JP2007052186A - Camera module and its manufacture method - Google Patents

Camera module and its manufacture method Download PDF

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JP2007052186A
JP2007052186A JP2005236547A JP2005236547A JP2007052186A JP 2007052186 A JP2007052186 A JP 2007052186A JP 2005236547 A JP2005236547 A JP 2005236547A JP 2005236547 A JP2005236547 A JP 2005236547A JP 2007052186 A JP2007052186 A JP 2007052186A
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lens holder
macro
lens
support cylinder
focal length
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Nobuyuki Mano
伸之 真野
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SMK Corp
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SMK Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a camera module equipped with a macro (close-up) function, achieving the reduction of cost and miniaturization as well; and also to provide its manufacture method. <P>SOLUTION: The camera module is equipped with: a lens holder 13 housing lenses 11 and 12; an imaging unit 16 at the surface part of which a supporting barrel body 14 supporting the lens holder 13 is protrusively provided and which holds an imaging device 15 astern of the lenses 11 and 12 in the optical axis direction thereof; and a macro operator 17 fixed on the outer periphery of the lens holder 13. The lens holder 13 and the supporting barrel body 14 have screw parts 22 and 23 screwed with each other, and a distance x between the lenses 11 and 12 and the imaging device 15 is adjusted by rotating the lens holder 13. The macro operator 17 is equipped with a stopper which abuts on locking projections 30 and 30 arranged on the outside part of the supporting barrel body 14 at a position where the distance between the lenses 11 and 12 and the imaging device 15 makes a regular focal distance or a position where it makes a focal distance at which macro-photography can be performed. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、主に携帯電話機に搭載されるマクロ(接写)機能付のカメラモジュール及びその製造方法に関する。   The present invention mainly relates to a camera module with a macro (close-up) function mounted on a mobile phone and a method for manufacturing the same.

近年、携帯電話機は、撮影機能を有するものが主流をなし、機体にはカメラモジュールが搭載されるようになっている。   In recent years, mobile phones having a photographing function have become mainstream, and a camera module is mounted on the airframe.

カメラモジュールには、例えば図5に示すように、レンズ1,2を内部に収容する筒状のレンズホルダ3と、レンズホルダ3を支持するマクロリング4と、マクロリング4を支持する支持筒体5が表面部に突設され、レンズの光軸方向後方に配置されるCCDやCMOS等の撮像素子6を保持した撮像ユニット7とを備え、レンズホルダ3とマクロリング4及びマクロリング4と支持筒体5には、それぞれ互いに螺合するネジ部を有し、レンズホルダ3又はマクロリング4を回転させることによりレンズ1,2と撮像素子6との間の距離を調整できるようにしたものが知られている。   For example, as shown in FIG. 5, the camera module includes a cylindrical lens holder 3 that accommodates the lenses 1 and 2, a macro ring 4 that supports the lens holder 3, and a support cylinder that supports the macro ring 4. 5 includes an image pickup unit 7 that protrudes from the surface portion and holds an image pickup element 6 such as a CCD or a CMOS, which is arranged behind the lens in the optical axis direction, and supports the lens holder 3, the macro ring 4, and the macro ring 4. The cylindrical body 5 has screw portions that are screwed with each other, and the lens holder 3 or the macro ring 4 can be rotated to adjust the distance between the lenses 1 and 2 and the image sensor 6. Are known.

このカメラモジュールは、マクロリング4を所定の位置に固定した状態でマクロリング4に対しレンズホルダ3をねじ込むことによりフォーカス調整を行い、そのフォーカス調整された状態でレンズホルダ3が固定されたマクロリング4を支持筒体5に対して回動させることにより、レンズ1,2と撮像素子6との間の距離を通常の焦点距離をなす位置とマクロ(接写)撮影が可能な焦点距離をなす位置とに切り替えること、即ち、通常撮影モードとマクロ撮影モードとに切り替えることができるようになっている。   This camera module performs focus adjustment by screwing the lens holder 3 into the macro ring 4 with the macro ring 4 fixed at a predetermined position, and the macro ring with the lens holder 3 fixed in the focus adjusted state. 4 is rotated with respect to the support cylinder 5 so that the distance between the lenses 1 and 2 and the image sensor 6 is a normal focal length and a focal length at which macro (close-up) photography is possible. In other words, it is possible to switch between the normal shooting mode and the macro shooting mode.

