Patents by Inventor David J. Knapp

David J. Knapp 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: 7809023
    Abstract: A communication system, network interface, and communication port is provided for interconnecting a network of multimedia devices. The multimedia devices can send streaming and/or non-streaming data across the network. The network accommodates all such types of data and assigns data types to time slots or frame segments within each frame to ensure streaming data maintains its temporal relationship at the receiver consistent with the transmitter. A signaling byte is preferably used to keep track of an amount by which isochronous streaming data occupies a frame segment.
    Type: Grant
    Filed: December 20, 2007
    Date of Patent: October 5, 2010
    Assignee: Standard Microsystems Corporation
    Inventors: David J. Knapp, Patrick Heck
  • Patent number: 7801159
    Abstract: A communication system, network interface, and communication port is provided for interconnecting a network of multimedia devices. The multimedia devices can send streaming and/or non-streaming data across the network. The network accommodates all such types of data and assigns data types to time slots or frame segments within each frame to ensure streaming data maintains its temporal relationship at the receiver consistent with the transmitter. A signaling byte is preferably used to keep track of an amount by which isochronous streaming data occupies a frame segment.
    Type: Grant
    Filed: December 20, 2007
    Date of Patent: September 21, 2010
    Assignee: Standard Microsystems Corporation
    Inventors: David J. Knapp, Patrick Heck
  • Publication number: 20100188972
    Abstract: A data communication system and an associated network node implementation is disclosed that, in certain embodiments, uses single-channel bi-directional communication links between nodes to send frames of data. The network nodes can be connected together in a ring or daisy chain topology with data frames sent in alternating directions through the bi-directional links. Such networks initially configured in a physical ring topology can tolerate single point failures by automatically switching to a logical daisy chain topology.
    Type: Application
    Filed: January 27, 2009
    Publication date: July 29, 2010
    Inventor: David J. Knapp
  • Publication number: 20100135309
    Abstract: A communication system, network, interface, and port architecture are provided for transporting different types of data across a network. The network can be arranged by connecting the ports in a daisy chain fashion to achieve a ring architecture or topology. The network forwards data according to a specific network protocol, and any incoming data that follows that protocol will be sent onto the network. If the incoming data protocol does not match the network protocol, then the incoming data is not sent immediately to the network, but instead is sent to an input pin of a device upon the network specifically designed to receive that incoming data. The network, therefore, has ports that support both compliant and non-compliant incoming data, and the devices that produce such data.
    Type: Application
    Filed: February 2, 2010
    Publication date: June 3, 2010
    Applicant: STANDARD MICROSYSTEMS CORPORATION
    Inventors: Herbert Hetzel, David J. Knapp
  • Patent number: 7702405
    Abstract: A communication system, network, interface, and port architecture are provided for transporting different types of data across a network. The network can be arranged by connecting the ports in a daisy chain fashion to achieve a ring architecture or topology. The network forwards data according to a specific network protocol, and any incoming data that follows that protocol will be sent onto the network. If the incoming data protocol does not match the network protocol, then the incoming data is not sent immediately to the network, but instead is sent to an input pin of a device upon the network specifically designed to receive that incoming data. The network, therefore, has ports that support both compliant and non-compliant incoming data, and the devices that produce such data.
    Type: Grant
    Filed: June 2, 2004
    Date of Patent: April 20, 2010
    Assignee: Standard Microsystems Corporation
    Inventors: Herbert Hetzel, David J. Knapp
  • Publication number: 20100061734
    Abstract: Exemplary optical communication devices are described which, in certain embodiments, derive power optically from and communicate optically to a reading device. The communication devices may also receive data from modulated light from the reading device to achieve a bi-directional optical communication link between the self-powered optical communication device and the reading device. In some embodiments, the communication device is powered by ambient light, such as sunlight, captures data from a sensor, and communicates the stored data some time later to a reading device. In some embodiments, the communication device is powered locally and communicates through air, optical fiber, or other medium with another communication device.
