Patents Assigned to Physical Optics Corporation
  • Patent number: 8798148
    Abstract: One subject of this invention is the development of a novel region of interest (ROI) method, or Frame Segmentation Method that can be provided within a video stream, in real-time, or more precisely within a few milliseconds of video frame duration of 30 msec, or even in the sub-millisecond range. This video frame segmentation is the basis of Pre-ATR-based Ultra-Real-Time (PATURT) video compression. Still other subjects of this invention are morphing compression, and watermarking, also based on the PATURT. The applications of the PATURT innovation include ROI-based real-time video recording that has special applications for aircraft pilot/cockpit video recording in “black-box” devices, recording aircraft accidents, or catastrophes. Such black-box devices usually need to pass high impact (3400 g), high temperature (1100° C., in 1 h), and other harsh environmental tests. In this invention, they also have the capability of reporting the last cockpit events up to 0.
    Type: Grant
    Filed: June 15, 2007
    Date of Patent: August 5, 2014
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Tomasz Jannson, Wenjian Wang
  • Patent number: 8756439
    Abstract: A non-transient computer usable medium has computer usable instructions embodied thereon, the computer usable instructions configured to cause a computer device to perform the steps of receiving an intermediate program code prior to execution of the intermediate program code; recognizing data storage commands within the intermediate program code; modifying the intermediate program code such that, during execution of the intermediate program code, the data is encrypted before it is stored; recognizing data retrieval commands within the intermediate program code; modifying the intermediate program code such that, during execution of the intermediate program code, the data is decrypted after it is retrieved; and providing the modified intermediate program code for execution.
    Type: Grant
    Filed: August 30, 2010
    Date of Patent: June 17, 2014
    Assignee: Physical Optics Corporation
    Inventors: Tomasz Jannson, Thomas Forrester, Kevin Duane Degrood, Kathy Mai Nguyen, Andrew Kostrzewski, Kang Lee, Eric Gans, Kevin Carl Walter
  • Patent number: 8743199
    Abstract: A multifacet mirror comprises a catoptric structure configured to reflect light from a first field of view onto an image plane comprising a plurality of sensors, the catoptric structure having a surface comprising a plurality of facets separated by a plurality of catoptric regions; wherein a facet of the plurality of the facets has a second field of view that is smaller than the predetermined field of view; and wherein a catoptric region of the plurality or catoptric regions between two facets of the plurality of facets is configured to reflect light from a world point within the first field of view onto two of the sensors of the plurality of sensors.
    Type: Grant
    Filed: August 30, 2010
    Date of Patent: June 3, 2014
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Tomasz Jannson, Ranjit Pradhan, Nathanael Keehoon Kim, Wenjian Wang
  • Patent number: 8705694
    Abstract: The present invention provides systems and methods for x-ray imaging. In some embodiments, an aperture, or a plurality thereof, are configured to have image transfer functions lacking a zero within a usable spatial frequency range. In further embodiments, the image transfer function is determined according to the shape of the aperture and the usable spatial frequency range is determined according to a usable signal to noise ratio.
    Type: Grant
    Filed: November 23, 2009
    Date of Patent: April 22, 2014
    Assignee: Physical Optics Corporation
    Inventors: Victor Grubsky, Tomasz Jannson, Edward Matthew Patton, Volodymyr Romanoov, Gennady Medvedkin, Paul Shnitser, Keith Shoemaker
  • Patent number: 8687810
    Abstract: The present invention provides a method for a data encryption device to perform network communications, the method comprising obtaining an indexed array of encryption keys, wherein the indexed array of encryption keys is shared with a data decryption device; obtaining a message to be encrypted; using a first random or pseudorandom number to determine an index; obtaining a first key from the array of encryption keys, wherein the first key corresponds to the index; selecting a second key from the plurality of encryption keys; encrypting the message using the first key and a second random or pseudorandom number; encrypting the index using the second key and a third random or pseudorandom number; transmitting the encrypted message and the encrypted index to the data decryption device.
