Patents by Inventor Roger D. Isaac

Roger D. Isaac 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: 11427097
    Abstract: Embodiments discussed herein refer to electric vehicle charging ports having integrated contactless communication units (CCUs). The electric vehicle charging ports include male and female connector assemblies that can be coupled together in a manner that enables consistent and reliable operation of contactless communications and power transfer. The connector integrates power and alignment such that when two connector assemblies are coupled together, power connections are made in combination with establishing contactless communications links between counterpart CCUs in both connector assemblies. The fixed alignment of the connector assemblies ensures that contactless communication channels, spanning between the connector assemblies, are aligned to enable consistent and reliable operation of contactless communications.
    Type: Grant
    Filed: September 30, 2019
    Date of Patent: August 30, 2022
    Assignee: Molex, LLC
    Inventors: Roger D. Isaac, Alan Besel
  • Patent number: 11418630
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for managing and establishing contactless communications lanes between two contactlessly coupled systems. A contactless communication lane can be formed for each coupled pair of contactless communication units existing in the two systems. A contactless communications interface can enable software-defined connectivity that manages use of the contactless communication data lanes to enable data communications according to a selected one of a plurality of communications interfaces. The contactless communications interface may serve as a protocol translator and virtualization layer for enabling higher level software such as an operating system of a first system to communicate with a second system without requiring interface protocol specific hardware and software. This advantageously simplifies hardware and software components needed to simultaneously service a multitude of interface protocols.
    Type: Grant
    Filed: August 13, 2020
    Date of Patent: August 16, 2022
    Assignee: Molex, LLC
    Inventors: Roger D. Isaac, Srikanth Gondi
  • Publication number: 20210194998
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for managing and establishing contactless communications lanes between two contactlessly coupled systems. A contactless communication lane can be formed for each coupled pair of contactless communication units existing in the two systems. A contactless communications interface can enable software-defined connectivity that manages use of the contactless communication data lanes to enable data communications according to a selected one of a plurality of communications interfaces. The contactless communications interface may serve as a protocol translator and virtualization layer for enabling higher level software such as an operating system of a first system to communicate with a second system without requiring interface protocol specific hardware and software. This advantageously simplifies hardware and software components needed to simultaneously service a multitude of interface protocols.
    Type: Application
    Filed: August 13, 2020
    Publication date: June 24, 2021
    Inventors: Roger D. Isaac, Srikanth Gondi
  • Patent number: 11044070
    Abstract: Methods, systems, and apparatus for EM communications. One of the methods includes determining, at a first device, that a second device is present; initiating a half duplex communication with the second device; configuring communication with the second device including determining whether full duplex communication is available; in response to a determination that full duplex communication is not available, communicating with the second device in half duplex mode; and in response to a determination that full duplex communication is available, communication with the second device in full duplex mode.
    Type: Grant
    Filed: February 15, 2019
    Date of Patent: June 22, 2021
    Assignee: Keyssa Systems, Inc.
    Inventors: Edward T. Pak, Roger D. Isaac
  • Patent number: 11013057
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for establishing EHF contactless communications links. The EHF contactless communication link may serve as an alternative to conventional board-to-board and device-to-device connectors. The link may be a low-latency protocol-transparent communication link capable of supporting a range of data rates. The link may be established through a close proximity coupling between devices, each including at least one EHF communication unit. Each EHF unit involved in establishing an EHF communication link may progress through a series of steps before data can be transferred between the devices. These steps may be controlled by one or more state machines that are being implemented in each EHF communication unit.
    Type: Grant
    Filed: June 7, 2019
    Date of Patent: May 18, 2021
    Assignee: KEYSSA, INC.
