IP Library › Granted Patent US 8,194,317
Granted Patent B2
US 8,194,317 · App. 12/416,521 · Granted Jun 5, 2012

Zoom lens system, interchangeable lens apparatus and camera system

Assignee: Panasonic Corporation
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Quick Facts
Patent No.
US 8,194,317
App. No.
12/416,521
Granted
Jun 5, 2012
Kind
B2
Abstract

A zoom lens system is provided that includes a compactly constructed focusing lens unit and that has a suppressed change in the image magnification at the time of movement of a focusing lens unit. The zoom lens system according to the present invention, in order from an object side to an image side, comprises: a first lens unit having positive optical power; a second lens unit having negative optical power; a third lens unit having negative optical power; and at least one subsequent lens unit, wherein at the time of zooming, all lens units move in a direction along the optical axis so that intervals between the lens units vary, and at the time of focusing, a lens unit included in the at least one lens unit moves in a direction along the optical axis.

Claims (61)

1. A zoom lens system, in order from an object side to an image side, comprising:

a first lens unit having positive optical power;

a second lens unit having negative optical power;

a third lens unit having negative optical power;

a fourth lens unit; and

a fifth lens unit, wherein

at the time of zooming, all lens units move in a direction along an optical axis so that intervals between the lens units vary, at the time of focusing, either a part of the fifth lens unit or an entirety of the fifth lens unit is a focusing lens unit and moves in a direction along the optical axis, and

the focusing lens unit has negative optical power,

wherein the third lens unit is an image blur compensation lens unit and moves in a direction perpendicular to the optical axis at the time of compensating image blur caused by vibration in the zoom lens system, and the zoom lens system satisfies the following condition:

0.5 <|f o /f W |<2.8  (2)

f T /f W >4

where,

f o is a focal length of the image blur compensation lens unit,

f T is a focal length of the zoom lens system at a telephoto limit, and

f W is a focal length of the zoom lens system at a wide-angle limit.

2. The zoom lens system as claimed in claim 1 , satisfying the following condition:

0.3 <|f F /f of |<6.0  (1)

where,

f F is a focal length of the focusing lens unit, and

f of is a composite focal length of the lens units located within a range from the image blur compensation lens unit to the focusing lens unit at a wide-angle limit.

3. The zoom lens system as claimed in claim 1 , satisfying the following condition:

0.1 <|f 2 /f 1 |<3.5  (3)

where,

f 1 is a focal length of the first lens unit, and

f 2 is a focal length of the second lens unit.

4. An interchangeable lens apparatus comprising:

a zoom lens system; and

a camera mount section connected to a camera body provided with an image sensor for receiving an optical image formed by the zoom lens system and then converting the optical image into an electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises:

a first lens unit having positive optical power;

a second lens unit having negative optical power;

a third lens unit having negative optical power;

a fourth lens unit; and

a fifth lens unit, wherein

at the time of zooming, all lens units move in a direction along an optical axis so that intervals between the lens units vary, at the time of focusing, either a part of the fifth lens unit or an entirety of the fifth lens unit is a focusing lens unit and moves in a direction along the optical axis, and

the focusing lens unit has negative optical power,

wherein the third lens unit is an image blur compensation lens unit and moves in a direction perpendicular to the optical axis at the time of compensating image blur caused by vibration in the zoom lens system, and the zoom lens system satisfies the following condition:

0.5 <|f o /f W |<2.8  (2)

f T /f W >4

where,

f o is a focal length of the image blur compensation lens unit,

f T is a focal length of the zoom lens system at a telephoto limit, and

f W is a focal length of the zoom lens system at a wide-angle limit.

5. A camera system comprising:

an interchangeable lens apparatus that includes a zoom lens system; and

a camera body that is connected to the interchangeable lens apparatus via a camera mount section in an attachable and detachable manner and that includes an image sensor for receiving an optical image formed by the zoom lens system and then converting the optical image into an electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises:

a first lens unit having positive optical power;

a second lens unit having negative optical power;

a third lens unit having negative optical power;

a fourth lens unit; and

a fifth lens unit, wherein

at the time of zooming, all lens units move in a direction along an optical axis so that intervals between the lens units vary, at the time of focusing, either a part of the fifth lens unit or an entirety of the fifth lens unit is a focusing lens unit and moves in a direction along the optical axis, and

the focusing lens unit has negative optical power,

wherein the third lens unit is an image blur compensation lens unit and moves in a direction perpendicular to the optical axis at the time of compensating image blur caused by vibration in the zoom lens system, and the zoom lens system satisfies the following condition:

0.5 <|f o /f W |<2.8  (2)

f T /f W >4

where,

f o is a focal length of the image blur compensation lens unit,

f T is a focal length of the zoom lens system at a telephoto limit, and

f W is a focal length of the zoom lens system at a wide-angle limit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2009
From: ADACHI, NOBUYUKI; UCHIDA, TSUNEO
To: PANASONIC CORPORATION
Reel/Frame 023225/0134 →
Priority Claims (1)
JP 2008-096642 · Apr 2, 2008 · national
Continuity (1)
Related Publication 20090251778A1 · Oct 8, 2009