しかし、上述の如き従来のマクロ機能付カメラモジュールでは、レンズホルダの外側に更に内外両周部にねじ部を有するマクロリングを配置した構造であるため、小型化が困難であり、また、部品点数が多くなりコストが嵩むという問題があった。   However, the conventional camera module with a macro function as described above has a structure in which a macro ring having screw portions on both the inside and outside of the lens holder is arranged on the outside of the lens holder, so that it is difficult to reduce the size and the number of parts. There is a problem that the cost increases.

そこで本発明は、上述の従来技術の問題を鑑み、マクロ(接写)機能を備えるとともに、安価且つ小型化が可能なカメラモジュール及びその製造方法の提供を目的とする。   SUMMARY OF THE INVENTION In view of the above-described problems of the prior art, it is an object of the present invention to provide a camera module that has a macro (close-up) function and can be reduced in size and size, and a manufacturing method thereof.

上述の如き従来の問題を解決し、所期の目的を達成するための請求項1に記載の発明は、内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能とし、前記マクロ操作子は、前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記支持筒体の外側部又は上面部に配置された係止突起に当接するストッパーを備え、前記レンズホルダが前記通常焦点距離位置とマクロ焦点距離位置との間の範囲内で移動できるようにしたカメラモジュールであることを特徴とする。   In order to solve the above-described conventional problems and achieve the intended object, the invention described in claim 1 includes a cylindrical lens holder in which a lens is housed, and a support cylinder that supports the lens holder. Projecting on the surface portion, and having an imaging unit holding an imaging device behind the lens in the optical axis direction, and a macro operator fixed to the outer periphery of the lens holder, the lens holder and the support cylinder Has screw parts that can be screwed together, and allows the distance between the lens and the image sensor to be adjusted by rotating the lens holder, and the macro operator is located between the lens and the image sensor. A stopper that abuts on a locking protrusion disposed on the outer side or upper surface of the support cylinder at a position where the distance of the lens forms a normal focal length or a position where the macro shooting is possible, and the lens holder has a front Characterized in that it is a camera module to be moved in the normal range between the focal length position and the macro focal length position.

請求項2に記載の発明は、請求項1の構成に加え、前記マクロ操作子は、支持筒体の外側に配置された周壁を備え、前記支持筒体に回転可能に配置されたことを特徴とする。   According to a second aspect of the present invention, in addition to the configuration of the first aspect, the macro operator has a peripheral wall disposed outside the support cylinder, and is rotatably disposed on the support cylinder. And

請求項3に記載の発明は、内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能としたカメラモジュールの製造方法において、前記マクロ操作子は、前記支持筒体の外側部又は上面部に配置された係止突起に当接されるストッパーを有し、前記支持筒体に対し、前記ストッパーが前記係止突起に時計回り方向の移動が規制される配置で当接する位置と反時計回り方向の移動が規制される配置で当接する位置との間で移動できるようにし、前記マクロ操作子を前記一方の当接位置に移動させ、前記ストッパーを前記係止突起に当接させた状態で前記レンズホルダを支持筒体にねじ込み、焦点距離を調整した後、前記マクロ操作子をレンズホルダに固定し、前記ストッパーが前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記係止突起に当接するようにしたカメラモジュールの製造方法であることを特徴とする。   According to a third aspect of the present invention, a cylindrical lens holder that accommodates a lens therein and a support cylindrical body that supports the lens holder are projected from the surface portion, and an image sensor is disposed behind the lens in the optical axis direction. An image pickup unit that is held; and a macro operator fixed to an outer periphery of the lens holder. The lens holder and the support cylinder have screw portions that can be screwed together, and the lens holder is rotated. Thus, in the method of manufacturing a camera module in which the distance between the lens and the image sensor can be adjusted, the macro operator contacts a locking protrusion disposed on the outer side or upper surface of the support cylinder. The stopper is in contact with the support cylinder in a position where the stopper is in contact with the locking projection in a position where movement in the clockwise direction is restricted and in a position where movement in the counterclockwise direction is restricted. Contact The macro operator is moved to the one contact position, and the lens holder is screwed into the support cylinder in a state where the stopper is in contact with the locking projection, After adjusting the focal length, the macro operator is fixed to the lens holder, and the stopper is located at a position where the distance between the lens and the image sensor forms a normal focal length or a focal length that allows macro shooting. It is a method for manufacturing a camera module that is in contact with the locking protrusion.

