JPH01266504A - Projection lens for projector - Google Patents

Projection lens for projector

Info

Publication number
JPH01266504A
JPH01266504A JP9457788A JP9457788A JPH01266504A JP H01266504 A JPH01266504 A JP H01266504A JP 9457788 A JP9457788 A JP 9457788A JP 9457788 A JP9457788 A JP 9457788A JP H01266504 A JPH01266504 A JP H01266504A
Authority
JP
Japan
Prior art keywords
lens
lens group
positive
negative
projector
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.)
Pending
Application number
JP9457788A
Other languages
Japanese (ja)
Inventor
Kiichiro Ueda
喜一郎 植田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Konica Minolta Inc
Original Assignee
Konica Minolta Inc
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Konica Minolta Inc filed Critical Konica Minolta Inc
Priority to JP9457788A priority Critical patent/JPH01266504A/en
Publication of JPH01266504A publication Critical patent/JPH01266504A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:To reduce the cost and to improve the performance by composing a 1st lens group of only spherical lens elements, arranging at least one of negative lenses in the 1st lens elements so that its concave surface face a positive lens on a screen side, and providing a 2nd lens group or 3rd lens group with >=1 aspherical surface. CONSTITUTION:The aberrations due to an aperture is compensated excellently by the 1st lens group G1 which contains at least one positive lens and at least one negative lens and at least one of negative lenses in the 1st lens group G1 has its concave surface facing the positive lens adjoining to the screen side to compensate the comatic aberration. The negative lenses in the 1st lens group G1 also compensates the chromatic aberration of the power and on-axis chro matic aberration excellently. The majority of the refracting power of the whole system is determined by the 2nd lens group G2, which provides intense converg ing operation. Aspherical surfaces are employed for the 2nd lens group G2 and 3rd lens group G3 and then various aberrations generated by the 2nd lens group G2, mainly, the comatic aberration corresponding to a wide field angle can be compensated excellently and effectively. Consequently, the cost is reduced and the performance is improved.

Description

【発明の詳細な説明】 (産業上の利用分野) この発明は投影レンズ、特にテレビプロジェター用投影
レンズ等に用いられる明るく広画角の投影レンズに関す
る。
DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to a projection lens, and particularly to a bright, wide-angle projection lens used for a projection lens for a television projector.

(従来技術) テレビプロジェクタ−は陰極線管の画面を投影レンズで
スクリーン上に拡大投影するものであるが、近年業務用
のみならず、家庭用としても需要が見込まれるようにな
ってきた。これに伴いプロジェクタ−装置のコンパクト
化、低コスト化の要求が強まり、プロジェクタ−レンズ
も、口径比が1.04程度と大きくしかも半画角が28
°以上と言う極めて広画角なものが必要となってきた。
(Prior Art) A television projector is a device that enlarges and projects the screen of a cathode ray tube onto a screen using a projection lens, and in recent years, demand has been expected not only for business use but also for home use. Along with this, there has been an increasing demand for compact and low-cost projector devices, and projector lenses have a large aperture ratio of about 1.04 and a half-field angle of 28.
It has become necessary to have an extremely wide angle of view, with an angle of view of more than 100°.

一方、より高画質への要望も強くなり、さらに赤(R)
、緑(G)、青(B)の3つの陰極線管を用い、それぞ
れの画像を別々の投影レンズで投影することから、単色
収差の補正のみで良いとされていたプロジェクタ−レン
ズも色収差補正の必要性が生じて来た。
On the other hand, there is a growing demand for higher image quality, and red (R)
Since three cathode ray tubes (green (G), blue (B)) are used, and each image is projected by a separate projection lens, the projector lens, which used to only require correction of monochromatic aberration, now requires correction of chromatic aberration. The need has arisen.

このような目的に用いられるプロジェクタ−レンズの従
来例の1として、特開昭62−94811号公報に記載
されているものを挙げることが出来るが、これは口径比
が1.4であり、半画角も24°程度と狭いため、上記
の最近の要望を満足することは出来ないものであった。
One conventional example of a projector lens used for such a purpose is the one described in Japanese Patent Application Laid-open No. 62-94811, which has an aperture ratio of 1.4 and a half diameter. Since the angle of view is also narrow at about 24°, it has not been possible to satisfy the recent demands mentioned above.

