Nova Patents
EP0405532A2

Zoom lens.

Abstract

A zoom lens comprises, in succession from the object side, a first lens group having a positive refractive power, a second lens group having a negative refractive power, a third lens group having a positive refractive power, and a fourth lens group having a positive refractive power. The zoom lens is designed such that during the zooming from the wide angle end to the telephoto end, the third lens group and the fourth lens group are moved along the optic axis thereof and during the focusing on an infinity object to a short distance object, they are moved toward the image side while having the spacing therebetween relatively varied. The zoom lens is further designed to satisfy the following condition:where β3w and β4w are the lateral magnifications of the third lens group and the fourth lens group, respectively, in the infinity in-focus state of the wide angle end, and β3T and 64T are the lateral magnifications of the third lens group and the fourth lens group, respectively, in the infinity in-focus state of the telephoto end.

EP0405532A2, drawing sheet 1
Sheet 1 of 88

Term

Term ended

Projected expiry passed 27 June 2010, 16.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

14 claims: 2 independent, 12 dependent

  1. 1
    A zoom lens comprising, in succession from the object side, a first lens group having a positive refractive power, a second lens group having a negative refractive power, a third lens group having a positive refractive power, and a fourth lens group having a positive refractive power, said zoom lens being designed such that during the zooming from the wide angle end to the telephoto end, said third lens group and said fourth lens group are moved along the optic axis thereof and during the focusing on an infinity object to a short distance object, they are moved toward the image side while having the spacing therebetween relatively varied, said zoom lens being further designed to satisfy the following condition:
  2. 2
    β3T •β 4T < β 3W • β 4W < - 1.3 and 8 3w and β 4W are the lateral magnifications of said third lens group and said fourth lens group, respectively, in the infinity in-focus state of the wide angle end, and {33T and β 4T are the lateral magnifications of said third lens group and said fourth lens group, respectively, in the infinity in-focus state of the telephoto end.
  3. 3
    2. A zoom lens according to Claim 1, which is designed to satisfy the following condition:1.4 < f 4 /f 3 < 4 where f 3 and f 4 are the focal lengths of said third lens group and said fourth lens group, respectively.
  4. 4
    3. A zoom lens according to Claim 1, which is designed to satisfy the following condition:-2<β 3 • β 4 <-1.35 where β 3 •β 4 is the combined lateral magnification of said third lens group and said fourth lens group in the infinity in-focus state.
  5. 5
    4. A zoom lens according to Claim 1, which is designed to satisfy the following condition:1.55 < f 4 /fs < 2.5 where f 3 and f 4 are the focal lengths of said third lens group and said fourth lens group, respectively.
  6. 6
    5. A zoom lens according to Claim 1, wherein said third lens group and said fourth lens group are designed to satisfy the following conditions:where DX 3w (R): the amount of movement of the third lens group required for the focusing to the infinity at the wide angle end to any photographing distance R DX 4w (R): the amount of movement of the fourth lens group required for the focusing to the infinity at the wide angle end to any photographing distance R DX 3T (R): the amount of movement of the third lens group required for the focusing to the infinity at the telephoto end to any photographing distance R DX 4T (R): the amount of movement of the fourth lens group required for the focusing to the infinity at the telephoto end to any photographing distance R.
  7. 7
    6. A zoom lens according to Claim 1, wherein said first lens group comprises, in succession from the object side, a cemented lens comprising a negative meniscus lens having its convex surface facing the object side and a biconvex positive lens, and a positive meniscus lens having its convex surface facing the object side, said second lens group comprises a negative meniscus lens having its convex surface facing the object side and having its object side surface formed into an aspherical surface, a biconcave negative lens having its surface of sharper curvature facing the object side, and a cemented lens comprising a biconvex positive lens and a biconcave negative lens, said third lens group comprises a biconvex positive lens, and a cemented lens comprising a biconvex positive lens and a biconcave negative lens, and said fourth lens group comprises a positive lens having its surface of sharper curvature facing the image side, a biconvex positive lens and a negative lens having its concave surface of sharper curvature facing the object side, said zoom lens being designed such that during the zooming from the wide angle side to the telephoto side, all of said lens groups are moved toward the object side along the optic axis and during the focusing on an infinity object to a short distance object, said third lens group and said fourth lens group are both moved toward the image side while having the spacing therebetween relatively varied.
  8. 8
    7. A zoom lens according to Claim 1, wherein said first lens group comprises, in succession from the object side, a cemented lens comprising a negative meniscus lens having its convex surface facing the object side and a biconvex positive lens, and a positive meniscus lens having its convex surface facing the object side, said second lens group comprises a negative meniscus lens having its convex surface facing the object side, a biconcave negative lens, a biconvex positive lens, and a cemented lens comprising a biconcave negative lens and a biconvex positive lens, said third lens group comprises a biconvex positive lens, a negative meniscus lens having its convex surface facing the image side, and a positive lens having its surface of sharper curvature facing the object side, and said fourth lens group comprises a meniscus lens having its convex surface facing the object side, a positive lens having its surface of sharper curvature facing the image side, a biconvex positive lens and a negative lens having its concave surface of sharper curvature facing the object side, said zoom lens being designed such that during the zooming from the wide angle side to the telephoto side, all of said lensgroups are moved toward the object side along the optic axis and during the focusing on an infinity object to a short distance object, said third lens group and said fourth lens group are both moved toward the image side while having the spacing therebetween relatively varied.
