JPS6236751A - Optical head - Google Patents

Optical head

Info

Publication number
JPS6236751A
JPS6236751A JP60174319A JP17431985A JPS6236751A JP S6236751 A JPS6236751 A JP S6236751A JP 60174319 A JP60174319 A JP 60174319A JP 17431985 A JP17431985 A JP 17431985A JP S6236751 A JPS6236751 A JP S6236751A
Authority
JP
Japan
Prior art keywords
optical
lens
plastic molded
optical head
transparent plastic
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
JP60174319A
Other languages
Japanese (ja)
Inventor
Tetsuo Ikegame
哲夫 池亀
Tadao Karasawa
忠夫 唐沢
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.)
Olympus Corp
Original Assignee
Olympus Optical Co Ltd
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 Olympus Optical Co Ltd filed Critical Olympus Optical Co Ltd
Priority to JP60174319A priority Critical patent/JPS6236751A/en
Publication of JPS6236751A publication Critical patent/JPS6236751A/en
Pending legal-status Critical Current

Links

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  • Lens Barrels (AREA)
  • Optical Head (AREA)

Abstract

PURPOSE:To decrease the numbers of component parts and manufacturing processes together with the reduction of cost and to improve assembling accuracy of an optical head, by using a transparent plastic molded matter containing an optical element and its supporting member formed in a body. CONSTITUTION:A collimator lens 24 is made of a transparent plastic molded matter containing a lens part 24a and its peripheral lens barrel part 24b formed in a body. The part 24b is attached directly to an optical system supporting main body 21 with control given in the direction of the optical axis. While a concave lens 28 is also made of a transparent plastic molded matter containing a concave lens part 28a and a circular lens barrel part 28b formed in a body. The part 28b is attached to an optical head main body 29 consisting of a plastic molded matter by an adhesive with the position control carried out toward the optical axis. Then a cylindrical lens 30 is made of a transparent plastic molded matter containing a lens part 30a and a circular cylindrical part 30b formed in a body. The plastic materials forming these optical elements must be transparent and can use the acrylic resin for instance.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明はコンパクトディスク、ビデオディスク等の光デ
ィスクや光磁気ディスクなどの光学式記録媒体に対して
情報の記録や再生を行うための光ヘッドに関するもので
ある。
[Detailed Description of the Invention] [Field of Industrial Application] The present invention relates to an optical head for recording and reproducing information on and from optical recording media such as optical discs such as compact discs and video discs, and optical recording media such as magneto-optical discs. It is something.

〔従来の技術〕[Conventional technology]

光ディスク等の光学式記録媒体に情報を記録したり、記
録した情報を再生する光学式情報記録再生装置が広く実
用化されている。この光学式情報記録再生装置では、記
録媒体に向けて光ビームを投射する光源、光ビームをス
ポットとして記録媒体に照射する対物レンズ、各種の光
学素子から構成される光学系等を光ヘッドに搭載し、こ
の光ヘッドを回転する記録媒体の径方向に移動して情報
を記録又は再生するように構成されている。
2. Description of the Related Art Optical information recording and reproducing devices that record information on optical recording media such as optical disks and reproduce recorded information have been widely put into practical use. In this optical information recording/reproducing device, an optical head is equipped with an optical system consisting of a light source that projects a light beam toward the recording medium, an objective lens that illuminates the recording medium with the light beam as a spot, and various optical elements. The optical head is configured to move in the radial direction of the rotating recording medium to record or reproduce information.

