IP Library › Granted Patent US 10,887,510
Granted Patent B2
US 10,887,510 · App. 16/192,179 · Granted Jan 5, 2021

Processing apparatus, lens apparatus and image pickup apparatus for reducing the shift of composition during tilt photography

Inventor: Takeo Mori (Utsunomiya, JP)
Assignee: CANON KABUSHIKI KAISHA
H04N5/23229H04N5/23212
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Quick Facts
Patent No.
US 10,887,510
App. No.
16/192,179
Granted
Jan 5, 2021
Kind
B2
Abstract

Provided is a processing apparatus, which is mounted to any one of a lens apparatus including an optical system and an image pickup apparatus for picking up an image formed by an optical system, in which the processing apparatus includes a determination unit configured to determine a first shift amount of a first shift lens unit and a second shift amount of a second shift lens unit, and both of the first shift lens unit and the second shift lens unit are included in the optical system, and movable in a direction having a component perpendicular to an optical axis direction. The determination unit determines the first and second shift amounts based on information representing an optical state of the optical system, optical information on each of the first and second shift lens units, which corresponds to the information, and information representing a predetermined object plane tilt amount.

Claims (48)

1. A processing apparatus, which is mounted to any one of a lens apparatus including an optical system and an image pickup apparatus configured to pick up an image formed by an optical system, the processing apparatus comprising a processor that executes a determination task configured to determine a first shift amount of a first shift lens unit and a second shift amount of a second shift lens unit, both of the first shift lens unit and the second shift lens unit being included in the optical system, and movable in a direction having a component perpendicular to an optical axis direction,

wherein the determination task is configured to determine the first shift amount and the second shift amount based on state information representing an optical state of the optical system, optical information on each of the first shift lens unit and the second shift lens unit, which corresponds to the state information, and tilt information representing a predetermined object plane tilt amount.

2. A processing apparatus according to claim 1 , wherein the state information includes information representing a focus position of the optical system.

3. A processing apparatus according to claim 1 , wherein the state information includes information representing a zoom position of the optical system.

4. A processing apparatus according to claim 1 , wherein the state information includes positional information on an object plane of the optical system, positional information on an image plane of the optical system, and positional information on a principal plane of the optical system.

5. A processing apparatus according to claim 1 , wherein the optical information on each of the first shift lens unit and the second shift lens unit includes an image plane tilt sensitivity and a composition shift sensitivity.

6. A processing apparatus according to claim 1 , wherein the determination task is configured to determine the first shift amount and the second shift amount such that the following conditional expression is satisfied:

0.3<− M 1× S 1/ M 2× S 2<1.7,

where S1 represents a composition shift sensitivity of the first shift lens unit, M1 represents the first shift amount, S2 represents a composition shift sensitivity of the second shift lens unit, and M2 represents the second shift amount.

7. A processing apparatus according to claim 1 , wherein the determination task is configured to determine the first shift amount and the second shift amount such that the following conditional expression is satisfied:

0.3<( M 1× T 1+ M 2× T 2)/θimg<1.7,

provided that θimg=tan −1 (Lp×tan θobj/(Lo−Lp)),

where M1 represents the first shift amount, M2 represents the second shift amount, Lp represents a distance from a paraxial image plane to a principal plane of the optical system, Lo represents a distance from the paraxial image plane to an object plane of the optical system, T1 represents an image plane tilt sensitivity of the first shift lens unit, T2 represents an image plane tilt sensitivity of the second shift lens unit, θobj represents an object plane tilt amount, and θimg represents an image plane tilt amount obtained based on Scheimpflug principle.

8. A processing apparatus according to claim 1 , wherein the determination task is configured to determine the first shift amount and the second shift amount based on an operation performed on an operation member, which enables a user to select an object plane tilt amount.

