JPH0387710A - Ocular lens - Google Patents
Ocular lensInfo
- Publication number
- JPH0387710A JPH0387710A JP2104997A JP10499790A JPH0387710A JP H0387710 A JPH0387710 A JP H0387710A JP 2104997 A JP2104997 A JP 2104997A JP 10499790 A JP10499790 A JP 10499790A JP H0387710 A JPH0387710 A JP H0387710A
- Authority
- JP
- Japan
- Prior art keywords
- lens
- resin
- optical materials
- optical
- eyepiece
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 230000003287 optical effect Effects 0.000 claims abstract description 17
- 239000000463 material Substances 0.000 claims abstract description 13
- 239000005304 optical glass Substances 0.000 claims abstract description 5
- 230000005499 meniscus Effects 0.000 claims abstract description 3
- 239000011347 resin Substances 0.000 claims description 18
- 229920005989 resin Polymers 0.000 claims description 18
- 239000000126 substance Substances 0.000 claims 1
- 230000004075 alteration Effects 0.000 abstract description 14
- 230000000007 visual effect Effects 0.000 abstract 2
- 238000010586 diagram Methods 0.000 description 5
- 238000000034 method Methods 0.000 description 3
- 201000009310 astigmatism Diseases 0.000 description 2
- 230000002093 peripheral effect Effects 0.000 description 2
- 239000008280 blood Substances 0.000 description 1
- 210000004369 blood Anatomy 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000004907 flux Effects 0.000 description 1
- 210000003127 knee Anatomy 0.000 description 1
- 230000005389 magnetism Effects 0.000 description 1
Landscapes
- Lenses (AREA)
Abstract
Description
【発明の詳細な説明】
「産業上の利用分野」
この発明は、接眼レンズに関するもので、詳しくは双眼
鏡や天体望遠鏡等に用いられる1画角が広く、性能良好
で安価な4枚構成の接眼レンズに関するものである。Detailed Description of the Invention "Field of Industrial Application" The present invention relates to an eyepiece lens, and more specifically to a four-element eyepiece that has a wide angle of view, good performance, and is inexpensive, used in binoculars, astronomical telescopes, etc. It's about lenses.
「従来の技術」
画角の広い接眼レンズにおいて、視野の周辺部分まで十
分良好な収差補正を行うために、従来までの接眼レンズ
は、特公昭63−6851号、同6〇−4ISO14号
等のように、4〜6枚のレンズ構成のものが殆どである
。``Prior art'' In order to perform sufficiently good aberration correction to the peripheral part of the field of view in eyepiece lenses with a wide angle of view, conventional eyepieces have been developed using methods such as Japanese Patent Publication No. 63-6851, No. 60-4 ISO 14, etc. Most of them have a configuration of 4 to 6 lenses.
「発明が解決しようとする課題」
しかしながら、4枚を越えるものではコスト高、大型と
いう課題があり、また4枚F!或の接眼レンズで十分良
好な収差補正を得るためには、各レンズの材料に高い屈
折率をもった光学ガラスが必要辷されていることと、各
面の曲率半径が小さ(なり加工しにくくなることで、コ
スト高になるという課題があった。``Problem to be solved by the invention'' However, if there are more than 4 cards, there are problems with high cost and large size, and 4-card F! In order to obtain sufficiently good aberration correction with a certain eyepiece lens, each lens must be made of optical glass with a high refractive index, and each surface must have a small radius of curvature (which makes it difficult to process). As a result, there was a problem of high costs.
この発明は、上述の点に鑑みなされたキ」ので、見掛は
視界50°〜60”の広視野でも十分良好な収差補正が
なされ、また低コストで製作できる接眼レンズを提供す
るここを目的とする。The present invention has been made in view of the above-mentioned points, and the object thereof is to provide an eyepiece lens that can sufficiently correct aberrations even in a wide field of view of 50 degrees to 60 inches, and can be manufactured at low cost. shall be.
「課題を解決するための手段」
この発明の接眼レンズは、眼側から順に、正レンズの第
1レンズと、負メニスカスレンズの第2レンズと、正レ
ンズの第3レンズと、負レンズの第4レンズとから構成
され、第tレンズと第2レンズは光学ガラスまたは樹脂
製の光学材料からなり、第3レンズと第4レンズは樹脂
製の光学材料からなり、そのなかの少なくともi面がで
表わされる非球面であるこヒを特徴とするにこで、又は
レンズ頂点から光軸方向への偏移動、yはレンズ頂点か
ら光軸に垂直な方向への偏移動、Cは曲率半径の逆数、
には円錐定数、A4A1・・・・・は非球面係数を示す
。"Means for Solving the Problems" The eyepiece of the present invention includes, in order from the eye side, a first lens that is a positive lens, a second lens that is a negative meniscus lens, a third lens that is a positive lens, and a third lens that is a negative lens. The t-th lens and the second lens are made of optical glass or a resin optical material, and the third lens and the fourth lens are made of a resin optical material, of which at least the i-plane is y is the deviation from the apex of the lens in the direction perpendicular to the optical axis, C is the reciprocal of the radius of curvature,
represents a conic constant, and A4A1... represents an aspheric coefficient.