第4図は従来の光ヘッドの構成を示す線図的断面図であ
る。光ビームを放射するレーザダイオード1を光学系支
持本体2に装着し、回折格子3に向けて光ビームを投射
する。回折格子3は回折格子保持部材4を介して光学系
支持本体1に支持されている。回折格子3を透過した光
ビームは光学系支持本体2に直接装着されたビームスプ
リッタ5を経てコリメータレンズ6に入射する。このコ
リメータレンズ6はコリメータ支持部材7に固着され、
コリメータレンズ支持部材7は光学支持本体2に装着さ
れている。コリメータレンズ6に入射した光ビームは平
行光束とされ、アクチユエータ8により光軸方向並びに
それと直交するトラッキング方向に変位される対物レン
ズ9に入射し、記録媒体10上にスポットとして照射さ
れる。記録媒体10で反射した光ビームは、対物レンズ
9で集光され、再びコリメータレンズ6を通りビームス
プリッタ5のハーフミラ−面5aで反射し、凹レンズ1
1及びシリンドカルレンズ12を経てフォトダイオード
13に入射する。凹レンズ11及びシリンドカルレンズ
12は、凹レンズ支持部材15及びシリンドカルレンズ
支持部材15にそれぞれ支持され、これら凹レンズ支持
部材14およびシリンドカルレンズ支持部材15は共に
光ヘツド本体16に装着されている。
FIG. 4 is a diagrammatic cross-sectional view showing the configuration of a conventional optical head. A laser diode 1 that emits a light beam is attached to an optical system support body 2, and the light beam is projected toward a diffraction grating 3. The diffraction grating 3 is supported by the optical system support body 1 via a diffraction grating holding member 4. The light beam transmitted through the diffraction grating 3 passes through a beam splitter 5 directly attached to the optical system support body 2 and enters a collimator lens 6. This collimator lens 6 is fixed to a collimator support member 7,
The collimator lens support member 7 is attached to the optical support body 2. The light beam incident on the collimator lens 6 is made into a parallel light beam, and is incident on the objective lens 9, which is displaced by the actuator 8 in the optical axis direction and in the tracking direction orthogonal thereto, and is irradiated onto the recording medium 10 as a spot. The light beam reflected by the recording medium 10 is focused by the objective lens 9, passes through the collimator lens 6 again, is reflected by the half mirror surface 5a of the beam splitter 5, and is reflected by the concave lens 1.
1 and a cylindrical lens 12 to enter a photodiode 13. The concave lens 11 and the cylindrical lens 12 are supported by a concave lens support member 15 and a cylindrical lens support member 15, respectively, and the concave lens support member 14 and the cylindrical lens support member 15 are both attached to the optical head main body 16. There is.

このように従来の光ヘッドにおいては、光学系を構成す
る各種光学部品をそれぞれ支持部材に固定し、これら支
持部材を光軸方向に調整配置してから光ヘツド本体に装
着するように構成されている。
In this way, conventional optical heads are constructed in such a way that the various optical components constituting the optical system are each fixed to support members, and these support members are adjusted and arranged in the optical axis direction before being attached to the optical head body. There is.

〔発明が解決しようとする問題点〕[Problem that the invention seeks to solve]

上述したように従来の光ヘッドでは、各種光学部品をそ
れぞれ支持部材を介して光ヘツド本体に装着する構成と
なっているため部品点数が多くなると共、に組立作業の
組立工数が多くなる欠点があった。また、光ヘッドの光
軸と各光学部品の光軸との間には、各光学部品とその支
持部材との間の取付は誤差及び各支持部材と光ヘツド本
体との間の取付は誤差があるため取付は誤差が累積して
しまい、光学系の組立精度が悪くなる欠点もあった。
As mentioned above, conventional optical heads have a structure in which various optical components are attached to the optical head body through support members, which has the disadvantage that the number of parts increases and the number of assembly steps increases. there were. Also, there is a difference between the optical axis of the optical head and the optical axis of each optical component, and there is an error in the installation between each optical component and its support member, and an error in the installation between each support member and the optical head body. As a result, mounting errors accumulate, resulting in poor assembly accuracy of the optical system.

従って、本発明は上述した欠点を解決し、光学系を構成
する部品点数を低減して組立作業の容易化及び組立工数
の低減を図ると共に、組立精度の高い光学系を見える光
ヘッドを提供するものである。
Therefore, the present invention solves the above-mentioned drawbacks, reduces the number of parts constituting the optical system, facilitates assembly work, and reduces assembly man-hours, and provides an optical head that allows the optical system to be viewed with high assembly precision. It is something.

〔問題点を解決するための手段〕[Means for solving problems]

本発明による光ヘッドは、 光学式記録媒体上に光ビー
ムをスポットとして投射して情報の記録及び/又は再生
を行う光ヘッドにおいて、少なくとも1個の光学素子と
その支持部材とを一体成形した透明プラスチック成形体
を以って構成したことを特徴とするものである。
An optical head according to the present invention is an optical head that records and/or reproduces information by projecting a light beam as a spot onto an optical recording medium. It is characterized by being constructed from a plastic molded body.

〔作 用〕[For production]

本発明による光ヘッドにおいては、光学系を構成する各
種光学素子とその支持部材とを一体成形した透明プラス
チック成形体を以って構成したので、部品点数が減少し
組立工数が減少すると共に、取付は精度を向上させるこ
とができる。
In the optical head according to the present invention, the various optical elements constituting the optical system and their support members are integrally molded using a transparent plastic molded body, which reduces the number of parts and assembly man-hours. can improve accuracy.

