Patents by Inventor James T. Veligdan

James T. Veligdan 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: 20020076181
    Abstract: An optical display panel which provides improved viewing contrast for front projection applications, and a method of producing a stacked optical waveguide panel for front projection applications, are disclosed. The optical panel includes a plurality of stacked optical waveguides, wherein each waveguide has a back face and an outlet face at opposing ends of each waveguide, and wherein each waveguide is formed of a core between an opposing pair of cladding layers, and at least one reflector connected to the back face of at least one waveguide, wherein the at least one reflector receives image light incident through at least one waveguide from the outlet face, and wherein the at least one reflector redirects the image light back through the at least one waveguide out of the outlet face. In the preferred embodiment, the outlet face is rendered black by inclusion of black within or between cladding layers.
    Type: Application
    Filed: December 15, 2000
    Publication date: June 20, 2002
    Inventor: James T. Veligdan
  • Patent number: 6400876
    Abstract: An ultrathin optical panel, and a method of producing an ultrathin optical panel, are disclosed, including stacking a plurality of glass sheets, which sheets may be coated With a transparent cladding substance or may be uncoated, fastening together the plurality of stacked coated glass sheets using an epoxy or ultraviolet adhesive, applying uniform pressure to the stack, curing the stack, sawing the stack to form an inlet face on a side of the stack and an outlet face on an opposed side of the stack, bonding a coupler to the inlet face of the stack, and fastening the stack, having the coupler bonded thereto, within a rectangular housing having an open front which is aligned with the outlet face, the rectangular housing having therein a light generator which is optically aligned with the coupler. The light generator is preferably placed parallel to and proximate with the inlet face, thereby allowing for a reduction in the depth of the housing.
    Type: Grant
    Filed: March 28, 2001
    Date of Patent: June 4, 2002
    Assignee: Brookhaven Science Associates
    Inventors: Cyrus Biscardi, Calvin Brewster, Leonard DeSanto, James T. Veligdan
  • Patent number: 6389206
    Abstract: An optical display panel which provides improved light intensity at a viewing angle by redirecting light emitting from the viewing screen, and a method of making a light redirective display panel, are disclosed. The panel includes an inlet face at one end for receiving light, and an outlet screen at an opposite end for displaying the light. The inlet face is defined at one end of a transparent body, which body may be formed by a plurality of waveguides, and the outlet screen is defined at an opposite end of the body. The screen includes light redirective elements at the outlet screen for re-directing light emitting from the outlet screen.
    Type: Grant
    Filed: June 11, 1999
    Date of Patent: May 14, 2002
    Assignee: Brookhaven Science Associates
    Inventor: James T. Veligdan
  • Publication number: 20020050523
    Abstract: A display scanner includes an optical panel having a plurality of stacked optical waveguides. The waveguides define an inlet face at one end and a screen at an opposite end, with each waveguide having a core laminated between cladding. A projector projects a scan beam of light into the panel inlet face for transmission from the screen as a scan line to scan a barcode. A light sensor at the inlet face detects a return beam reflected from the barcode into the screen. A decoder decodes the return beam detected by the sensor for reading the barcode. In an exemplary embodiment, the optical panel also displays a visual image thereon.
    Type: Application
    Filed: April 30, 1999
    Publication date: May 2, 2002
    Inventor: JAMES T. VELIGDAN
  • Publication number: 20020048438
    Abstract: A combination optical display having at least one transparent seam, and a method of making a combination optical panel having at least one transparent seam are disclosed, including individually coating a plurality of glass sheets, stacking the plurality of coated glass sheets, fastening each coated glass sheet to an adjoining glass sheet using an adhesive, applying pressure to the stack, curing the adhesive, cutting the stack to form a laminated optical panel having a wedge shape with an inlet face and an outlet face, repeating the individually coating, stacking, applying, curing, and cutting to form a plurality of laminated optical panels, and joining together the laminated optical panels at at least one optically transparent seam. The optically transparent seam may be formed of a liquid optical epoxy or an optical grease, and preferably has an index of refraction equivalent to that of the waveguides which form the individual panels.