本発明に係るカメラモジュールは、内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能とし、前記マクロ操作子は、前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記支持筒体の外側部又は上面部に配置された係止突起に当接するストッパーを備え、前記レンズホルダが前記通常焦点距離位置とマクロ焦点距離位置との間の範囲内で移動できるようにしたことによって、ねじ部をフォーカス調整用及び通常撮影モードとマクロ撮影モードとの切り替え用に兼用できるので、マクロリング等の部品を減らして部品点数を少なくできるとともに小型化が可能となる。   In the camera module according to the present invention, a cylindrical lens holder in which a lens is housed and a support cylinder that supports the lens holder protrude from the surface, and the imaging element is held behind the lens in the optical axis direction. An imaging unit and a macro operator fixed to the outer periphery of the lens holder, the lens holder and the support cylinder have screw parts that can be screwed together, and the lens holder is rotated. The distance between the lens and the image sensor can be adjusted by the macro operator, and the position between the lens and the image sensor forms a normal focal length or a position where a macro image can be taken. A stopper that abuts on a locking projection disposed on the outer side or upper surface of the support cylinder, and the lens holder has a range between the normal focal length position and the macro focal length position. Since the screw part can be used for focus adjustment and switching between normal shooting mode and macro shooting mode, the number of parts such as macro rings can be reduced and the number of parts can be reduced. It becomes possible.

前記マクロ操作子は、支持筒体の外側に配置された周壁を備え、前記支持筒体に対し回転可能に配置されたことにより、レンズホルダに固定される前においても好適に支持筒体に対し回動することができ、フォーカス調整に合わせて位置合わせすることができる。   The macro operator has a peripheral wall arranged outside the support cylinder, and is arranged so as to be rotatable with respect to the support cylinder, so that the macro operator can be suitably attached to the support cylinder even before being fixed to the lens holder. It can be rotated and can be aligned with the focus adjustment.

本発明方法は、内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能としたカメラモジュールの製造方法において、前記マクロ操作子は、前記支持筒体の外側部又は上面部に配置された係止突起に当接されるストッパーを有し、前記支持筒体に対し、前記ストッパーが前記係止突起に時計回り方向の移動が規制される配置で当接する位置と反時計回り方向の移動が規制される配置で当接する位置との間で移動できるようにし、前記マクロ操作子を前記一方の当接位置に移動させ、前記ストッパーを前記係止突起に当接させた状態で前記レンズホルダを支持筒体にねじ込み、焦点距離を調整した後、前記マクロ操作子をレンズホルダに固定し、前記ストッパーが前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記係止突起に当接するようにしたことによって、容易に焦点距離の調整(フォーカス調整)を行えるとともに、容易にマクロ機能を付加することができる。   The method of the present invention is an imaging unit in which a cylindrical lens holder that accommodates a lens therein and a support cylinder that supports the lens holder protrude from the surface, and an imaging element is held behind the lens in the optical axis direction And a macro operation element fixed to the outer periphery of the lens holder, the lens holder and the support cylinder have screw parts that can be screwed together, and the lens holder is rotated by rotating the lens holder. In the method of manufacturing a camera module in which the distance between the image pickup device and the image pickup device can be adjusted, the macro operator has a stopper that comes into contact with a locking protrusion disposed on the outer side or the upper surface of the support cylinder. A position where the stopper contacts the locking projection in an arrangement in which the movement in the clockwise direction is restricted, and a position in which the stopper abuts in an arrangement in which the movement in the counterclockwise direction is restricted. The macro operation element is moved to the one contact position, and the lens holder is screwed into the support cylinder while the stopper is in contact with the locking projection, and the focal length is adjusted. After that, the macro operator is fixed to the lens holder, and the stopper is positioned at a position where the distance between the lens and the image sensor forms a normal focal length or a focal length that allows macro photography. By making contact with the lens, the focal length can be easily adjusted (focus adjustment), and a macro function can be easily added.

次に、本発明に係るカメラモジュールについて説明する。   Next, the camera module according to the present invention will be described.

図1〜図3は、本発明に係るカメラモジュールの一例を示し、図中符号10はカメラモジュールである。   1 to 3 show an example of a camera module according to the present invention, and reference numeral 10 in the figure denotes a camera module.

