Patents by Inventor Steven E. Blashewski

Steven E. Blashewski 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: 8363679
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of Ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each has guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. As a local network, the architecture supports guaranteed bandwidth for delivery of data flows to a plurality of host devices.
    Type: Grant
    Filed: April 13, 2009
    Date of Patent: January 29, 2013
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Patent number: 7933288
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Grant
    Filed: December 11, 2007
    Date of Patent: April 26, 2011
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Patent number: 7801119
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Grant
    Filed: December 11, 2007
    Date of Patent: September 21, 2010
    Assignee: Scientific-Atlanta, LLC
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Patent number: 7719849
    Abstract: Included are systems and methods for providing access of test points. An embodiment of a system includes an electrical module including at least one electrical circuit configured to communicate at least one electrical signal, the electrical module further including at least one multiple access test point configured to provide access for measurements of the electrical circuit. Some embodiments include an environmental housing that includes at least one access port, the environmental housing configured to receive the electrical module such that at least one access port provides access to at least one multiple access test point.
    Type: Grant
    Filed: July 7, 2006
    Date of Patent: May 18, 2010
    Assignee: Scientific-Atlanta, Inc.
    Inventors: Steven E. Blashewski, Robert R. Riggsby, William G. Mahoney
  • Publication number: 20090196205
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Application
    Filed: April 13, 2009
    Publication date: August 6, 2009
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, JR., Lamar E. West, JR.
  • Patent number: 7519081
    Abstract: Disclosed herein are methods of providing a client with local area network connectivity and access to other services in a cable network. One such method includes: allocating bandwidth in the network to support bi-directional data communication between the host and a central concentrator. Bandwidth is allocated for a downstream flow on at least one downstream frequency channel based on a mapping between the downstream flow and a particular octet in a downstream packet. Bandwidth is allocated for an upstream flow on at least one non-shared upstream tone. The method also includes conveying a bi-directional data flow between the host and the concentrator over the allocated bandwidth, including conveying the upstream flow using the allocated bandwidth and conveying the downstream flow using the allocated bandwidth. The method also includes utilizing bandwidth in the network not allocated to data communications to provide the host with at least one audio/visual service.
    Type: Grant
    Filed: September 17, 2002
    Date of Patent: April 14, 2009
    Assignee: Cisco Technology, Inc.
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Patent number: 7359609
    Abstract: A fiber management system for managing fiber optic cables within an enclosure. The fiber management system includes a trough having a plurality of slots for receiving and detachably retaining connectors of the fiber optic cables. A spool is coupled to the trough for coiling the excess length of the fiber optic cables. The trough is fixedly mounted to the inside of the enclosure to allow access to the interior of the enclosure without movement of trough without the fiber optic cables becoming entangled.
    Type: Grant
    Filed: January 18, 2006
    Date of Patent: April 15, 2008
    Assignee: Scientific-Atlanta, Inc.
    Inventors: William G. Mahoney, Steven E. Blashewski
  • Patent number: 7336680
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Grant
    Filed: September 17, 2002
    Date of Patent: February 26, 2008
    Assignee: Scientific-Atlanta, Inc.
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Publication number: 20080007929
    Abstract: Included are systems and methods for providing access of test points. An embodiment of a system includes an electrical module including at least one electrical circuit configured to communicate at least one electrical signal, the electrical module further including at least one multiple access test point configured to provide access for measurements of the electrical circuit. Some embodiments include an environmental housing that includes at least one access port, the environmental housing configured to receive the electrical module such that at least one access port provides access to at least one multiple access test point.
    Type: Application
    Filed: July 7, 2006
    Publication date: January 10, 2008
    Applicant: Scientific-Atlanta, Inc.
    Inventors: Steven E. Blashewski, Robert R. Riggsby, William G. Mahoney
  • Patent number: 7218901
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Moreover, an automatic frequency control resolves some issues of a free-running clock in an upstream tuner of the central concentrator by performing adjustments based on the average frequency error of a number of active upstream tones. In the preferred embodiments of the present invention, the automatic frequency control (AFC) utilizes a feedback loop for at least each active upstream tone. Also, the average of the active upstream tones is determined and is utilized in providing feedback to adjust the automatic frequency control (AFC).