    Type: Application
    Filed: May 26, 1999
    Publication date: April 25, 2002
    Inventor: JAMES T. VELIGDAN
  • Publication number: 20020025129
    Abstract: An ultrathin optical panel, and a method of producing an ultrathin optical panel, are disclosed, including stacking a plurality of glass sheets, which sheets may be coated with a transparent cladding substance or may be uncoated, fastening together the plurality of stacked coated glass sheets using an epoxy or ultraviolet adhesive, applying uniform pressure to the stack, curing the stack, sawing the stack to form an inlet face on a side of the stack and an outlet face on an opposed side of the stack, bonding a coupler to the inlet face of the stack, and fastening the stack, having the coupler bonded thereto, within a rectangular housing having an open front which is aligned with the outlet face, the rectangular housing having therein a light generator which is optically aligned with the coupler. The light generator is preferably placed parallel to and proximate with the inlet face, thereby allowing for a reduction in the depth of the housing.
    Type: Application
    Filed: March 28, 2001
    Publication date: February 28, 2002
    Inventors: Cyrus Biscardi, Calvin Brewster, Leonard DeSanto, James T. Veligdan
  • Publication number: 20020006255
    Abstract: An ultrathin optical panel, and a method of producing an ultrathin optical panel, are disclosed, including stacking a plurality of glass sheets, which sheets may be coated with a transparent cladding substance or may be uncoated, fastening together the plurality of stacked coated glass sheets using an epoxy or ultraviolet adhesive, applying uniform pressure to the stack, curing the stack, sawing the stack to form an inlet face on a side of the stack and an outlet face on an opposed side of the stack, bonding a coupler to the inlet face of the stack, and fastening the stack, having the coupler bonded thereto, within a rectangular housing having an open front which is aligned with the outlet face, the rectangular housing having therein a light generator which is optically aligned with the coupler. The light generator is preferably placed parallel to and proximate with the inlet face, thereby allowing for a reduction in the depth of the housing.
    Type: Application
    Filed: April 27, 2001
    Publication date: January 17, 2002
    Inventors: Cyrus Biscardi, Calvin Brewster, Leonard DeSanto, James T. Veligdan
  • Patent number: 6327416
    Abstract: A flexible optical panel includes laminated optical waveguides, each including a ribbon core laminated between cladding, with the core being resilient in the plane of the core for elastically accommodating differential movement thereof to permit winding of the panel in a coil.
    Type: Grant
    Filed: January 24, 2000
    Date of Patent: December 4, 2001
    Assignee: Brookhaven Science Associates
    Inventor: James T. Veligdan
  • Patent number: 6317545
    Abstract: An optical panel includes stacked optical waveguides having stepped inlet facets collectively defining an inlet face for receiving image light, and having beveled outlet faces collectively defining a display screen for displaying the image light channeled through the waveguides by internal reflection.
    Type: Grant
    Filed: September 1, 1999
    Date of Patent: November 13, 2001
    Inventor: James T. Veligdan
  • Patent number: 6307995
    Abstract: An optical panel is disclosed. A plurality of stacked planar optical waveguides are used to guide light from an inlet face to an outlet face of an optical panel. Each of the optical waveguides comprises a planar sheet of core material having a central plane. The core material has an index of refraction which decreases as the distance from the central plane increases. The decrease in the index of refraction occurs gradually and continuously.