    Type: Application
    Filed: September 1, 2009
    Publication date: March 11, 2010
    Inventor: David J. Knapp
  • Patent number: 7667190
    Abstract: A control mechanism pins an optical fiber assembly on and off gimbal and between gimbals to route the assembly from an off-gimbal optical source across the gimbal axis/axes to an on-gimbal optical element so that the fiber assembly moves with the rotation of the gimbals. To accommodate a relatively large range of motion, the control mechanism is suitably configured to route the fiber assembly in a “U-shaped” loop with one end pinned off-gimbal in a stationary guide track and the other end pinned on-gimbal point in a rotating guide track so that the loose fiber assembly is constrained in the concentric tracks on and off gimbal. As the gimbal rotates, the loop seats onto one guiding track and peels off of the other guiding track while always maintaining its U shape.
    Type: Grant
    Filed: October 9, 2007
    Date of Patent: February 23, 2010
    Assignee: Raytheon Company
    Inventors: James P. Mills, David G. Garrett, Wayne L. Sunne, David J. Knapp, Daniel W. Brunton, David G. Anthony, Emmet R. Anderson, Daniel C. Harrison, Frank E. Smith, III, Jim R. Hicks
  • Patent number: 7664214
    Abstract: A communication system, clock generation circuit, and method are provided for receiving jitter upon data and to generate a clock reference that does not contain the received jitter. The clock reference can be used either by a digital subsystem of a communication system node, or can be transmitted as substantially jitter-free data from that node to a downstream node of the communication system. Instead of recovering the clock reference from the data having jitter, a pattern is regularly defined within the data stream preferably at periodic, timed intervals. The data pattern may be made up of a series of non-transitions which, regardless of any jitter in the data itself, does not impute any jitter onto a phase-locked loop triggered from an edge of the non-transitioning data pattern. Using the edge as a reference point, a jitter-free clocking signal can be derived at the same frequency as a clocking signal which would normally be produced from the jitter-induced data.
    Type: Grant
    Filed: September 24, 2002
    Date of Patent: February 16, 2010
    Assignee: Standard Microsystems Corporation
    Inventors: David J. Knapp, Jason E. Lewis
  • Patent number: 7634694
    Abstract: A communication system for transmitting and receiving a sequence of bits, and the methodology for transferring that sequence of bits are provided. The communication system includes a transmitting circuit and a receiving circuit. Within the transmitting circuit is a scrambler that comprises a shift register, an enable circuit, and an output circuit. The shift register temporarily stores n bits within the sequence of bits, and the enable circuit enables the shift register to store bits that arise only within the payload section of a frame. The output circuit includes a feedback, and several taps within the n stages to scramble logic values within the sequence of n bits output from the shift registers thus effectively preventing in most instances the sequence of bits from exceeding n number of the same logic value. Within the receiving circuit is a descrambler also having a shift register, an enable circuit, and an output circuit. The descrambler recompiles the scrambled data back to its original form.
    Type: Grant
    Filed: October 15, 2004
    Date of Patent: December 15, 2009
    Assignee: Standard Microsystems Corporation
    Inventors: Christopher M. Green, David J. Knapp, Horace C. Ho
  • Patent number: 7609797
    Abstract: A communication system, clock recovery circuit, and method are provided for allowing data to be transmitted across a communication system and between clock recovery circuits absent a clock master specifically designed for one node of the communication system. Absent a clock master, the communication system is permitted to enter into an all slave mode, with periodic unlock conditions possibly rotating about the communication system ring topology. However, the unlock condition can be readily detected and if the received data bitstream formed into a recovered clock exceeds a threshold above or is less than a threshold below a reference clock generated during instances of unlock, then the clock recovery circuit will fix the synchronizing clock to the reference clock, and cause the bitstream to resynchronize to the reference clock before the reference clock is again disabled to allow the communication system to re-enter the all slave and rotating unlock condition.
    Type: Grant
    Filed: September 4, 2003
    Date of Patent: October 27, 2009
    Assignee: Standard Microsystems Corporation
    Inventors: David J. Knapp, Jason E. Lewis
  • Publication number: 20090250597
    Abstract: A control mechanism pins an optical fiber assembly on and off gimbal and between gimbals to route the assembly from an off-gimbal optical source across the gimbal axis/axes to an on-gimbal optical element so that the fiber assembly moves with the rotation of the gimbals. To accommodate a relatively large range of motion, the control mechanism is suitably configured to route the fiber assembly in a “U-shaped” loop with one end pinned off-gimbal in a stationary guide track and the other end pinned on-gimbal point in a rotating guide track so that the loose fiber assembly is constrained in the concentric tracks on and off gimbal. As the gimbal rotates, the loop seats onto one guiding track and peels off of the other guiding track while always maintaining its U shape.
