IP Library › Granted Patent US 9,113,082
Granted Patent B2
US 9,113,082 · App. 14/122,070 · Granted Aug 18, 2015

Imaging device

Inventor: Taijiro Morihisa (Yokohama, JP)
Assignee: RICOH COMPANY, LTD.
H04N5/23293G02B7/365G03B13/20G03B13/36H04N5/2258H04N5/23212
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Quick Facts
Patent No.
US 9,113,082
App. No.
14/122,070
Granted
Aug 18, 2015
Kind
B2
Abstract

An imaging device determines an in-focus position by contrast autofocus. The device includes a first optical system including a first lens and a first image sensor, a second optical system including a second lens and a second image sensor, a signal processing unit to read an image signal from at least one of the first image sensor and the second image sensor and generate an image for display, and a display unit to display the generated image. In the contrast autofocus, the signal processing unit reads a part of the image signal from the first image sensor and calculates a contrast value based on the read part of the image signal, and generates the image for display from the image signal read from the second image sensor.

Claims (37)

1. An imaging device which determines an in-focus position by contrast autofocus, comprising:

a first optical system including a first lens and a first image sensor;

a second optical system including a second lens and a second image sensor;

a signal processing unit configured to read an image signal from at least one of the first image sensor and the second image sensor, and generate an image for display; and

a display to display the generated image, wherein

in the contrast autofocus, the signal processing unit is configured to read a part of the image signal from the first image sensor and calculate a contrast value based on the read part of the image signal, and generate the image for display from the image signal read from the second image sensor, wherein

the signal processing unit is configured to generate the image in the contrast autofocus by synthesizing the image signal read from the first image sensor with the image signal read from the second image sensor.

2. The imaging device according to claim 1 , wherein

the signal processing unit is configured to stop generating the image from the image signal read from the first image sensor.

3. The imaging device of claim 2 , wherein

in the contrast autofocus, the signal processing unit is configured to determine whether or not a focal length of the first optical system is longer than a predetermined value, and generate the image from the image signal read from the second image sensor when the focal length of the first optical system is longer than the predetermined value.

4. The imaging device of claim 2 , wherein

in the contrast autofocus, the signal processing unit is configured to determine whether or not a process time for the contrast autofocus is longer than a predetermined time, and generate the image from the image signal read from the second image sensor when the process time is longer than the predetermined time.

5. The imaging device according to claim 1 , wherein

in the contrast autofocus, the signal processing unit is configured to determine whether or not a focal length of the first optical system is longer than a predetermined value, and generate the image from the image signal read from the second image sensor when the focal length of the first optical system is longer than the predetermined value.

6. The imaging device of claim 1 , wherein

in the contrast autofocus, the signal processing unit is configured to determine whether or not a process time for the contrast autofocus is longer than a predetermined time, and generate the image from the image signal read from the second image sensor when the process time is longer than the predetermined time.

7. An imaging device which determines an in-focus position by contrast autofocus, comprising:

a first optical system including a first lens and a first image sensor;

a second optical system including a second lens and a second image sensor;

a signal processing unit configured to read an image signal from at least one of the first image sensor and the second image sensor, and generate an image for display; and

a display to display the generated image, wherein

in the contrast autofocus, the signal processing unit is configured to read a part of the image signal from the first image sensor and calculate a contrast value based on the read part of the image signal, and generate the image for display from the image signal read from the second image sensor,

the first optical system includes a focus lens, and

in the contrast autofocus, the signal processing unit is configured to determine whether or not a number of scan steps of the focus lens is larger than a predetermined value, and generate the image from the image signal read from the second image sensor when the number of scan steps is larger than the predetermined value.

8. An imaging device which determines an in-focus position by contrast autofocus, comprising:

a first optical system including a first lens and a first image sensor;

a second optical system including a second lens and a second image sensor;

a signal processing unit configured to read an image signal from at least one of the first image sensor and the second image sensor, and generate an image for display; and

a display to display the generated image, wherein

in the contrast autofocus, the signal processing unit is configured to read a part of the image signal from the first image sensor and calculate a contrast value based on the read part of the image signal, and generate the image for display from the image signal read from the second image sensor, and

in the contrast autofocus, the signal processing unit is configured to determine whether or not a process time for the contrast autofocus is longer than a predetermined time, and generate the image from the image signal read from the second image sensor when the process time is longer than the predetermined time.

9. An imaging method for determining an in-focus position by contrast autofocus, comprising the steps of:

reading an image signal from at least one of a first image sensor and a second image sensor, and generating an image for display;

displaying the generated image; and

in the contrast autofocus, reading a part of the image signal from the first image sensor and calculating a contrast value based on the read part of the image signal, and generating the image for display from the image signal read from the second image sensor, wherein

in the contrast autofocus, the generating step comprises generating the image by synthesizing the image signal read from the first image sensor with the image signal read from the second image sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2013
From: MORIHISA, TAIJIRO
To: RICOH COMPANY, LTD.
Reel/Frame 031670/0048 →
Priority Claims (2)
JP 2011-117370 · May 25, 2011 · national
JP 2012-066553 · Mar 23, 2012 · national
Continuity (1)
Related Publication 20140092275A1 · Apr 3, 2014