IP Library Granted Patent US 7,496,290
Granted Patent B2
US 7,496,290 · App. 11/264,038 · Granted Feb 24, 2009

Multipoint autofocus system and camera having multipoint autofocus system

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Quick Facts
Patent No.
US 7,496,290
App. No.
11/264,038
Granted
Feb 24, 2009
Kind
B2
Abstract

A multipoint autofocus system in which a pair of object images, obtained by pupil-division of an object light bundle in each detection area, are projected onto different zones of a sensor and are converted into image signals, so that a defocus amount can be determined based on the image signals, the multipoint autofocus system including intersecting detection areas whose detection areas partly overlap and a plurality of sensor arrays of the sensor corresponding to respective the intersecting detection areas; and a selection device for selecting a defocus amount whose absolute value is smallest out of defocus amounts obtained by each sensor array of the intersecting detection areas.

Claims (32)

1. A multipoint autofocus system in which a pair of object images, obtained by pupil-division of an object light bundle in each detection area, are projected onto different zones of a sensor and are converted into image signals, so that a defocus amount can be determined based on the image signals, said multipoint autofocus system comprising:

intersecting detection areas that partly overlap, a plurality of sensor arrays of said sensor corresponding to respective said intersecting detection areas; and

a selection device configured for selecting a defocus amount whose absolute value is smallest out of defocus amounts obtained by each sensor array of said intersecting detection areas, the defocus amount representing an amount of movement required to bring a lens to an in focus condition.

2. The multipoint autofocus system according to claim 1 , wherein said intersecting detection areas comprise two pairs of areas which intersect at a predetermined angle and two pairs of corresponding said sensor arrays.

3. The multipoint autofocus system according to claim 1 , further comprising a reliability judging device for determining the reliability of said image signals obtained from said sensor arrays corresponding to said intersecting detection areas,

wherein said selection device performs a selecting operation for a low-reliability defocus amount, corresponding to an intersecting detection area whose reliability has been judged to be low by said reliability judging device, and remaining defocus amounts, after said low-reliability defocus amount is substituted with a predetermined value.

4. The multipoint autofocus system according to claim 3 , said reliability judging device being configured such that when the reliability of said image signals obtained from all said sensor arrays corresponding to said intersecting detection areas is low, said defocus amount is not substituted.

5. The multipoint autofocus system according to claim 3 , wherein said reliability is determined based on whether the object images projected onto said sensor arrays has a low contrast or contrast gradation.

6. The multipoint autofocus system according to claim 1 , wherein when one of said intersecting detection areas is selected, said selection device is configured to perform a selecting operation for the defocus amount obtained from the sensor array of the selected intersecting detection area.

7. The multipoint autofocus system according to claim 1 , wherein when the absolute values of the defocus amounts are substantially identical or a difference between the absolute values of the defocus amounts is within a predetermined range, said selection device is configured to select the defocus amounts of said sensor arrays corresponding to lateral detection areas.

8. A multipoint autofocus system in which a pair of object images, obtained by pupil-division of an object light bundle transmitted through an optical system including a focusing lens group in each detection area, are projected onto different zones of a sensor and are converted into image signals, so that an amount of movement of said focusing lens group can be determined based on the image signals, said multipoint autofocus system comprising:

intersecting detection areas that partly overlap, a plurality of sensor arrays of said sensor corresponding to respective said intersecting detection areas; and

a selection device configured for selecting the smallest amount of movement of said focusing lens group, from among the movement amounts of said focusing lens group obtained by said sensor arrays corresponding to said intersecting detection areas.

9. A camera having a multipoint autofocus system in which a pair of object images, obtained by pupil-division of an object light bundle in each detection area, are projected onto different zones of a sensor and are converted into image signals, so that a defocus amount can be determined based on the image signals, said multipoint autofocus system comprising:

intersecting detection areas that partly overlap, a plurality of sensor arrays of said sensor corresponding to respective said intersecting detection areas; and

a selection device configured for selecting a defocus amount whose absolute value is smallest out of defocus amounts obtained by each sensor array of said intersecting detection areas, the defocus amount representing an amount of movement required to bring a lens to an in focus condition.