カメラモジュール10は、内部にレンズ11,12を収容する筒状のレンズホルダ13と、レンズホルダ13を支持する支持筒体14が表面部に突設され、内部に撮像素子15を保持した撮像ユニット16と、レンズホルダ13の外周に固定されたマクロ操作子17とを備え、マクロ操作子17を操作することにより通常撮影モードとマクロ(接写)撮影モードとに切り替えて撮影することができるようになっている。   The camera module 10 includes an imaging unit in which a cylindrical lens holder 13 that accommodates lenses 11 and 12 and a support cylinder 14 that supports the lens holder 13 project from a surface portion, and an imaging element 15 is held therein. 16 and a macro operator 17 fixed to the outer periphery of the lens holder 13, and by operating the macro operator 17, it is possible to switch between a normal shooting mode and a macro (close-up) shooting mode. It has become.

レンズホルダ13は、円筒状の周壁部18と、中央に入射開口19が形成された端板部20とをもって一端が閉鎖された筒状に形成され、内部に筒中心軸方向と光軸が一致する配置にレンズ11,12が収容されている。   The lens holder 13 is formed in a cylindrical shape having one end closed with a cylindrical peripheral wall portion 18 and an end plate portion 20 having an incident opening 19 formed in the center. The lenses 11 and 12 are accommodated in the arrangement to be performed.

また、レンズホルダ13は、リング状のレンズ固定用リング21を備え、この固定用リング21を開口部内縁に固定することによりレンズ11,12がレンズホルダ13内に固定されるようになっている。   The lens holder 13 includes a ring-shaped lens fixing ring 21, and the lenses 11 and 12 are fixed in the lens holder 13 by fixing the fixing ring 21 to the inner edge of the opening. .

このレンズホルダ13は、周壁部18の外周に、支持筒体14内面に形成された雌ねじ部22と互いに螺合する雄ねじ部23を備え、支持筒体14に対し回動させることにより筒軸方向に移動可能になっている。   The lens holder 13 includes a male screw portion 23 that is threadedly engaged with a female screw portion 22 formed on the inner surface of the support cylinder body 14 on the outer periphery of the peripheral wall portion 18, and is rotated in the cylinder axis direction by rotating with respect to the support cylinder body 14. Can be moved to.

また、レンズホルダ13は、端板部20の外周にフランジが一体に備えられている。   Further, the lens holder 13 is integrally provided with a flange on the outer periphery of the end plate portion 20.

撮像ユニット16は、CCDやCMOS等の撮像素子15が実装された回路基板24と、回路基板24の上面側を覆う箱状のカバー部材25と、カバー部材25の表面部に突設された円筒状の支持筒体14とを備え、カバー部材25の開口部裏面側に光学フィルタ26が固定されている。   The imaging unit 16 includes a circuit board 24 on which an imaging element 15 such as a CCD or CMOS is mounted, a box-shaped cover member 25 that covers the upper surface side of the circuit board 24, and a cylinder that protrudes from the surface of the cover member 25. And an optical filter 26 is fixed to the back side of the opening of the cover member 25.

カバー部材25は、中央に入射開口27を有する平板状の天板28と、天板の周囲を囲む周壁29とを備え、下側に開口した箱状に形成され、このカバー部材25の下縁に回路基板24を固定することにより、撮像素子15がカバー部材25内部に保持されるようになっている。   The cover member 25 includes a flat top plate 28 having an incident opening 27 in the center and a peripheral wall 29 surrounding the top plate, and is formed in a box shape opened to the lower side. The image sensor 15 is held inside the cover member 25 by fixing the circuit board 24 to the cover member 25.

また、カバー部材25の表面部には、支持筒体14の外側部に係止突起30,30が互いに対称配置に突設されている。   Further, on the surface portion of the cover member 25, locking projections 30, 30 project from the outer side portion of the support cylinder 14 in a symmetrical arrangement.

マクロ操作子17は、中央にホルダ挿通孔31が形成された円板状の固定板32と、固定板32の周囲を囲む円筒状の周壁33と、外向きに突出した操作レバー34とを一体に備え、周壁33が支持筒体14の外側に配置され、支持筒体14に対し回動可能になっている。   The macro operator 17 includes a disc-shaped fixing plate 32 having a holder insertion hole 31 formed in the center, a cylindrical peripheral wall 33 surrounding the fixing plate 32, and an operation lever 34 protruding outward. The peripheral wall 33 is disposed outside the support cylinder 14 so as to be rotatable with respect to the support cylinder 14.

