Patents by Inventor Paul A. Morgan

Paul A. Morgan 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: 9040808
    Abstract: The present invention is that of a solar energy system that uses a light-guide solar panel (LGSP) to trap light inside a dielectric or other transparent panel and propagates the light to one of the panel edges for harvesting by a solar energy collector such as a photovoltaic cell. This allows for very thin modules whose thickness is comparable to the height of the solar energy collector. This eliminates eliminating the depth requirements inherent in traditional concentrated photovoltaic solar energy systems. A light guide solar panel has a deflecting layer, a light guide layer and a solar cell in optical communication with the light guide layer. The deflecting layer receives light at a first surface and inputs the light into the light guide layer. The light guide layer propagates the light to the solar cell, which is aligned generally parallel to the input surface.
    Type: Grant
    Filed: February 12, 2010
    Date of Patent: May 26, 2015
    Assignee: MORGAN SOLAR INC.
    Inventors: John Paul Morgan, Philip M. Chang, Stefan H. S. Myrskog
  • Patent number: 9005473
    Abstract: A method of removing at least a portion of a silicon oxide material is disclosed. The silicon oxide is removed by exposing a semiconductor structure comprising a substrate and the silicon oxide to an ammonium fluoride chemical treatment and a subsequent plasma treatment, both of which may be effected in the same vacuum chamber of a processing apparatus. The ammonium fluoride chemical treatment converts the silicon oxide to a solid reaction product in a self-limiting reaction, the solid reaction product then being volatilized by the plasma treatment. The plasma treatment includes a plasma having an ion bombardment energy of less than or equal to approximately 20 eV. An ammonium fluoride chemical treatment including an alkylated ammonia derivative and hydrogen fluoride is also disclosed.
    Type: Grant
    Filed: August 9, 2012
    Date of Patent: April 14, 2015
    Assignee: Micron Technology, Inc.
    Inventors: Mark W. Kiehlbauch, J. Neil Greeley, Paul A. Morgan
  • Publication number: 20150083899
    Abstract: Light panels, and methods of providing the light panels, are described. The described light panels are substantially transparent and can operate as an illumination device or as a solar panel. An example light panel includes a first optic layer for transmitting light; a second optic layer with a reflective surface configured for one of directing light from the first optic layer and directing light to the first optic layer; and a receiving assembly disposed between the first optic layer and the second optic layer. The receiving assembly includes a first receiving layer adjacent to the first optic layer; a second receiving layer adjacent to the second optic layer and separated from the first receiving layer; and a light device coupled to the first receiving layer. The light device can be configured to receive light from the reflective surface or to provide light to the reflective surface.
    Type: Application
    Filed: March 4, 2014
    Publication date: March 26, 2015
    Inventors: John Paul Morgan, Stefan Myrskog, Brett Barnes, Michael Sinclair, Nigel Morris
  • Patent number: 8981201
    Abstract: A frame for mounting a plurality of solar tracking units is provided. The frame comprises a plurality of leg assemblies interconnected by trusses to provide a stable structure that is ballasted by the frame's own weight, rather than relying on external ballast such as concrete blocks. Each leg assembly is provided with a shaft with a mounting end for mounting a solar tracking unit. Each solar tracking unit includes an armature assembly and at least one motor for controlling the orientation and position of a solar panel mounted thereon. Solar tracking assemblies, each comprising the frame and plurality of solar tracking units, can be assembled in an array using connectors spacing the assemblies, thus providing enhanced stability. Each of the assemblies can be provided with a local control unit for controlling each individual solar tracking unit, and a global control unit may be used to control the local control units.
    Type: Grant
    Filed: August 8, 2013
    Date of Patent: March 17, 2015
    Assignee: Morgan Solar Inc.