    Inventors: Ian A. Kyles, Kenneth R. Kveton, Michael A. Bourdess, John Wolcott, Steve Novak, Roger D. Isaac, Gary D. McCormack
  • Patent number: 10903875
    Abstract: A Physical Layer (PHY) of a host system of an electronic device may be implemented as a contactless PHY (cPHY) for extremely high frequency (EHF) contactless communication and the operation of EHF transmitters (TX), receivers (RX) and transceivers (EHF-XCVR) in an extremely high frequency integrated circuit (EHF IC) of the electronic device. The Host-cPHY translates logical communications requests from the Link Layer (LINK) into hardware-specific operations to affect transmission or reception of signals over an EHF contactless link. The Link Layer (LINK) may also be optimized as a contactless Link Layer (cLINK) for EHF contactless communication. A virtualized contactless Physical Layer (VcPHY) may comprise a contactless Physical Layer (Host-cPHY), and a contactless Link Layer (cLINK) for coupling a conventional Link Layer (LINK) with the contactless Physical Layer (Host-cPHY). Multiple data streams may be transported over the EHF contactless link over a range of frequencies.
    Type: Grant
    Filed: July 24, 2019
    Date of Patent: January 26, 2021
    Assignee: KEYSSA, INC.
    Inventors: Gary D. McCormack, Ian A. Kyles, Roger D. Isaac
  • Patent number: 10771593
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for managing and establishing contactless communications lanes between two contactlessly coupled systems. A contactless communication lane can be formed for each coupled pair of contactless communication units existing in the two systems. A contactless communications interface can enable software-defined connectivity that manages use of the contactless communication data lanes to enable data communications according to a selected one of a plurality of communications interfaces. The contactless communications interface may serve as a protocol translator and virtualization layer for enabling higher level software such as an operating system of a first system to communicate with a second system without requiring interface protocol specific hardware and software. This advantageously simplifies hardware and software components needed to simultaneously service a multitude of interface protocols.
    Type: Grant
    Filed: June 5, 2018
    Date of Patent: September 8, 2020
    Assignee: KEYSSA SYSTEMS, INC.
    Inventors: Roger D. Isaac, Srikanth Gondi
  • Patent number: 10772192
    Abstract: The present disclosure relates to extremely high frequency (“EHF”) systems and methods for the use thereof, and more particularly to board-to-board connections using contactless connectors.
    Type: Grant
    Filed: May 3, 2016
    Date of Patent: September 8, 2020
    Assignee: KEYSSA SYSTEMS, INC.
    Inventors: Roger D. Isaac, Mostafa Naguib Abdulla
  • Patent number: 10764421
    Abstract: An adapter may facilitate easy and swift data transfer amongst two previously incompatible electronic devices. Such an adapter may be operative to communicate data with a first of the two electronic devices using a contactless communication link and a first communication protocol and to communicate data with a second of the two electronic devices using a mechanical communication link and/or using a second communication protocol that is different than the first communication protocol, such that data may be transferred between the first and second electronic devices via the adapter. The adapter may be communicatively coupled to both the first electronic device and the second electronic device at the same time. The adapter may rapidly transition between communicating data with the first device and communicating data with the second device (e.g., without altering a physical connection between the adapter and one of the first and second devices during such a transition).
    Type: Grant
    Filed: August 5, 2019
    Date of Patent: September 1, 2020
    Assignee: KEYSSA SYSTEMS, INC.
    Inventors: Nicholas A. Antonopoulos, Roger D. Isaac, Mariel van Tatenhove
  • Patent number: 10635149
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for conforming to power up sequencing rules of a conventional hard-wired data connection even though the hard-wired data connection that would ordinarily exist between two data controllers has been replaced with one or more contactless connectors. A consequence of replacing the hard-wired connection with a contactless connector is that the data controllers no longer directly control the power sequencing between the controllers because they are not able to directly communicate with each other over the hard-wired data connections. Power sequence assist circuitry may be used to assists the data controllers in establishing a link in accordance with the power sequencing rules of a particular wired interface despite the intentionally broken hard-wired data connection between the two controllers by instructing the contactless connectors to communicate with their respective data controllers in compliance with the power sequencing rules.
    Type: Grant
    Filed: February 27, 2018
    Date of Patent: April 28, 2020
    Assignee: KEYSSA SYSTEMS, INC.