9. A lens apparatus comprising:

an optical system including a first shift lens unit and a second shift lens unit, both of the first shift lens unit and the second shift lens unit being movable in a direction having a component perpendicular to an optical axis direction; and

a processor that executes a determination task configured to determine a first shift amount of the first shift lens unit and a second shift amount of the second shift lens unit, wherein the determination task is configured to determine the first shift amount and the second shift amount based on state information representing an optical state of the optical system, optical information on each of the first shift lens unit and the second shift lens unit, which corresponds to the state information, and tilt information representing a predetermined object plane tilt amount.

10. A lens apparatus according to claim 9 ,

wherein the optical system consists of, in order from an object side to an image side, a front unit, an aperture stop, and a rear unit,

wherein the front unit includes the first shift lens unit, and

wherein the rear unit includes the second shift lens unit.

11. A lens apparatus according to claim 9 , further comprising a controller configured to control movement of each of the first shift lens unit and the second shift lens unit based on the first shift amount and the second shift amount,

wherein the controller moves the first shift lens unit to change an object plane tilt amount.

12. A lens apparatus according to claim 11 , wherein the controller is configured to move the second shift lens unit in such a direction as to reduce a shift of composition generated by moving the first shift lens unit.

13. A lens apparatus according to claim 11 , wherein the controller is configured to keep a position of the first shift lens unit and a position of the second shift lens unit at moved positions until the optical state of the optical system and the predetermined object plane tilt amount change.

14. A lens apparatus according to claim 9 ,

wherein the optical system is a zoom lens,

wherein the state information includes information on a zoom position of the optical system and information on a focus position of the optical system,

wherein the optical apparatus further comprises:

a first detection circuitry that detects the information on the zoom position of the optical system; and

a second detection circuitry that detects the information on the focus position of the optical system, and

wherein the determination task is configured to use, as the state information, detection results obtained by the first detection circuitry and the second detection circuitry.

15. A lens apparatus according to claim 9 ,

wherein the optical system is a prime lens,

wherein the state information includes information on a focal length of the optical system and information on a focus position of the optical system,

wherein the optical apparatus further comprises a detection circuitry that detects the information on the focus position of the optical system, and

wherein the determination task is configured to use, as the state information, a detection result obtained by the detection circuitry.

16. A lens apparatus according to claim 9 , further comprising a memory configured to store:

information representing a relationship between the state information and an image plane tilt sensitivity and a composition shift sensitivity of the first shift lens unit;

information representing a relationship between the state information and an image plane tilt sensitivity and a composition shift sensitivity of the second shift lens unit; and

information representing a relationship between the state information and positional information on an object plane of the optical system, positional information on an image plane of the optical system, and positional information on a principal plane of the optical system.

17. An image pickup apparatus, to and from which a lens apparatus including an optical system is attachable and detachable, the image pickup apparatus comprising:

a light receiving element configured to receive light of an image formed by the optical system; and

a processor that executes a plurality of tasks including:

an acquiring task configured to acquire state information representing an optical state of the optical system from the lens apparatus by communicating with the lens apparatus; and

a determination task configured to determine a first shift amount of a first shift lens unit and a second shift amount of a second shift lens unit, both of the first shift lens unit and the second shift lens unit being included in the optical system, and movable in a direction having a component perpendicular to an optical axis direction,

wherein the determination task is configured to determine the first shift amount and the second shift amount based on the state information, optical information on each of the first shift lens unit and the second shift lens unit, which corresponds to the state information, and tilt information representing a predetermined object plane tilt amount.

18. An image pickup apparatus according to claim 17 , wherein the plurality of tasks further includes a transmission task configured to transmit, to the lens apparatus, the first shift amount and the second shift amount, which are determined by the determination task.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2019
From: MORI, TAKEO
To: CANON KABUSHIKI KAISHA
Reel/Frame 049834/0776 →
Priority Claims (2)
JP 2017-220541 · Nov 16, 2017 · national
JP 2018-202615 · Oct 29, 2018 · national
Continuity (1)
Related Publication 20190149727A1 · May 16, 2019
Cited By (3)
US 12,256,135 US 12,372,752 US 12,535,650