    Type: Grant
    Filed: April 5, 2000
    Date of Patent: October 23, 2001
    Inventor: James T. Veligdan
  • Patent number: 6301417
    Abstract: An ultrathin optical panel, and a method of producing an ultrathin optical panel, are disclosed, including stacking a plurality of glass sheets, which sheets may be coated with a transparent cladding substance or may be uncoated, fastening together the plurality of stacked coated glass sheets using an epoxy or ultraviolet adhesive, applying uniform pressure to the stack, curing the stack, sawing the stack to form an inlet face on a side of the stack and an outlet face on an opposed side of the stack, bonding a coupler to the inlet face of the stack, and fastening the stack, having the coupler bonded thereto, within a rectangular housing having an open front which is aligned with the outlet face, the rectangular housing having therein a light generator which is optically aligned with the coupler. The light generator is preferably placed parallel to and proximate with the inlet face, thereby allowing for a reduction in the depth of the housing.
    Type: Grant
    Filed: May 26, 1999
    Date of Patent: October 9, 2001
    Assignee: Brookhaven Science Associates
    Inventors: Cyrus Biscardi, Calvin Brewster, Leonard DeSanto, James T. Veligdan
  • Publication number: 20010014199
    Abstract: An optical panel having a small inlet, and a method of making a small inlet optical panel, are disclosed, which optical panel includes a individually coating, stacking, and cutting a first plurality of stacked optical waveguides to form an outlet face body with an outlet face, individually coating, stacking, and cutting a second plurality of stacked optical waveguides to form an inlet face body with an inlet face, and connecting an optical coupling element to the first plurality and to the second plurality, wherein the optical coupling element redirects light along a parallel axis of the inlet face to a parallel axis of the outlet face. In the preferred embodiment of the present invention, the inlet face is disposed obliquely with and askew from the outlet face.
    Type: Application
    Filed: April 20, 2001
    Publication date: August 16, 2001
    Inventors: James T. Veligdan, David E. Slobodin
  • Patent number: 6222971
    Abstract: An optical panel having a small inlet, and a method of making a small inlet optical panel, are disclosed, which optical panel includes a individually coating, stacking, and cutting a first plurality of stacked optical waveguides to form an outlet face body with an outlet face, individually coating, stacking, and cutting a second plurality of stacked optical waveguides to form an inlet face body with an inlet face, and connecting an optical coupling element to the first plurality and to the second plurality, wherein the optical coupling element redirects light along a parallel axis of the inlet face to a parallel axis of the outlet face. In the preferred embodiment of the present invention, the inlet face is disposed obliquely with and askew from the outlet face.
    Type: Grant
    Filed: May 26, 1999
    Date of Patent: April 24, 2001
    Assignees: Brookhaven Science Associates
    Inventors: James T. Veligdan, David Slobodin
  • Patent number: 6175679
    Abstract: An optical keyboard includes an optical panel having optical waveguides stacked together. First ends of the waveguides define an inlet face, and opposite ends thereof define a screen. A projector transmits a light beam outbound through the waveguides for display on the screen as a keyboard image. A light sensor is optically aligned with the inlet face for sensing an inbound light beam channeled through the waveguides from the screen upon covering one key of the keyboard image.
    Type: Grant
    Filed: July 2, 1999
    Date of Patent: January 16, 2001
    Assignee: Brookhaven Science Associates
    Inventors: James T. Veligdan, John D. Feichtner, Thomas E. Phillips
  • Patent number: 6147787
    Abstract: A microphone for detecting sound pressure waves includes a laser resonator having a laser gain material aligned coaxially between a pair of first and second mirrors for producing a laser beam. A reference cell is disposed between the laser material and one of the mirrors for transmitting a reference portion of the laser beam between the mirrors. A sensing cell is disposed between the laser material and one of the mirrors, and is laterally displaced from the reference cell for transmitting a signal portion of the laser beam, with the sensing cell being open for receiving the sound waves. A photodetector is disposed in optical communication with the first mirror for receiving the laser beam, and produces an acoustic signal therefrom for the sound waves.
