 mm. An array of secondary optical elements may also be provided, which extend between the array of primary lenses and the array of solar cells.
    Type: Grant
    Filed: February 9, 2010
    Date of Patent: September 17, 2019
    Assignee: X-Celeprint Limited
    Inventors: Etienne Menard, Christopher Bower, Scott Burroughs, Joe Carr, Bob Conner, Sergiy Dets, Bruce Furman, Matthew Meitl, Michael Sullivan
  • Patent number: 10418501
    Abstract: A concentrator-type photovoltaic module includes a plurality of photovoltaic cells having respective surface areas of less than about 4 square millimeters (mm) electrically interconnected in series and/or parallel on a backplane surface, and an array of concentrating optical elements having respective aperture dimensions of less than about 30 mm and respective focal lengths of less than about 50 mm. The array of concentrating optical elements is positioned over the photovoltaic cells based on the respective focal lengths to concentrate incident light on the photovoltaic cells, and is integrated on the backplane surface by at least one spacer structure on the backplane surface. Related devices, operations, and fabrication methods are also discussed.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: September 17, 2019
    Assignee: X-Celeprint Limited
    Inventors: Brent Fisher, Matthew Meitl, Scott Burroughs, Miroslav Samarskiy
  • Publication number: 20190250257
    Abstract: A Light Detection And Ranging (LIDAR) apparatus includes a pulsed light source to emit optical signals, a detector array comprising single-photon detectors to output respective detection signals indicating times of arrival of a plurality of photons incident thereon, and processing circuitry to receive the respective detection signals.
    Type: Application
    Filed: February 12, 2019
    Publication date: August 15, 2019
    Inventors: Hod Finkelstein, Brent Fisher, Scott Burroughs, Russell Kanjorski
  • Publication number: 20180301589
    Abstract: A semiconductor device includes a detector structure. The detector structure includes an integrated circuit on a substrate, and a photo detector on an upper surface of the integrated circuit that is opposite the substrate, where the substrate is non-native to the photo detector. A System-on-Chip apparatus includes at least one laser emitter on a non-native substrate, at least one photo detector on the non-native substrate, and an input/output circuit. The at least one photo detector of the second plurality of photo detectors is disposed on an integrated circuit between the at least one photo detector and the non-native substrate to form a detector structure.
    Type: Application
    Filed: April 12, 2018
    Publication date: October 18, 2018
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Publication number: 20180301865
    Abstract: A laser diode includes a semiconductor structure of a lower Bragg reflector layer, an active region, and an upper Bragg reflector layer. The upper Bragg reflector layer includes a lasing aperture having an optical axis oriented perpendicular to a surface of the active region. The active region includes a first material, and the lower Bragg reflector layer includes a second material, where respective lattice structures of the first and second materials are independent of one another. Related laser arrays and methods of fabrication are also discussed.
    Type: Application
    Filed: April 12, 2018
    Publication date: October 18, 2018
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Publication number: 20180301874
    Abstract: A laser array includes a plurality of laser diodes arranged and electrically connected to one another on a surface of a non-native substrate. Respective laser diodes of the plurality of laser diodes have different orientations relative to one another on the surface of the non-native substrate. The respective laser diodes are configured to provide coherent light emission in different directions, and the laser array is configured to emit an incoherent output beam comprising the coherent light emission from the respective laser diodes. The output beam may include incoherent light having a non-uniform intensity distribution over a field of view of the laser array. Related devices and fabrication methods are also discussed.
    Type: Application
    Filed: April 12, 2018
    Publication date: October 18, 2018
    Inventors: Scott Burroughs, Brent Fisher, James Carter, Russell Kanjorski
  • Publication number: 20180301875
    Abstract: A laser array includes a plurality of laser emitters arranged in a plurality of rows and a plurality of columns on a substrate that is non-native to the plurality of laser emitters, and a plurality of driver transistors on the substrate adjacent one or more of the laser diodes. A subset of the plurality of laser emitters includes a string of laser emitters that are connected such that an anode of at least one laser emitter of the subset is connected to a cathode of an adjacent laser emitter of the subset. A driver transistor of the plurality of driver transistors is configured to control a current flowing through the string.
    Type: Application
    Filed: April 12, 2018
    Publication date: October 18, 2018
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Publication number: 20180301872
    Abstract: A laser diode includes a semiconductor structure having an n-type layer, an active region, and a p-type layer. One of the n-type and p-type layers includes a lasing aperture thereon having an optical axis oriented perpendicular to a surface of the active region between the n-type and p-type layers. First and second contacts are electrically connected to the n-type and p-type layers, respectively. The first and/or second contacts are smaller than the lasing aperture in at least one dimension. Related arrays and methods of fabrication are also discussed.
    Type: Application
    Filed: April 12, 2018
    Publication date: October 18, 2018
    Inventors: Scott Burroughs, Brent Fisher, James Carter
  • Patent number: 10027181
    Abstract: An optical power transfer device includes a transmitter circuit, including a laser light source that is configured to emit coherent light responsive to operation above a lasing threshold, and is configured to emit incoherent light responsive operation below the lasing threshold. A proximity sensor circuit is coupled to the transmitter circuit and is configured to output a detection signal therefrom responsive to authentication of an optical receiver including at least one photovoltaic cell having surface area of about 4 square millimeters or less within a proximity thereof. The transmitter circuit is configured to operate the laser light source below the lasing threshold to emit the incoherent light responsive to an absence of the detection signal from the proximity sensor circuit. Related devices and methods of operation are also discussed.
