JP4958462B2 - Lens drive device - Google Patents

Lens drive device Download PDF

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Publication number
JP4958462B2
JP4958462B2 JP2006096887A JP2006096887A JP4958462B2 JP 4958462 B2 JP4958462 B2 JP 4958462B2 JP 2006096887 A JP2006096887 A JP 2006096887A JP 2006096887 A JP2006096887 A JP 2006096887A JP 4958462 B2 JP4958462 B2 JP 4958462B2
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lens
lens support
yoke
holder
base
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JP2007271878A (en
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白木  学
直樹 関口
正夫 鈴木
守正 吉江
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Shicoh Co Ltd
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Shicoh Co Ltd
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Priority to KR1020060044038A priority patent/KR101311684B1/en
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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/04Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification
    • G02B7/08Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification adapted to co-operate with a remote control mechanism
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/026Mountings, adjusting means, or light-tight connections, for optical elements for lenses using retaining rings or springs
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/02Bodies
    • G03B17/12Bodies with means for supporting objectives, supplementary lenses, filters, masks, or turrets
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/42Interlocking between shutter operation and advance of film or change of plate or cut-film
    • G03B17/425Interlocking between shutter operation and advance of film or change of plate or cut-film motor drive cameras
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K33/00Motors with reciprocating, oscillating or vibrating magnet, armature or coil system
    • H02K33/02Motors with reciprocating, oscillating or vibrating magnet, armature or coil system with armatures moved one way by energisation of a single coil system and returned by mechanical force, e.g. by springs
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K41/00Propulsion systems in which a rigid body is moved along a path due to dynamo-electric interaction between the body and a magnetic field travelling along the path
    • H02K41/02Linear motors; Sectional motors

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Optics & Photonics (AREA)
  • Power Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Electromagnetism (AREA)
  • Lens Barrels (AREA)

Description

本発明は、レンズを保持したレンズ支持体を駆動するレンズ駆動装置に関する。   The present invention relates to a lens driving device that drives a lens support holding a lens.

特許文献1及び2には、筐体に対してレンズ支持体をスプリングで支持し、レンズ支持体に設けたコイル体に給電することにより、筐体に固定したマグネット及びヨークに対して生じる電磁力でレンズ支持体を駆動し、電磁力とスプリングの付勢力との釣り合いにより所定位置にレンズ支持体を保持することが開示されている。   In Patent Documents 1 and 2, an electromagnetic force generated on a magnet and a yoke fixed to a housing by supporting the lens support with respect to the housing with a spring and supplying power to a coil body provided on the lens support. The lens support is driven to hold the lens support in a predetermined position by balancing the electromagnetic force and the biasing force of the spring.

特開2005−128405号公報JP 2005-128405 A 特開2006−58662号公報JP 2006-58662 A

しかし、特許文献1及び2に開示のレンズ駆動装置では、スプリングの付勢力と電磁力との釣り合いによりレンズ支持体を所定位置に保持する構成である為、レンズ支持体が駆動した時の慣性力をスプリングが受けると、スプリングが大きく変形し、スプリングの弾性による反力により反対方向に変形することを繰り返して振動し、このようなレンズ支持体の振動が収束するまでに所定時間を要するという問題がある(図11(b)参照)。   However, since the lens driving devices disclosed in Patent Documents 1 and 2 are configured to hold the lens support in a predetermined position by balancing the biasing force of the spring and the electromagnetic force, the inertial force when the lens support is driven. When a spring is received, the spring is greatly deformed and repeatedly vibrates by being deformed in the opposite direction by a reaction force due to the elasticity of the spring, and it takes a predetermined time for the vibration of the lens support to converge. (See FIG. 11B).

また、筐体に対してレンズ支持体はスプリングで支持しているだけであるから、落下等により外部から衝撃が加わったときにレンズ支持体が急激に移動することにより、スプリングが必要以上に変形してしまい、スプリングが損傷するという不都合がある。   Also, since the lens support is only supported by the spring with respect to the housing, the spring is deformed more than necessary by sudden movement of the lens support when an impact is applied from the outside due to dropping or the like. As a result, the spring is damaged.

