IP Library Granted Patent US 9,958,659
Granted Patent B2
US 9,958,659 · App. 15/131,694 · Granted May 1, 2018

Microscope objective lens

Inventor: Miwako Yoshida (Yokohama, JP)
Assignee: NIKON CORPORATION
G02B21/02G02B27/0037G02B5/005
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Quick Facts
Patent No.
US 9,958,659
App. No.
15/131,694
Granted
May 1, 2018
Kind
B2
Abstract

A microscope objective lens includes, in order from an object side, a first lens group having positive refractive power, a second lens group having positive refractive power, and a third lens group having negative refractive power, and is configured such that the first lens group includes, on the most object side, a positive meniscus lens whose concave surface is directed to the object side, such that the second lens group includes a diffractive optical element having positive refractive power, and such that the diffractive optical element is arranged at a position closer to the image than a portion at which the diameter of a light flux passing through the first lens group and the second lens group is the largest.

Claims (35)

1. A microscope objective lens comprising, in order from an object side,

a first lens group having positive refractive power,

a second lens group having positive refractive power, and

a third lens group having negative refractive power, wherein

the first lens group includes, on the most object side, a positive meniscus lens whose concave surface is directed to the object side,

the second lens group includes a diffractive optical element having positive refractive power, and

the microscope objective lens satisfying the following expressions:

0.5≤(− r 1)/ F≤ 4.2

2≤ f 1/ F≤ 10

15≤ f 2/ F≤ 30

where a radius of curvature of the most object side lens surface of the first lens group is set as r1, a focal length of the whole lens system is set as F, a focal length of the first lens group is set as f1, and a focal length of the second lens group is set as f2.

2. The microscope objective lens according to claim 1 , wherein

the diffractive optical element is arranged at a position closer to an image than a portion at which a diameter of a light flux passing through the first lens group and the second lens group is the largest.

3. The microscope objective lens according to claim 1 , satisfying the following expression:

n 1≥1.8

where a refractive index relative to a d-line of a medium of the positive meniscus lens included in the first lens group is set as n1.

4. The microscope objective lens according to claim 1 , satisfying the following expression:

ΦDOE/Φmax<0.9

where the maximum diameter of the light flux passing through the first lens group and the second lens group is set as Φmax, and the maximum diameter of a light flux passing through a diffractive optical surface of the diffractive optical element is set as ΦDOE.

5. The microscope objective lens according to claim 1 , satisfying the following expression:

0.3≤ f 12/(− f 3)≤2

where a combined focal length of the first lens group and the second lens group is set as f12 and a focal length of the third lens group is set as f3.

6. The microscope objective lens according to claim 1 , satisfying the following expression:

100 ≤f DOE/ F ≤1000

where a focal length of the diffractive optical element is set as fDOE.

7. The microscope objective lens according to claim 1 , wherein

the third lens group includes at least one cemented lens comprising a positive lens and a negative lens,

the microscope objective lens satisfying the following expression:

−0.0035≤Δθ gF 3/Δν3≤−0.002

where a partial dispersion ratio θgF is defined as θgF=(ng−nF)/(nF−nC), with a refractive index relative to a g-line being set as ng, a refractive index relative to an F-line being set as nF, and a refractive index relative to a C-line being set as nC; a difference in the partial dispersion ratio between the positive lens and the negative lens which configure the cemented lens provided in the third lens group is set as ΔθgF3; and a difference in the Abbe number between the positive lens and the negative lens is set as Δν3.

8. The microscope objective lens according to claim 1 , wherein

the second lens group includes at least one cemented lens comprising a positive lens and a negative lens,

the microscope objective lens satisfying the following expression:

−0.0025≤Δθ gF 2/Δν2≤−0.0006

where a partial dispersion ratio θgF is defined as θgF=(ng−nF)/(nF−nC), with a refractive index relative to a g-line being set as ng, a refractive index relative to an F-line being set as nF, and a refractive index relative to a C-line being set as nC; a difference in the partial dispersion ratio between the positive lens and the negative lens which configure the cemented lens provided in the second lens group is set as ΔθgF2, and a difference in the Abbe number between the positive lens and the negative lens is set as Δν2.

Priority Claims (1)
JP 2010-187827 · Aug 25, 2010 · national
Continuity (3)
Continuation 13760681 · Feb 6, 2013
Continuation PCTJP2011066181 · Jul 15, 2011
Related Publication 20170023783A1 · Jan 26, 2017