また、かかる接眼レンズにおいては、下記条件を満足す
ることが好ましい。Further, it is preferable that such an eyepiece lens satisfies the following conditions.
(1)τく1゜60 ここで、τは各レンズの屈折率の平均値を示す。(1) τ×1°60 Here, τ indicates the average value of the refractive index of each lens.
更に、前記接眼レンズにおいて、下記条件を満足するこ
とが好ましい。Furthermore, the eyepiece lens preferably satisfies the following conditions.
(2) −4,0< f、/f < −0,5ここで、
f4は第4レンズの焦点距@、fは全系の焦点距離を示
す。(2) −4,0< f, /f < −0,5 where,
f4 is the focal length of the fourth lens, and f is the focal length of the entire system.
「作用」
樹脂製の光学材料を接眼レンズに採用することは、4!
f脂製の光学材料の加工性の良さや量産性からも有利で
あり、また像面湾曲及び非点収差の補正に効果のある非
球面形状のレンズの加工も容易であることから、高屈折
率の光学レンズ以上に安定した像面を得ることができる
。``Function'' Adopting a resin optical material for the eyepiece lens is 4!
It is advantageous because of the ease of processing and mass production of optical materials made of F resin, and it is also easy to process lenses with aspherical shapes that are effective in correcting field curvature and astigmatism. It is possible to obtain a more stable image surface than that of an optical lens of 300 mm.
加えて、少なくとも1面に非球面を設けたことにより、
レンズ枚数を増やすことなく容易に収差補正が行えるも
のである6
また、条件式(1)は各レンズの屈折率の平均値を示し
、低屈折率の光学材料を用いることによって低コストの
接眼レンズを実現させている。In addition, by providing an aspherical surface on at least one surface,
Aberrations can be easily corrected without increasing the number of lenses.6 Conditional expression (1) also indicates the average value of the refractive index of each lens, and by using an optical material with a low refractive index, a low-cost eyepiece can be achieved. is realized.
つぎに条件式(2)の上限を越えた場合には、第4レン
ズのパワーが過大になり、周辺光束が通りにくくなり、
画角を広げることが困難になる。Next, if the upper limit of conditional expression (2) is exceeded, the power of the fourth lens becomes excessive, making it difficult for the peripheral light flux to pass through.
It becomes difficult to widen the angle of view.
下限を越えた場合は、ペッツバール和が大きくなってし
まう。If the lower limit is exceeded, the Petzval sum becomes large.
「実施例J 以下、この発明の実施例のデータを示す、ここで。“Example J Hereinafter, data of examples of this invention will be presented.
fは全系の焦点距離、FNOはFナンバー、2ωは視野
角、rはレンズ各面の曲率半径、dはレンズ厚またはレ
ンズ間隔、nは各レンズのd −1ineの屈折率、ν
は各レンズのアツベ数を示す。f is the focal length of the entire system, FNO is the F number, 2ω is the viewing angle, r is the radius of curvature of each lens surface, d is the lens thickness or lens spacing, n is the d -1ine refractive index of each lens, ν
indicates the Atsube number of each lens.
