IP Library Granted Patent US 10,162,160
Granted Patent B2
US 10,162,160 · App. 15/385,652 · Granted Dec 25, 2018

Microscope objective

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Quick Facts
Patent No.
US 10,162,160
App. No.
15/385,652
Granted
Dec 25, 2018
Kind
B2
Abstract

A dry microscope objective includes in order starting from the object side a first lens group having a positive power, that includes single lenses, a second lens group that can move along an optical axis, and a third lens group including two concave surfaces that are air-contacting surfaces adjacent to and facing each other. Only one surface is a concave surface from among four surfaces consisting of a first lens surface, a second lens surface, a third lens surface and a fourth lens surface. The objective satisfies 0.66≤ NA ≤1   (1) 0.2<|Δ d/r 1 |<1   (2) where NA is a numerical aperture of the objective, Δd is a sum of a lens interval between the first and second lens surfaces and a lens interval between the third and fourth lens surfaces, and r 1 is a curvature radius of the concave surface from among the four surfaces.

Claims (36)

1. A dry microscope objective comprising in order starting from an object side:

a first lens group, having a positive power, that includes a plurality of single lenses;

a second lens group that is moveable along an optical axis; and

a third lens group including two concave surfaces that are air-contacting surfaces adjacent to and facing each other,

wherein:

only one surface is a concave surface from among four surfaces consisting of a first lens surface that is a lens surface closest to an image in the first lens group, a second lens surface that is a lens surface closest to an object in the second lens group, a third lens surface that is a lens surface closest to the image in the second lens group, and a fourth lens surface that is a lens surface closest to the object in the third lens group, and

the dry microscope objective satisfies

0.66≤NA≤1  (1)

0.2<|Δ d/r 1 |<1  (2)

where NA is a numerical aperture on the object side of the dry microscope objective, Δd is a sum of a lens interval between the first and second lens surfaces and a lens interval between the third and fourth lens surfaces when the second lens group is located at any one position along the optical axis to which the second lens group is moveable, and r 1 is a curvature radius of a lens surface that is the concave surface from among the four surfaces, and

wherein Δd does not vary, regardless of a position of the second lens group along the optical axis,

whereby

0.2<|Δ d/r 1 |<1  (2)

is satisfied for all positions along the optical axis to which the second lens group is moveable.

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

a lens component including the concave surface from among the four surfaces is a two-piece cemented lens, and the dry microscope objective satisfies

25<| v 1 - v 2 |<50  (3)

where v 1 is an Abbe number of a lens including the concave surface and v 2 is an Abbe number of a lens cemented together with the lens including the concave surface.

3. The dry microscope objective according to claim 1 , wherein the first lens group includes a three-piece cemented lens in which a positive lens, a negative lens and a positive lens are cemented together in order starting from the object side.

4. The dry microscope objective according to claim 1 , wherein

the third lens group includes, closest to the image, a single lens having a positive power, and

the dry microscope objective satisfies

3< f 31 /f <5  (4)

where f is a focal length of the dry microscope objective and f 31 is a focal length of the single lens included in the third lens group.

5. A microscope system comprising the dry microscope objective according to claim 1 , wherein:

the dry microscope objective satisfies

0.6<( T max - T min )/ N d / d min <3.0  (5)

where T max and T min are respectively maximum and minimum values of a thicknesses of a sample holding member that is designated by a specification of the dry microscope objective, N d is a refractive index of a sample holding member used for observation and d min is an optical working distance when a sample holding member with a thickness of T max is used, wherein the optical working distance is a distance on the optical axis from a surface closest to the object in the dry microscope objective to a surface closest to the image in the sample holding member in the microscope system.

6. The dry microscope objective according to claim 1 , wherein

the second lens group is a single lens having a positive power, and the dry microscope objective satisfies

4< f 2 /f <6  (6)

where f is a focal length of the dry microscope objective and f 2 is a focal length of the second lens group.

7. A microscope system comprising the dry microscope objective according to claim 1 ,

wherein the dry microscope objective satisfies

0.3<( d i + T i / N d )/ f <0.77  (7)

where d i is an optical working distance when a sample holding member with a refractive index of N d and a thickness of T i is used for observation in the microscope system, and f is a focal length of the dry microscope objective, wherein the optical working distance is a distance on the optical axis from a surface closest to the object in the dry microscope objective to a surface closest to the image in the sample holding member in the microscope system.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2023
From: OLYMPUS CORPORATION
To: EVIDENT CORPORATION
Reel/Frame 062492/0267 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2016
From: AKAHANE, MASAKI
To: OLYMPUS CORPORATION
Reel/Frame 040697/0288 →