    Type: Grant
    Filed: May 8, 2012
    Date of Patent: April 1, 2014
    Assignee: Physical Optics Corporation
    Inventors: Leonid Bukshpun, Thomas Forrester, Tomasz Jannson, Andrew Kostrzewski, Alexander Milovanov, Ranjit Pradhan
  • Patent number: 8665440
    Abstract: A spectral imaging system comprises a plurality of spectral units arranged in an array, each spectral unit of the plurality of spectral units comprising: a microlens having an optical axis; a spectral filter having a center wavelength and aligned with the optical axis; a fiber optic bundle, the fiber optic bundle having a curved light receiving surface and a planar light output surface, wherein the curved light receiving surface is aligned with the optical axis; and a plurality of pixel sensors configured to receive light from the planar light output surface of the fiber optic taper portion.
    Type: Grant
    Filed: February 10, 2011
    Date of Patent: March 4, 2014
    Assignee: Physical Optics Corporation
    Inventors: Iouri V. Kompaniets, Tomasz Jannson, Ranjit Pradhan
  • Patent number: 8644896
    Abstract: A tunable notch filter, comprises a transmission line coupled to an antenna; a plurality of ring resonators inductively coupled to the transmission line, wherein each ring resonator of the plurality of ring resonators is grounded and comprises a variable microelectromechanical systems (MEMS) capacitor; wherein a set of variable MEMS capacitors of the plurality of variable MEMS capacitors are independently tunable to vary a notch location and a notch width of the tunable notch filter; and wherein a set of ring resonators of the plurality of ring resonators further comprises an attenuator configured to reduce power reflected from the antenna.
    Type: Grant
    Filed: December 3, 2010
    Date of Patent: February 4, 2014
    Assignee: Physical Optics Corporation
    Inventors: Daniel Mark Bock, Tomasz Jannson, Nathanael Keehoon Kim, Alireza Shapoury, Davis Tran
  • Patent number: 8615612
    Abstract: An avionics data storage device and data transfer system are provided. The data storage device, has a slanted, “shark-like” door, which provides an environmental seal when not installed in the data transfer system. The storage device and data transfer system maintain environmental seals at all times other than installation. The storage device and transfer system can implement a variety of identification and authentication methods, including electrical, physical, and optical authentication or identification.
    Type: Grant
    Filed: January 18, 2013
    Date of Patent: December 24, 2013
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Kang Lee, Sookwang Ro, Thomas Forrester, Tomasz Jannson, Michael Alan Thompson
  • Patent number: 8576406
    Abstract: A method of constructing a non-imaging beam transformer includes reducing a tailored illumination function from a predetermined light source to a source point response illumination function; calculating a plurality of transformation pairs for the predetermined light source, the transformation pairs identifying the radii of illumination of the light source at given source output angles; determining a desired lighting profile for light output at a region of interest to be illuminated by the beam transformer; determining a surface profile of a surface of the beam transformer such that for given output angles of the light source, the transformation pairs at those output angles are satisfied to correspond to the desired lighting profile; and constructing the beam transformer having the surface profile determined based on the transformation pairs. The method can include characterizing a specific angular output distribution of a light source to calculate the transformation pairs.
    Type: Grant
    Filed: July 23, 2009
    Date of Patent: November 5, 2013
    Assignee: Physical Optics Corporation
    Inventors: Tomasz Jannson, Ilya Agurok, Thomas Forrester, Ranjit Pradhan, Min-Yi Shih
  • Patent number: 8400162
    Abstract: A method of monitoring battery capacity comprises determining a starting capacity of a battery; determining an activity coefficient for a device connected to the battery; determining a voltage and current profile for the battery using the starting capacity; determining a voltage and current operating point for the device using the activity value for the device; and determining an updated capacity of the battery using the voltage and current profile for the battery and the voltage and current operating point for the device.