〔実施例〕〔Example〕

第1図は本発明による光ヘッドの一例の構成を示す線図
的断面図である。本例の光ヘッドは第4図に示した光ヘ
ッドと同様の光学系を有するものである。光ビームを放
射するレーザダイオード20をプラスチック成形体から
成る光学系支持本体21に装着し、回折格子22に向け
て光ビームを投射する。回折格子22は、多数の溝が形
成されている格子部22aとその周囲の環状の鏡筒部2
2bとを一体成形した透明プラスチックの成形体を以っ
て構成され、鏡筒部22bを光学系支持本体21に直接
装着する。回折格子22を透過した光ビームは3本の光
ビームに分岐され、ビームスプリッタ23のハーフミラ
−面23aを透過しコリメータレンズ24に入射する。
FIG. 1 is a diagrammatic cross-sectional view showing the structure of an example of an optical head according to the present invention. The optical head of this example has the same optical system as the optical head shown in FIG. A laser diode 20 that emits a light beam is attached to an optical system support body 21 made of a plastic molded body, and the light beam is projected toward a diffraction grating 22. The diffraction grating 22 includes a grating portion 22a in which a large number of grooves are formed and an annular lens barrel portion 2 around the grating portion 22a.
The optical system supporting body 21 is directly attached to the lens barrel portion 22b. The light beam that has passed through the diffraction grating 22 is split into three light beams, which pass through the half mirror surface 23a of the beam splitter 23 and enter the collimator lens 24.

このコリメータレンズ24も同様にレンズ作用を果たす
レンズ部24aとその周囲の鏡筒部24bとを一体成形
した透明プラスチックの成形体を以って構成し、光軸方
向に調整して鏡筒部24bを光学系支持本体21に直接
装着する。コリメータレンズ24を出射した3本の光ビ
ームはそれぞれ平行光束とされ、アクチュエータ25に
より光軸方向及びそれと直交するトラッキング方向に変
位される対物レンズ26に入射し、記録媒体27にスポ
ットとして照射される。本例では記録媒体27に記録さ
れた情報トラックを再生するものとする。この情報トラ
ックの情報で変調を受けた記録媒体27からの反射光ビ
ームは対物レンズ26で集光され、再びコリメータレン
ズ24を通りビームスプリッタ23のハーフミラ−面2
3aで反射し、凹レンズ28に入射する。
This collimator lens 24 is also constructed of a transparent plastic molded body in which a lens portion 24a that performs a lens function and a lens barrel portion 24b surrounding it are integrally molded, and the lens barrel portion 24b is adjusted in the optical axis direction. is attached directly to the optical system support body 21. The three light beams emitted from the collimator lens 24 are each made into parallel light fluxes, and are incident on the objective lens 26 which is displaced by the actuator 25 in the optical axis direction and the tracking direction perpendicular thereto, and are irradiated as a spot onto the recording medium 27. . In this example, it is assumed that an information track recorded on the recording medium 27 is to be reproduced. The reflected light beam from the recording medium 27 modulated by the information on the information track is focused by the objective lens 26 and passes through the collimator lens 24 again to the half mirror surface 2 of the beam splitter 23.
3a and enters the concave lens 28.

凹レンズ28も同様に凹レンズ部28aと環状の鏡筒部
28bとを一体成形した透明プラスチックの成形体を以
って構成され、光軸方向に位置調整を行ってから鏡筒部
28bを接着剤によりプラスチック成形体から成る光ヘ
ツド本体29に装着する。凹レンズ28を透過した光ビ
ームは、凹レンズ28と同軸に配置されたシリンドリカ
ルレンズ30に入射する。
The concave lens 28 is similarly constructed of a transparent plastic molded body in which a concave lens part 28a and an annular lens barrel part 28b are integrally molded, and after adjusting the position in the optical axis direction, the lens barrel part 28b is attached with adhesive. It is attached to an optical head main body 29 made of a plastic molded body. The light beam that has passed through the concave lens 28 is incident on a cylindrical lens 30 that is disposed coaxially with the concave lens 28 .