  9. 9
    8. A zoom lens according to Claim 1, wherein said first lens group comprises, in succession from the object side, a negative meniscus lens having its convex surface facing the object side, a biconvex positive lens and a positive meniscus lens having its convex surface facing the object side, said second lens group comprises a negative meniscus lens having its concave surface facing the image side, a cemented lens comprising a positive lens having its surface of sharper curvature facing the image side and a negative meniscus lens having its convex surface facing the image side, and a cemented lens comprising a biconcave negative lens and a positive lens having its surface of sharper curvature facing the object side, said third lens group comprises a positive lens having its surface of sharper curvature facing the image side, a negative meniscus lens having its convex surface facing the image side, and a positive meniscus lens having its convex surface facing the object side, and said fourth lens group comprises a cemented lens comprising a positive meniscus lens having its convex surface facing the object side and a negative meniscus lens having its convex surface facing the object side, a biconvex positive lens, and a cemented lens comprising a positive meniscus lens having its convex surface facing the image side and a negative meniscus lens having its convex surface facing the image side, said zoom lens being designed such that during the zooming from the wide angle side to the telephoto side, all of said lens groups are moved toward the object side along the optic axis and during the focusing on an infinity object to a short distance object, said third lens group and said fourth lens group are both moved toward the image side while having the spacing therebetween relatively varied.
  10. 10
    9. A zoom lens according to Claim 1, wherein said first lens group comprises, in succession from the object side, a negative meniscus lens having its convex surface facing the object side, a biconvex positive lens and a positive meniscus lens having its convex surface facing the object side, said second lens group comprises a negative meniscus lens having its convex surface facing the object side, a cemented lens comprising a positive lens having its surface of sharper curvature facing the image side and a negative lens having its surface of sharper curvature facing the object side, and a cemented lens comprising a biconcave negative lens and a positive lens having its surface of sharper curvature facing the object side, said third lens group comprises a positive lens having its surface of sharper curvature facing the image side, a negative meniscus lens having its convex surface facing the image side, and a positive meniscus lens having its convex surface facing the object side, and said fourth lens group comprises a positive meniscus lens having its convex surface facing the object side, a positive meniscus lens having its convex surface facing the image side, and a cemented lens comprising a positive lens having its surface of sharper curvature facing the image side and a negative lens having its concave surface of sharper curvature facing the object side, said zoom lens being designed such that during the zooming from the wide angle side to the telephoto side, all of said lens groups are moved toward the object side along the optic axis and during the focusing on an infinity object to a short distance object, said third lens group and said fourth lens group are both moved toward the image side while having the spacing therebetween relatively varied.
  11. 11
    10. A zoom lens according to Claim 6, which is designed in accordance with the following numerical data:wherein F represents focal length, FN represents F-number, r represents the radius of curvature of each lens surface, d represents the spacing between the lens surfaces, n represents the refractive index of each lens, Abbe represents Abbe number, the suffix numbers represent the order from the object side;middle stage shows the spacings between the lens groups at six positions (F = 36.0, 50.0, 60.0, 70.0, 85.0, 103.0) corresponding to six magnification change states from the wide angle end to the telephoto end;lower stage shows the value of each coefficient representing the shape of the aspherical surface formed on the object side lens surface (r6), the aspherical surface is expresses by the following aspherical surface equation: wherein h is the height from the optical axis, X is the distance from the tangential plane at the vertex of the aspherical surface at the height h, K is the cone constant, C 2 , C 4 ., C 3 , C 8 and C 10 , respectively are the 2nd-order, 4th-order, 6th-order, 8th-order and 10th-order aspherical surface coefficients and r is the paraxial radius of curvature;and E-n in the values of the aspherical surface coefficients represents 10'".
  12. 12
    11. A zoom lens according to Claim 7 which is designed in accordance with the following numerical data:wherein F represents focal length, FN represents F-nuMBer, r represents the radius of curvature of each lens surface, d represents the spacing between the lens surfaces, n represents the refractive index of each lens, Abbe represents Abbe number, the suffix numbers represent the order from the object side;and lower stage shows the spacings between the lens groups at five positions (F = 36.0, 50.0, 70.0, 85.0, 103.0) corresponding to five magnification change states from the wide angle end to the telephoto end.
  13. 13
    12. A zoom lens according to Claim 8, which is designed in accordance with the following numerical data:wherein F represents focal length, FN represents F-number, r represents the radius of curvature of each lens surface, d represents the spacing between the lens surfaces, n represents the refractive index of each lens, Abbe represents Abbe number, the suffix numbers represent the order from the object side;and lower stage shows the spacings between the lens groups at five positions (F = 36.0, 50.0, 70.0, 85.0, 103.0) corresponding to five magnification change states from the wide angle end to the telephoto end.
  14. 14
    13. A zoom lens according to Claim 9, which is designed in accordance with the following numerical data:wherein F represents focal length, FN represents F-number, r represents the radius of curvature of each lens surface, d represents the spacing between the lens surfaces, n represents the refractive index of each lens, Abbe represents Abbe number, the suffix numbers represent the order from the object side;and lower stage shows the spacings between the lens groups at five positions (F = 36.0, 50.0, 70.0, 100.0, 131.0) corresponding to five magnification change states from the wide angle end to the telephoto end.