そこで、本発明は、レンズ支持体が移動を停止したときにおけるレンズ支持体の振動の収束時間を短くでき、且つ外部からの衝撃に対するスプリングの損傷を防止できるレンズ駆動装置の提供を目的とする。   Therefore, an object of the present invention is to provide a lens driving device that can shorten the convergence time of vibration of the lens support when the movement of the lens support stops, and can prevent the spring from being damaged by an external impact.

請求項1に記載の発明は、レンズを保持する環状のレンズ支持体と、コイル体と、マグネットと、ヨークと、スプリングとを筐体内に具備し、筐体は、レンズの受光側に設けたフレームと、レンズの結像側に設けたホルダと、フレームとホルダとの間に設けたベースとから構成されており、ベースにヨークが密着固定してあり、ホルダは受光素子を固定した基板に取付けるものであり、ヨークはベースの内周に環状に設けてあり且つ断面コ字状を成しており、マグネットはヨークのコ字内に配置してあり、コイル体はレンズ支持体の外周に固定して且つマグネットに対面してヨークのコ字内に配置してあり、スプリングは筐体とレンズ支持体との間に設けて筐体に対してレンズ支持体を光軸方向に移動可能に支持しており、コイル体に給電して生じる電磁力によりレンズ支持体をレンズの光軸方向に駆動して電磁力とスプリングの付勢力との釣り合いにより所定位置にレンズ支持体を保持するレンズ駆動装置において、フレーム及びホルダには各々レンズとの対面位置に開口が形成されており、ホルダの開口を透明な結像側閉鎖部材で塞ぐと共にレンズ支持体とベースとの間に弾性変形可能な環状気密材を設け、環状気密材の内周縁の全周に亘ってレンズ支持体が密着してあり、環状気密材の外周縁の全周をヨークとベースとで密着挟持してあり、ホルダ、結像側閉鎖部材、ベース、レンズ支持体、レンズ及び環状気密材とで囲まれる空間に密閉した結像側ダンパ空間を形成したことを特徴とする。 According to the first aspect of the present invention, an annular lens support that holds a lens, a coil body, a magnet, a yoke, and a spring are provided in the housing, and the housing is provided on the light receiving side of the lens. It is composed of a frame, a holder provided on the imaging side of the lens, and a base provided between the frame and the holder, and a yoke is closely fixed to the base, and the holder is attached to a substrate on which the light receiving element is fixed. The yoke is annularly provided on the inner periphery of the base and has a U-shaped cross section, the magnet is disposed in the U-shape of the yoke, and the coil body is disposed on the outer periphery of the lens support. It is fixed and is placed in the U-shape of the yoke so as to face the magnet, and a spring is provided between the housing and the lens support so that the lens support can be moved in the optical axis direction relative to the housing Supports the power supply to the coil body. In the lens driving device that drives the lens support in the optical axis direction of the lens by the generated electromagnetic force and holds the lens support in a predetermined position by the balance between the electromagnetic force and the biasing force of the spring, each of the frame and the holder includes the lens and face-to-face position, an opening is formed in the elastically deformable annular airtight material provided between the busy Gutotomoni lens support base an opening of the holder with a transparent image-side closure member of the annular airtight material The lens support is in close contact with the entire periphery of the periphery, and the entire periphery of the outer peripheral edge of the annular airtight material is intimately clamped between the yoke and the base, and the holder, the imaging side closing member, the base , and the lens support The imaging-side damper space is formed in a space surrounded by the lens and the annular airtight material .

閉鎖部材としては、ガラスや硬質樹脂等の硬質体でも良く、または、ビニル樹脂等の軟質材であってもよい。   The closing member may be a hard body such as glass or hard resin, or may be a soft material such as vinyl resin.

請求項に記載の発明は、請求項に記載の発明において、環状気密材には結像側ダンパ空間内の空気圧を調整する孔が形成してあることを特徴とする。 According to a second aspect of the present invention, in the first aspect of the present invention, the annular airtight member is formed with a hole for adjusting the air pressure in the imaging side damper space.

