Patents by Inventor John Kenny
John Kenny 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).
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Patent number: 12137277Abstract: A service provider network can enable subscriber of a service with capabilities of performing one or more trick playback modes, such as pause, play, stop, fast-forward, and/or rewind to provide some examples, on media content provided by a service provider network that is being presently viewed by one or more subscribers while abiding by current copyright laws. The service provider network can broadcast the media content to a subscriber device that is associated with the subscriber and can simultaneously store an exclusive copy of the media content being displayed by the subscriber device. And, the systems, methods, and apparatuses can time-shift the exclusive copy of the media content in accordance with the one or more trick playback modes and can unicast the time-shifted copy of the media content to the subscriber device to perform the one or more trick playback modes.Type: GrantFiled: May 15, 2023Date of Patent: November 5, 2024Assignee: CSC Holdings, LLCInventors: John Kenny, Peter Caramanica, John Markowski
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Patent number: 11659254Abstract: A service provider network can enable subscriber of a service with capabilities of performing one or more trick playback modes, such as pause, play, stop, fast-forward, and/or rewind to provide some examples, on media content provided by a service provider network that is being presently viewed by one or more subscribers while abiding by current copyright laws. The service provider network can broadcast the media content to a subscriber device that is associated with the subscriber and can simultaneously store an exclusive copy of the media content being displayed by the subscriber device. And, the systems, methods, and apparatuses can time-shift the exclusive copy of the media content in accordance with the one or more trick playback modes and can unicast the time-shifted copy of the media content to the subscriber device to perform the one or more trick playback modes.Type: GrantFiled: March 21, 2022Date of Patent: May 23, 2023Assignee: CSC Holdings, LLCInventors: John Kenny, Peter Caramanica, John Markowski
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Patent number: 11284165Abstract: A service provider network can enable subscriber of a service with capabilities of performing one or more trick playback modes, such as pause, play, stop, fast-forward, and/or rewind to provide some examples, on media content provided by a service provider network that is being presently viewed by one or more subscribers while abiding by current copyright laws. The service provider network can broadcast the media content to a subscriber device that is associated with the subscriber and can simultaneously store an exclusive copy of the media content being displayed by the subscriber device. And, the systems, methods, and apparatuses can time-shift the exclusive copy of the media content in accordance with the one or more trick playback modes and can unicast the time-shifted copy of the media content to the subscriber device to perform the one or more trick playback modes.Type: GrantFiled: February 26, 2021Date of Patent: March 22, 2022Assignee: CSC Holdings, LLCInventors: John Kenny, Peter Caramanica, John Markowski
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Publication number: 20080085117Abstract: An optical fiber network can include an outdoor laser transceiver node that can be positioned in close proximity to the subscribers of an optical fiber network. The outdoor laser transceiver node does not require active cooling and heating devices that control the temperature surrounding the laser transceiver node. The laser transceiver node can adjust a subscriber's bandwidth on a subscription basis or on an as-needed basis. The laser transceiver node can also offer data bandwidth to the subscriber in preassigned increments. Additionally, the laser transceiver node lends itself to efficient upgrading that can be performed entirely on the network side. The laser transceiver node can also provide high speed symmetrical data transmission. Further, the laser transceiver node can utilize off-the-shelf hardware to generate optical signals such as Fabry-Perot (F-P) laser transmitters, distributed feed back lasers (DFB), or vertical cavity surface emitting lasers (VCSELs).Type: ApplicationFiled: August 3, 2007Publication date: April 10, 2008Inventors: James Farmer, John Kenny, Patrick Quinn, Thomas Tighe, Paul Whittlesey, Emmanuel Vella