    Type: Application
    Filed: October 9, 2007
    Publication date: October 8, 2009
    Inventors: JAMES P. MILLS, DAVID G. GARRETT, WAYNE L. SUNNE, DAVID J. KNAPP, DANIEL W. BRUNTON, DAVID G. ANTHONY, EMMET R. ANDERSON, DANIEL C. HARRISON, FRANK E. SMITH, III, JIM R. HICKS
  • Patent number: 7541994
    Abstract: A radio-frequency-device test range (the Refractive Compact Range) includes a physical space having a source zone for placing an antenna or array of antennas, and a test zone for placing a sensor or other device to be tested. A lens and an apodizer are placed in the physical space between the source zone and the test zone. The lens serves to collimate radiated energy emanating from the antenna toward the test zone. The lens may have a surface treatment, such as an anti-reflective coating or a surface pattern, on one or both surfaces. The apodizer functions to keep energy from diffracting off the edge of the lens and getting into the field of view (the test zone). The sensor or other device to be tested may be placed on a moveable mount to allow it to be moved, to simulate relative movement of the device and a radio frequency source, such as radiated by an antenna.
    Type: Grant
    Filed: May 17, 2006
    Date of Patent: June 2, 2009
    Assignee: Raytheon Company
    Inventors: Dean R. Marshall, David J. Knapp
  • Patent number: 7327742
    Abstract: A communication system, network interface, and communication port is provided for interconnecting a network of multimedia devices. The multimedia devices can send streaming and/or non-streaming data across the network. The network accommodates all such types of data and assigns data types to time slots or frame segments within each frame to ensure streaming data maintains its temporal relationship at the receiver consistent with the transmitter. A signaling byte is preferably used to keep track of an amount by which isochronous streaming data occupies a frame segment.
    Type: Grant
    Filed: June 26, 2002
    Date of Patent: February 5, 2008
    Assignee: Standard Microsystems Corp.
    Inventors: David J. Knapp, Patrick Heck
  • Publication number: 20070280705
    Abstract: A communication network is provided for interconnecting a network of digital systems, such as multimedia devices. Each node of the communication network may include a receiver and a transmitter. The receiver and transmitter of each node can be an optical receiver and transmitter. The optical receiver is preferably powered by two power supply pins, each providing different supply amounts. An activity detector within the receiver can be powered from a first supply amount, and the signal path of the optical receiver can be supplied from a second supply amount greater than the first supply amount. The first supply amount is provided at all times, and the second supply amount is only provided if activity is detected. A voltage regulator which provides the first supply amount can be beneficially embodied on the same integrated circuit as a network interface to reduce the manufacturing cost of the network.
    Type: Application
    Filed: June 2, 2006
    Publication date: December 6, 2007
    Applicant: STANDARD MICROSYSTEMS CORPORATION
    Inventors: David J. Knapp, Tony Susanto, Edmund M. Schneider, Wesley L. Mokry
  • Patent number: 7304296
    Abstract: A control mechanism pins an optical fiber assembly on and off gimbal and between gimbals to route the assembly from an off-gimbal optical source across the gimbal axis/axes to an on-gimbal optical element so that the fiber assembly moves with the rotation of the gimbals. To accommodate a relatively large range of motion, the control mechanism is suitably configured to route the fiber assembly in a “U-shaped” loop with one end pinned off-gimbal in a stationary guide track and the other end pinned on-gimbal point in a rotating guide track so that the loose fiber assembly is constrained in the concentric tracks on and off gimbal. As the gimbal rotates, the loop seats onto one guiding track and peels off of the other guiding track while always maintaining its U shape.