ホルダ挿通孔31は、レンズホルダ13の外径と略同じ径に形成され、このホルダ挿通孔31にレンズホルダ13を通した状態で固定板32がレンズホルダ13の外周に接着剤等により固定されている。   The holder insertion hole 31 is formed to have substantially the same diameter as the outer diameter of the lens holder 13, and the fixing plate 32 is fixed to the outer periphery of the lens holder 13 with an adhesive or the like while the lens holder 13 is passed through the holder insertion hole 31. ing.

周壁33の固定板32とは反対側の端縁には、対称配置にストッパー35,35が一体に突設され、このストッパー35,35が周方向両係止突起30,30間で移動するようになっている。   On the edge of the peripheral wall 33 opposite to the fixed plate 32, stoppers 35, 35 are integrally projected in a symmetrical arrangement so that the stoppers 35, 35 move between the circumferential locking protrusions 30, 30. It has become.

即ち、ストッパー35は、レンズ11,12と撮像素子15との間の距離xが、通常撮像における焦点距離をなす位置又はマクロ(接写)撮影における焦点距離をなす位置において係止突起30と当接するように配置され、それにより通常焦点距離位置とマクロ焦点距離位置との間を切り替えることができるようになっている。   That is, the stopper 35 abuts on the locking protrusion 30 at a position where the distance x between the lenses 11 and 12 and the image sensor 15 forms a focal length in normal imaging or a focal length in macro (close-up) shooting. Thus, it is possible to switch between the normal focal length position and the macro focal length position.

尚、ストッパー35と係止突起30との間の相対的な位置関係は、ねじ部のピッチ、レンズの屈折率等の諸条件に基づいて決定される。   The relative positional relationship between the stopper 35 and the locking projection 30 is determined based on various conditions such as the pitch of the threaded portion and the refractive index of the lens.

このように構成されたカメラモジュール10は、レンズホルダ13を支持筒体14にねじ込むことによりレンズ11,12、光学フィルタ26及び撮像素子15が同一の光軸上に配置される。   In the camera module 10 thus configured, the lenses 11 and 12, the optical filter 26, and the imaging element 15 are arranged on the same optical axis by screwing the lens holder 13 into the support cylinder 14.

そして、図4(a)に示すように、時計回り方向の移動が規制される配置にストッパー35が係止突起30に当接する位置にマクロ操作子17を移動させることにより、レンズ11,12と撮像素子15との距離xが通常撮影時の焦点距離をなすようになっている。   Then, as shown in FIG. 4A, the macro operation element 17 is moved to a position where the stopper 35 comes into contact with the locking projection 30 in an arrangement in which the movement in the clockwise direction is restricted, whereby the lenses 11, 12 and The distance x to the image sensor 15 is the focal length during normal shooting.

また、図4(b)に示すように、反時計回り方向の移動が規制される配置にストッパー35が係止突起30に当接する位置までマクロ操作子17を移動させ、レンズホルダ13を支持筒体14に対して反時計回転させることにより、支持筒体14に対してレンズホルダ13が螺進してレンズホルダ13内に収容されたレンズ11,12と撮像素子15との間が広がることにより、レンズ11,12と撮像素子15との間の距離xがマクロ(接写)可能な焦点距離をなすようになっている。   Further, as shown in FIG. 4B, the macro operator 17 is moved to a position where the stopper 35 abuts the locking projection 30 in an arrangement in which the movement in the counterclockwise direction is restricted, so that the lens holder 13 is supported by the support tube. By rotating counterclockwise with respect to the body 14, the lens holder 13 is screwed with respect to the support cylinder 14, and the space between the lenses 11 and 12 accommodated in the lens holder 13 and the image sensor 15 is expanded. The distance x between the lenses 11 and 12 and the image sensor 15 forms a focal length that allows macro (close-up photography).

次に、上述のカメラモジュール10の製造方法について説明する。   Next, a method for manufacturing the camera module 10 will be described.

このカメラモジュール10の製造方法は、撮像ユニット16に、マクロ操作子17及びレンズホルダ13を組み込み、レンズホルダ13を支持筒体14にねじ込みフォーカス調整を行った後、レンズホルダ13の外周にマクロ操作子17を固定することにより行われる。   In this method of manufacturing the camera module 10, the macro operator 17 and the lens holder 13 are assembled in the imaging unit 16, the lens holder 13 is screwed into the support cylinder 14, and the focus adjustment is performed. This is done by fixing the child 17.