    Type: Grant
    Filed: April 9, 2010
    Date of Patent: March 19, 2013
    Assignee: Physical Optics Corporation
    Inventors: Tomasz Jannson, Thomas Forrester, Kevin Duane Degrood, Kathy Mai Nguyen, Kang Lee, Eric Gans, Kevin Carl Walter
  • Patent number: 8376760
    Abstract: An avionics data storage device and data transfer system are provided. The data storage device, has a slanted, “shark-like” door, which provides an environmental seal when not installed in the data transfer system. The storage device and data transfer system maintain environmental seals at all times other than installation. The storage device and transfer system can implement a variety of identification and authentication methods, including electrical, physical, and optical authentication or identification.
    Type: Grant
    Filed: February 2, 2011
    Date of Patent: February 19, 2013
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Kang Lee, Sookwang Ro, Thomas Forrester, Tomasz Jannson, Michael Alan Thompson
  • Patent number: 8378277
    Abstract: An optical impact system controls munitions termination through sensing proximity to a target and preventing effects of countermeasures on false munitions termination. Embodiments can be implemented on in a variety of munitions such as small and mid caliber that can be applicable in non-lethal weapons and in weapons of high lethality with airburst capability for example and in guided air-to-ground and cruise missiles. Embodiments can improve accuracy, reliability and lethality of munitions depending on its designation without modification in a weapon itself and make the weapon resistant to optical countermeasures.
    Type: Grant
    Filed: October 29, 2010
    Date of Patent: February 19, 2013
    Assignee: Physical Optics Corporation
    Inventors: Sergey Sandomirsky, Vladimir Esterkin, Thomas C. Forrester, Tomasz Jannson, Andrew Kostrzewski, Alexander Naumov, Naibing Ma, Sookwang Ro, Paul I. Shnitser
  • Patent number: 8344485
    Abstract: An integrated circuit die comprises a device layer comprising a plurality of semiconductor devices; an interconnect layer comprising a plurality of interconnect paths connecting the semiconductor devices and embedded in a dielectric material; and a plurality of hard nanoparticles embedded in the dielectric material of the interconnect layer, the hard nanoparticles having a hardness greater than a hardness of the dielectric material and of a hardness of the interconnect paths.
    Type: Grant
    Filed: October 11, 2010
    Date of Patent: January 1, 2013
    Assignee: Physical Optics Corporation
    Inventors: Kang Lee, Thomas Forrester, Eric Gans, Kevin Carl Walter, Tomasz Jannson
  • Patent number: 8308489
    Abstract: Electrical garments and components for use in electrical garments are provided. A communication medium of various forms is integrated into a garment seam that is used to join two or more portions of a garment. The communication media can be used to provide electrical or other electromagnetic connection for coupling among a plurality of electrical devices associated with the garment. Accordingly, the electrical garment can be configured for a plurality of uses, applications and environments, depending on the electrical devices associated therewith. The electrical devices can be configured to be attached to or integrated with the garment in a releasable fashion or in a more permanent configuration. The electrical devices can be chosen for their desired functionality and interconnected with the communication media, which is at least partially integrated within the garment seams. Additional embodiments provide an electronic connector suitable for use with seams incorporating electronic wiring.
    Type: Grant
    Filed: October 27, 2008
    Date of Patent: November 13, 2012
    Assignee: Physical Optics Corporation
    Inventors: Kang S. Lee, Thomas Forrester, Eric Gans, Kevin Carl Walter, David J. Silvestris, Tomasz Jannson
  • Patent number: 8199387
    Abstract: The present invention provides a holographic storage apparatus comprising a polarizing beam splitter configured to split an incoming beam into an object beam and a reference beam; a first spatial light modulator configured to modulate the object beam with an array of data; a second spatial light modulator configured to phase modulate the reference beam with an orthogonal phase function; a holographic medium configured to record an interference pattern between the modulated object beam and the modulated reference beam; a first image sensor configured to read an image of the modulated object beam; and a second image sensor configured to read an image of the modulated reference beam.
