Patents by Inventor Mark W. Kishler

Mark W. Kishler 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: 11264730
    Abstract: An Antenna Radiating Element provides 4 simultaneous isolated radiation ports that can be used to increase the orders of MIMO communication for wireless applications. An antenna array that contains a plurality of the Quad-Port Radiating Elements (QPRE). An antenna that contains multiple arrays of the QPRE in single-band or Multi-Band configurations that produces 2× the available polarization states without the need to increase the antenna aperture or reduce the size of the antenna array.
    Type: Grant
    Filed: June 25, 2019
    Date of Patent: March 1, 2022
    Assignee: Amphenol Antenna Solutions, Inc.
    Inventors: James E. Thompson, Jr., Mark W. Kishler, Jodie M. Bell, Joshua W. Shehan, Kostyantyn Semonov, Ryan M. Nagel, James C. Carson
  • Publication number: 20200006862
    Abstract: An Antenna Radiating Element provides 4 simultaneous isolated radiation ports that can be used to increase the orders of MIMO communication for wireless applications. An antenna array that contains a plurality of the Quad-Port Radiating Elements (QPRE). An antenna that contains multiple arrays of the QPRE in single-band or Multi-Band configurations that produces 2× the available polarization states without the need to increase the antenna aperture or reduce the size of the antenna array.
    Type: Application
    Filed: June 25, 2019
    Publication date: January 2, 2020
    Inventors: James E. THOMPSON, JR., Mark W. KISHLER, Jodie M. BELL, Joshua W. SHEHAN, Kostyantyn SEMONOV, Ryan M. NAGEL, James C. CARSON
  • Publication number: 20170244156
    Abstract: One or more embodiments are directed to a multimode antenna structure for transmitting and receiving electromagnetic signals in a communications device. The communications device includes circuitry for processing signals communicated to and from the antenna structure. The antenna structure is configured for optimal operation in a given frequency range. The antenna structure includes a plurality of antenna ports operatively coupled to the circuitry, and a plurality of antenna elements, each operatively coupled to a different one of the antenna ports. Each of the plurality of antenna elements is configured to have an electrical length selected to provide optimal operation within the given frequency range. The antenna structure also includes one or more connecting elements electrically connecting the antenna elements such that electrical currents on one antenna element flow to a connected neighboring antenna element and generally bypass the antenna port coupled to the neighboring antenna element.
    Type: Application
    Filed: May 9, 2017
    Publication date: August 24, 2017
    Applicant: Achilles Technology Management Co II, Inc.
    Inventors: Mark T. Montgomery, Frank M. Caimi, Mark W. Kishler
  • Patent number: 9692124
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for receiving a request to initiate a first multiple-input and multiple-output (MIMO) communication session and a second MIMO communication session, and configuring a first antenna configuration and a second antenna configuration to enable the first MIMO communication session and the second MIMO communication session. The first MIMO communication session shares spectrum from the first antenna configuration and the second antenna configuration, and the second MIMO communication session utilizes spectrum from the second antenna configuration that differs from the shared spectrum. Other embodiments are disclosed.
    Type: Grant
    Filed: July 22, 2014
    Date of Patent: June 27, 2017
    Assignee: Achilles Technology Management Co II, Inc.
    Inventors: Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler, Robert Giometti, John Marshall
  • Patent number: 9680514
    Abstract: A method is provided introducing a phase offset between signals applied to antenna ports of an antenna having multiple antenna elements, such that a first signal applied to one of the antenna ports operatively coupled to one of the antenna elements has a different phase than a second signal applied to another one of antenna ports operatively coupled to another one of the antenna elements to obtain an antenna pattern control. A reduced power is used that is lower than the power used in a non-pattern control operation of the antenna such that a wireless link performance criteria is met with equipment at a far-field point using the reduced power compared to the non-pattern control operation, thereby reducing near field radiation.
    Type: Grant
    Filed: April 8, 2016
    Date of Patent: June 13, 2017
    Assignee: Achilles Technology Management Co II. Inc.