fNo= 1 : 4.O
d n
O,464+、、513913
0.012
0.084
0.017
0.411
0.027
0.118
1.531
−0.816
−0.795
−1.539
1.085
−1.444
−1.22O
8,585
第5面非球面
に=−0,487
A、=−3,62572X 10−”
(1)τ=1.563
(2) f、/f=−1,816
1,585
1,492
1,585
2ω=566
61.2
29.9 (樹脂)
57.4
(樹脂)
29.9 (樹脂)
〔実施例2〕
f=l、Q
面弘
1.239
−0.759
−1.328
0.969
−1.286
−1.079
4.744
第3面非球面
に=−0,946
A、=2.30838X10−”
(↓) n、=1.560
(2) f4/f=−1,490
f NO= 1 : 4.O
0,528
0,084
0,017
0,460
0,034
0,121
2ω=56゜
n v
151633 64.1
1.64769 33.8
1.492
57.4 (樹脂)
1.585
29.9 (樹t4)
〔実施例3〕
f = L、Of no= L : 4.0面血
r d
1 1.316 0.494
2 −0.770 0.015
3 −0.744 0.084
4 −1.2Q5 Q、Q175 L、0
65 0.443
6 (,1080,026
7−0,9770,1181,585
8−37,946
第1面非球面
に=0.215
A4= 3.72173 X IQ−”第5面非球面
にニー0.765
A4=−8,73876X 10−”
(1) n=1.539
(2) f、/f=−1.714
1.585
1.492
1.492
2ω=56゜
57.4 (樹DI)
29.9 (樹脂)
57.4 (樹脂)
29.9 (樹脂)
〔実施例4〕
f=t、。fNo=1:4. O d n O,464+,, 513913 0.012 0.084 0.017 0.411 0.027 0.118 1.531 -0.816 -0.795 -1.539 1.085 -1.444 - 1.22O 8,585 5th aspherical surface = -0,487 A, = -3,62572X 10-" (1) τ = 1.563 (2) f, /f = -1,816 1,585 1,492 1,585 2ω=566 61.2 29.9 (Resin) 57.4 (Resin) 29.9 (Resin) [Example 2] f=l, Q Surface width 1.239 -0.759 - 1.328 0.969 -1.286 -1.079 4.744 3rd aspherical surface = -0,946 A, = 2.30838X10-" (↓) n, = 1.560 (2) f4/ f=-1,490 f NO= 1: 4. O 0,528 0,084 0,017 0,460 0,034 0,121 2ω=56゜n v 151633 64.1 1.64769 33.8 1.492 57.4 (Resin) 1.585 29.9 (Tree t4) [Example 3] f = L, Of no = L: 4.0 face blood
r d 1 1.316 0.494 2 -0.770 0.015 3 -0.744 0.084 4 -1.2Q5 Q, Q175 L, 0
65 0.443 6 (,1080,026 7-0,9770,1181,585 8-37,946 To the 1st aspherical surface = 0.215 A4 = 3.72173 X IQ-"Knee to the 5th aspherical surface 0.765 A4=-8,73876 DI) 29.9 (Resin) 57.4 (Resin) 29.9 (Resin) [Example 4] f=t.
面Nα
工
1.671
−0.675
−1.049
0.888
−1.945
1.889
第4面非球面
に=−1,015
A4=9.16712X10−”
(1)−n=1.560
(2) f、/f=−1,059
1,492
1,585
57,4(樹脂)
29.9 (樹脂)
fNo=1:4.0 2ω=56゜d
n
O,6421,5163364,1
0,0841,6476933,8
0,017
0,574
0,1B8
〔実施例5〕
f=1.0
面磁
1.239
−0.759
−1.328
0.969
−1,286
−1.079
41.319
第4面非球面
に=−0,946
A、=2.30838X10−”
(1) n=1゜554
(2) f4/f=−1,795
fNo: 1 : 4.0
O,500
0,084
0,017
0,460
0,034
1,021
2ω=56m
n 9
1.492 57.4 (樹脂)
1.64769 33.8
1.492
57.4 (樹脂)
1.585
29.9 (樹脂)
「発明の効果」
以上説明したように、この発明によれば、4枚構成の接
眼レンズにおいて、加工性が良く重産性に有利な樹脂製
光学材料を2枚以上用いるため、低コストで軽量であり
ながら、しかも非球面を設けたことにより容易に広視野
まで十分収差補」tされた接眼レンズが得られる。Surface Nα engineering 1.671 -0.675 -1.049 0.888 -1.945 1.889 4th aspherical surface=-1,015 A4=9.16712X10-" (1) -n=1. 560 (2) f, /f=-1,059 1,492 1,585 57,4 (resin) 29.9 (resin) fNo=1:4.0 2ω=56°d
n O,6421,5163364,1 0,0841,6476933,8 0,017 0,574 0,1B8 [Example 5] f=1.0 Surface magnetism 1.239 -0.759 -1.328 0.969 -1,286 -1.079 41.319 4th aspherical surface=-0,946 A, =2.30838X10-" (1) n=1°554 (2) f4/f=-1,795 fNo : 1 : 4.0 O,500 0,084 0,017 0,460 0,034 1,021 2ω=56m n 9 1.492 57.4 (Resin) 1.64769 33.8 1.492 57.4 (Resin) 1.585 29.9 (Resin) "Effects of the Invention" As explained above, according to the present invention, in the four-element eyepiece lens, resin-made optical lenses with good processability and advantageous for heavy production are used. Since two or more materials are used, it is possible to obtain an eyepiece lens that is low cost and lightweight, and furthermore, by providing an aspherical surface, it is easy to obtain a wide field of view with sufficient aberration compensation.
