IP Library Patent Application 13000500
Patent Application
App. No. 13/000,500

ZOOM LENS SYSTEM, IMAGING DEVICE AND CAMERA

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Quick Facts
Patent No.
US None
App. No.
13/000,500
Abstract

A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein in zooming, the intervals between the respective lens units vary, and the condition (I-1): 1.3<|f G2 /f G3 |<10.0 (f T /f W >2.0, f G2 : a focal length of the second lens unit, f G3 : a focal length of the third lens unit, f T : a focal length of the entire system at a telephoto limit, f W : a focal length of the entire system at a wide-angle limit) is satisfied, having a high resolution and a short overall optical length (overall length of lens system), and still having a view angle of 70° or greater at a wide-angle limit, which is satisfactorily adaptable for wide-angle image taking, and yet having a large aperture with an F-number of about 2.0 at a wide-angle limit; an imaging device; and a camera.

Claims (258)

1 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (I-1) and (a-1) are satisfied:

1.3 <|f G2 /f G3 |<10.0  (I-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

f G2 is a focal length of the second lens unit,

f G3 is a focal length of the third lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

2 . The zoom lens system as claimed in claim 1 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

3 . The zoom lens system as claimed in claim 1 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

4 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (I-1) and (a-1) are satisfied:

1.3 <|f G2 /f G3 |<10.0  (I-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

f G2 is a focal length of the second lens unit,

f G3 is a focal length of the third lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

5 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (I-1) and (a-1) are satisfied:

1.3 <|f G2 /f G3 |<10.0  (I-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.09

where,

f G2 is a focal length of the second lens unit,

f G3 is a focal length of the third lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

6 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following condition (II-1) is satisfied:

5.2 <|f G2 /f W |<20.0  (II-1)

(here, f T /f W >2.0)

where,

f G2 is a focal length of the second lens unit,

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

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

7 . The zoom lens system as claimed in claim 6 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

8 . The zoom lens system as claimed in claim 6 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

9 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following condition (II-1) is satisfied:

5.2 <|f G2 /f W |<20.0  (II-1)

(here, f T /f W >2.0)

where,

f G2 is a focal length of the second lens unit,

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

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

10 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following condition (II-1) is satisfied:

5.2 <|f G2 /f W |<20.0  (II-1)

(here, f T /f W >2.0)

where,

f G2 is a focal length of the second lens unit,

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

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

11 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, wherein the second lens unit comprises a plurality of lens elements, and wherein the following conditions (III-1) and (a-1) are satisfied:

1.6<|β 2W |<20.0  (III-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

ω W is a half view angle at a wide-angle limit,

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

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

12 . The zoom lens system as claimed in claim 11 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

13 . The zoom lens system as claimed in claim 11 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

14 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, wherein the second lens unit comprises a plurality of lens elements, and wherein the following conditions (III-1) and (a-1) are satisfied:

1.6<|β 2W |<20.0  (III-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

ω W is a half view angle at a wide-angle limit,

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

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

15 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, wherein the second lens unit comprises a plurality of lens elements, and wherein the following conditions (III-1) and (a-1) are satisfied:

1.6<|β 2W |<20.0  (III-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

ω W is a half view angle at a wide-angle limit,

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

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

16 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (IV-1) and (a-1) are satisfied:

1.2<|β 2W /β 2T |<10.0  (IV-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

β 2T is a lateral magnification of the second lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

17 . The zoom lens system as claimed in claim 16 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

18 . The zoom lens system as claimed in claim 16 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

19 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (IV-1) and (a-1) are satisfied:

1.2<|β 2W /β 2T |<10.0  (IV-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

β 2T is a lateral magnification of the second lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

20 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (IV-1) and (a-1) are satisfied:

1.2<|β 2W /β 2T |<10.0  (IV-1)

ω W ≧45.16  (a-1)

(here, f T /f W >2.0)

where,

β 2W is a lateral magnification of the second lens unit at a wide-angle limit,

β 2T is a lateral magnification of the second lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

21 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (V-1) and (a-2) are satisfied:

1.08<|β 4W /β 4T |<2.00  (V-1)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

β 4W is a lateral magnification of the fourth lens unit at a wide-angle limit,

β 4T is a lateral magnification of the fourth lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

22 . The zoom lens system as claimed in claim 21 , wherein the following condition (V,VI-4) is satisfied:

1.5 <f G4 /f W <10.0  (V,VI-4)

