Patents by Inventor Arnold Berman

Arnold Berman 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: 10783753
    Abstract: An electronic gaming table executes player-versus-player playing card games. The gaming table has a display screen where at least one random virtual playing card is virtually delivered to individual player positions for each of the multiple players. The electronic gaming table includes the display screen, a processor associated with memory, player input controls and a playing card masking element at each player position. The playing card masking system at each player position is positioned over an individual position that is a portion of the display screen where the processor directs delivery of the at least one random virtual playing card virtual face down. The playing card masking system includes a three-dimensional element having a visible light transmissive line of sight between the individual position and a player at the individual player position, while excluding visible light transmission to player positions across from or adjacent to the individual player position.
    Type: Grant
    Filed: April 21, 2018
    Date of Patent: September 22, 2020
    Inventors: James Thomas Crawford, III, Gehrig H. White, Kendal Ferner, Lyle Arnold Berman
  • Patent number: 10750503
    Abstract: Information associated with a communication service need of the user is received from a user of a client computer system. A set of communication service requirements that indicate satellite resources required to satisfy the communication service need of the user are computed based on the received information, and transmitted to a server computer system. A first beam plan that satisfies the set of communication service requirements is received from the server computer system. The first beam plan includes information on satellite beams and spectra for allocation to the user when the first beam plan is deployed to provide a communication service to the user that satisfies the communication service need of the user. Instructions are transmitted to the server computer system to deploy the first beam plan. Information is received from the server computer system indicating that the first beam plan is deployed.
    Type: Grant
    Filed: June 18, 2018
    Date of Patent: August 18, 2020
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Ted Kaplan, Arnold Berman, Michael Mandell, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 10555236
    Abstract: A beam former processor receives a group of signals for transmission through the plurality of amplifiers, wherein the group of signals is less than a total number of feeds in an antenna array. The beam former processor determines terrestrial regions for transmitting the group of signals. The beam former processor identifies a subset of feeds that are configured to form beams covering the terrestrial regions. The beam former processor controls the switching circuitry to route the group of signals from the plurality of amplifiers to the subset of feeds through the switching circuitry, such that the subset of feeds are enabled to form beams that cover the terrestrial regions based on the group of signals.
    Type: Grant
    Filed: December 18, 2017
    Date of Patent: February 4, 2020
    Assignee: RKF Engineering Solutions LLC
    Inventors: Jeffrey Freedman, Scott Conrad Markley, Erik Halvorson, Arnold Berman
  • Patent number: 10498378
    Abstract: A beam plan that defines beams generated by a satellite that satisfy a set of communication service requirements is obtained. Fade condition information that indicates an amount of fade at particular geographic areas for one or more of the beams is obtained. A modification to the beam plan that mitigates the amount of fade at the particular geographic areas for the one or more of the beams is determined. The beam plan is modified based on the determined modification.
    Type: Grant
    Filed: March 13, 2017
    Date of Patent: December 3, 2019
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Erik Halvorson, Michael Mandell, Ted Kaplan, Arnold Berman, Brian Sipos, Scott Conrad Markley, David Marshack
  • Publication number: 20190325708
    Abstract: An electronic gaming table executes player-versus-player playing card games. The gaming table has a display screen where at least one random virtual playing card is virtually delivered to individual player positions for each of the multiple players. The electronic gaming table includes the display screen, a processor associated with memory, player input controls and a playing card masking element at each player position. The playing card masking system at each player position is positioned over an individual position that is a portion of the display screen where the processor directs delivery of the at least one random virtual playing card virtual face down. The playing card masking system includes a three-dimensional element having a visible light transmissive line of sight between the individual position and a player at the individual player position, while excluding visible light transmission to player positions across from or adjacent to the individual player position.