請求項1に記載の発明によれば、コイル体のコイルに給電するとレンズ支持体が受光側又は結像側に瞬時に移動するが、レンズが瞬時に移動すると結像側ダンパ空間の空気圧が高まり又は減圧し、レンズ支持体の移動を抑えるように作用する。このように、結像側ダンパ空間を形成することにより、結像側ダンパ空間の空気圧がレンズ支持体の移動を抑えるように作用するので、レンズ支持体の振動を緩和する。即ち、レンズ支持体が移動してから停止したときに、結像側ダンパ空間がレンズ支持体に作用する慣性力による移動を抑え
、レンズ支持体が移動したときに生じるスプリングの反力による振動を短時間で収束する。
According to the first aspect of the present invention, when the coil of the coil body is supplied with power, the lens support moves instantaneously to the light receiving side or the imaging side, but when the lens moves instantaneously, the air pressure in the imaging side damper space increases. Alternatively, the pressure is reduced to act to suppress the movement of the lens support. In this way, by forming the imaging side damper space, the air pressure in the imaging side damper space acts so as to suppress the movement of the lens support, and thus the vibration of the lens support is reduced. That is, when the lens support moves and then stops, the imaging side damper space suppresses the movement due to the inertial force acting on the lens support, and the vibration caused by the reaction force of the spring generated when the lens support moves. Converge in a short time.

一方、落下等によるレンズ支持体に衝撃力が加わった場合において、レンズ支持体が急激に移動しようとした場合には、結像側ダンパ空間がその空気圧によりレンズ支持体の過大な移動を抑制するので、スプリングの過剰な変形を抑え、スプリングの損傷を防止する。   On the other hand, when an impact force is applied to the lens support due to dropping or the like, when the lens support is about to move suddenly, the imaging-side damper space suppresses excessive movement of the lens support by its air pressure. Therefore, excessive deformation of the spring is suppressed and damage to the spring is prevented.

ホルダの開口に透明な閉鎖部材を設けるだけであるから、構成が簡易である。   Since only a transparent closing member is provided at the opening of the holder, the configuration is simple.

ホルダに閉鎖部材を設けることにより、閉鎖部材が受光素子の保護フィルタを兼ねることができる。   By providing a closing member on the holder, the closing member can also serve as a protective filter for the light receiving element.

結像側ダンパ空間においては、環状気密材が空気圧の変化に応答して変形したり復帰したりして振動するが、環状気密材の振動がスプリングの振動と異なる周波数になり、スプリングの振動を抑えることができる。また、落下時等における衝撃に対しては結像側ダンパ空間が変形することにより、衝撃力を緩和することができる。 In the imaging-side damper space , the annular airtight material vibrates as it deforms and returns in response to changes in air pressure, but the vibration of the annular airtight material has a frequency different from that of the spring, and the vibration of the spring is reduced. Can be suppressed. Further, the impact force can be mitigated by the deformation of the imaging-side damper space against an impact when dropped.

また、結像側ダンパ空間の容積を小さくでき、より強いダンパ作用を得ることができる。   Further, the volume of the imaging side damper space can be reduced, and a stronger damper action can be obtained.

請求項に記載の発明によれば、請求項に記載の発明と同様の作用効果を得ることができると共に、レンズの移動による結像側ダンパ空間内の圧力を調整することにより、レンズ支持体の移動(通常の移動)をダンパ空間が阻害することなく、レンズ支持体の移動をスムーズに行うことができる。 According to the second aspect of the present invention, the same effect as that of the first aspect of the present invention can be obtained, and the lens support can be obtained by adjusting the pressure in the imaging-side damper space due to the movement of the lens. The movement of the lens support can be smoothly performed without the damper space hindering the movement of the body (normal movement).

以下に、添付図面を参照して本発明の実施の形態を説明するが、まず、図1〜図3及び図11を参照して本発明の第1実施の形態を説明する。図1は第1実施の形態にかかるレンズ駆動装置の縦断面図であり、図2は第1実施の形態にかかるレンズ駆動装置の分解斜視図であり、図3は第1実施の形態にかかるレンズ駆動装置の一部を切断して示す斜視図であり、図11は本実施の形態にかかるレンズ駆動装置について、レンズ支持体が移動したときにおけるレンズ支持体の振動を経過時間毎に測定したグラフである。尚、図2及び図3においてはレンズ及びホルダを除いて示しており、図3には更に受光側閉鎖部材を除いて示している。   Embodiments of the present invention will be described below with reference to the accompanying drawings. First, the first embodiment of the present invention will be described with reference to FIGS. 1 to 3 and 11. FIG. 1 is a longitudinal sectional view of the lens driving device according to the first embodiment, FIG. 2 is an exploded perspective view of the lens driving device according to the first embodiment, and FIG. 3 is according to the first embodiment. FIG. 11 is a perspective view showing a part of the lens driving device in a cut state. FIG. 11 shows the lens driving device according to the present embodiment, in which the vibration of the lens support when the lens support moves is measured every elapsed time. It is a graph. 2 and 3, the lens and the holder are omitted, and in FIG. 3, the light receiving side closing member is further omitted.

