Patents by Inventor Oded ROZENBERG

Oded ROZENBERG 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: 12274096
    Abstract: A flexible photovoltaic (PV) cell having enhanced properties of mechanical impact absorption, includes: a semiconductor wafer that is freestanding and carrier-less; having a thickness, and having a first surface, and a having second surface that is opposite to that first surface; and non-transcending gaps within the semiconductor wafer. Each non-transcending gap penetrates from the first surface towards the second surface, but reaches to a depth of between 50 to 99 percent of the thickness of the semiconductor wafer, and does not reach said second surface. Each non-transcending gap does not entirely penetrate through an entirety of the thickness of the semiconductor wafer. The semiconductor wafer maintains between 1 to 50 percent of the thickness of the semiconductor wafer as an intact and non-penetrated thin layer of semiconductor wafer that remains intact and non-penetrated by the non-transcending gaps.
    Type: Grant
    Filed: April 15, 2024
    Date of Patent: April 8, 2025
    Assignee: SOLARPAINT LTD.
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Publication number: 20250110593
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Application
    Filed: December 13, 2024
    Publication date: April 3, 2025
    Applicant: KAXXA Holdings, Inc.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Patent number: 12204721
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Grant
    Filed: May 11, 2023
    Date of Patent: January 21, 2025
    Assignee: ESW Holdings, Inc.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Publication number: 20240332440
    Abstract: A system includes a rollable photovoltaic awning having an array of flexible and rollable photovoltaic cells that convert incoming light to electricity. The rollable photovoltaic awning is configured to transit between a rolled-out state and a rolled-in state. In the rolled-in state, the rollable photovoltaic awning has a cylindrical form-factor with a diameter that is smaller than 30 centimeters. In the rolled-out state, the rollable photovoltaic awning has a surface area of at least 2 square meters. The rollable photovoltaic awning is structured to withstand at least 1,000 cycles of rolling and unrolling with not more than 15 percent degradation of operational photovoltaic efficiency. A rolling and unrolling unit is configured to deploy the rollable photovoltaic awning by transitioning it from the rolled-in state to the rolled-out state, and also configured to store the rollable photovoltaic awning by transitioning it from the rolled-out state to the rolled-in state.
    Type: Application
    Filed: June 10, 2024
    Publication date: October 3, 2024
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Yaron Tidhar
  • Publication number: 20240304740
    Abstract: A hybrid photovoltaic (PV) device includes: a rigid PV segment, having one or more PV cells that convert light to electricity, wherein the rigid PV segment is non-foldable and non-bendable; and a co-located flexible PV segment, wherein the flexible PV segment is foldable or bendable without being damaged; electric connectors, that connect between (i) electric current or voltage generated by the rigid PV segment, and (ii) electric current or voltage generated by the flexible PV segment; a unified encapsulation layer, encapsulating together both the rigid PV segment and the co-located flexible PV segment. The rigid PV segment, the co-located flexible PV segment, the electric connectors, and the unified encapsulation layer, form together the hybrid PV device as a single stand-alone PV device that converts light to electricity, and has at least one rigid region corresponding to the rigid PV segment and at least one flexible region corresponding to the co-located flexible PV segment.
    Type: Application
    Filed: May 15, 2024
    Publication date: September 12, 2024
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg
  • Publication number: 20240282874
    Abstract: A flexible photovoltaic (PV) cell having enhanced properties of mechanical impact absorption, includes: a semiconductor wafer that is freestanding and carrier-less; having a thickness, and having a first surface, and a having second surface that is opposite to that first surface; and non-transcending gaps within the semiconductor wafer. Each non-transcending gap penetrates from the first surface towards the second surface, but reaches to a depth of between 50 to 99 percent of the thickness of the semiconductor wafer, and does not reach said second surface. Each non-transcending gap does not entirely penetrate through an entirety of the thickness of the semiconductor wafer. The semiconductor wafer maintains between 1 to 50 percent of the thickness of the semiconductor wafer as an intact and non-penetrated thin layer of semiconductor wafer that remains intact and non-penetrated by the non-transcending gaps.