    Inventors: Michael Sinclair, John Paul Morgan, Philip M. Chang, Dhanushan Balachandreswaran, Abdelkader Chellabi, Porter Arbogast, Richard Iannello
  • Publication number: 20150021744
    Abstract: A method for patterning a layer increases the density of features formed over an initial patterning layer using a series of self-aligned spacers. A layer to be etched is provided, then an initial sacrificial patterning layer, for example formed using optical lithography, is formed over the layer to be etched. Depending on the embodiment, the patterning layer may be trimmed, then a series of spacer layers formed and etched. The number of spacer layers and their target dimensions depends on the desired increase in feature density. An in-process semiconductor device and electronic system is also described.
    Type: Application
    Filed: October 6, 2014
    Publication date: January 22, 2015
    Inventors: Baosuo Zhou, Mirzafer K. Abatchev, Ardavan Niroomand, Paul A. Morgan, Shuang Meng, Joseph Neil Greely, Brian J. Coppa
  • Publication number: 20150005296
    Abstract: Certain substituted urea derivatives selectively modulate the cardiac sarcomere, for example by potentiating cardiac myosin, and are useful in the treatment of systolic heart failure including congestive heart failure.
    Type: Application
    Filed: September 18, 2014
    Publication date: January 1, 2015
    Inventors: Bradley Paul Morgan, Alex Muci, Pu-Ping Lu, Erica Anne Kraynack, Todd Tochimoto, David J. Morgans, JR.
  • Patent number: 8914330
    Abstract: A mechanism is provided that aggregates data in a way that permits data to be deleted efficiently, while minimizing the overhead necessary to support bulk deletion of data. A request is received for automatic deletion of segments in a container and a waterline is determined for the container. A determination is made if at least one segment in the container falls below the waterline. Finally, in response to one segment falling below the waterline, the segment from the container is deleted. Each object has an associated creation time, initial retention value, and retention decay curve (also known as a retention curve). At any point, based on these values and the current time, the object's current retention value may be computed. The container system continually maintains a time-varying waterline: at any point, objects with a retention value below the waterline may be deleted.
    Type: Grant
    Filed: June 20, 2005
    Date of Patent: December 16, 2014
    Assignee: International Business Machines Corporation
    Inventors: Edward Gustav Chron, Frederick Douglis, Stephen Paul Morgan
  • Patent number: 8885995
    Abstract: A light-guide solar concentrator that requires less precision to assemble and manufacture than some other two-layer solar concentrators has a light-condensing layer and an optical waveguide layer. The light-condensing layer includes a plurality of focusing elements for focusing incident sunlight and a plurality of corresponding collimating elements for collimating the light for output to the optical waveguide layer. The optical waveguide layer receives the collimated light and has a plurality of deflectors for redirecting the light for lateral transmission through the optical waveguide layer toward an exit surface. A secondary optic optically coupled to the exit surface can also be provided to redirect the light toward a light collection area where a solar energy collector can be placed to harvest the concentrated sunlight.
    Type: Grant
    Filed: February 6, 2012
    Date of Patent: November 11, 2014
    Assignee: Morgan Solar Inc.
    Inventor: John Paul Morgan
  • Publication number: 20140319377
    Abstract: A solar concentrator comprising: a light-transmissive sheet including: a plurality of luminescent particles capable of becoming excited by absorbing light within at least a first spectrum of absorption frequencies and, once excited, capable of being stimulated to emit light having a spectrum within at least a first spectrum of emission frequencies; and a first light-guide; and a light source for generating a pulsed probe light having a spectrum, at least a portion of which is within at least the first spectrum of emission frequencies, for stimulating at least one of the excited luminescent particles having absorbed light within the first spectrum of absorption frequencies such that when the probe light traveling in a first direction of travel stimulates the excited luminescent, the excited luminescent particles emit emitted light having a spectrum within the first spectrum of emission frequencies in the first direction of travel of the probe light.
    Type: Application
    Filed: February 6, 2014
    Publication date: October 30, 2014
    Applicant: MORGAN SOLAR INC.