また、低コスト化のために非球面を多用したプロジェク
タ−レンズも数多く知られるようになって来た。特に、
開口による収差を良好に補正を行うためスクリーン側か
らみて、第1レンズ群に非球面を用いることが必要不可
欠とされてきた。
In addition, many projector lenses that use many aspherical surfaces have become known in order to reduce costs. especially,
In order to properly correct aberrations caused by the aperture, it has been considered essential to use an aspheric surface in the first lens group when viewed from the screen side.

しかしながら現在においても非球面レンズは技術的に困
難な点が多かった。このため、特に開口による収差の補
正に有効である第1レンズ群に非球面を用いた場合、実
際の投影に際して設計性能の再現性が良くなかった。こ
れは第1レンズ群の非球面による収差補正効果が大きい
反面、その誤差の影響も他の群に用いた場合に比べて大
きいことによっていた。これを改善するためには、第1
レンズ群に非球面を角いないことが必要である。そこで
、これまで第1レンズ群に非球面を用いることなく諸収
差を良好に補正する事が可能である大口径比で広画角な
プロジェクタ−用投影レンズに対する要望があった。
However, even today, aspheric lenses still have many technical difficulties. For this reason, when an aspherical surface is used in the first lens group, which is particularly effective for correcting aberrations caused by the aperture, the reproducibility of design performance during actual projection is poor. This is because, although the aspheric surface of the first lens group has a large aberration correction effect, the influence of the error is also greater than when it is used in other groups. In order to improve this, the first step is to
It is necessary that the lens group has no aspherical surfaces. Therefore, there has been a demand for a projection lens for a projector with a large aperture ratio and a wide angle of view, which can satisfactorily correct various aberrations without using an aspheric surface in the first lens group.

この要望に対応するものとして、特開昭61−2417
17号公報に記載された第1レンズ群に球面レンズを用
いたプロジェクタ−レンズが見られる。しかしこのレン
ズは、その構成から明らかなように、第1群レンズは変
形ガウスタイプの第1レンズに他ならない、ガウスタイ
プのレンズは一般に球面収差が小さいと言う特徴があり
、このレンズは、この特性を用いて開口による収差及び
コマ収差を補正しているが、この構成では少なくともガ
ウスタイプを構成するために4枚の正レンズと2枚の負
レンズが必要であり、収束レンズ群及び像面補正レンズ
群を含めると少なくとも8つ以上のレンズ素子が必要と
なる。
In response to this request, Japanese Patent Application Laid-Open No. 61-2417
A projector lens using a spherical lens in the first lens group is described in Japanese Patent No. 17. However, as is clear from the structure of this lens, the first lens group is nothing but a modified Gauss type first lens, and Gauss type lenses generally have small spherical aberration. The characteristics are used to correct aberrations and coma due to the aperture, but this configuration requires at least four positive lenses and two negative lenses to form a Gaussian type, and the convergent lens group and image plane Including the correction lens group, at least eight or more lens elements are required.

またその実施例に見られるように正レンズでは屈折率1
.69以上、負レンズでは屈折率1.75以上と高屈折
率の硝材を用いるため、大変なコスト高となってしまう
Also, as seen in the example, a positive lens has a refractive index of 1
.. 69 or higher, a negative lens uses a glass material with a high refractive index of 1.75 or higher, resulting in a very high cost.

(この発明が解決しようとする問題点)そこで現在、第
1レンズ群としては球面レンズを用いながら、諸収差を
良好に補正することができ、低コスト化の可能なプロジ
ェクタ−用投影レンズが望まれている。本発明は、この
ような要望を満足させることの出来る投影レンズを得よ
うとするものである。
(Problems to be Solved by the Invention) Therefore, there is currently a need for a projection lens for a projector that can satisfactorily correct various aberrations and can be made at low cost while using a spherical lens as the first lens group. It is rare. The present invention aims to provide a projection lens that can satisfy such demands.