    Inventors: Roger D. Isaac, Hoo Kim, Alan T. Ruberg, Sunderraj V. Palaniraj
  • Patent number: 10614671
    Abstract: At a high-level, method to enable viewers of online or televised gaming tournaments to actively participate in the tournament through monetary or other means.
    Type: Grant
    Filed: July 9, 2018
    Date of Patent: April 7, 2020
    Inventor: Roger D. Isaac
  • Patent number: 10601470
    Abstract: Data may be transferred from a communication subsystem of a first device to a communication subsystem of a second device contactlessly, at high speed, and without intervention by host processors of either device. Devices may be programmed or personalized at the factory or warehouse, and may personalized at a warehouse or at a point of sale while in the box. Various modes of operation and use scenarios are described. Portions of the devices themselves, or a transmission path between the devices may be shielded against snooping by a material which degrades an EHF signal passing therethrough.
    Type: Grant
    Filed: April 30, 2018
    Date of Patent: March 24, 2020
    Assignee: KEYSSA, INC.
    Inventors: Gary D. McCormack, Roger D. Isaac
  • Patent number: 10592461
    Abstract: EHF communication systems described herein can selectively implement any one of the USB standards by mapping appropriate USB signal conditions over an EHF contactless communication link. The EHF contactless communication link may serve as an alternative to conventional board-to-board and device-to-device connectors, and as such enables wired connection USB signaling protocols to be used in a non-wired environment provided by the EHF contactless communications link. Use of a USB protocol over the EHF communications link can be accomplished by establishing the EHF link between counterpart EHF communication units, and then by establishing the appropriate USB protocol over the link.
    Type: Grant
    Filed: March 5, 2018
    Date of Patent: March 17, 2020
    Assignee: KEYSSA, INC.
    Inventors: Roger D. Isaac, Ian A. Kyles, Steve Novak, Srikanth Gondi, Sunderraj V. Palaniraj, Sridhar Subramanian
  • Patent number: 10588002
    Abstract: “Smart” connectors with embedded processors, measurement circuits and control circuits are disclosed for establishing a “contactless” radio frequency (RF) electromagnetic (EM) Extremely High Frequency (EHF) communications link between two electronic devices having host systems. The connectors are capable of monitoring, controlling, and directing (managing) link operation to dynamically adapt to conditions, as well as monitoring and altering (or modifying) data passing through the connector, and selecting a protocol suitable for a communications session. The connectors are capable of identifying the type of content being transferred, providing authentication and security services, and enabling application support for the host systems based on the type of connection or the type of content. The connectors may operate independently of the host systems, and may perform at least one of sensing proximity of a nearby object; detecting a shape of a nearby object; and detecting vibrations.
    Type: Grant
    Filed: April 23, 2018
    Date of Patent: March 10, 2020
    Assignee: KEYSSA, INC.
    Inventors: Gary D. McCormack, Ian A. Kyles, Roger D. Isaac
  • Patent number: 10581489
    Abstract: A Physical Layer (PHY) of a host system of an electronic device may be implemented as a contactless PHY (Host-cPHY) for extremely high frequency (EHF) contactless communication and the operation of EHF transmitters (TX), receivers (RX) and transceivers (EHF-XCVR) in an extremely high frequency integrated circuit (EHF IC) of the electronic device. The Host-cPHY translates logical communications requests from the Link Layer (LINK) into hardware-specific operations to affect transmission or reception of signals over an EHF contactless link). The Link Layer (LINK) may also be optimized as a contactless Link Layer (cLINK) for EHF contactless communication. Multiple data streams may be transported over the EHF contactless link over a range of frequencies.
    Type: Grant
    Filed: March 26, 2018
    Date of Patent: March 3, 2020
    Assignee: KEYSSA, INC.
    Inventors: Gary D. McCormack, Ian A. Kyles, Roger D. Isaac
  • Publication number: 20200044493
    Abstract: Embodiments discussed herein refer to electric vehicle charging ports having integrated contactless communication units (CCUs). The electric vehicle charging ports include male and female connector assemblies that can be coupled together in a manner that enables consistent and reliable operation of contactless communications and power transfer. The connector integrates power and alignment such that when two connector assemblies are coupled together, power connections are made in combination with establishing contactless communications links between counterpart CCUs in both connector assemblies. The fixed alignment of the connector assemblies ensures that contactless communication channels, spanning between the connector assemblies, are aligned to enable consistent and reliable operation of contactless communications.
