Claims
- 1. An aspherical eyepiece for enlarging and observing a real image formed by an objective lens having positive refractive power, said eyepiece having positive refractive power as a whole and including from an eye side toward said objective lens:
- a positive lens group; and
- a correction plate for correcting pupil aberration of the positive lens group, the correction plate being disposed between the positive lens group and a front side focal plane of the positive lens group, and having an aspherically shaped surface.
- 2. An aspherical eyepiece according to claim 1, wherein said correction plate is shaped such that the thickness thereof is increased toward the edge thereof.
- 3. An aspherical eyepiece according to claim 2, wherein when the shape of the aspherical surface of said correction plate is given by the following equation: ##EQU2## where y represents the height from the optical axis; x the distance from the plane tangent to the peak of the aspherical surface to a point at the height y on the aspherical surface; C the curvature at the peak of the aspherical surface; .kappa. a conical constant; and C.sub.2i an aspherical surface coefficient, i being an integer not less than two, an aspherical surface coefficient C.sub.4 satisfies 1.times.10.sup.-5 <.vertline.C.sub.4 .vertline.<1.times.10.sup.-3.
- 4. An aspherical eyepiece according to claim 1, wherein said positive lens group is constituted of only spherical lenses.
- 5. An aspherical eyepiece for enlarging and observing a real image formed by an objective lens having positive refractive power, said eyepiece having positive refractive power as a whole and including from an eye side toward said objective lens:
- a positive lens group; and
- a correction plate for correcting pupil aberration of the positive lens group, the correction plate being disposed between said objective lens and a front side focal plane of said positive lens group, and having an aspherically shaped surface.
- 6. An aspherical eyepiece according to claim 5, wherein said correction plate is shaped such that the thickness thereof is decreased toward the edge thereof.
- 7. An aspherical eyepiece according to claim 6, wherein when the shape of the aspherical surface of said correction plate is given by the following equation: ##EQU3## where y represents the height from the optical axis; X the distance from the plane tangent to the peak of the aspherical surface to a point at the height y on the aspherical surface; C the curvature at the peak of the aspherical surface; .kappa. a conical constant; and C.sub.2i an aspherical surface coefficient, i being an integer not less than two, an aspherical surface coefficient C.sub.4 satisfies 1.times.10.sup.-5 <.vertline.C.sub.4 .vertline.<1.times.10.sup.-3.
- 8. An aspherical eyepiece according to claim 5, wherein said positive lens group is constituted of only spherical lenses.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-045981 |
Jan 1992 |
JPX |
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Parent Case Info
This is a continuation of application Ser. No. 08/005,119 filed Jan. 15, 1993, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0108516 |
Apr 1989 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Richard A. Buchroeder, "Distortionless Eyepiece", Applied Optics, vol. 27, No. 16, pp. 3327-3328. |
B. L. Nefedov, "Eyepieces With an Imaginary Front Focal Plane and a Negative Collection Lens", Sov. J. Opt. Technol. 46(7), Jul. 1979, pp. 422-430. |
Continuations (1)
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Number |
Date |
Country |
Parent |
05119 |
Jan 1993 |
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