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Publication number: 20080022165Abstract: An apparatus and method for synchronous communications using a serial data stream employs a housing with a controller and a back plane. The housing accepts one or more modules for interconnection with the back plane. The back plane distributes power to the modules and provides a communication link from the controller to each module. Each communication link includes a data out line, a data in line and a clock line, where each clock line is derived from one clock source.Type: ApplicationFiled: June 26, 2007Publication date: January 24, 2008Inventors: James McKim, John Hyde, Marko Vulovic, Buck Chan, John Kenny, Richard Carlson
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Publication number: 20070223928Abstract: A return path system includes inserting RF packets between regular upstream data packets, where the data packets are generated by communication devices such as a computer or internet telephone. The RF packets can be derived from analog RF signals that are produced by legacy video service terminals. In this way, the present invention can provide an RF return path for legacy terminals that shares a return path for regular data packets in an optical network architecture. The invention operates independently of a legacy upstream transmission timing scheme so that the legacy upstream transmission timing scheme can remain effective in preventing data collisions. In other embodiments, the present invention allows for less complex hardware for subscribers that are not taking data services. Further, an optical signal present line in combination with a driver may be employed in order to reduce the amount of hardware in a laser transceiver node.Type: ApplicationFiled: January 16, 2007Publication date: September 27, 2007Inventors: James Farmer, John Kenny, Patrick Quinn, Deven Anthony
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Publication number: 20070077069Abstract: An optical fiber network can include an outdoor bandwidth transforming node that can be positioned in close proximity to the subscribers of an optical fiber network. The outdoor bandwidth transforming node does not require active cooling and heating devices that control the temperature surrounding the bandwidth transforming node. The bandwidth transforming node can adjust a subscriber's bandwidth on a subscription basis or on an as-needed basis. The bandwidth transforming node can also offer data bandwidth to the subscriber in preassigned increments. Additionally, the bandwidth transforming node lends itself to efficient upgrading that can be performed entirely on the network side. The bandwidth transforming node can also provide high speed symmetrical data transmission. Further, the bandwidth transforming node can increase upstream and downstream bandwidth and transmission speed by propagating data signals at different wavelengths.Type: ApplicationFiled: October 5, 2006Publication date: April 5, 2007Inventors: James Farmer, Paul Whittlesey, Patrick Quinn, John Kenny, Emmanuel Vella, Thomas Tighe
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Publication number: 20060251373Abstract: Forming a plurality of loops in an optical fiber around a spool adjacent to an exposed end face can suppress internal reflections from the exposed end face. The radius of the loops can attenuate light that is propagating to and from the end face by causing light to leak out of the optical fiber's core and into its cladding. The radius can be selected to control physical stress in the optical fiber and promote reliability. The radius and the number of loops can be selected to meet a return loss specification. The loops can be formed by coiling the optical fiber around a spool that includes a slot for holding the optical fiber until it is put into service.Type: ApplicationFiled: May 8, 2006Publication date: November 9, 2006Applicant: Wave7 Optics, Inc.Inventors: Ronald Hodge, John Kenny
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Publication number: 20060187863Abstract: An inventive system capable of being utilized in environments where laser transceiver nodes may be subject to extreme temperatures. Temperature changes in the laser transceiver nodes may be compensated for by utilizing a wide wavelength channel allocation for data sent upstream from the laser transceiver nodes to the data service hub. The wavelength channel allocations for upstream data may be wider than the wavelength channel allocations for downstream data. An exemplary embodiment of the inventive system may comprise a data service hub connected to one or more laser transceiver nodes by one or more optical waveguides. Some embodiments with multiple optical waveguides are capable of practicing route redundancy. According to an exemplary embodiment of the inventive system, the optical waveguides are capable of carrying multiple optical signals at different wavelengths in order to serve a plurality of laser transceiver nodes.Type: ApplicationFiled: December 21, 2005Publication date: August 24, 2006Applicant: Wave7 Optics, Inc.Inventors: John Kenny, James Farmer