このシリンドリカルレンズ30も同様にレンズ作用を有
するレンズ部30aと環状の円筒部30bとを一体成形
した透明プラスチック成形体を以って構成する。シリン
ドリカルレンズ30を透過した光ビームは4分割した受
光領域を有する受光素子を構成するフォトダイオード3
1に入射し、光電変換されて情報信号とフォーカシング
及びトラッキングエラー情報が取出される。これら光学
素子を構成するプラスチック材料は、使用する光ビーム
に対して透明であればよく、例えばアクリル樹脂を以っ
て構成することができる。このように光学素子とその支
持部材けを一体成形した透明プラスチックの成形体を以
って構成すれば、部品点数を低減できると共に取付は精
度も向上する。
The cylindrical lens 30 is similarly constructed of a transparent plastic molded body in which a lens portion 30a having a lens function and an annular cylindrical portion 30b are integrally molded. The light beam transmitted through the cylindrical lens 30 is sent to a photodiode 3 constituting a light receiving element having a light receiving area divided into four parts.
1 and undergoes photoelectric conversion, and an information signal and focusing and tracking error information are extracted. The plastic material constituting these optical elements may be made of acrylic resin, as long as it is transparent to the light beam used. By constructing the optical element and its supporting member from a transparent plastic molded body integrally molded in this manner, the number of parts can be reduced and the accuracy of mounting can be improved.

第2図は第1図に示す凹レンズとシリンドリカルレンズ
とを一体成形した光学部品の構成を示す線図的断面図で
ある。第2図へに示す例においては、凹レンズ部40a
及び円筒レンズ40bの周囲の環状の鏡筒部40Cを相
互に結合して一体化した例を示す。第2図已に示す例は
、凹レンズ部とシリンドリカルレンズ部との間の空間を
透明プラスチックで充填した例を示すものである、入射
側に凹レンズを構成するための凹型の球面41aを形成
し、出射側にはシリンドリカルレンズを構成する円筒面
41bを形成する。プラスチック成形は高い成形精度を
有してしるから、2個の光学素子を一体成形しても高い
精度を確保でき、光軸方向の調整を不要とすることがで
きる。
FIG. 2 is a diagrammatic sectional view showing the structure of an optical component in which the concave lens and cylindrical lens shown in FIG. 1 are integrally molded. In the example shown in FIG. 2, the concave lens portion 40a
An example is shown in which the annular lens barrel portion 40C around the cylindrical lens 40b is joined together and integrated. The example shown in FIG. 2 shows an example in which the space between the concave lens part and the cylindrical lens part is filled with transparent plastic.A concave spherical surface 41a for forming the concave lens is formed on the incident side, A cylindrical surface 41b constituting a cylindrical lens is formed on the exit side. Since plastic molding has high molding precision, high precision can be ensured even when two optical elements are integrally molded, and adjustment of the optical axis direction can be made unnecessary.

第3図は本発明による光ヘッドの別の実施例の構成を示
す線図である。本例は各光学素子と光学系を支持する光
学系支持本体及び光ヘツド本体とを一体的に成形した透
明プラスチック成形体を以って構成した例を示すもので
あり、第1図に示す光学系と同様の光学系を有している
。第1図で用いた部材と同一の部材には同一符号を付し
て説明する。透明プラスチックの一体物から成る光学系
50の各部に以下に示す面を設けて光学素子を形成する
。レーザダイオード20から放射した光ビームを受光す
る面に多数の細条状の溝部50aを設けて回折格子を形
成する。ビームスプリッタ23から出射した光ビームが
出射する面に凸型の球面50bを設けてコリメータレン
ズを形成する。更に、ビームスプリッタ23のハーフミ
ラ−面23aで反射した光ビームが入射する面には凹型
の球面50cを設けて凹レンズを形成し、その出射面に
は円筒面50dを形成してシリンドリカルレンズを形成
する。このように構成すれば、透明プラスチックの成形
体の各面に種々の球面や細条状の溝部を設けるだけで光
学系を構成する光学素子、その支持部材及び支持部材を
支持する光ヘツド本体を一個のプラスチック成形体を以
って構成することができる。なお、外部からの光により
悪影響を受ける場合には、光ヘツド本体の外周に不透明
被膜を設ければよい。
FIG. 3 is a diagram showing the structure of another embodiment of the optical head according to the present invention. This example shows an example in which an optical system support body that supports each optical element and an optical system, and an optical head body are constructed using a transparent plastic molded body integrally molded. It has an optical system similar to the system. The same members as those used in FIG. 1 will be described with the same reference numerals. Each part of the optical system 50, which is made of a single piece of transparent plastic, is provided with the following surfaces to form an optical element. A diffraction grating is formed by providing a large number of strip-shaped grooves 50a on the surface that receives the light beam emitted from the laser diode 20. A convex spherical surface 50b is provided on the surface from which the light beam emitted from the beam splitter 23 exits to form a collimator lens. Furthermore, a concave spherical surface 50c is provided on the surface on which the light beam reflected by the half mirror surface 23a of the beam splitter 23 enters to form a concave lens, and a cylindrical surface 50d is formed on the exit surface to form a cylindrical lens. . With this structure, the optical elements constituting the optical system, their supporting members, and the optical head body supporting the supporting members can be assembled by simply providing various spherical or strip-shaped grooves on each surface of the transparent plastic molded body. It can be constructed from a single plastic molded body. If the optical head body is adversely affected by external light, an opaque coating may be provided around the outer periphery of the optical head body.