第1本実施の形態にかかるレンズ駆動装置1は、携帯電話(カメラ装置)に組み込まれるオートフォーカス小型カメラのレンズ駆動装置である。   The lens driving device 1 according to the first embodiment is a lens driving device for an autofocus small camera incorporated in a mobile phone (camera device).

このレンズ駆動装置1は、筐体2を備え、筐体2内にはレンズ3を保持するレンズ支持体5と、コイル体7と、マグネット9と、ヨーク11と、受光側スプリング13a、結像側スプリング13bとが設けられている。   The lens driving device 1 includes a housing 2, and a lens support 5 that holds the lens 3, a coil body 7, a magnet 9, a yoke 11, a light receiving side spring 13 a, and an image formation in the housing 2. A side spring 13b is provided.

筐体2は、受光側に設けたフレーム15と、結像側に設けたホルダ17と、フレーム15とホルダ17との間に設けたベース19とから構成されている。   The housing 2 includes a frame 15 provided on the light receiving side, a holder 17 provided on the imaging side, and a base 19 provided between the frame 15 and the holder 17.

ベース19には、その内周側に環状を成したヨーク11が密着固定してある。ヨーク11は断面コ字状であり、ヨーク11のコ字内には周方向にマグネット9が配置されており、ヨークのコ字内でマグネット9に対面して配置された環状のコイル体7がレンズ3の光軸方向に移動自在に設けられている。   The base 19 has an annular yoke 11 in close contact with the inner periphery thereof. The yoke 11 has a U-shaped cross section, and a magnet 9 is arranged in the circumferential direction in the U-shape of the yoke 11. An annular coil body 7 arranged facing the magnet 9 in the U-shape of the yoke is provided. The lens 3 is provided so as to be movable in the optical axis direction.

コイル体7はレンズ支持体5の外周部に固定されており、レンズ支持体5と共に移動するようになっている。   The coil body 7 is fixed to the outer periphery of the lens support 5 and moves together with the lens support 5.

レンズ支持体7は略円筒形状であり、ヨーク3の内周側に配置されている。レンズ支持体7には内周側にレンズ3が保持されている。   The lens support 7 has a substantially cylindrical shape and is disposed on the inner peripheral side of the yoke 3. The lens 3 is held on the inner peripheral side of the lens support 7.

レンズ支持体7の受光側端には受光側スプリング13aが取付けられており、結像側端には、結像側スプリング13bが取付けられており、レンズ支持体7が移動したときにスプリング13a、13bが弾性変形するようになっている。   A light receiving side spring 13a is attached to the light receiving side end of the lens support 7, and an image forming side spring 13b is attached to the image forming side end. When the lens support 7 moves, the spring 13a, 13b is elastically deformed.

受光側スプリング13a及び結像側スプリング13bは環状の板ばねであり(図2参照)、受光側スプリング13aの内周側端部はレンズ支持体7に固定されており、外周側端部はヨーク11とフレーム15との間に挟持されて固定してある。結像側スプリング13bの内周側端部はレンズ支持体7に固定されており、外周側端部はフレーム15側からスペーサ21で押えてベース19に固定されている。尚、スペーサ21は結像側スプリング13bとヨーク11との絶縁を図っている。   The light receiving side spring 13a and the image forming side spring 13b are annular leaf springs (see FIG. 2). The inner peripheral side end of the light receiving side spring 13a is fixed to the lens support 7, and the outer peripheral side end is a yoke. 11 and the frame 15 are sandwiched and fixed. The inner peripheral side end of the image forming side spring 13b is fixed to the lens support 7, and the outer peripheral side end is fixed to the base 19 by being pressed by the spacer 21 from the frame 15 side. The spacer 21 insulates the image forming side spring 13b from the yoke 11.

