IP Library Granted Patent US 10,509,209
Granted Patent B2
US 10,509,209 · App. 16/402,412 · Granted Dec 17, 2019

Zoom dual-aperture camera with folded lens

Inventors: Gal Shabtay (Tel Aviv, IL); Ephraim Goldenberg (Ashdod, IL); Gal Avivi (Haifa, IL); Gil Bachar (Tel Aviv, IL)
Assignee: Corephotonics Ltd.
G02B13/0065G02B7/09G02B7/102G02B13/009G02B13/02G02B13/04H04N5/2253H04N5/2254H04N5/2257H04N5/2258H04N5/247
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Quick Facts
Patent No.
US 10,509,209
App. No.
16/402,412
Granted
Dec 17, 2019
Kind
B2
Abstract

Zoom digital cameras comprising a Wide sub-camera and a folded fixed Tele sub-camera. The folded Tele sub-camera may be auto-focused by moving either its lens or a reflecting element inserted in an optical path between its lens and a respective image sensor. The folded Tele sub-camera is configured to have a low profile to enable its integration within a portable electronic device.

Claims (15)

1. A Tele sub-camera, comprising:

a) a Tele lens module;

b) a reflecting element; and

c) a Tele image sensor,

wherein the Tele lens module comprises a Tele lens with a group of lens elements along a Tele lens symmetry axis, wherein the reflecting element is operable to fold light arriving along the first optical path from an object side to a second optical path substantially parallel to the Tele lens symmetry axis toward the Tele image sensor, wherein the lens elements are designed to have respective diameters that do not substantially exceed a Tele lens aperture diameter, and wherein a height of the Tele sub-camera is smaller than 1.25×(1+the Tele lens aperture diameter).

2. The Tele sub-camera of claim 1 , wherein the lens elements are designed to have respective diameters that do not exceed the Tele lens aperture diameter.

3. The Tele sub-camera of claim 1 , where the image sensor has a sensor diagonal, wherein the Tele lens has an optical height, and wherein the sensor diagonal is larger than the lens optical height.

4. The Tele sub-camera of claim 2 , where the image sensor has a sensor diagonal, wherein the Tele lens has an optical height, and wherein the sensor diagonal is larger than the lens optical height.

5. A digital camera comprising:

a) a Wide sub-camera comprising a Wide lens module and a Wide image sensor, the Wide lens module having a Wide lens symmetry axis along a first optical path between an object side and the Wide image sensor; and

b) a Tele sub-camera comprising a Tele lens module with a Tele lens symmetry axis, a reflecting element, and a Tele image sensor,

wherein the reflecting element is operable to fold light arriving along the first optical path from an object side to a second optical path substantially parallel to the Tele lens symmetry axis toward the Tele image sensor, and wherein a height of the Tele sub-camera is smaller than 1.25×(1+a Tele lens aperture diameter).

6. The digital camera of claim 5 , wherein the Tele lens module comprises a group of lens elements designed to have respective diameters that do not substantially exceed the Tele lens aperture diameter.

7. The digital camera of claim 5 , further comprising a third sub-camera that comprises a third lens module and a third image sensor, wherein the third lens module has a lens symmetry axis that is substantially parallel to the Wide lens symmetry axis between the object side and the third image sensor.

8. The digital camera of claim 6 , further comprising a third sub-camera that comprises a third lens module and a third image sensor, wherein the third lens module has a lens symmetry axis that is substantially parallel to the Wide lens symmetry axis between the object side and the third image sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2021
From: SHABTAY, GAL; GOLDENBERG, EPHRAIM; AVIVI, GAL; BACHAR, GIL
To: COREPHOTONICS LTD.
Reel/Frame 058333/0218 →
Continuity (6)
Continuation 16172761 · Oct 27, 2018
Continuation 15820917 · Nov 22, 2017
Continuation 15177688 · Jun 9, 2016
Continuation 14717258 · May 20, 2015
Continuation In Part 14455906 · Aug 10, 2014
Related Publication 20190258033A1 · Aug 22, 2019
Cited By (1)
US 12,277,800