    Inventors: Mark T. Montgomery, Frank M. Caimi, Paul A. Tornatta, Jr., Mark W. Kishler, Li Chen
  • Patent number: 9680220
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for initiating a first multiple-input and multiple-output (MIMO) communication session with a primary base station, and initiating a second MIMO communication session with a first secondary base station of a plurality of secondary base stations without terminating the first MIMO communication session with the primary base station. The primary base station can include a primary antenna system having a first communication range, while each of the plurality of secondary base stations can include a secondary antenna system having a second communication range that is a subset of the first communication range of the primary antenna system. The plurality of secondary base stations can correspond to a plurality of small cell sites distributed within the first communication range of the primary base station. Other embodiments are disclosed.
    Type: Grant
    Filed: July 22, 2014
    Date of Patent: June 13, 2017
    Assignee: Achilles Technology Management Co. II, Inc.
    Inventors: Duane Rabe, Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler
  • Publication number: 20170149146
    Abstract: A multimode antenna structure is provided for transmitting and receiving electromagnetic signals in a communication device. The antenna structure includes a plurality of antenna ports for coupling to the circuitry; a plurality of antenna elements, each operatively coupled to a different one of the antenna ports; and a plurality of connecting elements. The connecting elements each electrically connect neighboring antenna elements such that the antenna elements and the connecting elements are arranged about the periphery of the antenna structure and form a single radiating structure. Electrical currents on one antenna element flow to connected neighboring antenna elements and generally bypass the antenna ports coupled to the neighboring antenna elements such that an antenna mode excited by one antenna port is generally electrically isolated from a mode excited by another antenna port at a given desired signal frequency range, and the antenna structure generates diverse antenna patterns.
    Type: Application
    Filed: June 23, 2016
    Publication date: May 25, 2017
    Inventors: MARK T. MONTGOMERY, MARK W. KISHLER, LI CHEN
  • Patent number: 9660337
    Abstract: One or more embodiments are directed to a multimode antenna structure for transmitting and receiving electromagnetic signals in a communications device. The communications device includes circuitry for processing signals communicated to and from the antenna structure. The antenna structure is configured for optimal operation in a given frequency range. The antenna structure includes a plurality of antenna ports operatively coupled to the circuitry, and a plurality of antenna elements, each operatively coupled to a different one of the antenna ports. Each of the plurality of antenna elements is configured to have an electrical length selected to provide optimal operation within the given frequency range. The antenna structure also includes one or more connecting elements electrically connecting the antenna elements such that electrical currents on one antenna element flow to a connected neighboring antenna element and generally bypass the antenna port coupled to the neighboring antenna element.
    Type: Grant
    Filed: March 10, 2016
    Date of Patent: May 23, 2017
    Assignee: Achilles Technology Management Co II. Inc.
    Inventors: Mark T. Montgomery, Frank M. Caimi, Mark W. Kishler
  • Patent number: 9627753
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for determining a magnitude difference between a first signal supplied to an antenna and a second signal radiated by the antenna, determining a phase difference between the first signal supplied to the antenna and the second signal radiated by the antenna, measuring a change in reactance of an antenna, detecting an offset in an operating frequency of the antenna based on one of the magnitude difference, the phase difference, the change in reactance, or any combination thereof, and adjusting a resonant frequency of the antenna to mitigate the offset in the operating frequency of the antenna. Other embodiments are disclosed.
    Type: Grant
    Filed: May 22, 2014
    Date of Patent: April 18, 2017
    Assignee: Achilles Technology Management Co II, Inc.
    Inventors: Frank M. Caimi, Mark T. Montgomery, Duane Rabe, Li Chen, Mark W. Kishler
  • Publication number: 20170040670
    Abstract: A communication device that incorporates the subject disclosure may include, for example, a conductive cover, an antenna structure, and a circuit. The antenna structure can comprise a first portion of the conductive cover having a first slot formed therein. The first portion can form a first antenna element for converting between first electromagnetic signals and first electrical signals. The first slot can define a shape of a trade dress design in the conductive cover. The circuit can be communicatively coupled to first edges of the first slot to define a first port. The circuit can perform operations comprising transmitting the first electronic signals into the first antenna element. Other embodiments are disclosed.