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Publication number: 20060159457Abstract: An optical fiber network can include an outdoor laser transceiver node that can be positioned in close proximity to the subscribers of an optical fiber network. The outdoor laser transceiver node does not require active cooling and heating devices that control the temperature surrounding the laser transceiver node. The laser transceiver node can adjust a subscriber's bandwidth on a subscription basis or on an as-needed basis. The laser transceiver node can also offer data bandwidth to the subscriber in preassigned increments. Additionally, the laser transceiver node lends itself to efficient upgrading that can be performed entirely on the network side. The laser transceiver node can also provide high speed symmetrical data transmission. Further, the laser transceiver node can utilize off-the-shelf hardware to generate optical signals such as Fabry-Perot (F-P) laser transmitters, distributed feed back lasers (DFB), or vertical cavity surface emitting lasers (VCSELs).Type: ApplicationFiled: December 1, 2005Publication date: July 20, 2006Applicant: Wave7 Optics, Inc.Inventors: James Farmer, John Kenny, Patrick Quinn, Thomas Tighe, Paul Whittlesey, Emmanuel Vella
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Patent number: 7056967Abstract: The invention relates to a polyethylene composition for use as insulation for wire and cable that has improved scorch resistance comprising (a) a polyethylene (b) a scorch inhibitor having a melting point below 50° C. at atmospheric pressure, and (c) an organic peroxide.Type: GrantFiled: April 5, 2002Date of Patent: June 6, 2006Assignee: Ciba Specialty Chemicals CorporationInventors: Wolfgang Voigt, John Kenny
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Patent number: 7038437Abstract: A digitally implemented slew rate controller for a power supply and a power supply having the same. An output up-programming signal is provided that enables the power supply to change an output voltage and current at a maximum rate which does not engage the protection circuits which are employed to protect components of the power supply. The maximum rate of change decreases as the output voltage increases. The up-programming speed of the power supply output optimizes the output by considering that an amount of output current available for charging an output capacitor of the power supply will decrease as the output voltage increases for a resistive load. An output down-programming control signal enables a discharge device to dissipate heat with a constant power characteristic, which will minimize a time required to reduce the output voltage while not exceeding a maximum power dissipation rating of the discharge device.Type: GrantFiled: December 31, 2003Date of Patent: May 2, 2006Assignee: Agilent Technologies, Inc.Inventors: John Kenny, Michael Joseph Benes, Marko Vulovic
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Publication number: 20060039699Abstract: Optical networks as defined by the IEEE 802.3ah standard suffer from Stimulated Raman Scattering (SRS) that causes data transmission at a first optical wavelength to interfere with broadcast video transmission at a second optical wavelength in single mode optical fibers. The problem is exacerbated when data is not being transmitted across the network; and instead, an idle pattern transmission is being transmitted in order to keep the network synchronized. The repetitive nature of the idle pattern transmission leads to the SRS optical interference effect. This optical interference effect is mitigated when countermeasures are implemented to modify the idle pattern transmissions or to transmit random data in place of the idle pattern transmissions.Type: ApplicationFiled: August 10, 2005Publication date: February 23, 2006Applicant: Wave7 Optics, Inc.Inventors: James Farmer, Alan Brown, John Kenny, Stephen Thomas
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Publication number: 20060020975Abstract: An optical network can include a data service hub, a laser transceiver node, and a subscriber optical interface. The data service hub can comprise a satellite antenna and a RF receiver for receiving satellite TV-band electrical signals. These electrical signals can be converted into the optical domain and then propagated over the optical network through optical waveguides to the subscriber optical interface. The subscriber optical interface can comprise an optical filter and a satellite analog optical receiver. The optical filter can separate the satellite TV-band optical signals having a first optical wavelength from other optical signals such as cable TV-band optical signals with a second optical wavelength and data optical signals with a third optical wavelength. The satellite analog optical receiver can further comprise various mechanisms for controlling access to the satellite TV-band signals.Type: ApplicationFiled: July 1, 2005Publication date: January 26, 2006Applicant: Wave7 Optics, Inc.Inventors: John Kenny, Paul Whittlesey, James Farmer