    Type: Application
    Filed: April 21, 2018
    Publication date: October 24, 2019
    Inventors: James Thomas Crawford, III, Gehrig H. White, Kendal Ferner, Lyle Arnold Berman
  • Patent number: 10004073
    Abstract: Information associated with a communication service need of the user is received from a user of a client computer system. A set of communication service requirements that indicate satellite resources required to satisfy the communication service need of the user are computed based on the received information, and transmitted to a server computer system. A first beam plan that satisfies the set of communication service requirements is received from the server computer system. The first beam plan includes information on satellite beams and spectra for allocation to the user when the first beam plan is deployed to provide a communication service to the user that satisfies the communication service need of the user. Instructions are transmitted to the server computer system to deploy the first beam plan. Information is received from the server computer system indicating that the first beam plan is deployed.
    Type: Grant
    Filed: August 3, 2015
    Date of Patent: June 19, 2018
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Ted Kaplan, Arnold Berman, Michael Mandell, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 9991587
    Abstract: Beamforming in a satellite communications network includes determining a first delay imparted to signals redirected by a first reflecting dish in a satellite, the first delay being caused by motion of the first reflecting dish relative to the satellite. A second delay imparted to signals redirected by a second reflecting dish in the satellite is determined, the second delay being caused by motion of the second reflecting dish relative to the satellite. Calculating, using the determined first and second delays, beamforming coefficients that enable the generation of a single beam by combining a group of signals that includes a first signal redirected by the first reflecting dish and a second signal redirected by the second reflecting dish.
    Type: Grant
    Filed: September 19, 2016
    Date of Patent: June 5, 2018
    Assignee: RFK Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Arnold Berman, Michael Mandell, Erik Halvorson, Scott Conrad Markley
  • Patent number: 9985706
    Abstract: Information associated with a communication service need of the user is received from a user of a client computer system. A set of communication service requirements that indicate satellite resources required to satisfy the communication service need of the user are computed based on the received information, and transmitted to a server computer system. A first beam plan that satisfies the set of communication service requirements is received from the server computer system. The first beam plan includes information on satellite beams and spectra for allocation to the user when the first beam plan is deployed to provide a communication service to the user that satisfies the communication service need of the user. Instructions are transmitted to the server computer system to deploy the first beam plan. Information is received from the server computer system indicating that the first beam plan is deployed.
    Type: Grant
    Filed: August 3, 2015
    Date of Patent: May 29, 2018
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Ted Kaplan, Arnold Berman, Michael Mandell, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 9848370
    Abstract: A beam former processor receives a group of signals for transmission through the plurality of amplifiers, wherein the group of signals is less than a total number of feeds in an antenna array. The beam former processor determines terrestrial regions for transmitting the group of signals. The beam former processor identifies a subset of feeds that are configured to form beams covering the terrestrial regions. The beam former processor controls the switching circuitry to route the group of signals from the plurality of amplifiers to the subset of feeds through the switching circuitry, such that the subset of feeds are enabled to form beams that cover the terrestrial regions based on the group of signals.
    Type: Grant
    Filed: March 15, 2016
    Date of Patent: December 19, 2017
    Assignee: RKF Engineering Solutions LLC
    Inventors: Jeffrey Freedman, Scott Conrad Markley, Erik Halvorson, Arnold Berman
  • Patent number: 9748989
    Abstract: A beam plan that defines beams generated by a satellite that satisfy a set of communication service requirements is obtained. Fade condition information that indicates an amount of fade at particular geographic areas for one or more of the beams is obtained. A modification to the beam plan that mitigates the amount of fade at the particular geographic areas for the one or more of the beams is determined. The beam plan is modified based on the determined modification.