    Type: Application
    Filed: May 16, 2016
    Publication date: February 9, 2017
    Inventors: Li Chen, Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler
  • Patent number: 9496609
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for receiving bandwidth utilization information associated with each of a plurality of communication nodes, and initiating communications with a communication node selected from the plurality of communication nodes according to a comparison of the bandwidth utilization information and a measure of quality of a communication link of each of the plurality of communication nodes. Other embodiments are disclosed.
    Type: Grant
    Filed: August 28, 2014
    Date of Patent: November 15, 2016
    Assignee: Achilles Technology Management Co II, Inc.
    Inventors: John Marshall, Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler
  • Patent number: 9478856
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for receiving bandwidth utilization information associated with each of a plurality of communication nodes, and initiating communications with a communication node selected from the plurality of communication nodes according to a comparison of the bandwidth utilization information and a measure of quality of a communication link of each of the plurality of communication nodes. Other embodiments are disclosed.
    Type: Grant
    Filed: August 28, 2014
    Date of Patent: October 25, 2016
    Assignee: Achilles Technology Management CO II, Inc.
    Inventors: John Marshall, Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler
  • Patent number: 9413065
    Abstract: A system that incorporates the subject disclosure may include, for example, a circuit for receiving a request to initiate a multiple-input and multiple-output (MIMO) communication session, and configuring a first antenna module and a second antenna module of a communication device to enable the MIMO communication session. The MIMO communication session can combine at least a portion of spectrum between a plurality of bands shared by the first antenna module and the second antenna module. Other embodiments are disclosed.
    Type: Grant
    Filed: June 18, 2014
    Date of Patent: August 9, 2016
    Assignee: Skycross, Inc.
    Inventors: Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler, Bob Giometti, Warren Weiner
  • Publication number: 20160226546
    Abstract: A method is provided introducing a phase offset between signals applied to antenna ports of an antenna having multiple antenna elements, such that a first signal applied to one of the antenna ports operatively coupled to one of the antenna elements has a different phase than a second signal applied to another one of antenna ports operatively coupled to another one of the antenna elements to obtain an antenna pattern control. A reduced power is used that is lower than the power used in a non-pattern control operation of the antenna such that a wireless link performance criteria is met with equipment at a far-field point using the reduced power compared to the non-pattern control operation, thereby reducing near field radiation.
    Type: Application
    Filed: April 8, 2016
    Publication date: August 4, 2016
    Inventors: Mark T. Montgomery, Frank M. Caimi, Paul A. Tornatta, JR., Mark W. Kishler, Li Chen
  • Patent number: 9401547
    Abstract: A multimode antenna structure is provided for transmitting and receiving electromagnetic signals in a communication device. The antenna structure includes a plurality of antenna ports for coupling to the circuitry; a plurality of antenna elements, each operatively coupled to a different one of the antenna ports; and a plurality of connecting elements. The connecting elements each electrically connect neighboring antenna elements such that the antenna elements and the connecting elements are arranged about the periphery of the antenna structure and form a single radiating structure. Electrical currents on one antenna element flow to connected neighboring antenna elements and generally bypass the antenna ports coupled to the neighboring antenna elements such that an antenna mode excited by one antenna port is generally electrically isolated from a mode excited by another antenna port at a given desired signal frequency range, and the antenna structure generates diverse antenna patterns.
    Type: Grant
    Filed: October 21, 2015
    Date of Patent: July 26, 2016
    Assignee: Skycross, Inc.
    Inventors: Mark T. Montgomery, Mark W. Kishler, Li Chen
  • Publication number: 20160190684
    Abstract: One or more embodiments are directed to a multimode antenna structure for transmitting and receiving electromagnetic signals in a communications device. The communications device includes circuitry for processing signals communicated to and from the antenna structure. The antenna structure is configured for optimal operation in a given frequency range. The antenna structure includes a plurality of antenna ports operatively coupled to the circuitry, and a plurality of antenna elements, each operatively coupled to a different one of the antenna ports. Each of the plurality of antenna elements is configured to have an electrical length selected to provide optimal operation within the given frequency range. The antenna structure also includes one or more connecting elements electrically connecting the antenna elements such that electrical currents on one antenna element flow to a connected neighboring antenna element and generally bypass the antenna port coupled to the neighboring antenna element.