    Type: Grant
    Filed: September 17, 2002
    Date of Patent: May 15, 2007
    Assignee: Scientific-Atlanta, Inc.
    Inventors: Joseph Graham Mobley, Jiening Ao, Steven E. Blashewski, Florin Farcas, John A. Ritchie, Jr., Lamar E. West, Jr.
  • Patent number: 6769133
    Abstract: A communication system (100) processes forward signals generated by headend equipment (105) and reverse signals generated by subscriber equipment (135). A communication medium (110, 120), such as fiber optic cable or coaxial cable, connects the headend equipment (105) and the subscriber equipment (135), and amplifiers (400) are positioned at various locations along the medium (110, 120) to amplify the forward and reverse signals. The amplifiers (400) include a dual forward/reverse test circuit (FIG. 6) having a forward test point (406) coupled to the forward signal, a reverse test point (408) coupled to the reverse signal, and a single directional coupler (404) connected to the forward test point (406), for providing the forward signal thereto, and to the reverse test point (408), for providing the reverse signal thereto.
    Type: Grant
    Filed: October 12, 1999
    Date of Patent: July 27, 2004
    Assignee: Scientific-Atlanta, Inc.
    Inventors: Steven E. Blashewski, John W. Brickell
  • Publication number: 20030058885
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Application
    Filed: September 17, 2002
    Publication date: March 27, 2003
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie,, Lamar E. West,
  • Publication number: 20030053484
    Abstract: An architecture for providing high-speed access over frequency-division multiplexed (FDM) channels allows transmission of ethernet frames and/or other data across a cable transmission network or other form of FDM transport. The architecture involves downstream and upstream FDM multiplexing techniques to allow contemporaneous, parallel communications across a plurality of frequency channels. Furthermore, the architecture allows a central concentrator to support a plurality of remote devices that each have guaranteed bandwidth through connection-oriented allocations of bi-directional data flows. The upstream and downstream bandwidth allocation can support symmetrical bandwidth as well as asymmetrical bandwidth in either direction. The architecture generally can be used to support connection-oriented physical layer connectivity between a remote device and the central concentrator.
    Type: Application
    Filed: September 17, 2002
    Publication date: March 20, 2003
    Inventors: Donald C. Sorenson, Jiening Ao, Steven E. Blashewski, John W. Brickell, Florin Farcas, Richard J. Futch, Joseph Graham Mobley, John A. Ritchie,, Lamar E. West,
  • Patent number: 6285253
    Abstract: Voltage-induced hum modulation in an amplifier can be caused when shunt capacitors begin to saturate and enter their non-linear region of operation. Bypass coils within the amplifier are magnetically coupled to the shunt capacitors and exacerbate hum modulation by coupling additional energy to the shunt capacitors. By introducing a resistance (R) in series with the shunt capacitors (C), energy that would normally be stored in the shunt capacitors (C) is dissipated. As a result, the shunt capacitors (C) remain in their linear region of operation more often and present a more stable impedance. The resistor (R) is especially beneficial at reducing hum modulation at the resonant frequency of the shunt capacitors (C), when the transfer of energy from the bypass coils (L) is at a maximum.
    Type: Grant
    Filed: December 28, 1999
    Date of Patent: September 4, 2001
    Assignee: Scientific-Atlanta, Inc.
    Inventors: Jiening Ao, Steven E. Blashewski, John W. Brickell, Pieter G. Ibelings
  • Publication number: 20010014551
    Abstract: A plug-in module (100) for electronic equipment (425) includes circuitry (140) for processing electrical signals, a housing (400) for at least partially enclosing the circuitry (140), and at least one electrical pin (115) extending from a bottom surface of the housing (400), coupled to the circuitry (140), and having a first length. The module (100) also includes an installation guide (420) extending from the bottom surface of the housing (400) and having a second length greater than the first length such that, as the plug-in module (100) is inserted into a receiving member (125) of a substrate (120) to which it is to be mounted, the installation guide (420) contacts the receiving member (125) before the at least one electrical pin (115) contacts a receptacle (130) so that the pin (115) is guided into the receptacle (130).
    Type: Application
    Filed: July 21, 1999
    Publication date: August 16, 2001
    Inventors: STEVEN E. BLASHEWSKI, ANDREW F. MCCANN