Claims
- 1. A zoom lens with a zooming ratio of at least 1.5, the zoom lens comprising, in order from an object side to an image side:
- a first lens group having a negative refractive power; a second lens group having a positive refractive power;
- a third lens group having a positive refractive power;
- a fourth lens group having a negative refractive power; and
- a fifth lens group having a positive refractive power, wherein when zooming from a maximum wide-angle state to a maximum telephoto state, a lateral magnification of the second lens group is always positive and decreases monotonically and, during zooming from the maximum wide-angle state to a maximum telephoto state, the following conditions are satisfied:
- 0.0<.DELTA.X4/.DELTA.X2<0.3 (0<.DELTA.X4)
- 0.3<.DELTA.X5/.DELTA.X2<0.75 (0<.DELTA.X5)
- where .DELTA.X2 is a displacement of the second lens group in the direction of the optical axis of the zoom lens from the maximum wide-angle state to the maximum telephoto state, .DELTA.X4 is a displacement of the fourth lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, and .DELTA.X5 is a displacement of the fifth lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 2. The zoom lens of claim 1, wherein focusing on close-range objects is accomplished by causing the second lens group to move along the optical axis.
- 3. The zoom lens of claim 1, wherein when zooming from the maximum wide-angle state to the maximum telephoto state, the second lens group moves along a locus which is convex toward the object side, and the third lens group moves along a substantially linear locus.
- 4. The zoom lens of claim 2, wherein when zooming from the maximum wide-angle state to the maximum telephoto state, the second lens group moves along a locus which is convex toward the object side, and the third lens group moves along a substantially linear locus.
- 5. The zoom lens of claim 1, wherein when zooming from the maximum wide-angle state to the maximum telephoto state, the second lens group moves along a substantially linear locus and the third lens group moves along a locus which is convex toward the object side.
- 6. The zoom lens of claim 2, wherein when zooming from the maximum wide-angle state to the maximum telephoto state, the second lens group moves along a substantially linear locus and the third lens group moves along a locus which is convex toward the object side.
- 7. The zoom lens of claim 1, wherein the following condition is satisfied:
- 1.0<.DELTA.X.sub.T /.DELTA.X.sub.W <1.5
- where .DELTA.X.sub.W is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum wide-angle state, and .DELTA.X.sub.T is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum telephoto state.
- 8. The zoom lens of claim 2, wherein the following condition is satisfied:
- 1.0<.DELTA.X.sub.T /.DELTA.X.sub.W <1.5
- where .DELTA.X.sub.W is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum wide-angle state, and .DELTA.X.sub.T is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum telephoto state.
- 9. The zoom lens of claim 3, wherein the following condition is satisfied:
- 1.0<.DELTA.X.sub.T /.DELTA.X.sub.W <1.5
- where .DELTA.X.sub.W is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum wide-angle state, and .DELTA.X.sub.T is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum telephoto state.
- 10. The zoom lens of claim 5, wherein the following condition is satisfied:
- 1.0<.DELTA.X.sub.T /.DELTA.X.sub.W <1.5
- where .DELTA.X.sub.W is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum wide-angle state, and .DELTA.X.sub.T is a displacement of the second lens group in order to focus from an object at infinity to a close-range object at the maximum telephoto state.
- 11. The zoom lens of claim 1, further comprising a displacement means which causes the second lens group to move in a direction transverse to the optical axis.
- 12. The zoom lens of claim 2, further comprising a displacement means which causes the second lens group to move in a direction transverse to the optical axis.
- 13. The zoom lens of claim 3, further comprising a displacement means which causes the second lens group to move in a direction transverse to the optical axis.
- 14. The zoom lens of claim 5, further comprising a displacement means which causes the second lens group to move in a direction transverse to the optical axis.
- 15. The zoom lens of claim 7, further comprising a displacement means which causes the second lens group to move in a direction transverse to the optical axis.
- 16. The zoom lens of claim 11, wherein the second lens group contains at least one cemented lens.
- 17. The zoom lens of claim 12, wherein the second lens group contains at least one cemented lens.
- 18. The zoom lens of claim 13, wherein the second lens group contains at least one cemented lens.
- 19. The zoom lens of claim 14, wherein the second lens group contains at least one cemented lens.
- 20. The zoom lens of claim 15, wherein the second lens group contains at least one cemented lens.
- 21. The zoom lens of claim 1, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 22. The zoom lens of claim 2, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is the displacement of the third lens group in a direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 23. The zoom lens of claim 3, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 24. The zoom lens of claim 5, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 25. The zoom lens of claim 7, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 26. The zoom lens of claim 11, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
- 27. The zoom lens of claim 16, wherein the following condition is satisfied:
- 1<.DELTA.X3/.DELTA.X2<10
- where .DELTA.X2 is the displacement of the second lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state, .DELTA.X3 is a displacement of the third lens group in the direction of the optical axis from the maximum wide-angle state to the maximum telephoto state.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-297867 |
Oct 1995 |
JPX |
|
8-059969 |
Feb 1996 |
JPX |
|
Parent Case Info
This is a Division of application Ser. No. 08/731,774, filed Oct. 18, 1996, now U.S. Pat. No. 5,774,267.
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Divisions (1)
|
Number |
Date |
Country |
Parent |
731774 |
Oct 1996 |
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