    Type: Grant
    Filed: December 12, 1997
    Date of Patent: November 14, 2000
    Assignees: Brookhaven Science Associates, Brookhaven National Laboratory
    Inventor: James T. Veligdan
  • Patent number: 6014239
    Abstract: An optical microphone includes a laser and beam splitter cooperating therewith for splitting a laser beam into a reference beam and a signal beam. A reflecting sensor receives the signal beam and reflects it in a plurality of reflections through sound pressure waves. A photodetector receives both the reference beam and reflected signal beam for heterodyning thereof to produce an acoustic signal for the sound waves. The sound waves vary the local refractive index in the path of the signal beam which experiences a Doppler frequency shift directly analogous with the sound waves.
    Type: Grant
    Filed: December 12, 1997
    Date of Patent: January 11, 2000
    Assignee: Brookhaven Science Associates
    Inventor: James T. Veligdan
  • Patent number: 6002826
    Abstract: An optical system (20) projects light into a planar optical display (10). The display includes laminated optical waveguides (12) defining an inlet face (14) at one end and an outlet screen (16) at an opposite end. A first mirror (26) collimates light from a light source (18) along a first axis, and distributes the light along a second axis. A second mirror (28) collimates the light from the first mirror along the second axis to illuminate the inlet face and produce an image on the screen.
    Type: Grant
    Filed: August 28, 1998
    Date of Patent: December 14, 1999
    Assignee: Brookhaven Science Associates
    Inventor: James T. Veligdan
  • Patent number: 5625736
    Abstract: An optical display includes a plurality of stacked optical waveguides having first and second opposite ends collectively defining an image input face and an image screen, respectively, with the screen being oblique to the input face. Each of the waveguides includes a transparent core bound by a cladding layer having a lower index of refraction for effecting internal reflection of image light transmitted into the input face to project an image on the screen, with each of the cladding layers including a cladding cap integrally joined thereto at the waveguide second ends. Each of the cores is beveled at the waveguide second end so that the cladding cap is viewable through the transparent core. Each of the cladding caps is black for absorbing external ambient light incident upon the screen for improving contrast of the image projected internally on the screen.
    Type: Grant
    Filed: January 11, 1996
    Date of Patent: April 29, 1997
    Assignee: Associated Universities, Inc.
    Inventor: James T. Veligdan
  • Patent number: 5491470
    Abstract: A vehicle security apparatus for use in a motor vehicle, the apparatus comprising an optical key, a receptacle, a receiver and at least one optical fiber. The optical key has a transmitter having at least one first preprogrammed coded signal stored in a first electric circuit. The receptacle receives the optical key and at least one transmittable coded optical signal from the transmitter corresponding to the at least one preprogrammed coded signal stored in the first electric circuit. The receiver compares the at least one transmittable coded optical signal to at least one second preprogrammed coded signal stored in a second electric circuit and the receiver is adapted to trigger switching effects for at least one of enabling starting the motor vehicle and starting the motor vehicle upon determination that the at least one transmittable coded optical signal corresponds to the at least one second preprogrammed signal in the second electric circuit.
    Type: Grant
    Filed: April 18, 1994
    Date of Patent: February 13, 1996
    Assignee: Associated Universities, Inc.
    Inventor: James T. Veligdan
  • Patent number: 5455882
    Abstract: An interactive optical panel assembly 34 includes an optical panel 10 having a plurality of ribbon optical waveguides 12 stacked together with opposite ends thereof defining panel first and second faces 16, 18. A light source 20 provides an image beam 22 to the panel first face 16 for being channeled through the waveguides 12 and emitted from the panel second face 18 in the form of a viewable light image 24a. A remote device 38 produces a response beam 40 over a discrete selection area 36 of the panel second face 18 for being channeled through at least one of the waveguides 12 toward the panel first face 16. A light sensor 42,50 is disposed across a plurality of the waveguides 12 for detecting the response beam 40 therein for providing interactive capability.
    Type: Grant
    Filed: July 5, 1994
    Date of Patent: October 3, 1995
    Assignee: Associated Universities, Inc.
    Inventor: James T. Veligdan