レンズホルダ13は、開口部より光軸を合わせて順次レンズ11,12を挿入し、開口縁部に固定用リング21を嵌め込み、開口内縁に固定用リング21を固定することによりレンズ11,12を固定しておく。   The lens holder 13 sequentially inserts the lenses 11 and 12 by aligning the optical axis from the opening, fits the fixing ring 21 into the opening edge, and fixes the fixing ring 21 to the inner edge of the opening to fix the lenses 11 and 12. Keep it fixed.

一方、撮像ユニット16は、回路基板24上の中央部にCCDやCMOS等の撮像素子15を実装し、その回路基板24をカバー部材25の下縁にカバー部材25の下側開口を閉鎖するように固定することにより形成されている。尚、光学フィルタ26は予めカバー部材25の入射開口裏側に固定しておく。   On the other hand, the imaging unit 16 is mounted with an imaging element 15 such as a CCD or CMOS at the center on the circuit board 24 so that the circuit board 24 is closed at the lower edge of the cover member 25 and the lower opening of the cover member 25 is closed. It is formed by fixing to. The optical filter 26 is fixed in advance on the back side of the entrance opening of the cover member 25.

このように組まれた撮像ユニット16の支持筒体14の外側に、マクロ操作子17を嵌め込み、支持筒体14にマクロ操作子17を回転可能に支持させ、マクロ操作子17が支持筒体14に対し、ストッパー35が係止突起30に時計回り方向の移動が規制される配置で当接する位置と反時計回り方向の移動が規制される配置で当接する位置との間で移動できるようにする。   The macro operator 17 is fitted on the outside of the support cylinder 14 of the imaging unit 16 assembled in this way, and the macro operator 17 is rotatably supported by the support cylinder 14. The macro operator 17 is supported by the support cylinder 14. On the other hand, the stopper 35 can be moved between a position where the stopper 35 abuts on the locking projection 30 in a position where movement in the clockwise direction is restricted and a position where the stopper 35 comes in contact with an arrangement where movement in the counterclockwise direction is restricted. .

そして、レンズホルダ13をマクロ操作子17のホルダ挿通孔31を通して支持筒体14にねじ込み、支持筒体14にレンズホルダ13を支持させる。   Then, the lens holder 13 is screwed into the support cylinder 14 through the holder insertion hole 31 of the macro operator 17, and the lens holder 13 is supported by the support cylinder 14.

これにより、レンズ11,12、光学フィルタ26及び撮像素子15が同一光軸上に配置される。   Thereby, the lenses 11 and 12, the optical filter 26, and the image sensor 15 are arranged on the same optical axis.

次に、マクロ操作子17を回転させ時計回り方向の移動が規制される配置にストッパー35を係止突起30に当接させる。   Next, the macro operator 17 is rotated to bring the stopper 35 into contact with the locking projection 30 in an arrangement in which the movement in the clockwise direction is restricted.

この状態で、レンズホルダ13を回転させてレンズ11,12と撮像素子15との間の距離xが通常撮影時における焦点距離となるように位置調整し、調整された位置において接着剤によってレンズホルダ13の外周にマクロ操作子17を相対移動不能に固定する。   In this state, the lens holder 13 is rotated to adjust the position so that the distance x between the lenses 11 and 12 and the image sensor 15 becomes the focal length at the time of normal photographing, and the lens holder is bonded with an adhesive at the adjusted position. The macro operator 17 is fixed to the outer periphery of 13 so that relative movement is impossible.

これにより、ストッパー35が係止突起30に当接した位置において通常撮影が可能になり、また、マクロ操作子17を操作してレンズホルダ13を回転させることにより、レンズ11,12と撮像素子15との間の距離が広がり、その距離がマクロ(接写)撮影可能な焦点距離となる位置でストッパー35が反時計回り方向の移動を規制する配置に係止突起30に当接され、マクロ(接写)撮影可能となる。   As a result, it is possible to perform normal shooting at a position where the stopper 35 abuts against the locking projection 30, and by operating the macro operator 17 to rotate the lens holder 13, the lenses 11, 12 and the imaging element 15 are rotated. The stopper 35 is brought into contact with the locking projection 30 in an arrangement that restricts the movement in the counterclockwise direction at a position where the distance becomes a focal length at which the macro (close-up) shooting is possible. ) Shooting is possible.

