IP Library Granted Patent US 7,057,826
Granted Patent B2
US 7,057,826 · App. 10/806,299 · Granted Jun 6, 2006

Small and fast zoom system

Assignees: Angstrom Inc.; Stereo Display Inc.
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Quick Facts
Patent No.
US 7,057,826
App. No.
10/806,299
Granted
Jun 6, 2006
Kind
B2
Abstract

There is a need for a small and fast optical zoom device that can change magnification. Conventional zoom devices require coupled mechanical motions to adjust the axial separations between individual or groups of elements in order to change the optical magnification. The mechanical motions decrease the speed of zooming, increase space and weight for zoom system, may induce unwanted jitter, and require large power consumption. In addition, the mechanical zoom system is restricted to magnifying the area on-axis. To solve problems of conventional zoom system, the zoom system utilizing one or more variable focal length micromirror array lenses without macroscopic mechanical motion of lenses is invented.

Claims (7)

1. A zoom system for forming an image with varying magnification comprising one or more variable focal length lenses, wherein the variable focal length lens is made of a micromirror array lens, wherein the micromirror array lens comprises a plurality of micromirrors, wherein each micromirror is controlled to change the focal length of the micromirror array lens, wherein the micromirror array lens further comprises a plurality of mechanical structures upholding the micromirrors and actuating components actuating the micromirrors, wherein the micromirror array lens is an adaptive optical component, wherein the micromirror array lens corrects aberrations.

2. A zoom system for forming an image with varying magnification comprising one or more variable focal length lenses, wherein the variable focal length lens is made of a micromirror array lens, wherein the micromirror array lens comprises a plurality of micromirrors, wherein each micromirror is controlled to change the focal length of the micromirror array lens, wherein the micromirror array lens further comprises a plurality of mechanical structures upholding the micromirrors and actuating components actuating the micromirrors, wherein the micromirror array lens is an adaptive optical component, wherein the micromirror array lens corrects the defects of the zoom system that cause the image to deviate from the rules of paraxial imagery.

3. A zoom system for forming an image with varying magnification comprising one or more variable focal length lenses, wherein the variable focal length lens is made of a micromirror array lens, wherein the micromirror array lens comprises a plurality of micromirrors, wherein each micromirror is controlled to change the focal length of the micromirror array lens, wherein the micromirror array lens further comprises a plurality of mechanical structures upholding the micromirrors and actuating components actuating the micromirrors, wherein the micromirror array lens is controlled to satisfy the same phase condition for each wavelength of Red, Green, and Blue (RGB), respectively, to get a color image.

4. The zoom system of claim 3 , further comprising a plurality of bandpass filters.

5. The zoom system of claim 3 , further comprising a photoelectric sensor, wherein the photoelectric sensor comprises Red, Green, and Blue (RGB) sensors, wherein a color image is obtained by treatment of electrical signals from the Red, Green, and Blue (RGB) sensors.

6. The zoom system of claim 5 , wherein the treatment of electrical signals from the Red, Green and Blue (RGB) sensors is synchronized and/or matched with the control of the micromirror array lens to satisfy the same phase condition for each wavelength of Red, Green and Blue (RGB), respectively.

7. A zoom system for forming an image with varying magnification comprising one or more variable focal length lenses, wherein the variable focal length lens is made of a micromirror array lens, wherein the micromirror array lens comprises a plurality of micromirrors, wherein each micromirror is controlled to change the focal length of the micromirror array lens, wherein the micromirror array lens further comprises a plurality of mechanical structures upholding the micromirrors and actuating components actuating the micromirrors, wherein the variable focal length lenses comprise a first variable focal length lens and a second variable focal length lens, wherein the focal length of the first variable focal length lens and the focal length of the second variable focal length lens are changed to form the image in-focus at a given magnification, further comprising a focus lens group, an elector lens group and a relay lens group, wherein the first variable focal length lens forms a variator lens group, and the second variable focal length lens forms a compensator lens group.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 054680 FRAME: 0198. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 13, 2021
From: ANGSTROM, INC.
To: STEREO DISPLAY, INC.
Reel/Frame 056846/0253 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2020
From: ANGSTROM, INC.
To: INC., STEREO D, INC.
Reel/Frame 054680/0198 →
CORRECTIVE ASSIGNMENT TO CORRECT THE FIFTH ASSIGNOR PREVIOUSLY RECORDED ON REEL 017433 FRAME 0452. Recorded May 9, 2006
From: CHO, GYOUNG IL; GIM, DONG WOO; SEO, CHEONG SOO; BOYD, JAMES GREENUP; BAEK, SANG HYUNE
To: ANGSTROM INC.; STEREO DISPLAY INC.
Reel/Frame 017624/0760 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2006
From: CHO, GYOUNG IL; GIM, DONG WOO; SEO, CHEONG SOO; BOYD, JAMES GREENUP; BAEK, SANG HYUN
To: ANGSTROM INC.; STEREO DISPLAY INC.
Reel/Frame 017433/0452 →
Continuity (1)
Related Publication 20050207022A1 · Sep 22, 2005