フレーム15は平面視四角形状を成し(図2及び図3参照)、中央に受光孔23が形成されている。本実施の形態では、受光孔23には受光側閉鎖部材25を嵌め込んで受光孔23を閉じている。フレーム15はベース19に嵌合固定されていると共にヨーク11の受光側角部11aを周方向に亘って密着している。受光側閉鎖部材25は透明材でできており、レンズ3の受光面3aに対面して設けてある。   The frame 15 has a rectangular shape in plan view (see FIGS. 2 and 3), and a light receiving hole 23 is formed at the center. In the present embodiment, the light receiving hole 23 is closed by fitting the light receiving side closing member 25 into the light receiving hole 23. The frame 15 is fitted and fixed to the base 19 and closely contacts the light receiving side corner portion 11a of the yoke 11 in the circumferential direction. The light receiving side closing member 25 is made of a transparent material, and is provided to face the light receiving surface 3 a of the lens 3.

そして、図1に示すように、レンズ3、ヨーク11、フレーム15及び受光側閉鎖部材25とで密閉した受光側ダンパ空間39を形成している。   As shown in FIG. 1, a light receiving side damper space 39 hermetically sealed by the lens 3, the yoke 11, the frame 15, and the light receiving side closing member 25 is formed.

ホルダ17は、ベース19に密着固定されている。このホルダ17は基板29に取付けるものであり、基板29には受光素子31として撮像素子(CCD)が設けられており、ホルダ17が受光素子31を覆っている。ホルダ17の中央部には開口33が形成されており、このホルダの開口33は透明な結象側閉鎖部材35で塞いでいる。結象側閉鎖部材35はレンズ3の結像側面に対面して設けてある。   The holder 17 is tightly fixed to the base 19. The holder 17 is attached to a substrate 29, and an image sensor (CCD) is provided as the light receiving element 31 on the substrate 29, and the holder 17 covers the light receiving element 31. An opening 33 is formed in the central portion of the holder 17, and the opening 33 of the holder is closed with a transparent ligation side closing member 35. The image-side closing member 35 is provided to face the imaging side surface of the lens 3.

そして、図1に示すように、ホルダ17、結像側閉鎖部材35、ベース19、ヨーク11、レンズ支持体5及びレンズ3とで密閉した結像側ダンパ空間43を形成している。   As shown in FIG. 1, the image forming side damper space 43 is formed by the holder 17, the image forming side closing member 35, the base 19, the yoke 11, the lens support 5 and the lens 3.

尚、レンズ支持体5の外周面とヨーク内周側面との間の隙間S(図1参照)は、極めて小さく設定されており(例えば、従来の約70%以下)、受光側ダンパ空間39又は結像側ダンパ空間43のダンパ作用に影響を与えることがないようにしている。   The clearance S (see FIG. 1) between the outer peripheral surface of the lens support 5 and the inner peripheral surface of the yoke is set to be extremely small (for example, about 70% or less of the conventional one), and the light receiving side damper space 39 or The damper action of the imaging side damper space 43 is not affected.

次に、本実施の形態にかかるレンズ駆動装置1の作用及び効果について説明する。駆動時にコイル体7に給電すると、マグネット9の磁界内にあるコイル体7に電磁力が生じてレンズ支持体5が光軸方向に移動する。そして、レンズ支持体5の駆動力と受光側スプリング13a及び結像側スプリング13bとの付勢力とが釣り合ったところでレンズ支持体5が停止する。   Next, functions and effects of the lens driving device 1 according to the present embodiment will be described. When power is supplied to the coil body 7 during driving, an electromagnetic force is generated in the coil body 7 in the magnetic field of the magnet 9 and the lens support 5 moves in the optical axis direction. The lens support 5 stops when the driving force of the lens support 5 and the urging forces of the light receiving side spring 13a and the imaging side spring 13b are balanced.