以上でマクロ機能付のカメラモジュールが完成する。   This completes the camera module with the macro function.

尚、上述の実施例では、対称に配置された一対の係止突起及びストッパーを備えた例について説明したが、一対の係止突起に対し一つのストッパーを配したもの、一つの係止突起に対し一対のストッパーを配したもの等であってもよい。   In the above-described embodiment, an example in which a pair of locking protrusions and stoppers are arranged symmetrically has been described. However, one stopper protrusion is disposed on a pair of locking protrusions, Alternatively, a pair of stoppers may be provided.

また、上述の実施例では、係止突起を支持筒体の外側部に配置した例について説明したが、係止突起を支持筒体の上面部に配置してもよい。   Moreover, although the above-mentioned Example demonstrated the example which has arrange | positioned the latching protrusion in the outer side part of a support cylinder, you may arrange a latching protrusion in the upper surface part of a support cylinder.

更に、上述の実施例では、レンズホルダとマクロ操作子とを接着剤により固定した例について説明したが、熱融着や、その他の固定方法を用いて固定してもよい。   Furthermore, in the above-described embodiment, the example in which the lens holder and the macro operation element are fixed by the adhesive has been described. However, the lens holder and the macro operation element may be fixed by heat fusion or other fixing methods.

本発明に係るカメラモジュールを示す斜視図である。It is a perspective view which shows the camera module which concerns on this invention. 同上のカメラモジュールを示す断面図である。It is sectional drawing which shows a camera module same as the above. 図2中のA−A線断面図である。It is the sectional view on the AA line in FIG. (a)は通常撮影モードにおけるマクロ操作子の位置関係を示す概略図、(b)は同マクロ撮影モードにおけるマクロ操作子の位置関係を示す概略図である。(A) is a schematic diagram showing the positional relationship of the macro operator in the normal shooting mode, and (b) is a schematic diagram showing the positional relationship of the macro operator in the macro shooting mode. 従来の接写機能付のカメラモジュールの一例を示す断面図である。It is sectional drawing which shows an example of the conventional camera module with a close-up photography function.

符号の説明Explanation of symbols

10 カメラモジュール
11,12 レンズ
13 レンズホルダ
14 支持筒体
15 撮像素子
16 撮像ユニット
17 マクロ操作子
18 周壁部
19 入射開口
20 端板部
21 レンズ固定用リング
22 雌ねじ部
23 雄ねじ部
24 回路基板
25 カバー部材
26 光学フィルタ
27 入射開口
28 天板
29 周壁
30 係止突起
31 ホルダ挿通孔
32 固定板
33 周壁
34 操作レバー
35 ストッパー
DESCRIPTION OF SYMBOLS 10 Camera module 11, 12 Lens 13 Lens holder 14 Supporting cylinder 15 Image pick-up element 16 Imaging unit 17 Macro operation element 18 Perimeter wall part 19 Incident opening 20 End plate part 21 Lens fixing ring 22 Female screw part 23 Male screw part 24 Circuit board 25 Cover Member 26 Optical filter 27 Incident opening 28 Top plate 29 Peripheral wall 30 Locking protrusion 31 Holder insertion hole 32 Fixing plate 33 Peripheral wall 34 Operation lever 35 Stopper

Claims (3)

