Patents by Inventor Eugene W. Campbell

Eugene W. Campbell 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).

  • Publication number: 20170156986
    Abstract: A pill bottle labeling system having a pill bottle, open top housing. The housing is used for holding a plurality of pill bottles with bottle caps. The system includes a plurality of bottle cap labels with an adhesive backing. The bottle cap labels having different drug names and vitamin supplement names printed thereon. The bottle cap labels are attached to a top of the bottle caps. The labels provide quick identification of a pill from a selected bottle. Also, the labeling system includes a time of day and night labels with an adhesive backing. The time of day and night labels are attached to a side of the pill bottles. The time of day and night labels provide for identifying a time of day or night when the pill is to be taken.
    Type: Application
    Filed: December 7, 2015
    Publication date: June 8, 2017
    Inventor: Eugene W. Campbell
  • Patent number: 6917733
    Abstract: An optical switch globally minimizes maximum tilt angles used to route optical signals from input to output by disposition of an input array of first tiltable micromirrors within a first boundary typically having top-bottom reflection symmetry and left-right reflection symmetry and by disposition of an output array of second tiltable micromirrors within a second boundary a symmetry which matches the symmetry for the input array, the output array and the input array being disposed opposing one another and normal to parallel central axes and further being offset from one another in the plane of the normals to the arrays, so that a collimated beamlet impinging on the center the input array and reflected off at an equivalent angle intersects the output array at an offset.
    Type: Grant
    Filed: April 3, 2003
    Date of Patent: July 12, 2005
    Assignee: Glimmerglass Networks, Inc.
    Inventors: Eugene W. Campbell, Bryan P. Staker
  • Patent number: 6909510
    Abstract: To measure a convex mirror, a reference beam and a measurement beam are both provided through a single optical fiber. A positive auxiliary lens is placed in the system to give a converging wavefront onto the convex mirror under test. A measurement is taken that includes the aberrations of the convex mirror as well as the errors due to two transmissions through the positive auxiliary lens. A second measurement provides the information to eliminate this error. A negative lens can also be measured in a similar way. Again, there are two measurement set-ups. A reference beam is provided from a first optical fiber and a measurement beam is provided from a second optical fiber. A positive auxiliary lens is placed in the system to provide a converging wavefront from the reference beam onto the negative lens under test. The measurement beam is combined with the reference wavefront and is analyzed by standard methods.
    Type: Grant
    Filed: January 23, 2004
    Date of Patent: June 21, 2005
    Assignee: The Regents of the University of California
    Inventors: Gary E. Sommargren, Eugene W. Campbell
  • Patent number: 6907155
    Abstract: In a folded three-dimensional free-space optical switch including a set of fibers and an optical system for producing collimated beamlets aligned to intersect an array of dual axis micromirrors of coplanar input and output mirror elements, and a folding mirror, the input and output micromirrors are arranged in a pattern wherein either the input or output mirror set is disposed along an annulus and wherein the complementary output or input mirror set is disposed within the annulus in order to globally minimize maximum tilt angles for a two-dimensional locus of tilt angles of the micromirror set. The beamlets are routed from assigned input fibers to corresponding input moveable mirrors to assigned output fibers via the static folding mirror and corresponding output moveable mirrors.
    Type: Grant
    Filed: October 15, 2002
    Date of Patent: June 14, 2005
    Inventors: Bryan P. Staker, Eugene W. Campbell, Paul H. Pax
  • Publication number: 20040150834
    Abstract: To measure a convex mirror, a reference beam and a measurement beam are both provided through a single optical fiber. A positive auxiliary lens is placed in the system to give a converging wavefront onto the convex mirror under test. A measurement is taken that includes the aberrations of the convex mirror as well as the errors due to two transmissions through the positive auxiliary lens. A second measurement provides the information to eliminate this error. A negative lens can also be measured in a similar way. Again, there are two measurement set-ups. A reference beam is provided from a first optical fiber and a measurement beam is provided from a second optical fiber. A positive auxiliary lens is placed in the system to provide a converging wavefront from the reference beam onto the negative lens under test. The measurement beam is combined with the reference wavefront and is analyzed by standard methods.
    Type: Application
    Filed: January 23, 2004
    Publication date: August 5, 2004
    Applicant: The Regents of the University of California
    Inventors: Gary E. Sommargren, Eugene W. Campbell
  • Publication number: 20040071393
    Abstract: In a folded three-dimensional free-space optical switch including a set of fibers and an optical system for producing collimated beamlets aligned to intersect an array of dual axis micromirrors of coplanar input and output mirror elements, and a folding mirror, the input and output micromirrors are arranged in a pattern wherein either the input or output mirror set is disposed along an annulus and wherein the complementary output or input mirror set is disposed within the annulus in order to globally minimize maximum tilt angles for a two-dimensional locus of tilt angles of the micromirror set. The beamlets are routed from assigned input fibers to corresponding input moveable mirrors to assigned output fibers via the static folding mirror and corresponding output moveable mirrors.
    Type: Application
    Filed: October 15, 2002
    Publication date: April 15, 2004
    Applicant: Glimmerglass, Networks Inc.
    Inventors: Bryan P. Staker, Eugene W. Campbell, Paul H. Pax
  • Patent number: 6704112
    Abstract: To measure a convex mirror, a reference beam and a measurement beam are both provided through a single optical fiber. A positive auxiliary lens is placed in the system to give a converging wavefront onto the convex mirror under test. A measurement is taken that includes the aberrations of the convex mirror as well as the errors due to two transmissions through the positive auxiliary lens. A second, measurement provides the information to eliminate this error. A negative lens can also be measured in a similar way. Again, there are two measurement set-ups. A reference beam is provided from a first optical fiber and a measurement beam is provided from a second optical fiber. A positive auxiliary lens is placed in the system to provide a converging wavefront from the reference beam onto the negative lens under test. The measurement beam is combined with the reference wavefront and is analyzed by standard methods.
    Type: Grant
    Filed: October 17, 2000
    Date of Patent: March 9, 2004
    Assignee: The Regents of the University of California
    Inventors: Gary E. Sommargren, Eugene W. Campbell