レンズ支持体5が移動してから停止するまでにおいて、レンズ支持体5が瞬時に受光側に移動すると受光側ダンパ空間39の空気圧が高まると共に結像側ダンパ空間43の空気圧が減圧となって、レンズ支持体5の停止位置における振動を抑制しようとする。これにより、レンズ支持体5が移動を停止したときに慣性力による更なる移動を抑え、慣性力により移動した後、スプリング13a、13bの反力によりレンズ支持体5が結像側に移動すると受光側ダンパ空間39の空気圧が減圧になると共に結像側ダンパ空間43の空気圧が高まって、レンズ支持体5の移動を抑制する。   When the lens support 5 is instantaneously moved to the light receiving side after the lens support 5 is moved and stopped, the air pressure in the light receiving side damper space 39 is increased and the air pressure in the imaging side damper space 43 is reduced. An attempt is made to suppress vibration at the stop position of the lens support 5. As a result, when the lens support 5 stops moving, further movement due to the inertial force is suppressed. After the lens support 5 moves due to the inertial force, it is received when the lens support 5 moves to the image forming side due to the reaction force of the springs 13a and 13b. The air pressure in the side damper space 39 is reduced, and the air pressure in the imaging side damper space 43 is increased to suppress the movement of the lens support 5.

このようにして、本実施の形態では、受光側ダンパ空間39と結像側ダンパ空間43との両方で、レンズ支持体5に作用する慣性力による移動を抑え
、レンズ支持体5が停止したときに生じるスプリング13a、13bの振動を短時間で収束することができる。
Thus, in the present embodiment, when the lens support 5 is stopped by suppressing the movement due to the inertial force acting on the lens support 5 in both the light receiving side damper space 39 and the imaging side damper space 43. The vibrations of the springs 13a and 13b generated in the above can be converged in a short time.

一方、落下等によるレンズ支持体5に衝撃力が加わった場合において、レンズ支持体5が急激に移動しようとした場合には、受光側ダンパ空間39及び結像側ダンパ空間43がその空気圧によりレンズ支持体5の過剰な移動を抑制するので、スプリング13a、13bの過剰な変形を防止し、スプリング13a、13bの損傷が防止される。   On the other hand, when an impact force is applied to the lens support 5 due to dropping or the like, when the lens support 5 is about to move suddenly, the light-receiving side damper space 39 and the imaging side damper space 43 are moved by the air pressure. Since excessive movement of the support 5 is suppressed, excessive deformation of the springs 13a and 13b is prevented, and damage to the springs 13a and 13b is prevented.

しかも、フレーム15の開口23に閉鎖部材25を設け、ホルダ17の開口33に透明な閉鎖部材35を設けるだけであるから、構成が簡易である。   In addition, since the closing member 25 is provided in the opening 23 of the frame 15 and the transparent closing member 35 is provided in the opening 33 of the holder 17, the configuration is simple.

フレーム15の開口23に受光側閉鎖部材25を設けることにより、閉鎖部材25がレンズ3の保護フィルタを兼ね、レンズ3に埃等が付着するのを防止できる。   By providing the light-receiving side closing member 25 in the opening 23 of the frame 15, the closing member 25 also serves as a protective filter for the lens 3, and dust or the like can be prevented from attaching to the lens 3.

ホルダ17の開口33に結像側閉鎖部材35を設けることにより、閉鎖部材35が受光素子31を埃から保護する保護フィルタを兼ねることができる。   By providing the imaging side closing member 35 in the opening 33 of the holder 17, the closing member 35 can also serve as a protective filter for protecting the light receiving element 31 from dust.

ここで、第1実施の形態にかかるレンズ駆動装置1におけるレンズ支持体5の移動後停止した時における振動収束時間を測定する実験を行ったので、従来例と比較して説明する。   Here, an experiment was conducted to measure the vibration convergence time when the lens support 5 in the lens driving device 1 according to the first embodiment stopped after moving, and will be described in comparison with the conventional example.

実験では実施例品と比較品との各々のコイルに同じ電圧と電流を印加し、レンズ支持体5が静止するまでの時間を測定したものである。測定はレーザ測長器を用い、レンズの重量は0.2gとした。その結果を図11に示す。図11の(a)が実施例品であり、(b)が比較例品である。   In the experiment, the same voltage and current were applied to the coils of the example product and the comparative product, and the time until the lens support 5 was stopped was measured. The measurement was performed using a laser length measuring device, and the weight of the lens was 0.2 g. The result is shown in FIG. (A) of FIG. 11 is an example product, and (b) is a comparative example product.