内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、
前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能とし、
前記マクロ操作子は、前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記支持筒体の外側部又は上面部に配置された係止突起に当接するストッパーを備え、前記レンズホルダが前記通常焦点距離位置とマクロ焦点距離位置との間の範囲内で移動できるようにしたことを特徴としてなるカメラモジュール。
A cylindrical lens holder that accommodates a lens therein, an imaging unit in which a support cylindrical body that supports the lens holder protrudes from the surface, and holds an imaging device behind the lens in the optical axis direction, and the lens holder A macro operator fixed to the outer periphery of the
The lens holder and the support cylinder have screw parts that can be screwed together, and the distance between the lens and the image sensor can be adjusted by rotating the lens holder,
The macro operator is disposed on the outer or upper surface of the support cylinder at a position where the distance between the lens and the image sensor forms a normal focal length or a focal length that allows macro photography. A camera module comprising a stopper abutting on a stop projection, wherein the lens holder is movable within a range between the normal focal length position and the macro focal length position.
前記マクロ操作子は、支持筒体の外側に配置された周壁を備え、前記支持筒体に回転可能に配置された請求項1に記載のカメラモジュール。   The camera module according to claim 1, wherein the macro operator has a peripheral wall disposed outside the support cylinder, and is rotatably disposed on the support cylinder. 内部にレンズを収容した筒状のレンズホルダと、該レンズホルダを支持する支持筒体が表面部に突設され、前記レンズの光軸方向後方に撮像素子を保持した撮像ユニットと、前記レンズホルダの外周に固定されたマクロ操作子とを備え、前記レンズホルダと前記支持筒体には、互いに螺合可能なねじ部を有し、前記レンズホルダを回転させることにより前記レンズと撮像素子との間の距離を調整可能としたカメラモジュールの製造方法において、
前記マクロ操作子は、前記支持筒体の外側部又は上面部に配置された係止突起に当接されるストッパーを有し、前記支持筒体に対し、前記ストッパーが前記係止突起に時計回り方向の移動が規制される配置で当接する位置と反時計回り方向の移動が規制される配置で当接する位置との間で移動できるようにし、
前記マクロ操作子を前記一方の当接位置に移動させ、前記ストッパーを前記係止突起に当接させた状態で前記レンズホルダを支持筒体にねじ込み、焦点距離を調整した後、前記マクロ操作子をレンズホルダに固定し、前記ストッパーが前記レンズと撮像素子との間の距離が通常の焦点距離をなす位置又はマクロ撮影可能な焦点距離をなす位置において前記係止突起に当接するようにしたことを特徴としてなるカメラモジュールの製造方法。
A cylindrical lens holder that accommodates a lens therein, an imaging unit in which a support cylindrical body that supports the lens holder protrudes from the surface, and holds an imaging device behind the lens in the optical axis direction, and the lens holder The lens holder and the support cylinder have screw parts that can be screwed together, and the lens and the image pickup device can be rotated by rotating the lens holder. In the manufacturing method of the camera module that can adjust the distance between,
The macro operator has a stopper that is brought into contact with a locking projection disposed on an outer side or an upper surface of the support cylinder, and the stopper rotates clockwise with respect to the support projection with respect to the support cylinder. Allowing movement between a position where the movement in the direction is restricted and a position where the contact is made in a position where the movement in the counterclockwise direction is restricted;
The macro operator is moved to the one contact position, the lens holder is screwed into a support cylinder in a state where the stopper is in contact with the locking projection, and the focal length is adjusted. Is fixed to the lens holder, and the stopper is brought into contact with the locking projection at a position where the distance between the lens and the image sensor forms a normal focal length or a focal length capable of macro photography. A method of manufacturing a camera module characterized by the above.
JP2005236547A 2005-08-17 2005-08-17 Camera module and its manufacture method Pending JP2007052186A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007163707A (en) * 2005-12-12 2007-06-28 Ex Kk Macro mechanism and camera module with macro mechanism using the same
JP2009206994A (en) * 2008-02-28 2009-09-10 Sharp Corp Solid-state image pickup device and electronic apparatus including the same
TWI421623B (en) * 2008-11-28 2014-01-01 Chi Mei Comm Systems Inc Camera module and portable electronic device using the same
CN109001882A (en) * 2017-06-06 2018-12-14 光宝电子(广州)有限公司 Lens module

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007163707A (en) * 2005-12-12 2007-06-28 Ex Kk Macro mechanism and camera module with macro mechanism using the same
JP2009206994A (en) * 2008-02-28 2009-09-10 Sharp Corp Solid-state image pickup device and electronic apparatus including the same
JP4621748B2 (en) * 2008-02-28 2011-01-26 シャープ株式会社 Solid-state imaging device and electronic apparatus including the same
US8072538B2 (en) 2008-02-28 2011-12-06 Sharp Kabushiki Kaisha Solid-state image pickup device including lens unit held by holding section included in same lens unit, and electronic apparatus including same solid-state image pickup device
TWI421623B (en) * 2008-11-28 2014-01-01 Chi Mei Comm Systems Inc Camera module and portable electronic device using the same
CN109001882A (en) * 2017-06-06 2018-12-14 光宝电子(广州)有限公司 Lens module

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