Patents Assigned to Inphase Technologies
  • Publication number: 20060279820
    Abstract: The present invention relates to embodiments of: (1) a unitary holographic drive head assembly mounting structure; (2) an assembly comprising a unitary holographic drive head assembly mounting structure and a plurality of holographic drive head components and/or subassemblies; (3) a subassembly comprising a spatial light modulator, detector array, and a beam splitter; (4) a device comprising a spatial light modulator and a physical aperture positioned over or an imaged aperture projected onto the photoactive area of the spatial light modulator; (5) a system for optically aligning or pointing a laser in a holographic drive head assembly; (6) a light source subassembly comprising a laser, a fiber coupling lens; and an optical fiber having a fiber connector ready output end; and (7) a light source subsystem comprising a laser source, beam conditioning optics, fiber coupling optics for receiving the conditioned light beam, and a fiber optic connector for receiving the conditioned light beam from the fiber couplin
    Type: Application
    Filed: May 25, 2006
    Publication date: December 14, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Brian Riley, Aaron Wegner
  • Publication number: 20060279819
    Abstract: Systems and methods are provided or use with a light source which generates a light beam. These systems may include a detector which detects light beam information regarding a light beam exiting an etalon. The system then uses the detected information to determine whether multiple modes are present in the light beam so that the light source may be adjusted to return the light source to single mode operation.
    Type: Application
    Filed: May 25, 2006
    Publication date: December 14, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Vladimir Krneta, Larry Fabiny, Ian Redmond, Brian Riley, Aaron Wegner, Susan Hunter
  • Publication number: 20060279821
    Abstract: The present invention relates to embodiments of: (1) a unitary holographic drive head assembly mounting structure; (2) an assembly comprising a unitary holographic drive head assembly mounting structure and a plurality of holographic drive head components and/or subassemblies; (3) a subassembly comprising a spatial light modulator, detector array, and a beam splitter; (4) a device comprising a spatial light modulator and a physical aperture positioned over or an imaged aperture projected onto the photoactive area of the spatial light modulator; (5) a system for optically aligning or pointing a laser in a holographic drive head assembly; (6) a light source subassembly comprising a laser, a fiber coupling lens; and an optical fiber having a fiber connector ready output end; and (7) a light source subsystem comprising a laser source, beam conditioning optics, fiber coupling optics for receiving the conditioned light beam, and a fiber optic connector for receiving the conditioned light beam from the fiber couplin
    Type: Application
    Filed: May 25, 2006
    Publication date: December 14, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Brian Riley, Aaron Wegner
  • Patent number: 7149015
    Abstract: Disclosed are optical systems and methods of producing obliquity corrected light beams, for example, holographic recording and retrieval systems that utilize an obliquity corrected reference beam. One method includes directing a light beam reflected from a prism mirror to a reference plane with an angle of incidence to the reference plane, wherein the prism mirror varies the width of the light beam according to the angle of incidence to the reference plane. The optical system may include a holographic data storage system and the reference plane may be associated with a holographic storage medium.
    Type: Grant
    Filed: January 5, 2004
    Date of Patent: December 12, 2006
    Assignees: InPhase Technologies, Inc., Sanyo Electric Co., Ltd.
    Inventors: Jan Hoogland, Curtis A. Shuman
  • Publication number: 20060274393
    Abstract: Aspects of the present invention are generally directed to shaping coherent light beams used in a holographic system. Embodiments of the present invention are directed to beam-shaping devices positioned in the path of coherent light beams used in a holographic system to shape a coherent light beam into an essentially diffraction noise free coherent light beam of predetermined dimensions that has a continuous light beam profile of distinct intensity zones.
    Type: Application
    Filed: May 25, 2006
    Publication date: December 7, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Edeline Fotheringham, Ken Anderson, Larry Fabiny, Alan Hoskins
  • Publication number: 20060274394
    Abstract: The present invention relates to embodiments of: (1) a unitary holographic drive head assembly mounting structure; (2) an assembly comprising a unitary holographic drive head assembly mounting structure and a plurality of holographic drive head components and/or subassemblies; (3) a subassembly comprising a spatial light modulator, detector array, and a beam splitter; (4) a device comprising a spatial light modulator and a physical aperture positioned over or an imaged aperture projected onto the photoactive area of the spatial light modulator; (5) a system for optically aligning or pointing a laser in a holographic drive head assembly; (6) a light source subassembly comprising a laser, a fiber coupling lens; and an optical fiber having a fiber connector ready output end; and (7) a light source subsystem comprising a laser source, beam conditioning optics, fiber coupling optics for receiving the conditioned light beam, and a fiber optic connector for receiving the conditioned light beam from the fiber couplin
    Type: Application
    Filed: May 25, 2006
    Publication date: December 7, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Brian Riley, James Wade, Aaron Wegner
  • Publication number: 20060275670
    Abstract: The present invention relates to embodiments of a process for subjecting a holographic storage medium to illuminative treatment to: (1) enhance or optimize recording of holographic data; (2) enhance or optimize reading of recorded holographic data; and/or (3) erase recorded holographic data. The present invention also relates to embodiments of a system comprising: (a) an illuminative treatment beam; (b) means for reducing the coherence of the beam and (c) means for transmitting the reduced coherence beam to cause illuminative treatment of: (1) an unrecorded portion of a holographic storage medium to provide pre-cured portions having increased ability to stably record holographic data; (2) a recorded portion of a holographic storage medium to provide a post-cured portion having reduced residual sensitivity; and/or (3) a recorded portion of a holographic storage medium having holographic data to provide an erased portion wherein at least some of the recorded holographic data is erased.