(問題を解決するための手段) 本発明のプロジェクタ−用投影レンズは、第1図に示す
ように、スクリーン側から少なくとも1つの正レンズ及
び少なくとも1つの負レンズを含む第1レンズ群、正の
屈折力を有する第2レンズ群、負の屈折力を有する第3
レンズ群から構成され、第1レンズ群は球面レンズ素子
のみから成るとともに、第1レンズ群中の負レンズの少
なくとも1つはスクリーン側に隣り合った正レンズに対
し凹面を向け、第2レンズ群もしくは第3レンズ群に少
なくとも1面以上の非球面を有するように構成される。
(Means for solving the problem) As shown in FIG. 1, the projection lens for a projector of the present invention includes a first lens group including at least one positive lens and at least one negative lens from the screen side; a second lens group having refractive power; a third lens group having negative refractive power;
The first lens group consists of only spherical lens elements, at least one of the negative lenses in the first lens group has a concave surface facing the positive lens adjacent to the screen side, and the second lens group Alternatively, the third lens group is configured to have at least one aspherical surface.

本発明の実施をより効果的なものとするための補助的条
件として、以下の条件を満足する事が望ましい。
As supplementary conditions for implementing the present invention more effectively, it is desirable to satisfy the following conditions.

(1)  ν、”>50.   ν1〉50但し ν1
′″ :第1レンズ群を構成する正レンズのアツベ数 ν1 :第2レンズ群を構成する正レンズのアツベ数 (2)本発明のプロジェクタ−用投影レンズにおいて、
第2レンズ群を構成するレンズに少なくとも1つのプラ
スチックレンズを用いること。
(1) ν,”>50. ν1〉50 However, ν1
''': Atsube number ν1 of the positive lens constituting the first lens group; Atsube number ν1 of the positive lens constituting the second lens group (2) In the projection lens for a projector of the present invention,
At least one plastic lens is used as a lens constituting the second lens group.

(3)本発明のプロジェクタ−用投影レンズにおいて、
第1レンズ群を構成するレンズに少なくとも1つのプラ
スチックレンズを用いること。
(3) In the projection lens for a projector of the present invention,
At least one plastic lens is used as a lens constituting the first lens group.

(4)本発明のプロジェクタ−用投影レンズにおいて、
第2レンズ群は少なくとも2つの正レンズを含むこと。
(4) In the projection lens for a projector of the present invention,
The second lens group includes at least two positive lenses.

(5)本発明のプロジェクタ−用投影レンズにおいて、
第1レンズ群の第2レンズ群に隣接する面が第2レンズ
群に向って凹面を向けていること。
(5) In the projection lens for a projector of the present invention,
A surface of the first lens group adjacent to the second lens group has a concave surface facing the second lens group.

(作用) 本発明は少なくとも1つの正レンズ、少なくとも1つの
負レンズを含む第1レンズ群により、開口による収差を
良好に補正するとともに、第1レンズ群中の負レンズの
少なくとも1つはスクリーン側に隣り合った正レンズに
対し凹面を向け、コマ収差を有効に補正している。また
第1レンズ群の負レンズは倍率の色収差及び軸上色収差
の良好な補正も行っている。第2レンズ群は、全系のか
なりの部分の屈折力を分担するものであり、強い収束作
用を持っている。第3レンズ群は、平坦な像面を得るた
めに用いられた負レンズあり、第1レンズ群及び第2レ
ンズ群において補正しきれないペッツバール像面の補正
作用を有している。また、第2レンズ群及び第3レンズ
群に非球面を用いることによって、強い収束作用を持つ
第2レンズ群で発生する諸収差、主に広画角でのコマ収
差の良好かつ効果的な補正を行なっている。
(Function) The present invention provides a first lens group including at least one positive lens and at least one negative lens that satisfactorily corrects aberrations due to the aperture, and that at least one of the negative lenses in the first lens group is located on the screen side. The concave surface faces the adjacent positive lens, effectively correcting coma aberration. Furthermore, the negative lens in the first lens group also performs good correction of chromatic aberration of magnification and longitudinal chromatic aberration. The second lens group shares a considerable portion of the refractive power of the entire system, and has a strong convergence effect. The third lens group includes a negative lens used to obtain a flat image surface, and has the function of correcting the Petzval image surface that cannot be corrected in the first and second lens groups. In addition, by using aspheric surfaces in the second and third lens groups, various aberrations that occur in the second lens group, which has a strong convergence effect, can be well and effectively corrected, mainly coma aberration at wide angles of view. is being carried out.