    Type: Grant
    Filed: February 28, 2014
    Date of Patent: August 29, 2017
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Erik Halvorson, Michael Mandell, Ted Kaplan, Arnold Berman, Brian Sipos, Scott Conrad Markley, David Marshack
  • Patent number: 9680559
    Abstract: Information associated with a communication service need of the user is received from a user of a client computer system. A set of communication service requirements that indicate satellite resources required to satisfy the communication service need of the user are computed based on the received information, and transmitted to a server computer system. A first beam plan that satisfies the set of communication service requirements is received from the server computer system. The first beam plan includes information on satellite beams and spectra for allocation to the user when the first beam plan is deployed to provide a communication service to the user that satisfies the communication service need of the user. Instructions are transmitted to the server computer system to deploy the first beam plan. Information is received from the server computer system indicating that the first beam plan is deployed.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: June 13, 2017
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Ted Kaplan, Arnold Berman, Michael Mandell, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 9595989
    Abstract: A beam plan that defines beams generated by a satellite that satisfy a set of communication service requirements is obtained. Fade condition information that indicates an amount of fade at particular geographic areas for one or more of the beams is obtained. A modification to the beam plan that mitigates the amount of fade at the particular geographic areas for the one or more of the beams is determined. The beam plan is modified based on the determined modification.
    Type: Grant
    Filed: February 28, 2014
    Date of Patent: March 14, 2017
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Erik Halvorson, Michael Mandell, Ted Kaplan, Arnold Berman, Brian Sipos, Scott Conrad Markley, David Marshack
  • Patent number: 9568589
    Abstract: In one implementation, receive signals may be received by a satellite using corresponding receive elements. The receive signals may form one or more receive beams at one or more receive frequency channels. Transmit signals may be calculated by the satellite by linearly combining the obtained receive signals using transform data. The calculated transmit signals may form one or more transmit beams at one or more transmit frequency channels. The calculated transmit signals may be transmitted by the satellite using corresponding transmit elements.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: February 14, 2017
    Assignee: RKF Engineering Solutions LLC
    Inventors: Michael Mandell, Ted Kaplan, Arnold Berman, Jeffrey Freedman, Brian Sipos, Scott Conrad Markely, Erik Halvorson, David Marshack
  • Patent number: 9450666
    Abstract: Beamforming in a satellite communications network includes determining a first delay imparted to signals redirected by a first reflecting dish in a satellite, the first delay being caused by motion of the first reflecting dish relative to the satellite. A second delay imparted to signals redirected by a second reflecting dish in the satellite is determined, the second delay being caused by motion of the second reflecting dish relative to the satellite. Calculating, using the determined first and second delays, beamforming coefficients that enable the generation of a single beam by combining a group of signals that includes a first signal redirected by the first reflecting dish and a second signal redirected by the second reflecting dish.
    Type: Grant
    Filed: July 13, 2015
    Date of Patent: September 20, 2016
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Arnold Berman, Michael Mandell, Erik Halvorson, Scott Conrad Markley
  • Patent number: 9397741
    Abstract: Receive signals may be combined to form receive beam signals at multiple receive frequency channels. The receive beam signals may be partitioned by receive frequency channel into multiple groups of receive beam signals, each group corresponding to a different frequency spectrum and the multiple groups including a first group and a second group. The first and the second group of receive beam signals may be communicated to a first and a second switch, respectively. The first and the second group of receive beam signals may be switched by the first switch and the second switch, respectively, to generate a first and a second group of transmit beam signals. Transmit beam signals that include the first and the second group of transmit beam signals may be combined to form transmit signals to be transmitted using corresponding transmit antenna elements to form one or more transmit beams at multiple transmit frequency channels.
    Type: Grant
    Filed: November 30, 2015
    Date of Patent: July 19, 2016
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Michael Mandell, Ted Kaplan, Arnold Berman, Jeffrey Freedman, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 9379806
    Abstract: In one implementation, a minimum metric function with an output representing a metric of a satisfaction of transmission requirements for a satellite communications system configured to produce at least two beams may be generated. The minimum metric function may be a function of beam weight parameters including a first and second set of beam weight parameters representing output signals of high power amplifiers used to form a first and second beam, respectively. An output value of the minimum metric function may be calculated using initial values for the beam weight parameters. A direction to modify the values of the beam weight parameters may be determined based on the calculated output value. Updated values of the beam weight parameters may be determined based on maximizing the output value of the minimum metric function by moving the values of the beam weight parameters in the determined direction.