    Type: Application
    Filed: May 25, 2006
    Publication date: December 7, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Brian Riley, Ken Anderson, Larry Fabiny, Ian Redmond, Curtis Shuman, Bradley Sissom, Kevin Curtis, Aaron Wegner, Michael Cole
  • Publication number: 20060238841
    Abstract: Disclosed is a multiplexing method and apparatus that allows holograms to be spatially multiplexed with partial spatial overlap between neighboring stacks of holograms. Each individual stack can additionally take full advantage of an alternate multiplexing scheme such as angle, wavelength, phase code, peristrophic, or fractal multiplexing, for example. An amount equal to the beam waist of the signal beam writing a hologram separates individual stacks of holograms. Upon reconstruction, a hologram and its neighbors will all be readout simultaneously. An filter is placed at the beam waist of the reconstructed data such that the neighbors that are read out are not transmitted to the camera plane. Alternatively, these unwanted reconstructions can be filtered out with an angular filter at an intermediate plane in the optical system that has a limited angular passband.
    Type: Application
    Filed: June 23, 2006
    Publication date: October 26, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Kenneth Anderson, Kevin Curtis
  • Patent number: 7116626
    Abstract: According to one aspect, a holographic storage system including micro-actuators is presented. In one example of one aspect of the invention, the device includes a spatial light modulator, a detector, a storage medium, and at least one micro-actuator configured to move at least one of the spatial light modulator, the detector, and the storage medium. The micro-actuators may include a servomechanism or the like to control the positioning of a component based on feedback associated with a misalignment of a detected image. According to another aspect of the invention, various methods for determining component misalignments of a holographic storage system are presented.
    Type: Grant
    Filed: November 27, 2002
    Date of Patent: October 3, 2006
    Assignee: InPhase Technologies, Inc.
    Inventors: Daniel D. Woods, Keith W. Malang
  • Patent number: 7112359
    Abstract: The present invention provides a method and apparatus for a multilayer optical articles. A method comprises forming a first multilayer article with a first substrate and a second substrate with a first adherent disposed between the first and second substrate. A first surface of a third substrate is then grasped with a first holder and a second adherent is then disposed on one or more surfaces selected from a second surface of the third substrate and a surface of the first multilayer article while the multilayer article is grasped by a second holder. The second adherent is then at least partially cured while the first and second holders maintain their grasp and while the inner surfaces of the first and second holders are in the selected angular relationship to form a second multilayer article.
    Type: Grant
    Filed: January 11, 2002
    Date of Patent: September 26, 2006
    Assignee: InPhase Technologies, Inc.
    Inventors: Lisa Dhar, Mark David Michaels
  • Patent number: 7092133
    Abstract: Disclosed is a multiplexing method and apparatus that allows holograms to be spatially multiplexed with partial spatial overlap between neighboring stacks of holograms. Each individual stack can additionally take full advantage of an alternate multiplexing scheme such as angle, wavelength, phase code, peristrophic, or fractal multiplexing, for example. An amount equal to the beam waist of the signal beam writing a hologram separates individual stacks of holograms. Upon reconstruction, a hologram and its neighbors will all be readout simultaneously. An filter is placed at the beam waist of the reconstructed data such that the neighbors that are read out are not transmitted to the camera plane. Alternatively, these unwanted reconstructions can be filtered out with an angular filter at an intermediate plane in the optical system that has a limited angular passband.
    Type: Grant
    Filed: October 6, 2003
    Date of Patent: August 15, 2006
    Assignee: Inphase Technologies, Inc.
    Inventors: Kenneth E. Anderson, Kevin R. Curtis
  • Publication number: 20060166104
    Abstract: A laminated holographic recording medium having (a) a first substrate having a through-hole and (b) a solid polymer matrix layer that records holographic data laminated to the first substrate and a method of manufacturing thereof are disclosed. The method of manufacturing preferably requires injecting a precursor material through the through-hole and polymerizing the precursor material in contact with the first substrate to form the polymer matrix layer.
    Type: Application
    Filed: December 22, 2005
    Publication date: July 27, 2006
    Applicant: InPhase Technologies, Inc.
    Inventors: Songvit Setthachayanon, Kuniaki Matsuda, Testuo Morimoto, Shin-Ichi Nakahara, Takeshi Someya
  • Patent number: 7079296
    Abstract: A method for monitoring diffraction while reading a hologram includes: illuminating a holographic medium with a reference beam to generate a data beam for a hologram that has been recorded at a set diffraction efficiency with a first polarization, the reference beam having a second polarization; and measuring an offset component in an output arm of the data beam.