    Type: Application
    Filed: March 10, 2016
    Publication date: June 30, 2016
    Inventors: Mark T. Montgomery, Frank M. Caimi, Mark W. Kishler
  • Patent number: 9368869
    Abstract: A communication device that incorporates the subject disclosure may include, for example, a conductive cover, an antenna structure, and a circuit. The antenna structure can comprise a first portion of the conductive cover having a first slot formed therein. The first portion can form a first antenna element for converting between first electromagnetic signals and first electrical signals. The first slot can define a shape of a trade dress design in the conductive cover. The circuit can be communicatively coupled to first edges of the first slot to define a first port. The circuit can perform operations comprising transmitting the first electronic signals into the first antenna element. Other embodiments are disclosed.
    Type: Grant
    Filed: August 1, 2014
    Date of Patent: June 14, 2016
    Assignee: SKYCROSS, INC.
    Inventors: Li Chen, Frank M. Caimi, Mark T. Montgomery, Mark W. Kishler
  • Patent number: 9337548
    Abstract: A method is provided introducing a phase difference between signals at antenna ports of an antenna such that a first signal at one of the antenna ports has a different phase than a second signal at another one of antenna ports to obtain an antenna pattern control. A reduced power is used that is lower than the power used in a non-pattern control operation of the antenna such that a wireless link performance criteria is met with equipment at a far-field point using the reduced power compared to the non-pattern control operation, thereby reducing a specific absorption rate.
    Type: Grant
    Filed: June 30, 2015
    Date of Patent: May 10, 2016
    Assignee: SKYCROSS, INC.
    Inventors: Mark T Montgomery, Frank M Caimi, Paul A Tornatta, Mark W Kishler, Li Chen
  • Patent number: 9318803
    Abstract: One or more embodiments are directed to a multimode antenna structure for transmitting and receiving electromagnetic signals in a communications device. The communications device includes circuitry for processing signals communicated to and from the antenna structure. The antenna structure is configured for optimal operation in a given frequency range. The antenna structure includes a plurality of antenna ports operatively coupled to the circuitry, and a plurality of antenna elements, each operatively coupled to a different one of the antenna ports. Each of the plurality of antenna elements is configured to have an electrical length selected to provide optimal operation within the given frequency range. The antenna structure also includes one or more connecting elements electrically connecting the antenna elements such that electrical currents on one antenna element flow to a connected neighboring antenna element and generally bypass the antenna port coupled to the neighboring antenna element.
    Type: Grant
    Filed: June 30, 2014
    Date of Patent: April 19, 2016
    Assignee: Skycross, Inc.
    Inventors: Mark T. Montgomery, Frank M. Caimi, Mark W. Kishler
  • Publication number: 20160043477
    Abstract: A multimode antenna structure is provided for transmitting and receiving electromagnetic signals in a communication device. The antenna structure includes a plurality of antenna ports for coupling to the circuitry; a plurality of antenna elements, each operatively coupled to a different one of the antenna ports; and a plurality of connecting elements. The connecting elements each electrically connect neighboring antenna elements such that the antenna elements and the connecting elements are arranged about the periphery of the antenna structure and form a single radiating structure. Electrical currents on one antenna element flow to connected neighboring antenna elements and generally bypass the antenna ports coupled to the neighboring antenna elements such that an antenna mode excited by one antenna port is generally electrically isolated from a mode excited by another antenna port at a given desired signal frequency range, and the antenna structure generates diverse antenna patterns.
    Type: Application
    Filed: October 21, 2015
    Publication date: February 11, 2016
    Inventors: Mark T. Montgomery, Mark W. Kishler, Li Chen