また本発明の実施をより効果的にするための条件として 条件(1)は、第1レンズ群の正レンズのアツベ数及び
第2レンズ群の正レンズのアツベ数に関する条件であり
、色収差補正上この条件を満足することが効果的である
In addition, condition (1) is a condition for making the implementation of the present invention more effective, and is a condition regarding the Abbe number of the positive lens in the first lens group and the Abbe number of the positive lens in the second lens group, and is a condition for correcting chromatic aberration. It is effective to satisfy this condition.

条件(2)は、第2レンズ群を構成するレンズの硝材に
関するものであり、プラスチックレンズを用いる事によ
ってコスト低減を図ろうとするものである。
Condition (2) relates to the glass material of the lenses constituting the second lens group, and is intended to reduce costs by using plastic lenses.

条件(3)は、第1レンズ群を構成するレンズの硝材に
関するものであり、プラスチックレンズを用いる事によ
ってコスト低減を図ろうとするものである。
Condition (3) relates to the glass material of the lenses constituting the first lens group, and is intended to reduce costs by using plastic lenses.

条件(4)は、第2レンズ群を構成するレンズに関する
条件で、第2レンズ群は少なくとも2つの正レンズを含
む構成とされることにより、収束作用に伴う諸収差の発
生を小さくする事ができる。
Condition (4) is a condition regarding the lenses constituting the second lens group, and by having the second lens group include at least two positive lenses, it is possible to reduce the occurrence of various aberrations due to the convergence effect. can.

条件(5)は、第1レンズ群の第2レンズ群に隣接する
面の形状に関するものであり、強い収束作用を持った第
2レンズ群に対して凹面を向けることによってペッツバ
ール和を小さくできるので、像面補正を行うのに有効で
ある。
Condition (5) is related to the shape of the surface of the first lens group adjacent to the second lens group, and the Petzval sum can be reduced by directing the concave surface toward the second lens group, which has a strong convergence effect. , is effective for performing image plane correction.

(実施例) 以下この発明の投影レンズの実施例を示す。(Example) Examples of the projection lens of the present invention will be shown below.

表中、riはスクリーン側1番目のレンズ面の頂点曲率
半径、d、はスクリーン側から第1番目のレンズ面間隔
、n=はスクリーン側から第1番目のレンズ材料の波長
543nmの屈折率、ν11よそのアツベ数である。ま
た、非球面形状は面の頂点を原点とし、光軸方向をX軸
とした直交座標系において、頂点曲率をC1円錐定数を
K、非球面係数をA+、非球面のべき数をPi (Pi
>2.0)としたとき φ=7y王コア で表わされる。
In the table, ri is the apex radius of curvature of the first lens surface on the screen side, d is the distance between the first lens surfaces from the screen side, n= is the refractive index of the first lens material from the screen side at a wavelength of 543 nm, It is the Atsube number other than ν11. In addition, for an aspherical surface shape, in an orthogonal coordinate system with the apex of the surface as the origin and the optical axis direction as the
>2.0), it is expressed as φ=7y king core.

なお、表中には液体層Liq及びフェースプレートFP
の値も示しである。
In addition, the liquid layer Liq and face plate FP are shown in the table.
The value of is also indicative.