    Type: Grant
    Filed: August 30, 2005
    Date of Patent: July 18, 2006
    Assignee: InPhase Technologies, Inc.
    Inventor: Kenneth E. Anderson
  • Patent number: 7020885
    Abstract: A data drive and a method of operating a data drive are provided. The data drive includes a drive base; a data transfer mechanism coupled to the drive base; a carriage assembly for receiving a cartridge containing a data storage medium; and a carriage assembly actuator coupled to the drive base for translating the carriage assembly to expose a plurality of radial positions of the data storage medium to the data transfer mechanism. The method includes receiving a data storage cartridge containing a rotatable data storage medium into a carriage assembly; translating the carriage assembly across a data transfer mechanism; and reading data from the data storage medium using the data transfer mechanism as the carriage assembly is being translated across the data transfer mechanism.
    Type: Grant
    Filed: July 31, 2003
    Date of Patent: March 28, 2006
    Assignee: InPhase Technologies, Inc.
    Inventor: Gregory P. Hertrich
  • Patent number: 7001541
    Abstract: The present invention provides a solution to the needs described above through a method for forming multiply patterned optical articles. The method comprises providing a micromold having a pre-patterned surface structure, disposing a photorecording medium comprising a matrix precursor and a photoactive monomer on a holder surface, moving the micromold to the photorecording medium on the holder surface such that the pre-patterned surface structure contacts the photorecording medium, wherein the photorecording medium conforms to the pre-patterned surface structure of the micromold, at least partially curing the photorecording medium adherent while the micromold pre-patterned surface structure contacts the photorecording medium, and further patterning the photorecording medium by irradiating the photorecording medium with laser light to polymerize the photoactive monomer.
    Type: Grant
    Filed: September 5, 2002
    Date of Patent: February 21, 2006
    Assignee: InPhase Technologies, Inc.
    Inventor: Lisa Dhar
  • Publication number: 20050286387
    Abstract: Methods and systems for equalizing a holographic image page and for compensating nonlinearity of a holographic data storage channel are disclosed. In one embodiment, a method for equalizing a holographic image page includes receiving the holographic image page and dividing the holographic image page into a plurality of local image regions. The method further includes generating a local alignment error vector for each local image region, computing a local finite impulse response kernel for each local image region according to the corresponding local alignment error vector, and adjusting misaligned pixels of each local image region using the corresponding local finite impulse response kernel.
    Type: Application
    Filed: June 28, 2004
    Publication date: December 29, 2005
    Applicant: InPhase Technologies, Inc.
    Inventors: Mark Ayres, Adrian Hill
  • Publication number: 20050286388
    Abstract: A method for processing data pixels in a holographic data storage system is disclosed. The method includes assigning predetermined reserved blocks throughout each data page, where each reserved block comprises known pixel patterns, determining position errors of the data page by computing the best match between regions of the data page and the predetermined reserved blocks, and compensating the data pixels at the detector in accordance with the corresponding position errors of the data page.
    Type: Application
    Filed: February 28, 2005
    Publication date: December 29, 2005
    Applicant: InPhase Technologies, Inc.
    Inventors: Mark Ayres, Alan Hoskins, Kevin Curtis
  • Publication number: 20050270856
    Abstract: The present invention provides systems and methods for logically organizing data for storage and recovery on a data storage medium using a multi-level format. The present invention also provides systems and methods for protecting data stored on data storage medium so that the data may be recovered without errors.
    Type: Application
    Filed: May 31, 2005
    Publication date: December 8, 2005
    Applicant: InPhase Technologies, Inc.
    Inventors: Tod Earhart, Mark Ayres, Will Loechel, Adrian Hill, Kenton Pharris, Kevin Curtis, William Wilson
  • Publication number: 20050270855
    Abstract: The present invention provides systems and methods for logically organizing data for storage and recovery on a data storage medium using a multi-level format. The present invention also provides systems and methods for protecting data stored on data storage medium so that the data may be recovered without errors.
    Type: Application
    Filed: May 31, 2005
    Publication date: December 8, 2005
    Applicant: InPhase Technologies, Inc.
    Inventors: Tod Earhart, Mark Ayres, Will Loechel, Adrian Hill, Kenton Pharris, Kevin Curtis, William Wilson
  • Publication number: 20050248817
    Abstract: Disclosed is an article having a holographic recording medium having digital data that cannot be seen by human eye, wherein the holographic recording medium is a holographic material that records volume holograms that permit authentication of the article and the holographic material is attached to or part of the article. Also disclosed is a method of authentication of the article.
    Type: Application
    Filed: May 7, 2004
    Publication date: November 10, 2005
    Applicant: InPhase Technologies, Inc.
    Inventors: Samuel Weaver, Robert McLeod, Kevin Curtis, Adrian Hill