    Inventors: John Paul MORGAN, Pascal DUFOUR
  • Patent number: 8871769
    Abstract: Certain substituted urea derivatives selectively modulate the cardiac sarcomere, for example by potentiating cardiac myosin, and are useful in the treatment of systolic heart failure including congestive heart failure.
    Type: Grant
    Filed: July 19, 2013
    Date of Patent: October 28, 2014
    Assignee: Cytokinetics, Inc.
    Inventors: Bradley Paul Morgan, Alex Muci, Pu-Ping Lu, Erica Anne Kraynack, Todd Tochimoto, David J. Morgans
  • Patent number: 8852851
    Abstract: A method for patterning a layer increases the density of features formed over an initial patterning layer using a series of self-aligned spacers. A layer to be etched is provided, then an initial sacrificial patterning layer, for example formed using optical lithography, is formed over the layer to be etched. Depending on the embodiment, the patterning layer may be trimmed, then a series of spacer layers formed and etched. The number of spacer layers and their target dimensions depends on the desired increase in feature density. An in-process semiconductor device and electronic system is also described.
    Type: Grant
    Filed: July 10, 2006
    Date of Patent: October 7, 2014
    Assignee: Micron Technology, Inc.
    Inventors: Baosuo Zhou, Mirzafer K. Abatchev, Ardavan Niroomand, Paul A. Morgan, Shuang Meng, Joseph N. Greeley, Brian J. Coppa
  • Publication number: 20140286017
    Abstract: Illumination panel comprises: (1) a receiver substrate assembly including: (a) a rigid sheet of light transmissive material having a first surface, a second surface opposite the first surface, and a conductor pattern attached to the first surface; and (b) at least one receiver assembly affixed to the rigid sheet, each receiver assembly including a light source in electrical communication with the conductor pattern; and (2) at least one light-guide optic attached to and supported by the receiver substrate assembly, each light-guide optic in optical communication with the photovoltaic cell of an associated one of the at least one receiver assembly for guiding light for output via the rigid sheet.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 25, 2014
    Applicant: MORGAN SOLAR INC.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR, Stefan MYRSKOG, Brett BARNES, Philip CHANG, Stephen CAELERS
  • Publication number: 20140283895
    Abstract: Concentrated photovoltaic panel comprises: (1) a receiver substrate assembly including: (a) a rigid sheet of light transmissive material having a first surface, a second surface opposite the first surface, and a conductor pattern attached to the first surface; and (b) at least one receiver assembly affixed to the rigid sheet, each receiver assembly including a photovoltaic cell in electrical communication with the conductor pattern; and (2) at least one light-guide optic attached to and supported by the receiver substrate assembly, each light-guide optic in optical communication with the photovoltaic cell of an associated one of the at least one receiver assembly for guiding light received via the receiver substrate assembly toward said photovoltaic cell.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 25, 2014
    Applicant: MORGAN SOLAR INC.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR, Stefan MYRSKOG, Brett BARNES, Philip CHANG, Stephen CAELERS
  • Publication number: 20140268871
    Abstract: Optics are provided for use in illumination devices the optics having a light guide, a redirecting layer including a plurality of lenses, and a plurality of reflector elements. Light from a light source enters the light guide and is guided therein until it escapes into a reflector element, which reflects at least some of the light received by the reflector element toward a corresponding lens for emission from the illumination device.
    Type: Application
    Filed: March 14, 2014
    Publication date: September 18, 2014
    Applicant: Morgan Solar Inc.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR
  • Publication number: 20140261683
    Abstract: Optics are provided for use in solar concentrators, the optics having a light guide, a redirecting layer including a plurality of lenses, and a plurality of reflector elements. Sunlight is received by the redirecting lenses, which focus the sunlight onto reflective surfaces of the reflector elements. The reflective surface of each reflector element redirects the light into the light guide, which guides the light toward a solar energy collector, such as a photovoltaic cell. The light from the light guide may be directed onto the solar energy collector by a light conditioning element.
