IP Library › Granted Patent US 10,156,708
Granted Patent B2
US 10,156,708 · App. 15/727,375 · Granted Dec 18, 2018

Projection zoom lens and projection type image display device

Inventor: Nobutaka Minefuji (Azumino, JP)
Assignee: SEIKO EPSON CORPORATION
G02B15/167G02B7/10G02B13/009G02B13/0045G02B15/177
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Quick Facts
Patent No.
US 10,156,708
App. No.
15/727,375
Granted
Dec 18, 2018
Kind
B2
Abstract

First through third lens groups constituting a projection zoom lens can be configured as a zoom lens of the type in which the first and second lens groups, for example, are moved when zooming, and the first lens group, for example, is moved when focusing. Further, by fulfilling the conditional formula (1), it is possible to achieve that the back focus is prevented from becoming too short, and the back focus is prevented from becoming too long while ensuring the sufficient space on the reduction side, and the lens diameter on the reduction side is prevented from becoming too large in the case of adopting a roughly telecentric configuration on the reduction side.

Claims (59)

1. A zoom lens comprising:

a first lens group having negative refracting power;

a second lens group having positive refracting power; and

a third lens group having positive refracting power,

wherein three lens groups of the first lens group, the second lens group, and the third lens group are arranged in this order from a enlargement side,

a distance between the first lens group and the second lens group, and a distance between the second lens group and the third lens group vary to achieve a magnification change and focusing when zooming,

the second lens group includes

a positive lens disposed on a most enlargement side and having a convex surface facing to the enlargement side, and one of a convex surface, which is lower in power than the convex surface facing to the enlargement side, and a concave surface on a reduction side, and

a positive lens disposed on a most reduction side and having a convex surface facing to the reduction side, and one of a concave surface and a convex surface, which is lower in power than the convex surface facing to the reduction side, on the enlargement side,

the third lens group is formed of a single positive lens having a convex surface facing to the enlargement side, and

the following conditional formula (1) is fulfilled:

1.4< Bf/fw< 2.0  (1)

where

fw: focal length of an overall lens system at a wide-angle end, and

Bf: focal length (air-equivalent length) of back focus.

2. The projection zoom lens according to claim 1 , wherein

the first lens group moves from the enlargement side toward the reduction side in the magnification change from the wide-angle end to a predetermined intermediate focal length position, and moves from the reduction side toward the enlargement side in zooming from the predetermined intermediate focal length position to the telescopic end.

3. The projection zoom lens according to claim 1 , wherein

the first lens group moves from the enlargement side toward the reduction side zooming from the wide-angle end to the telescopic end.

4. The projection zoom lens according to claim 1 , wherein

in zooming from the wide-angle end to the telescopic end, the first lens group is semi-fixed, the second lens group moves from the reduction side toward the enlargement side, and the third lens group moves from the enlargement side toward the reduction side.

5. The projection zoom lens according to claim 1 , wherein

in zooming from the wide-angle end to the telescopic end, the second lens group moves from the reduction side toward the enlargement side, and either of the first lens group and the third lens group is moved to thereby make it possible to correct a focus shift due to the magnification change.

6. The projection zoom lens according to claim 1 , wherein

the first lens group is constituted by three lenses consisting of two negative lenses and a positive lens arranged in this order from the enlargement side, and

defining a focal length of the first lens group as f1, the following conditional formula (2) is fulfilled:

1.5<| f 1/ fw|< 3.0.  (2)

7. The projection zoom lens according to claim 1 , wherein

the second lens group is constituted by five lenses, namely a positive lens having a convex surface facing to the enlargement side, a negative lens having a concave surface facing to the enlargement side, a negative lens having a concave surface facing to the enlargement side and a positive lens having a convex surface facing to the reduction side, and a positive lens having a convex surface facing to the enlargement side arranged in this order from the enlargement side, and defining a focal length of the second lens group as f2, the following conditional formula (3) is fulfilled:

1.5< f 2/ fw< 3.5.  (3)

8. The projection zoom lens according to claim 7 , wherein

in the second lens group, the negative lens having the concave surface facing to the enlargement side and the positive lens having the convex surface facing to the reduction side are a cemented lens.

9. The projection zoom lens according to claim 1 , wherein

the second lens group is constituted by four lenses, namely a positive lens having a convex surface facing to the enlargement side, a negative lens having a concave surface facing to the enlargement side, a positive lens having a convex surface facing to the reduction side, and a positive lens having a convex surface facing to the enlargement side arranged in this order from the enlargement side, and defining a focal length of the second lens group as f2, the following conditional formula (3) is fulfilled:

1.5< f 2/ fw< 3.5.  (3)

10. The projection zoom lens according to claim 1 , wherein

defining a curvature radius of a surface on the most enlargement side of the second lens group as R1, and a curvature radius of a surface on the most reduction side as R2, the following conditional formula (4) is fulfilled:

0.5<| R 1/ R 2|<2.0.  (4)

11. The projection zoom lens according to claim 1 , wherein

the first lens group includes at least one aspherical lens formed of resin, and having negative power, and defining a focal length of the aspherical lens as fp, the following conditional formula (5) is fulfilled:

2.5<| fp/fw|< 6.0.  (5)

12. A projection type image display device comprising:

the projection zoom lens according to claim 1 .

13. A projection type image display device comprising:

the projection zoom lens according to claim 2 .

14. A projection type image display device comprising:

the projection zoom lens according to claim 3 .

15. A projection type image display device comprising:

the projection zoom lens according to claim 4 .

16. A projection type image display device comprising:

the projection zoom lens according to claim 5 .

17. A projection type image display device comprising:

the projection zoom lens according to claim 6 .

18. A projection type image display device comprising:

the projection zoom lens according to claim 7 .

19. A projection type image display device comprising:

the projection zoom lens according to claim 8 .

20. A projection type image display device comprising:

the projection zoom lens according to claim 9 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2017
From: MINEFUJI, NOBUTAKA
To: SEIKO EPSON CORPORATION
Reel/Frame 043808/0454 →
Priority Claims (1)
JP 2016-205738 · Oct 20, 2016 · national
Continuity (1)
Related Publication 20180113286A1 · Apr 26, 2018
Cited By (1)
US 12,443,096