Claims
- 1. A zoom lens comprising, from front to rear:
- a first lens unit of positive refractive power, said first lens unit having (a) a fixed front lens subunit having a negative lens and a positive lens and (b) a rear lens subunit of positive refractive power, said rear lens subunit being moved to effect focusing; and
- a rear lens unit having a zooming section, wherein the following condition is satisfied,
- 5<.DELTA..nu.X
- where .DELTA..nu.X is a difference between Abbe numbers of said negative lens and said positive lens, said zoom lens further satisfying the following condition:
- 1.04<FN1.ltoreq.1.55
- where FN1=f1/(fT/FNT), and wherein f1 and FN1 are a focal length and an F-number of said first lens unit, respectively, and fT and FNT are a focal length and an F-number of said zoom lens in a telephoto end, respectively.
- 2. A zoom lens according to claim 1, further satisfying the following condition:
- 0.23<f1/fT<0.80.
- 3. A zoom lens according to claim 1, further satisfying the following condition:
- 3<.vertline.f11/f1.vertline.
- where f11 is a focal length of said front lens subunit.
- 4. A zoom lens according to claim 3, further satisfying the following condition:
- 0.7<f12/f1<1.10
- where f12 is a focal length of said rear lens subunit.
- 5. A zoom lens according to claim 1, further satisfying the following conditions:
- S1<0,
- 0<S2, and
- -0.90<S1/S2<-0.56
- where S1 and S2 are total sums of b 3rd order spherical aberration coefficients for a telephoto end of all surfaces in said front lens subunit and said rear lens subunit, respectively.
- 6. A zoom lens according to claim 1, wherein said rear lens unit has a second lens unit of negative refractive power, a third lens unit, and a fourth lens unit of positive refractive power, said second lens unit and said third lens unit being moved to effect zooming.
- 7. A zoom lens according to claim 5, wherein said third lens unit has positive refractive power.
- 8. A zoom lens according to claim 1, wherein said rear lens subunit has three positive lenses.
- 9. A zoom lens according to claim 1, wherein said front lens subunit has a negative lens and two positive lenses.
- 10. A zoom lens according to claim 1, wherein said rear lens subunit is moved to an object side to effect focusing from an infinitely distant object to an object at a minimum distance.
- 11. A zoom lens according to claim 10, wherein an air space is provided between said front lens subunit and said rear lens subunit, and wherein said rear lens subunit moves in the air space to the object side to effect focusing on an object at a minimum distance.
- 12. A zoom lens according to claim 1, wherein said rear lens subunit has two positive lenses.
- 13. A zoom lens comprising from front to rear:
- a first lens unit of positive refractive power, said first lens unit having (a) a fixed front lens subunit having a negative lens and a positive lens and (b) a rear lens subunit of positive refractive power, said rear lens subunit being moved to effect focusing; and
- a rear lens unit having a zooming section, wherein the following condition is satisfied,
- 55<.DELTA..nu.X
- where .DELTA..nu.X is a difference between Abbe numbers of said negative lens and said positive lens, said zoom lens further satisfying the following condition:
- 3<.vertline.f11/f1.vertline.
- where f11 is a focal length of said front lens subunit and f1 is a focal length of said first lens unit.
Priority Claims (2)
Number |
Date |
Country |
Kind |
5-051447 |
Feb 1993 |
JPX |
|
5-207080 |
Jul 1993 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 08/196,459 filed Feb. 15, 1994, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (2)
Number |
Date |
Country |
52-41068 |
Oct 1977 |
JPX |
59-4686 |
Jan 1984 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
196459 |
Feb 1994 |
|