第1図は、この発明の実施例1のレンズ断面図。
第2図は、その諸収差図である。
第3図は、この発明の実施例2のレンズ断面図、第4図
は、その諸収差図である。
第5図は、この発明の実施例3のレンズ断面図。
第6図は、その諸収差図である。
第7図は、この発明の実施例4のレンズ断面図、第8図
は、その諸収差図である。
第9図は、この発明の実施例5のレンズ断面図、第10
図は、その諸収差図である。
第
図
第2図
!11回収葺
正弧条件
色収差
倍率色収益
非点収差
歪曲収差FIG. 1 is a sectional view of a lens according to Example 1 of the present invention. FIG. 2 is a diagram of various aberrations thereof. FIG. 3 is a sectional view of a lens according to Example 2 of the present invention, and FIG. 4 is a diagram of various aberrations thereof. FIG. 5 is a sectional view of a lens according to a third embodiment of the present invention. FIG. 6 is a diagram of various aberrations thereof. FIG. 7 is a sectional view of a lens according to Example 4 of the present invention, and FIG. 8 is a diagram of various aberrations thereof. FIG. 9 is a sectional view of a lens according to Example 5 of the present invention, and FIG.
The figure is a diagram of various aberrations. Figure 2! 11 Recovered regular arc condition Chromatic aberration Magnification Color return Astigmatism Distortion aberration
Claims (1)
カスレンズの第2レンズと、正レンズの第3レンズと、
負レンズの第4レンズとから構成され、第1レンズと第
2レンズは光学ガラスまたは樹脂製の光学材料からなり
、第3レンズと第4レンズは樹脂製の光学材料からなり
、そのなかの少なくとも1面が ▲数式、化学式、表等があります▼ で表わされる非球面であることを特徴とする4枚のレン
ズで構成される接眼レンズ。 ここで、Xはレンズ頂点から光軸方向への偏移量、yは
レンズ頂点から光軸に垂直な方向への偏移量、Cは曲率
半径の逆数、Kは円錐定数、A_4A_6……は非球面
係数を示す。 2 請求項1において、下記条件を満足することを特徴
とする接眼レンズ。 (1)@n@<1.60 ここで、@n@は各レンズの屈折率の平均値を示す。 3 請求項1または2において、下記条件を満足するこ
とを特徴とする接眼レンズ。 (2)−4.0<f_4/f<−0.5 ここで、f_4は第4レンズの焦点距離、fは全系の焦
点距離を示す。[Claims] 1. In order from the eye side, a first lens that is a positive lens, a second lens that is a negative meniscus lens, and a third lens that is a positive lens,
a fourth lens which is a negative lens, the first lens and the second lens are made of optical glass or a resin optical material, the third lens and the fourth lens are made of a resin optical material, and at least An eyepiece consisting of four lenses, one surface of which is an aspherical surface represented by ▲Mathematical formulas, chemical formulas, tables, etc.▼. where, Indicates the aspheric coefficient. 2. The eyepiece lens according to claim 1, which satisfies the following conditions. (1) @n@<1.60 Here, @n@ represents the average value of the refractive index of each lens. 3. The eyepiece lens according to claim 1 or 2, characterized in that it satisfies the following conditions. (2) -4.0<f_4/f<-0.5 Here, f_4 is the focal length of the fourth lens, and f is the focal length of the entire system.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US07/544,721 US5162945A (en) | 1989-06-27 | 1990-06-27 | Ocular lens system |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP16509789 | 1989-06-27 | ||
JP1-165097 | 1989-06-27 |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH0387710A true JPH0387710A (en) | 1991-04-12 |
JP2902444B2 JP2902444B2 (en) | 1999-06-07 |
Family
ID=15805833
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP2104997A Expired - Fee Related JP2902444B2 (en) | 1989-06-27 | 1990-04-20 | Eyepiece |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP2902444B2 (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH08254660A (en) * | 1995-01-17 | 1996-10-01 | Asahi Optical Co Ltd | Eyepiece lens |
US6011655A (en) * | 1995-01-17 | 2000-01-04 | Asahi Kogaku Kogyo Kabushiki Kaisha | Eyepiece |
-
1990
- 1990-04-20 JP JP2104997A patent/JP2902444B2/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH08254660A (en) * | 1995-01-17 | 1996-10-01 | Asahi Optical Co Ltd | Eyepiece lens |
US6011655A (en) * | 1995-01-17 | 2000-01-04 | Asahi Kogaku Kogyo Kabushiki Kaisha | Eyepiece |
Also Published As
Publication number | Publication date |
---|---|
JP2902444B2 (en) | 1999-06-07 |
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