実施例1 f=104.6   口径比1:1.04倍率−0,1
342半画角28@ rI     dI     旧   νI非球面係数
      べき数 第9面 に=   0.0 A 1 =  −3,20750x 10−’   P
 1 =  4.0000A 2 =  3,5977
5 x 10−11  p 2 =  6.0000A
 3 =  −1,61368X 10−”  P 3
 =  8.0000A 4 =  2.71444 
X 10−”  P 4 = 10.0000第10面 に=   0.0 A 1 =   1.78226X10−7   P 
1 =  4.0000A 2 =  −1,8761
1X10−10  P 2 =  6.0000A 3
 =   8.10776X10−”   P 3 =
  8.0000A 4 =  −1,22963X1
0−”   P 4 =  10.0000実施例2 f=103.8   口径比1:1.04倍率−0,1
342半画角28.4” rIdB      旧    ν1 非球面係数      べき数 第7面 に=   0.0 A 1 =  −9,42287X 10−”   P
 1 =  4.0000A2=−4,75003X1
0−11P2=  6.0000A 3 =  −2,
02886X 1O−14P 3 =  8.0000
A 4 =  4.61696 X 10−”  P 
4 = 10.0000第8面 に=   0.0 A l =   3.02455 X 10−’   
P L =  4.0000A2=−6,26202X
10−11P2=  6.0000A 3 =  −4
,24755X 10−”   P 3 =  8.0
000A 4 =   1.64579 X 1O−1
7P 4 = 10.0000第9面 K =   0.0 A l =   6.03308 X 10−”   
P 1 =  4.000OA2=   2.5881
7X10−11P2=  6.0000A 3 =  
−2,50325X 1O−14P 3 =  8.0
000A 4 =   2.44141 x 10−”
   P 4 =  10.0000第10面 に=   0.0 A 1 =  2.90569 X IP’   P 
L =  4.0000A 2 =  −5,7265
3X 1O−11P 2 =  6.0000A3=:
  7,21163X10””  P3=  8,00
00A4=  −3,29113X10−”  P4=
10.0000実施例3 f=106.1   口径比1:1.04倍率−0,1
342半画角29.2゜ ri      d+      旧    ν1LI
O−178,65445,26 非球面係数      べき数 第11面 に=  −7,36044x 10−”A l =  
−2,45469X 10−’   P 1 =  4
.0000A 2 =  1.22572 X 10−
”  P 2 =  6.0000A3=  4.41
192xlO−”  P3=  g、ooo。
Example 1 f=104.6 Aperture ratio 1:1.04 Magnification -0.1
342 Half angle of view 28 @ rI dI Old νI aspherical coefficient On the 9th power plane = 0.0 A 1 = -3,20750x 10-' P
1 = 4.0000A 2 = 3,5977
5 x 10-11 p2 = 6.0000A
3 = -1,61368X 10-” P 3
= 8.0000A 4 = 2.71444
X 10-” P 4 = 10.0000 on the 10th side = 0.0 A 1 = 1.78226X10-7 P
1 = 4.0000A 2 = -1,8761
1X10-10 P2 = 6.0000A 3
= 8.10776X10-” P 3 =
8.0000A 4 = -1,22963X1
0-” P 4 = 10.0000 Example 2 f = 103.8 Aperture ratio 1:1.04 Magnification -0.1
342 half angle of view 28.4" rIdB Old ν1 Aspherical coefficient To the 7th power plane = 0.0 A 1 = -9,42287X 10-" P
1 = 4.0000A2 = -4,75003X1
0-11P2=6.0000A 3=-2,
02886X 1O-14P 3 = 8.0000
A4 = 4.61696 x 10-”P
4 = 10.0000 on the 8th side = 0.0 A l = 3.02455 X 10-'
P L = 4.0000A2 = -6,26202X
10-11P2 = 6.0000A 3 = -4
, 24755X 10-” P 3 = 8.0
000A 4 = 1.64579 x 1O-1
7P 4 = 10.0000 9th surface K = 0.0 A l = 6.03308 X 10-”
P 1 = 4.000OA2 = 2.5881
7X10-11P2 = 6.0000A 3 =
-2,50325X 1O-14P 3 = 8.0
000A 4 = 2.44141 x 10-”
P 4 = 10.0000 on the 10th side = 0.0 A 1 = 2.90569 X IP' P
L = 4.0000A 2 = -5,7265
3X 1O-11P 2 = 6.0000A3=:
7,21163X10”” P3= 8,00
00A4= -3,29113X10-” P4=
10.0000 Example 3 f=106.1 Aperture ratio 1:1.04 Magnification -0,1
342 half angle of view 29.2゜ri d+ old ν1LI
O-178,65445,26 Aspheric coefficient On the 11th power plane = -7,36044x 10-”A l =
-2,45469X 10-' P 1 = 4
.. 0000A 2 = 1.22572 x 10-
”P2=6.0000A3=4.41
192xlO-” P3= g, ooo.