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Publication number: 20050146312Abstract: A digitally implemented slew rate controller for a power supply and a power supply having the same. An output up-programming signal is provided that enables the power supply to change an output voltage and current at a maximum rate which does not engage the protection circuits which are employed to protect components of the power supply. The maximum rate of change decreases as the output voltage increases. The up-programming speed of the power supply output optimizes the output by considering that an amount of output current available for charging an output capacitor of the power supply will decrease as the output voltage increases for a resistive load. An output down-programming control signal enables a discharge device to dissipate heat with a constant power characteristic, which will minimize a time required to reduce the output voltage while not exceeding a maximum power dissipation rating of the discharge device.Type: ApplicationFiled: December 31, 2003Publication date: July 7, 2005Inventors: John Kenny, Michael Benes, Marko Vulovic
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Publication number: 20050125709Abstract: An apparatus and method for synchronous communications using a serial data stream employs a housing with a controller and a back plane. The housing accepts one or more modules for interconnection with the back plane. The back plane distributes power to the modules and provides a communication link from the controller to each module. Each communication link includes a data out line, a data in line and a clock line, where each clock line is derived from one clock source.Type: ApplicationFiled: May 28, 2004Publication date: June 9, 2005Inventors: James McKim, John Hyde, Marko Vulovic, Buck Chan, John Kenny, Richard Carlson
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Publication number: 20050074241Abstract: An optical fiber network can include an outdoor laser transceiver node that can be positioned in close proximity to the subscribers of an optical fiber network. The outdoor laser transceiver node does not require active cooling and heating devices that control the temperature surrounding the laser transceiver node. The laser transceiver node can adjust a subscriber's bandwidth on a subscription basis or on an as-needed basis. The laser transceiver node can also offer data bandwidth to the subscriber in preassigned increments. Additionally, the laser transceiver node lends itself to efficient upgrading that can be performed entirely on the network side. The laser transceiver node can also provide high speed symmetrical data transmission. Further, the laser transceiver node can utilize off-the-shelf hardware to generate optical signals such as Fabry-Perot (F-P) laser transmitters, distributed feed back lasers (DFB), or vertical cavity surface emitting lasers (VCSELs).Type: ApplicationFiled: August 19, 2004Publication date: April 7, 2005Applicant: Wave7 Optics, Inc.Inventors: James Farmer, John Kenny, Patrick Quinn, Thomas Tighe, Paul Whittlesey, Emmanuel Vella
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Publication number: 20050053350Abstract: Forming a plurality of loops in an optical fiber around a spool adjacent to an exposed end face can suppress internal reflections from the exposed end face. The radius of the loops can attenuate light that is propagating to and from the end face by causing light to leak out of the optical fiber's core and into its cladding. The radius can be selected to control physical stress in the optical fiber and promote reliability. The radius and the number of loops can be selected to meet a return loss specification. The loops can be formed by coiling the optical fiber around a spool that includes a slot for holding the optical fiber until it is put into service.Type: ApplicationFiled: October 15, 2003Publication date: March 10, 2005Applicant: Wave7 Optics, Inc.Inventors: Ronald Hodge, John Kenny
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Publication number: 20020198344Abstract: The invention relates to a polyethylene composition for use as insulation for wire and cable that has improved scorch resistance comprisingType: ApplicationFiled: April 5, 2002Publication date: December 26, 2002Inventors: Wolfgang Voigt, John Kenny
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Publication number: 20020023004Abstract: An online POS store management system permits a home office to supervise a number of stores. The home office and stores are connected by a virtual private network. Each store has a number of processing devices that provide user interfaces for store personnel. Each processing device includes communications software to exchange data with the home office.Type: ApplicationFiled: June 22, 2001Publication date: February 21, 2002Inventors: Richard Hollander, John Kenny