    Type: Grant
    Filed: September 14, 2009
    Date of Patent: June 12, 2012
    Assignee: Physical Optics Corporation
    Inventors: Tin Maung Aye, Tomasz Jannson, Andrew Kostrzewski, Min-Yi Shih
  • Patent number: 8194858
    Abstract: The present invention provides a method for a data encryption device to perform network communications, the method comprising obtaining an indexed array of encryption keys, wherein the indexed array of encryption keys is shared with a data decryption device; obtaining a message to be encrypted; using a first random or pseudorandom number to determine an index; obtaining a first key from the array of encryption keys, wherein the first key corresponds to the index; selecting a second key from the plurality of encryption keys; encrypting the message using the first key and a second random or pseudorandom number; encrypting the index using the second key and a third random or pseudorandom number; transmitting the encrypted message and the encrypted index to the data decryption device.
    Type: Grant
    Filed: November 25, 2009
    Date of Patent: June 5, 2012
    Assignee: Physical Optics Corporation
    Inventors: Leonid Bukshpun, Thomas Forrester, Tomasz Jannson, Andrew Kostrzewski, Alexander Milovanov, Ranjit Pradhan
  • Patent number: 8063307
    Abstract: Self-healing electrical garments and self-healing electrical conductors and components for use in electrical garments are provided. A communication medium of various forms is integrated into a garment seam that is used to join two or more portions of a garment. The communication media can be used to provide electrical or other electromagnetic connection for coupling among a plurality of electrical devices associated with the garment. The self-healing electrical conductor may be used as part of a garment portion or may be used as a joining fiber in a variety of techniques to join garment portions together. The self-healing electrical conductor comprises an electrical conductor, a conductive polymer immediately surrounding or adjacent to the electrical conductor, an insulator enclosing the electrical conductor and the conductive polymer.
    Type: Grant
    Filed: November 17, 2008
    Date of Patent: November 22, 2011
    Assignee: Physical Optics Corporation
    Inventors: Leonid Bukshpun, Ranjit Pradhan, Kang S. Lee, Thomas Forrester, Tomasz Jannson
  • Patent number: 8004409
    Abstract: An information carrier in a preferred embodiment is worn like a dog-tag and carries data such as medical information. The tag operates wirelessly, communicating with a nearby reader which interrogates the tag with a selected combination of RF signal frequencies. Extremely long term battery usage is achieved by connecting the battery in the tag only when the proper combination of RF signals, each at least at a minimum threshold power level, is received at the tag to produce a trigger voltage in activation logic to close a solid state switch. After a sequence of communications between the reader and the tag is then completed to transfer selected data from the memory, the battery is again disconnected to preserve battery energy for very long periods of time. The battery may be slowly recharged by ambient energy using a scavenging antenna array.
    Type: Grant
    Filed: February 13, 2007
    Date of Patent: August 23, 2011
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Tomasz Jannson, Shean T. McMahon, Sookwang Ro, Raghbir Tahim
  • Patent number: 7899114
    Abstract: A system and method that will improve QoS (Quality of Service) of wireless video transmission systems. This is done by “in-fly” monitoring of BER by periodically transmitting “test images”, which images are known to the RF-receiver (Rx). BER can be automatically computed, within a related BIT (Built-in-Test) procedure that is also the subject of this invention. This allows predictions of a proper increasing, or decreasing of bandwidth OVH-level, in order to compensate for a BER-change. BER computation is facilitated by distinguishing video frames based on whether they depict new spatial events or related temporal events. Another subject of this invention is a motion-based pre-ATR method that is an introduction to common ATR, or pattern recognition methods. Yet another subject of this invention is a process of implanting error correcting bits into a payload, in the form of imperceptible watermarks.
    Type: Grant
    Filed: November 21, 2005
    Date of Patent: March 1, 2011
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Tomasz Jannson
  • Patent number: D681648
    Type: Grant
    Filed: January 31, 2011
    Date of Patent: May 7, 2013
    Assignee: Physical Optics Corporation
    Inventors: Andrew Kostrzewski, Kang Lee, Sookwang Ro, Thomas Forrester, Tomasz Jannson, Michael Alan Thompson