    Type: Grant
    Filed: October 5, 2005
    Date of Patent: December 4, 2007
    Assignee: Raytheon Company
    Inventors: James P. Mills, David G. Garrett, Wayne L. Sunne, David J. Knapp, Daniel W. Brunton, David G. Anthony, Emmet R. Anderson, Daniel C. Harrison, Frank E. Smith, III, Jim R. Hicks
  • Publication number: 20070268198
    Abstract: A radio-frequency-device test range (the Refractive Compact Range) includes a physical space having a source zone for placing an antenna or array of antennas, and a test zone for placing a sensor or other device to be tested. A lens and an apodizer are placed in the physical space between the source zone and the test zone. The lens serves to collimate radiated energy emanating from the antenna toward the test zone. The lens may have a surface treatment, such as an anti-reflective coating or a surface pattern, on one or both surfaces. The apodizer functions to keep energy from diffracting off the edge of the lens and getting into the field of view (the test zone). The sensor or other device to be tested may be placed on a moveable mount to allow it to be moved, to simulate relative movement of the device and a radio frequency source, such as radiated by an antenna.
    Type: Application
    Filed: May 17, 2006
    Publication date: November 22, 2007
    Inventors: Dean R. Marshall, David J. Knapp
  • Patent number: 7283564
    Abstract: A communication system, network interface, and communication port is provided for interconnecting a network of multimedia devices. The multimedia devices can send streaming and/or non-streaming data across the network. The network accommodates all such types of data and assigns data types to time slots or frame segments within each frame to ensure streaming data maintains its temporal relationship at the receiver consistent with the transmitter. A first coding violation is used to indicate the beginning of asynchronous or isochronous data placed within a segment reserved for such data. A second coding violation within the data stream may also be used to signify the end of the isochronous or asynchronous message or data transfer within that segment. Alternatively, a message length code may be placed within the first coding violation to signify how many valid packets of data will follow in lieu of, for example, using a second coding violation within the data stream sometime after the first coding violation.
    Type: Grant
    Filed: June 26, 2002
    Date of Patent: October 16, 2007
    Assignee: Standard Microsystems Corp.
    Inventors: David J. Knapp, Horace C. Ho
  • Patent number: 7272202
    Abstract: A communication system, source and destination ports of the communication system, and methodology is provided for transporting data in one of possibly three different ways. Data is transported across the network at a frame sample rate that can be the same as or different from the sample rate or master clock within the source port or the destination port. If the sample rate of the source port is known, the sample rate of the destination port can be created using a PLL within the destination port and simply employing a phase comparator in the source port. The phase comparator forwards the phase or frequency difference of the network transfer rate and the source sample rate to the destination port, which then generates a local clock equivalent to the source which then compiles audio data being played at the same rate in which it was sampled at the source. Where economically feasible, sample rate conversion can be used at the source.
    Type: Grant
    Filed: August 14, 2002
    Date of Patent: September 18, 2007
    Assignee: Standard Microsystems Corp.
    Inventors: David J. Knapp, Shivanand I. Akkihal, Matthias Winkelmann
  • Patent number: 7268368
    Abstract: A semiconductor package and method for forming the same is disclosed herein. The semiconductor package includes a package support member, a pair of optoelectronic devices spaced from each other and coupled to the package support member, and an optically transmissive portion for separately encapsulating the pair of optoelectronic devices. A pair of lenses is formed as a unibody structure with the optically transmissive portion. The semiconductor package also includes an optically opaque portion, which extends between and around the separately encapsulated devices to optically isolate encapsulated optical devices. The optically opaque portion also extends outward from portions of the encapsulated devices, thereby forming a pair of fiber optic receptacles as a unibody structure with the optically opaque portion.
    Type: Grant
    Filed: August 29, 2003
    Date of Patent: September 11, 2007
    Assignee: Standard Microsystems Corporation
    Inventor: David J. Knapp
  • Patent number: 7164691
    Abstract: A communication system, network interface, and communication port is provided for interconnecting a network of multimedia devices. The multimedia devices can send streaming and/or non-streaming data across the network. The network accommodates all such types of data and assigns data types to time slots or frame segments within each frame to ensure streaming data maintains its temporal relationship at the receiver consistent with the transmitter. A coding violation within a frame segment of one or more frames is used to indicate the absence of isochronous streaming data within the byte locations containing the coding violations. Coding violations can, therefore, be interspersed between isochronous data messages or data transfers to note that a particular portion of a frame segment does not contain isochronous data.
    Type: Grant
    Filed: June 26, 2002
    Date of Patent: January 16, 2007
    Assignee: Standard Microsystems Corporation
    Inventors: David J. Knapp, Horace C. Ho