    Type: Application
    Filed: March 14, 2014
    Publication date: September 18, 2014
    Applicant: Morgan Solar Inc.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR
  • Publication number: 20140261630
    Abstract: A photovoltaic system comprising a first photovoltaic panel configured to collect direct light; and a second photovoltaic panel configured to collect, at least, indirect light transmitted through the one or more first photovoltaic panels.
    Type: Application
    Filed: March 17, 2014
    Publication date: September 18, 2014
    Inventor: John Paul Morgan
  • Publication number: 20140268758
    Abstract: Device for providing comprising: A panel having rigid layer having a patterned electrical circuit thereon. An array of illuminating units, each unit being formed by at least one rigid element and a portion of the rigid layer; and including: a rigid optical dispersing element, a light source sandwiched within the panel for generating light from electrical energy, and an electrical conductor. The electrical conductor being the primary heat sink for the light source, the light source being primarily cooled via conduction. The electrical conductor and the optical dispersing element being dimensioned and arranged within the unit such that the electrical conductor does not materially impede transmission of light generated by the light source to the outside of the device. The electrical conductor transmitting electrical and thermal energy received from the light source away from the unit.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 18, 2014
    Applicant: MORGAN SOLAR INC.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR, Stefan MYRSKOG, Brett BARNES, Philip CHANG, Stephen CAELERS
  • Publication number: 20140261625
    Abstract: A concentrated photovoltaic panel comprises at least one rigid sheet, one or more first optical elements disposed adjacent a first side of the at least one rigid sheet, one or more second optical elements disposed adjacent a second side of the at least one rigid sheet, and one or more photovoltaic elements. Each photovoltaic element is disposed between a respective first optical element and a respective second optical element. Each first optical element comprises at least one lens configured to focus light impinging thereon onto a corresponding reflecting surface of the respective second optical element. Each second optical element is configured to reflect light focused by the first optical element to the photovoltaic element disposed therebetween.
    Type: Application
    Filed: March 4, 2014
    Publication date: September 18, 2014
    Inventors: John Paul Morgan, Stefan Myrskog, Brett Barnes, Michael Sinclair, Nigel Morris
  • Publication number: 20140261631
    Abstract: Device for concentrating and harvesting sunlight comprising: A panel having rigid layer having a patterned electrical circuit thereon. An array of sunlight concentrating and harvesting units, each unit being formed by at least one rigid element and a portion of the rigid layer; and including: a rigid optical concentrating element, a photovoltaic cell sandwiched within the panel for converting sunlight into electrical energy, and an electrical conductor. The electrical conductor being the primary heat sink for the photovoltaic cell, the photovoltaic cell being primarily cooled via conduction. The electrical conductor and the optical concentrating element being dimensioned and arranged within the unit such that the electrical conductor does not materially impede transmission of sunlight to the photovoltaic cell. The electrical conductor transmitting electrical and thermal energy received from the photovoltaic cell away from the unit.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 18, 2014
    Applicant: MORGAN SOLAR INC.
    Inventors: John Paul MORGAN, Michael SINCLAIR, Nigel MORRIS, Pascal DUFOUR, Stefan MYRSKOG, Brett BARNES, Philip CHANG, Stephen CAELERS
  • Patent number: 8809198
    Abstract: A method for selectively removing nano-crystals on an insulating layer. The method includes providing an insulating layer with nano-crystals thereon; exposing the nano-crystals to a high density plasma comprising a source of free radical chlorine, ionic chlorine, or both to modify the nano-crystals; and removing the modified nano-crystals with a wet etchant.
    Type: Grant
    Filed: December 30, 2009
    Date of Patent: August 19, 2014
    Assignee: Micron Technology, Inc.
    Inventors: Ramakanth Alapati, Paul Morgan, Max Hineman