    Type: Application
    Filed: April 15, 2024
    Publication date: August 22, 2024
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Patent number: 11978815
    Abstract: A flexible photovoltaic (PV) cell having enhanced properties of mechanical impact absorption, includes: a semiconductor wafer that is freestanding and carrier-less; having a thickness, and having a first surface, and a having second surface that is opposite to that first surface; a set of non-transcending gaps within the semiconductor wafer. Each non-transcending gap penetrates from the first surface towards the second surface but reaches to a depth of between 80 to 99 percent of the thickness of the semiconductor wafer, and does not reach said second surface. Each non-transcending gap does not entirely penetrate through an entirety of the thickness of the semiconductor wafer. The semiconductor wafer maintains at least 1 percent of the thickness of the semiconductor wafer as an intact and non-penetrated thin layer of semiconductor wafer that remains intact and non-penetrated by the non-transcending gaps. The intact and non-penetrated thin layer of semiconductor wafer absorbs and dissipates mechanical forces.
    Type: Grant
    Filed: June 22, 2021
    Date of Patent: May 7, 2024
    Assignee: SOLARPAINT LTD.
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Publication number: 20230280861
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Application
    Filed: May 11, 2023
    Publication date: September 7, 2023
    Applicant: ESW Holdings, Inc.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Publication number: 20230261126
    Abstract: A flexible and mechanically-resilient Photovoltaic (PV) cell is formed of a single semiconductor wafer. It includes non-transcending craters or bling gaps, that penetrate upwardly from a dark-side surface towards a sunny-side surface but do not reach the sunny-side surface. The craters segment the wafer into miniature sub-regions, and provide mechanical resilience and mechanical shock absorption. A set of conducting wires are located on each side of the PV cell; one set collects the negative electric charge, and the other set collects the positive electric charge. The conducting wires are embedded in an adhesive transparent flexible plastic foil. Optionally, a bi-facial PV cell is similarly provided, as well as methods and systems for producing such PV cells.
    Type: Application
    Filed: April 2, 2023
    Publication date: August 17, 2023
    Inventors: Eran Maimon, Ramon Albalak, Oded Rozenberg, Yaron Tidhar, Hod Yarkoni
  • Patent number: 11669206
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Grant
    Filed: June 23, 2022
    Date of Patent: June 6, 2023
    Assignee: ESW Holdings, Inc.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Publication number: 20230006082
    Abstract: A hybrid photovoltaic (PV) device includes: a rigid PV segment, having one or more PV cells that convert light to electricity, wherein the rigid PV segment is non-foldable and non-bendable; a co-located flexible PV segment, wherein the flexible PV segment is foldable or bendable without being damaged; electric connectors, that connect between (i) electric current or voltage generated by the rigid PV segment, and (ii) electric current or voltage generated by the flexible PV segment; a unified encapsulation layer, encapsulating together both the rigid PV segment and the co-located flexible PV segment. The rigid PV segment, the co-located flexible PV segment, the electric connectors, and the unified encapsulation layer, form together the hybrid PV device as a single stand-alone PV device that converts light to electricity, and has at least one rigid region corresponding to the rigid PV segment and at least one flexible region corresponding to the co-located flexible PV segment.
    Type: Application
    Filed: February 25, 2021
    Publication date: January 5, 2023
    Inventors: Eran MAIMON, Ramon Joseph ALBALAK, Oded ROZENBERG
  • Publication number: 20220350439
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Application
    Filed: June 23, 2022
    Publication date: November 3, 2022
    Applicant: ESW HOLDINGS, INC.