    Type: Grant
    Filed: September 29, 2016
    Date of Patent: July 17, 2018
    Assignee: X-Celeprint Limited
    Inventors: Brent Fisher, Brian Cox, Matthew Meitl, Scott Burroughs, Joseph Carr
  • Publication number: 20170098729
    Abstract: A concentrator-type photovoltaic module includes a plurality of photovoltaic cells having respective surface areas of less than about 4 square millimeters (mm) electrically interconnected in series and/or parallel on a backplane surface, and an array of concentrating optical elements having respective aperture dimensions of less than about 30 mm and respective focal lengths of less than about 50 mm. The array of concentrating optical elements is positioned over the photovoltaic cells based on the respective focal lengths to concentrate incident light on the photovoltaic cells, and is integrated on the backplane surface by at least one spacer structure on the backplane surface. Related devices, operations, and fabrication methods are also discussed.
    Type: Application
    Filed: September 30, 2016
    Publication date: April 6, 2017
    Inventors: Brent Fisher, Matthew Meitl, Scott Burroughs, Miroslav Samarskiy
  • Publication number: 20170093501
    Abstract: An optical data communication and power converter device includes a receiver circuit comprising an optical receiver. The optical receiver includes a photovoltaic device and a photoconductive device arranged within an area that is configured for illumination by a modulated optical signal emitted from a monochromatic light source of a transmitter circuit. The photovoltaic device is configured to generate electric current responsive to the illumination of the area by the modulated optical signal. The photoconductive device is configured to generate a data signal, distinct from the electric current, responsive to the illumination of the area by the modulated optical signal. A reverse bias voltage may be applied to the photoconductive device by the photovoltaic device, independent of an external voltage source. Related devices and methods of operation are also discussed.
    Type: Application
    Filed: September 29, 2016
    Publication date: March 30, 2017
    Inventors: Matthew Meitl, Scott Burroughs, Brent Fisher, Brian Cox, Joseph Carr
  • Publication number: 20170093228
    Abstract: An optical power transfer device includes a transmitter circuit, including a laser light source that is configured to emit coherent light responsive to operation above a lasing threshold, and is configured to emit incoherent light responsive operation below the lasing threshold. A proximity sensor circuit is coupled to the transmitter circuit and is configured to output a detection signal therefrom responsive to authentication of an optical receiver including at least one photovoltaic cell having surface area of about 4 square millimeters or less within a proximity thereof. The transmitter circuit is configured to operate the laser light source below the lasing threshold to emit the incoherent light responsive to an absence of the detection signal from the proximity sensor circuit. Related devices and methods of operation are also discussed.
    Type: Application
    Filed: September 29, 2016
    Publication date: March 30, 2017
    Inventors: Brent Fisher, Brian Cox, Matthew Meitl, Scott Burroughs, Joseph Carr
  • Publication number: 20170018675
    Abstract: An optical power converter device includes a light source configured to emit monochromatic light, and a multi-junction photovoltaic cell including respective photovoltaic cell layers having different bandgaps and/or thicknesses. The respective photovoltaic cell layers are electrically connected to collectively provide an output voltage and are vertically stacked relative to a surface of the multi-junction photovoltaic cell that is arranged for illumination by the monochromatic light from the light source. Responsive to the illumination of the surface by the monochromatic light from the light source, the respective photovoltaic cell layers are configured to generate respective output photocurrents that are substantially equal. Related devices and methods of operation are also discussed.
    Type: Application
    Filed: September 29, 2016
    Publication date: January 19, 2017
    Inventors: Matthew Meitl, Scott Burroughs, Brent Fisher, Joseph Carr
  • Patent number: 9362113
    Abstract: In a method for fabricating an engineered substrate for semiconductor epitaxy, an array of seed structures is assembled on a surface of the substrate. The seed structures in the array have substantially similar directional orientations of their crystal lattices, and are spatially separated from each other. Semiconductor materials are selectively epitaxially grown on the seed structures, such that a rate of growth of the semiconductor materials on the seed structures is substantially higher than a rate of growth of the semiconductor materials on regions of the surface. The semiconductor materials assume a lattice constant and directional orientation of crystal lattice that are substantially similar or identical to those of the seed structures. Related devices and methods are also discussed.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: June 7, 2016
    Assignee: Semprius, Inc.
    Inventors: Matthew Meitl, Scott Burroughs
  • Publication number: 20150295114
    Abstract: A multi-junction power converter system illuminated by an incident light source includes a multi-layer stack having a plurality of junctions defined by materials having different bandgaps, with an upper junction having a higher bandgap, and junctions therebelow having smaller bandgaps. The upper junction absorbs more of the incident light, whereas lower junctions successively absorb less of the remaining incident light. The junctions below the upper junction are supplied with additional illumination that has been reemitted from previous cells due to photon recycling. Related devices and methods of operation are also discussed.
    Type: Application
    Filed: April 10, 2015
    Publication date: October 15, 2015
    Inventors: Matthew Meitl, Brent Fisher, John Wilson, Scott Burroughs, Steven Seel
  • Publication number: 20150207012
    Abstract: Multi-junction photovoltaic devices and methods for making multi-junction photovoltaic devices are disclosed. The multi-junction photovoltaic devices comprise a first photovoltaic p-n junction structure having a first interface surface, a second photovoltaic p-n junction structure having a second interface surface, and an optional interface layer provided between the first interface surface and the second interface surface, where the photovoltaic p-n junction structures and optional layers are provided in a stacked multilayer geometry. In an embodiment, the optional interface layer comprises a chalcogenide dielectric layer.
    Type: Application
    Filed: January 16, 2015
    Publication date: July 23, 2015
    Inventors: John A. ROGERS, Xing SHENG, Christopher A. BOWER, Matthew MEITL, Scott BURROUGHS