A 4 =  −6,83221X 10−”  P 
4 = 10.0000(発明の効果) 本発明は実施例に示すごとく口径比が1.04と大口径
比で半画角が28°以上と広く、結像性能も第2図ない
し第4図に示す詣収差図のごとく良好である。また本発
明は実施例のごとく正レンズは屈折率1.68以下、負
レンズは屈折率1゜75以下と低屈折率のレンズによる
構成を可能にしてコスト上昇を防いでいる。
A 4 = -6,83221X 10-”P
4 = 10.0000 (Effects of the Invention) As shown in the examples, the present invention has a large aperture ratio of 1.04, a wide half angle of view of 28° or more, and imaging performance as shown in Figures 2 to 4. As shown in the aberration diagram shown in Figure 2, the results are good. Further, the present invention prevents an increase in cost by making it possible to use lenses with low refractive indexes, such as the positive lens having a refractive index of 1.68 or less and the negative lens having a refractive index of 1.75 or less, as in the embodiments.

尚、第3レンズ群G3は非常に大きな負レンズでありコ
ストアップの要因となるが、これをメニスカスレンズと
液体レンズの合成レンズとすることが実施例の若干の変
更によって可能であり、このような設計変更によってレ
ンズのコストダウンおよび第3レンズ群のCRT側の面
とフェースプレート面との間での反射を防止しプロジェ
クタ−装置のコントラストの上昇を達成できる。
Although the third lens group G3 is a very large negative lens, which increases the cost, it is possible to make it a composite lens of a meniscus lens and a liquid lens by slightly modifying the embodiment, and it is possible to make it a composite lens of a meniscus lens and a liquid lens. By changing the design, it is possible to reduce the cost of the lens, prevent reflection between the CRT side surface of the third lens group and the face plate surface, and increase the contrast of the projector device.

また上記メニスカスレンズはプラスチックレンズを用い
る事により一層の低コスト化が可能であり、さらに非球
面を用いる事によって性能の向上が可能となる。
Further, the cost of the meniscus lens can be further reduced by using a plastic lens, and the performance can be improved by using an aspheric surface.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の投影レンズの構成を示す断面図、第2
図、第3図及び第4図は、それぞれ実施例1、実施例2
及び実施例3の収差図である。
FIG. 1 is a sectional view showing the structure of the projection lens of the present invention, and FIG.
Figures 3 and 4 are Example 1 and Example 2, respectively.
and FIG. 7 is an aberration diagram of Example 3.

Claims (1)

【特許請求の範囲】[Claims] スクリーン側から、少なくとも1つの正レンズ及び少な
くとも1つの負レンズを含む第1レンズ群、正の屈折力
を有する第2レンズ群、負の屈折力を有する第3レンズ
群から構成され、第1レンズ群は球面レンズ素子のみか
ら成るとともに、第1レンズ群中の負レンズの少なくと
も1つはスクリーン側に隣り合った正レンズに対して凹
面を向け、第2レンズ群もしくは第3レンズ群に、少な
くとも1面以上の非球面を有することを特徴とするプロ
ジェクター用投影レンズ。
From the screen side, the first lens group includes a first lens group including at least one positive lens and at least one negative lens, a second lens group having positive refractive power, and a third lens group having negative refractive power. The group consists of only spherical lens elements, and at least one of the negative lenses in the first lens group has a concave surface facing the positive lens adjacent to the screen side, and at least one of the negative lenses in the second lens group or the third lens group A projection lens for a projector, characterized by having one or more aspherical surfaces.
JP9457788A 1988-04-19 1988-04-19 Projection lens for projector Pending JPH01266504A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9457788A JPH01266504A (en) 1988-04-19 1988-04-19 Projection lens for projector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9457788A JPH01266504A (en) 1988-04-19 1988-04-19 Projection lens for projector

Publications (1)

Publication Number Publication Date
JPH01266504A true JPH01266504A (en) 1989-10-24

Family

ID=14114142

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9457788A Pending JPH01266504A (en) 1988-04-19 1988-04-19 Projection lens for projector

Country Status (1)

Country Link
JP (1) JPH01266504A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10310223B2 (en) 2016-04-15 2019-06-04 Largan Precision Co., Ltd. Optical imaging lens assembly, image capturing device and electronic device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10310223B2 (en) 2016-04-15 2019-06-04 Largan Precision Co., Ltd. Optical imaging lens assembly, image capturing device and electronic device
US11092784B2 (en) 2016-04-15 2021-08-17 Largan Precision Co., Ltd. Optical imaging lens assembly, image capturing device and electronic device

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