10. A camera having a multipoint autofocus system in which a pair of object images, obtained by pupil-division of an object light bundle transmitted through an optical system including a focusing lens group in each detection area, are projected onto different zones of a sensor and are converted into electrical image signals, so that an amount of movement of said focusing lens group can be determined based on the image signals, said multipoint autofocus system comprising:

intersecting detection areas that partly overlap, a plurality of sensor arrays of said sensor corresponding to respective said intersecting detection areas; and

a selection device configured for selecting the smallest amount of movement of the focusing lens group, from among the movement amounts of said focusing lens group obtained by said sensor arrays corresponding to said intersecting detection areas.

11. The multipoint autofocus system according to claim 8 , further comprising a reliability judging device for determining the reliability of said image signals obtained from said sensor arrays corresponding to said intersecting detection areas,

wherein said selection device performs a selecting operation for a low-reliability defocus amount, corresponding to an intersecting detection area whose reliability has been judged to be low by said reliability judging device, and remaining defocus amounts, after said low-reliability defocus amount is substituted with a predetermined value.

12. The multipoint autofocus system according to claim 11 , wherein said reliability judging device being configured such that when the reliability of said image signals obtained from all said sensor arrays corresponding to said intersecting detection areas is low, said defocus amount is not substituted.

13. The multipoint autofocus system according to claim 11 , wherein said reliability is determined based on whether the object images projected onto said sensor arrays has a low contrast or contrast gradation.

14. The camera having a multipoint autofocus system according to claim 9 , further comprising a reliability judging device for determining the reliability of said image signals obtained from said sensor arrays corresponding to said intersecting detection areas,

wherein said selection device performs a selecting operation for a low-reliability defocus amount, corresponding to an intersecting detection area whose reliability has been judged to be low by said reliability judging device, and remaining defocus amounts, after said low-reliability defocus amount is substituted with a predetermined value.

15. The camera having a multipoint autofocus system according to claim 14 said reliability judging device being configured such that when the reliability of said image signals obtained from all said sensor arrays corresponding to said intersecting detection areas is low, said defocus amount is not substituted.

16. The camera having a multipoint autofocus system according to claim 14 , wherein said reliability is determined based on whether the object images projected onto said sensor arrays has a low contrast or contrast gradation.

17. The camera having a multipoint autofocus system according to claim 10 , further comprising a reliability judging device for determining the reliability of said image signals obtained from said sensor arrays corresponding to said intersecting detection areas,

wherein said selection device performs a selecting operation for a low-reliability defocus amount, corresponding to an intersecting detection area whose reliability has been judged to be low by said reliability judging device, and remaining defocus amounts, after said low-reliability defocus amount is substituted with a predetermined value.

18. The camera having a multipoint autofocus system according to claim 17 , said reliability judging device being configured such that when the reliability of said image signals obtained from all said sensor arrays corresponding to said intersecting detection areas is low, said defocus amount is not substituted.

19. The camera having a multipoint autofocus system according to claim 17 , wherein said reliability is determined based on whether the object images projected onto said sensor arrays has a low contrast or contrast gradation.

20. The camera having a multipoint autofocus system according to claim 10 , wherein said intersecting detection areas comprise two pairs of areas which intersect at a predetermined angle and two pairs of corresponding said sensor arrays.

Assignments (2)
CORPORATE SPLIT Recorded Dec 2, 2011
From: HOYA CORPORATION
To: PENTAX RICOH IMAGING COMPANY, LTD.
Reel/Frame 027315/0115 →
MERGER Recorded Dec 31, 2008
From: PENTAX CORPORATION
To: HOYA CORPORATION
Reel/Frame 022046/0291 →