Claims
- 1. A zoom lens system of a mechanical compensating type comprising:
- a first lens group of a negative refractive power including a negative lens as the first lens on the object side end of the first lens group;
- a second lens group of a positive refractive power located on the image side of the first lens group with a first variable air space between the first and second lens groups;
- a third lens group of a negative refractive power located on the image side of the second lens group with a second variable air space between the second and third lens groups; and
- a fourth lens group of a positive refractive power located on the image side of the third lens group with a third variable air space between the third and fourth lens groups, wherein the first and third variable air spaces are reduced and the second variable air space is increased in accordance with the increase of the focal length of the whole lens system by means of the axial movements of certain of the lens group including at least the first lens group during the zooming operation.
- 2. The invention of claim 1, wherein the lens system fulfills the following condition:
- 0.5<R/.vertline.f.sub.1 .vertline.<1.3
- wherein:
- R represents a radius of curvature of the object side one of a pair of refractive surfaces defining the first air space numbered from the object side in the first lens group; and
- f.sub.1 represents the focal length of the first lens group.
- 3. The invention of claim 1, wherein the first lens group further includes at least two positive lens elements on the image side of the negative lens.
- 4. The invention of claim 3, wherein the first lens group further includes at least one negative lens element between the two positive lens elements.
- 5. The invention of claim 4, wherein the image side one of the two positive lens elements is cemented to the negative lens element.
- 6. The invention of claim 2, wherein the fourth lens group includes at least two positive lens elements and a negative lens element.
- 7. The invention of claim 6, wherein an air space of a positive meniscus shape convex to the image side is formed in the fourth lens group between the image side of the two positive lens elements and the negative lens element.
- 8. The invention of claim 2, wherein the lens system further fulfills the following conditions:
- 0.9<f.sub.2 /f.sub.w <1.5
- 0.8<.vertline.f.sub.3 .vertline./f.sub.w <1.6
- wherein:
- f.sub.2 represents the focal length of the second lens group;
- f.sub.3 represents the focal length of the third lens group; and
- f.sub.w represents the shortest focal length of the whole lens system.
- 9. The invention of claim 8, wherein the lens system further fulfills the following conditions:
- f.sub.2 <.vertline.f.sub.1 .vertline.
- .vertline.f.sub.3 .vertline.<f.sub.4
- wherein: f.sub.4 represents the focal length of the fourth lens group.
- 10. The invention of claim 9, wherein the lens system further fulfills the following condition:
- 0.5<.vertline.f.sub.1 .vertline./.sqroot.f.sub.w f.sub.t <1.2
- wherein: f.sub.t represents the longest focal length of the whole lens system.
- 11. The invention of claim 4, wherein the second lens group includes a pair of positive lenses.
- 12. The invention of claim 11, wherein the object side one of the pair of positive lenses in the second lens group consists of a bioconvex lens element and a pair of negative meniscus lens elements respectively cemented on both sides of the bioconvex lens element, and the image side one of the pair of positive lenses in the second lens group is a single lens element.
- 13. The invention of claim 12 further comprises a diaphragm aperture stop stationarily located with a stationary third lens group.
- 14. A zoom lens system comprising:
- a first lens group of a negative refractive power including a negative lens as the first lens on the object side end and at least two positive lens elements on the image side of the negative lens;
- a second lens group of a positive refractive power located on the image side of the first lens group with a first variable air space between the first and second lens group;
- a third lens group of a negative refractive power located on the image side of the second lens group with a second variable air space between the second and third lens groups; and
- a fourth lens groups of a positive refractive power located on the image side of the third lens group with a third variable air space between the third lens group and the fourth lens group, wherein the first and third variable air spaces are reduced and the second variable air space is increased in accordance with the increase of the focal length of the whole lens system by means of the axial movements of at least two of the first, second and fourth lens groups.
- 15. The invention of claim 14 wherein the second lens group is movably mounted and includes a pair of positive lenses.
Priority Claims (1)
Number |
Date |
Country |
Kind |
56-192492 |
Nov 1981 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 445,528, filed Nov. 30, 1982, now U.S. Pat. No. 4,591,235.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
55-14403 |
Apr 1980 |
JPX |
2080966A |
Feb 1982 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
445528 |
Nov 1982 |
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