本発明は上述した実施例だけに限定されるものではなく
種々の変形が可能である。例えば上述した実施例ではス
リービーム方式の光ヘッドを以って説明したが臨界角に
設定した反射面を有する検出プリズムを用いてフォーカ
シング及びトラッキングエラー情報を検出する方式の光
ヘッドにも適用できる。また上述した光学素子に限らず
、対物レンズをはじめとする各種光学素子とその支持部
材とを一体成形したプラスチック成形体で構成すること
も勿論可能である。
The present invention is not limited to the embodiments described above, and various modifications are possible. For example, in the above-described embodiment, a three-beam type optical head was explained, but the present invention can also be applied to an optical head of a type that detects focusing and tracking error information using a detection prism having a reflective surface set at a critical angle. In addition to the above-mentioned optical elements, it is of course also possible to construct the optical element by integrally molding various optical elements such as an objective lens and a support member therefor.

〔発明の効果〕〔Effect of the invention〕

以上説明したように本発明によれば、各種光学素子とそ
の支持部材とを一体成形した透明プラスチック成形体を
以って構成したので、部品点数が減少し、組立工数を低
減できると共に装置のコストを安価にすることができる
。また、部品点数及び組立工数の減少に伴い、組立誤差
も減少し組立精度も向上する。また、光学系支持本体や
光ヘッドも透明プラスチックで構成すれば、光路中の光
ビームの状態を外部から観察でき、各光学部品の位置調
整が容易になり組立調整作業が容易になる。
As explained above, according to the present invention, various optical elements and their support members are constructed using a transparent plastic molded body integrally molded, so the number of parts is reduced, the number of assembly steps can be reduced, and the cost of the device can be reduced. can be made inexpensive. Further, as the number of parts and assembly man-hours are reduced, assembly errors are also reduced and assembly accuracy is improved. Furthermore, if the optical system support body and the optical head are also made of transparent plastic, the state of the light beam in the optical path can be observed from the outside, and the position adjustment of each optical component becomes easy, which facilitates assembly and adjustment work.

