Patents by Inventor Steven Lumetta

Steven Lumetta 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: 7646979
    Abstract: A system for simultaneously transmitting and receiving multiple data messages on a unidirectional ring having a plurality of nodes coupled thereto is described. This technique utilizes a medium access (MAC) protocol for a multi-gigabit-per-second local-area optical wavelength division multiplexed (WDM) network that is particularly well suited for high-performance computing environments that need a network that provides quality of service and the ability to enforce service level agreements. The protocol uses an asynchronous, unslotted, tokenless, and collision-free access scheme that is arbitrated by a centralized scheduler. The embodiment is based on a folded-bus unidirectional ring that is passively optically tapped by the nodes to both transmit data onto the network and to receive data from the network.
    Type: Grant
    Filed: November 26, 2001
    Date of Patent: January 12, 2010
    Assignee: NetApp, Inc.
    Inventors: Gene Ciancaglini, Steven Lumetta, Muriel Medard, John D. Moores, Salil A. Parikh, Mark R. Parquette
  • Patent number: 7603033
    Abstract: A fiber-optic networking system that can survive a break in the fiber and restore full connectivity to all nodes in the network. The network can detect the presence of a cut in the fiber, locate the cut, recover from the cut, and restore the communication capacity that was available before the cut. The network is also capable of automatically determining the existence and identity of the nodes in the network, the distance of the node from the headend, and the executing procedures to handle both planned and unplanned (i.e., during a fault) removal of nodes from the network.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: October 13, 2009
    Assignee: Netapp, Inc.
    Inventors: Steven Lumetta, Muriel Medard
  • Patent number: 7406029
    Abstract: A fiber-optic networking system that can survive a break in the fiber and restore full connectivity to all nodes in the network. The network can detect the presence of a cut in the fiber, locate the cut, recover from the cut, and restore the communication capacity that was available before the cut. The network is also capable of automatically determining the existence and identity of the nodes in the network, the distance of the node from the headend, and the executing procedures to handle both planned and unplanned (i.e., during a fault) removal of nodes from the network.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: July 29, 2008
    Assignee: NetApp, Inc.
    Inventors: Gene Ciancaglini, Michael Garofalo, James Hart, Steven Lumetta, Muriel Medard, John D. Moores, Salil A. Parikh, Mark R. Parquette, William Proulx, Michael Rydeen
  • Patent number: 7289499
    Abstract: A method and apparatus for a communications network that executes a medium access control (MAC) protocol that permits multiple access to a shared medium or shared switching fabric. The MAC protocol uses a bandwidth allocator to regulate access to the network by sending a permission message to a node, allowing it to transmit to a specific set of nodes for a specific length of time. The medium and switching fabric can carry one or more protocols, each of varying framing format and native bitrate. The switching fabric provides a connection-oriented bufferless data transport service that preserves frame ordering. An illustrative embodiment uses a slotted master/slave time-division multiplexed access (TDMA) scheme to allow flexible provisioning of network bandwidth.
    Type: Grant
    Filed: July 16, 2002
    Date of Patent: October 30, 2007
    Assignee: Network Appliance, Inc.
    Inventors: Stephen R. Chinn, Gene M. Ciancaglini, Michael M. Garofalo, James A. Hart, Steven Lumetta, Michael Lupinacci, Paul Marichal, Muriel Medard, John D. Moores, Guy Oliveira, Salil A. Parikh, Mark R. Parquette, William Proulx, Donald Proulx, Michael Rydeen