    Type: Grant
    Filed: November 30, 2012
    Date of Patent: June 28, 2016
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Michael Mandell, Arnold Berman, Jeffrey Freedman, Erik Halvorson
  • Patent number: 9209891
    Abstract: Receive signals may be combined to form receive beam signals at multiple receive frequency channels. The receive beam signals may be partitioned by receive frequency channel into multiple groups of receive beam signals, each group corresponding to a different frequency spectrum and the multiple groups including a first group and a second group. The first and the second group of receive beam signals may be communicated to a first and a second switch, respectively. The first and the second group of receive beam signals may be switched by the first switch and the second switch, respectively, to generate a first and a second group of transmit beam signals. Transmit beam signals that include the first and the second group of transmit beam signals may be combined to form transmit signals to be transmitted using corresponding transmit antenna elements to form one or more transmit beams at multiple transmit frequency channels.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: December 8, 2015
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Michael Mandell, Ted Kaplan, Arnold Berman, Jeffrey Freedman, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 9083426
    Abstract: Beamforming in a satellite communications network includes determining a first delay imparted to signals redirected by a first reflecting dish in a satellite, the first delay being caused by motion of the first reflecting dish relative to the satellite. A second delay imparted to signals redirected by a second reflecting dish in the satellite is determined, the second delay being caused by motion of the second reflecting dish relative to the satellite. Calculating, using the determined first and second delays, beamforming coefficients that enable the generation of a single beam by combining a group of signals that includes a first signal redirected by the first reflecting dish and a second signal redirected by the second reflecting dish.
    Type: Grant
    Filed: February 8, 2013
    Date of Patent: July 14, 2015
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Jeffrey Freedman, Arnold Berman, Michael Mandell, Erik Halvorson, Scott Markley
  • Patent number: 8929483
    Abstract: Digital baseband channel signals are received and up-sampled to a common sampling rate. The digital baseband channel signals are filtered using low pass filters. Complex frequency shifting is performed of the filtered digital baseband channel signals based on the associated different channel frequencies to obtain digital channel signals, which are combined to generate a digital wideband multi-channel signal that is a digital representation of an analog wideband multi-channel signal that is based on combining analog channel signals that correspond to the analog baseband channel signals. A non-linear pre-distortion of the digital wideband multi-channel signal is performed, the non-linear pre-distortion adding at least one of a gain and a phase shift to the digital wideband multi-channel signal such that the digital channel signals included within the digital wideband multi-channel signal are compensated for a non-linear distortion effected on the analog wideband multi-channel signal by a high-power amplifier.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: January 6, 2015
    Assignee: RKF Engineering Solutions, LLC
    Inventors: Michael Mandell, Ted Kaplan, Arnold Berman, Jeffrey Freedman, Brian Sipos, Scott Conrad Markley, Erik Halvorson, David Marshack
  • Patent number: 5291148
    Abstract: A predistortion linearizer (20) is operative with a microwave signal, as may be provided by signal source (62) to linearize the gain of a power amplifier, such as a traveling-wave-tube power amplifier (74), by introduction of an amplitude and/or a phase distortion to the microwave signal wherein the distortion is inverse to a distortion introduced by the power amplifier, thereby to compensate for the distortion of the power amplifier. The linearizer is constructed of two channels (22, 24) which are operated in parallel but approximately 180 degrees out of phase, with an additional phase increment provided by delay lines (46, 56) to offset one channel from the other channel by a phase difference in a range of approximately 160-200 degrees.
    Type: Grant
    Filed: December 22, 1992
    Date of Patent: March 1, 1994
    Assignee: Hughes Aircraft Company
    Inventors: Russ A. Reisner, Wilbert Copeland, Arnold Berman, Charles C. Curello