    Type: Application
    Filed: September 30, 2019
    Publication date: February 6, 2020
    Inventors: Roger D. Isaac, Alan Besel
  • Publication number: 20200014788
    Abstract: An adapter may facilitate easy and swift data transfer amongst two previously incompatible electronic devices. Such an adapter may be operative to communicate data with a first of the two electronic devices using a contactless communication link and a first communication protocol and to communicate data with a second of the two electronic devices using a mechanical communication link and/or using a second communication protocol that is different than the first communication protocol, such that data may be transferred between the first and second electronic devices via the adapter. The adapter may be communicatively coupled to both the first electronic device and the second electronic device at the same time. The adapter may rapidly transition between communicating data with the first device and communicating data with the second device (e.g., without altering a physical connection between the adapter and one of the first and second devices during such a transition).
    Type: Application
    Filed: August 5, 2019
    Publication date: January 9, 2020
    Inventors: Nicholas A. Antonopoulos, Roger D. Isaac, Mariel van Tatenhove
  • Publication number: 20190372624
    Abstract: A Physical Layer (PHY) of a host system of an electronic device may be implemented as a contactless PHY (cPHY) for extremely high frequency (EHF) contactless communication and the operation of EHF transmitters (TX), receivers (RX) and transceivers (EHF-XCVR) in an extremely high frequency integrated circuit (EHF IC) of the electronic device. The Host-cPHY translates logical communications requests from the Link Layer (LINK) into hardware-specific operations to affect transmission or reception of signals over an EHF contactless link. The Link Layer (LINK) may also be optimized as a contactless Link Layer (cLINK) for EHF contactless communication. A virtualized contactless Physical Layer (VcPHY) may comprise a contactless Physical Layer (Host-cPHY), and a contactless Link Layer (cLINK) for coupling a conventional Link Layer (LINK) with the contactless Physical Layer (Host-cPHY). Multiple data streams may be transported over the EHF contactless link over a range of frequencies.
    Type: Application
    Filed: July 24, 2019
    Publication date: December 5, 2019
    Inventors: Gary D. McCormack, Ian A. Kyles, Roger D. Isaac
  • Patent number: 10468919
    Abstract: Embodiments discussed herein refer to electric vehicle charging ports having integrated contactless communication units (CCUs). The electric vehicle charging ports include male and female connector assemblies that can be coupled together in a manner that enables consistent and reliable operation of contactless communications and power transfer. The connector integrates power and alignment such that when two connector assemblies are coupled together, power connections are made in combination with establishing contactless communications links between counterpart CCUs in both connector assemblies. The fixed alignment of the connector assemblies ensures that contactless communication channels, spanning between the connector assemblies, are aligned to enable consistent and reliable operation of contactless communications.
    Type: Grant
    Filed: August 24, 2017
    Date of Patent: November 5, 2019
    Assignee: KEYSSA SYSTEMS, INC.
    Inventors: Roger D. Isaac, Alan Besel
  • Publication number: 20190297664
    Abstract: Embodiments discussed herein refer to systems, methods, and circuits for establishing EHF contactless communications links. The EHF contactless communication link may serve as an alternative to conventional board-to-board and device-to-device connectors. The link may be a low-latency protocol-transparent communication link capable of supporting a range of data rates. The link may be established through a close proximity coupling between devices, each including at least one EHF communication unit. Each EHF unit involved in establishing an EHF communication link may progress through a series of steps before data can be transferred between the devices. These steps may be controlled by one or more state machines that are being implemented in each EHF communication unit.
    Type: Application
    Filed: June 7, 2019
    Publication date: September 26, 2019
    Inventors: Ian A. Kyles, Kenneth R. Kveton, Michael A. Bourdess, John Wolcott, Steve Novak, Roger D. Isaac, Gary D. McCormack