US2014111622A1PendingUtilityA1

Method and apparatus for a 3-d electron holographic visual and audio scene propagation in a video or cinematic arena, digitally processed, auto language tracking

Assignee: THOMAS-WAYNE PRESLEY JORDANPriority: Oct 6, 2004Filed: Jul 9, 2013Published: Apr 24, 2014
Est. expiryOct 6, 2024(expired)· nominal 20-yr term from priority
H04N 25/71H04N 13/257H04N 13/122H04N 13/334H04N 13/344H04N 13/243H04N 13/20H04N 13/239H04N 13/0018H04N 13/0239H04N 5/372
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Claims

Abstract

A system and method for displaying images in three dimensions. The system may include a dual axis four lens system, four LCD switching elements, a pair of LCD switched dual filtered dichroic mirrors, and a pair of half silvered dichroic color filter elements, and two charge coupled device pickups. The system may process light through a number of axis to produce optical disparity for presenting three dimensional video.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A holographic muting lens camera system comprising:
 a dual axis four lens system operable to be angularly adjusted to receive light along a first optical axis, a second optical axis, a third optical axis, and a fourth optical axis respectively;   four LCD switching elements operable to receiving light through the dual axis four lens system;   a pair of LCD switched dual filtered dichroic mirrors positioned to receive light from the first optical axis and the fourth optical axis;   a pair of half silvered dichroic color filter elements for receiving light along the second optical axis and the third optical axis positioned in an inverted v-shape at a 90 degree angle; and   two charge coupled device (CCD) pickups operable to receive light along the second optical axis and the third optical axis being spaced apart and substantially parallel,   wherein the light from the second optical axis and the third optical axis is combined with light received along the first axis and fourth axis respectively through a plurality of half silvered mirrors for processing by the CCD pickups,   wherein the plurality of half silvered mirrors are operable to reflect light received through the first optical axis, the second optical axis, the third optical axis, and the fourth optical axis reflected or communicated through the four LCD switching elements, the pair of LCD switched dual filtered dichroic mirrors, and the pair of half silvered dichroic filter elements to produce optical disparity for dimension.

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