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

第1図は本発明による光ヘッドの一例の構成を示す線図
的断面図、 第2図A及びBは凹レンズとシリンドリカルレンズを一
体的に成形した例を示す断面図、第3図は本発明による
光ヘッドの別の実施例の構成を示す線図的断面図、 第4図は従来の光ヘッドの構成を示す線図的断面図であ
る。 20・・・レーザダイオード  21・・・光学系支持
本体22・・・回折格子      23・・・ビーム
スプリッタ24・・・コリメータレンズ  25・・・
アクチュエータ26・・・対物レンズ     27・
・・記録媒体28・・・凹レンズ      29・・
・光ヘツド本体30・・・シリンドリカルレンズ 31・・・フォトダイオード 特許出願人   オリンパス光学工業株式会社第2図 A  ゛ 4% 手  続  補  正  書 昭和60年IO月14日 昭和60年特許願第174319号 2、発明の名称 光ヘッド 3、補正をする者 事件との関係 特許出願人 (037)オリンパス光学工業株式会社4、代理人 1、明細書第2頁第14行の[フリメータ支持部材7」
を「コリメータレンズ支持部材7」に訂正する。 2、同第8頁第6行の「凹レンズ支持部材15」を「凹
レンズ支持部材14」に訂正する。 8、同第7頁第8行〜4行の「光ビームは4分割」を「
光ビームは6分割」に訂正する。 表向第7頁第11行の「支持部材けを」を「支持部材と
を」に訂正する。 6、同第8頁第5行の「有してしるから、」を「有して
いるから、」に訂正する。 6、同第9頁第17行〜18行の「及びトラッキング」
を削除する。 7、図面巾乗2図Aおよび第4図を別紙の通りに訂正す
る。 第2 t 0b コ
FIG. 1 is a diagrammatic cross-sectional view showing the configuration of an example of an optical head according to the present invention, FIGS. 2A and B are cross-sectional views showing an example in which a concave lens and a cylindrical lens are integrally molded, and FIG. 3 is a cross-sectional view showing an example of an optical head according to the present invention. FIG. 4 is a diagrammatic sectional view showing the configuration of another embodiment of an optical head according to the present invention. FIG. 4 is a diagrammatic sectional view showing the configuration of a conventional optical head. 20... Laser diode 21... Optical system support body 22... Diffraction grating 23... Beam splitter 24... Collimator lens 25...
Actuator 26...Objective lens 27.
・Recording medium 28 ・Concave lens 29 ・・
・Optical head body 30...Cylindrical lens 31...Photodiode Patent applicant Olympus Optical Industry Co., Ltd. Figure 2 A ゛4% Procedure Correction Document IO, 14th 1985 Patent Application No. 174319 No. 2, Name of the invention Optical head 3, Person making the amendment Relationship to the case Patent applicant (037) Olympus Optical Industry Co., Ltd. 4, Agent 1, [Frimeter support member 7] on page 2, line 14 of the specification
is corrected to "collimator lens support member 7". 2. Correct "concave lens support member 15" in line 6 of page 8 to "concave lens support member 14". 8. "The light beam is divided into 4 parts" on page 7, lines 8 to 4 is changed to "
The light beam is divided into 6 parts.' On page 7, line 11 of the front page, ``Supporting member replacement'' is corrected to ``Supporting member and''. 6. On page 8, line 5, ``Because I have it'' is corrected to ``Because I have it.'' 6. “And tracking” on page 9, lines 17-18
Delete. 7. Correct the drawing excursions in Figure 2 A and Figure 4 as shown in the attached sheet. 2nd t 0b

Claims (1)

【特許請求の範囲】[Claims] 1、光学式記録媒体上に光ビームをスポットとして投射
して情報の記録及び/又は再生を行う光ヘッドにおいて
、少なくとも1個の光学素子とその支持部材とを一体成
形した透明プラスチック成形体を以って構成したことを
特徴とする光ヘッド。
1. In an optical head that records and/or reproduces information by projecting a light beam as a spot onto an optical recording medium, a transparent plastic molded body in which at least one optical element and its support member are integrally molded is as follows. An optical head characterized by being configured as follows.
JP60174319A 1985-08-09 1985-08-09 Optical head Pending JPS6236751A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP60174319A JPS6236751A (en) 1985-08-09 1985-08-09 Optical head

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP60174319A JPS6236751A (en) 1985-08-09 1985-08-09 Optical head

Publications (1)

Publication Number Publication Date
JPS6236751A true JPS6236751A (en) 1987-02-17

Family

ID=15976567

Family Applications (1)

Application Number Title Priority Date Filing Date
JP60174319A Pending JPS6236751A (en) 1985-08-09 1985-08-09 Optical head

Country Status (1)

Country Link
JP (1) JPS6236751A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01146141A (en) * 1987-12-02 1989-06-08 Sharp Corp Optical element
EP0800170A2 (en) * 1996-04-03 1997-10-08 Konica Corporation Optical system for recording and/or reproducing an optical information recording medium
WO2002086876A1 (en) * 2001-04-25 2002-10-31 Koninklijke Philips Electronics N.V. Optical lens system comprising at least one lens of a synthetic material

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01146141A (en) * 1987-12-02 1989-06-08 Sharp Corp Optical element
EP0800170A2 (en) * 1996-04-03 1997-10-08 Konica Corporation Optical system for recording and/or reproducing an optical information recording medium
EP0800170A3 (en) * 1996-04-03 1998-08-12 Konica Corporation Optical system for recording and/or reproducing an optical information recording medium
WO2002086876A1 (en) * 2001-04-25 2002-10-31 Koninklijke Philips Electronics N.V. Optical lens system comprising at least one lens of a synthetic material
CN1297975C (en) * 2001-04-25 2007-01-31 皇家菲利浦电子有限公司 Optical lens system comprising at least one lens of a synthetic material

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