(here, f T /f W >2.0)

where,

f G4 is a focal length of the fourth lens unit,

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

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

23 . The zoom lens system as claimed in claim 21 , wherein the following condition (V,VI-5) is satisfied:

|β 4W <1.5  (V,VI-5)

(here, f T /f W >2.0)

where,

β 4W is a lateral magnification of the fourth lens unit at a wide-angle limit,

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

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

24 . The zoom lens system as claimed in claim 21 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

25 . The zoom lens system as claimed in claim 21 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

26 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (V-1) and (a-2) are satisfied:

1.08<|β 4W /β 4T |<2.00  (V-1)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

β 4W is a lateral magnification of the fourth lens unit at a wide-angle limit,

β 4T is a lateral magnification of the fourth lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

27 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, the intervals between the respective lens units vary, and wherein the following conditions (V-1) and (a-2) are satisfied:

1.08<|β 4W /β 4T |<2.00  (V-1)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

β 4W is a lateral magnification of the fourth lens unit at a wide-angle limit,

β 4T is a lateral magnification of the fourth lens unit at a telephoto limit,

ω W is a half view angle at a wide-angle limit,

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

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

28 . A zoom lens system, in order from an object side to an image side, comprising a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, at least the fourth lens unit moves in a direction along an optical axis such that the intervals between the respective lens units vary, and wherein the following conditions (VI-3) and (a-2) are satisfied:

0.07 <|D G4 /f G4 |<0.25  (VI-3)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

D G4 is an amount of movement of the fourth lens unit in the direction along the optical axis during zooming,

f G4 is a focal length of the fourth lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

29 . The zoom lens system as claimed in claim 28 , wherein the following condition (V,VI-4) is satisfied:

1.5 <f G4 /f W <10.0  (V,VI-4)

(here, f T /f W >2.0)

where,

f G4 is a focal length of the fourth lens unit,

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

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

30 . The zoom lens system as claimed in claim 28 , wherein the following condition (V,VI-5) is satisfied:

|β 4W <1.5  (V,VI-5)

(here, f T /f W >2.0)

where,

β 4W is a lateral magnification of the fourth lens unit at a wide-angle limit,

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

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

31 . The zoom lens system as claimed in claim 28 , wherein, in zooming, all the first lens unit, the second lens unit, the third lens unit, and the fourth lens unit move in a direction along an optical axis such that the intervals between the respective lens units vary.

32 . The zoom lens system as claimed in claim 28 , wherein the first lens unit comprises two lens elements including, in order from the object side to the image side, a first lens element having negative optical power and a second lens element having positive optical power.

33 . An imaging device capable of outputting an optical image of an object as an electric image signal, comprising:

a zoom lens system that forms an optical image of the object; and

an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, at least the fourth lens unit moves in a direction along an optical axis such that the intervals between the respective lens units vary, and wherein

the following conditions (VI-3) and (a-2) are satisfied:

0.07 <|D G4 /f G4 |<0.25  (VI-3)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

D G4 is an amount of movement of the fourth lens unit in the direction along the optical axis during zooming,

f G4 is a focal length of the fourth lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

34 . A camera for converting an optical image of an object into an electric image signal and then performing at least one of displaying and storing of the converted image signal, comprising:

an imaging device including a zoom lens system that forms the optical image of the object and an image sensor that converts the optical image formed by the zoom lens system into the electric image signal, wherein

the zoom lens system, in order from an object side to an image side, comprises a first lens unit having negative optical power, a second lens unit having positive optical power, a third lens unit having positive optical power, and a fourth lens unit having positive optical power, wherein

in zooming, at least the fourth lens unit moves in a direction along an optical axis such that the intervals between the respective lens units vary, and wherein

the following conditions (VI-3) and (a-2) are satisfied:

0.07 <|D G4 /f G4 |<0.25  (VI-3)

ω W ≧44.9052  (a-2)

(here, f T /f W >2.0)

where,

D G4 is an amount of movement of the fourth lens unit in the direction along the optical axis during zooming,

f G4 is a focal length of the fourth lens unit,

ω W is a half view angle at a wide-angle limit,

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

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

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ERRONEOUSLY FILED APPLICATION NUMBERS 13/384239, 13/498734, 14/116681 AND 14/301144 PREVIOUSLY RECORDED ON REEL 034194 FRAME 0143. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 24, 2020
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 056788/0362 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2014
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 034194/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2011
From: IIYAMA, TOMOKO; YOSHITSUGU, KEIKI
To: PANASONIC CORPORATION
Reel/Frame 025836/0227 →