    Inventors: Amit GROSS, Oded ROZENBERG, Moshe LIPSKER
  • Patent number: 11397491
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Grant
    Filed: May 10, 2021
    Date of Patent: July 26, 2022
    Assignee: ESW HOLDINGS, INC.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Publication number: 20210313478
    Abstract: A flexible photovoltaic (PV) cell having enhanced properties of mechanical impact absorption, includes: a semiconductor wafer that is freestanding and carrier-less; having a thickness, and having a first surface, and a having second surface that is opposite to that first surface; a set of non-transcending gaps within the semiconductor wafer. Each non-transcending gap penetrates from the first surface towards the second surface but reaches to a depth of between 80 to 99 percent of the thickness of the semiconductor wafer, and does not reach said second surface. Each non-transcending gap does not entirely penetrate through an entirety of the thickness of the semiconductor wafer. The semiconductor wafer maintains at least 1 percent of the thickness of the semiconductor wafer as an intact and non-penetrated thin layer of semiconductor wafer that remains intact and non-penetrated by the non-transcending gaps. The intact and non-penetrated thin layer of semiconductor wafer absorbs and dissipates mechanical forces.
    Type: Application
    Filed: June 22, 2021
    Publication date: October 7, 2021
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Publication number: 20210263611
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Application
    Filed: May 10, 2021
    Publication date: August 26, 2021
    Applicant: ESW HOLDINGS, INC.
    Inventors: Amit GROSS, Oded ROZENBERG, Moshe LIPSKER
  • Patent number: 11081606
    Abstract: Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit toughened physical characteristics making them more suitable for use in mechanically challenging or stressful environments. Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit toughened thermal characteristics making them more suitable for use in environmentally challenging applications. Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit sufficiently toughened characteristics and increase impact resistance to permit packaging in non-rigid and light weight encapsulating layer(s). Semiconductor substrates and semiconductor devices produced from such substrates may exhibit sufficient flexibility to permit for rolling up during shipment and or for non-destructive deformation during deployment over uneven surfaces.
    Type: Grant
    Filed: March 24, 2019
    Date of Patent: August 3, 2021
    Assignee: SOLARPAINT LTD.
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Patent number: 11029781
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Grant
    Filed: December 24, 2019
    Date of Patent: June 8, 2021
    Assignee: ESW HOLDINGS, INC.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker
  • Publication number: 20200212238
    Abstract: Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit toughened physical characteristics making them more suitable for use in mechanically challenging or stressful environments. Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit toughened thermal characteristics making them more suitable for use in environmentally challenging applications. Semiconductor substrates and semiconductor devices produced from such substrates, such as photovoltaic (PV) cells, may exhibit sufficiently toughened characteristics and increase impact resistance to permit packaging in non-rigid and light weight encapsulating layer(s). Semiconductor substrates and semiconductor devices produced from such substrates may exhibit sufficient flexibility to permit for rolling up during shipment and or for non-destructive deformation during deployment over uneven surfaces.
    Type: Application
    Filed: March 24, 2019
    Publication date: July 2, 2020
    Inventors: Eran Maimon, Ramon Joseph Albalak, Oded Rozenberg, Esther Westreich
  • Publication number: 20200133430
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Application
    Filed: December 24, 2019
    Publication date: April 30, 2020
    Applicant: ESW HOLDINGS, INC.
    Inventors: Amit GROSS, Oded ROZENBERG, Moshe LIPSKER
  • Patent number: 10551970
    Abstract: A method and system for detecting imperfections on a surface of a touchscreen of an electrical device, comprising: swiping a test object, such as a fingertip, a fingernail or a pin, along at least a portion of the touchscreen; producing, by the touchscreen, an electric signal indicative of the test object's contact with the touchscreen; receiving an acoustic signal by an acoustic sensor, during the swipe of the test object along the touchscreen; analyzing, by a processor, at least one of the electric signal and received acoustic signal; and determining existence of imperfections on the touchscreen's surface based on the analysis.
    Type: Grant
    Filed: January 11, 2018
    Date of Patent: February 4, 2020
    Assignee: ESW Holdings, Inc.
    Inventors: Amit Gross, Oded Rozenberg, Moshe Lipsker