この図11に示す結果から明らかなように、いずれの場合もレンズ支持体5は停止位置で振動するが、実施例品(a)では振動が収束するまでの時間tが0.07秒であったのに対して、従来品は0.8秒であった。即ち、本実験では、レンズ支持体を移動した後停止した時における振動の収束時間を従来よりも約10倍早めることができた。   As is apparent from the results shown in FIG. 11, the lens support 5 vibrates at the stop position in any case, but in the example product (a), the time t until the vibration converges is 0.07 seconds. In contrast, the conventional product took 0.8 seconds. That is, in this experiment, the convergence time of vibration when the lens support was moved and then stopped could be about 10 times faster than before.

以下に、図4〜図10を参照して本発明の他の実施の形態を説明するが、以下に説明する実施の形態において、上述した第1実施の形態と同一の作用効果を奏する部分には同一の符号を付することによりその部分の説明を省略し、以下の説明では第1実施の形態と主に異なる点について説明する。   Hereinafter, other embodiments of the present invention will be described with reference to FIGS. 4 to 10. In the embodiments described below, the same effects as those of the above-described first embodiment are provided. The same reference numerals are given to omit the description thereof, and in the following description, differences from the first embodiment will be mainly described.

図4に第2実施の形態にかかるレンズ駆動装置1の縦断面図を示す。第2実施の形態は、第1実施の形態において、ヨーク11の受光側角部11aとフレーム15との間にはその全周に亘ってシール材(接着材)37で気密にし、ヨーク11の外周面とベース19との間にはその全周に亘ってシール材(接着材)38で気密し、ベース19とホルダ17との間もその全周に亘ってシール材(接着材)41で気密にした。この第2実施の形態では受光側ダンパ空間39と結像側ダンパ空間43との各々の気密性を高めたので、第1実施の形態よりも更に優れた効果を奏することができる。即ち、第1実施の形態よりもレンズ支持体の振動の収縮時間を短縮でき、落下等によるレンズ支持体5に外力が加わった場合におけるスプリング13a、13bの損傷を更に低減できる。   FIG. 4 is a longitudinal sectional view of the lens driving device 1 according to the second embodiment. In the second embodiment, in the first embodiment, the light receiving side corner portion 11a of the yoke 11 and the frame 15 are hermetically sealed with a sealing material (adhesive material) 37 over the entire circumference thereof. A sealant (adhesive) 38 is hermetically sealed between the outer peripheral surface and the base 19 over the entire circumference, and a sealant (adhesive) 41 is also provided between the base 19 and the holder 17 over the entire circumference. Airtight. In the second embodiment, since the air tightness of each of the light receiving side damper space 39 and the image forming side damper space 43 is increased, an effect superior to that of the first embodiment can be achieved. That is, the contraction time of the vibration of the lens support can be shortened compared to the first embodiment, and damage to the springs 13a and 13b when an external force is applied to the lens support 5 due to dropping or the like can be further reduced.

図5に第3実施の形態にかかるレンズ駆動装置1の縦断面図を示す。この第3実施の形態では、上述した第1実施の形態において、ホルダ17の開口33のみに閉鎖部材を設け、フレームの開口23には閉鎖部材を設けないで、結像側ダンパ空間43のみを形成したものである。また、ヨーク11の外周面とベース19との間にはその全周に亘ってシール材(接着材)38で気密し、ベース19とホルダ17との間をその全周に亘ってシール材(接着材)41で気密にしている。   FIG. 5 is a longitudinal sectional view of the lens driving device 1 according to the third embodiment. In the third embodiment, in the first embodiment described above, a closing member is provided only in the opening 33 of the holder 17, and no closing member is provided in the opening 23 of the frame, and only the imaging side damper space 43 is provided. Formed. Further, the outer periphery of the yoke 11 and the base 19 are hermetically sealed with a sealing material (adhesive) 38 over the entire circumference, and the sealing material (with the entire circumference between the base 19 and the holder 17 ( Adhesive) 41 is airtight.

この第3実施の形態では、受光側ダンパ空間39がないから、受光側ダンパ空間39との相乗効果を得ることはできないが、結像側ダンパ空間43のみによっても従来よりも、レンズ支持体5の移動時における振動の収束時間を早めることができ、且つ落下等の衝撃が加わった場合にもスプリング13a、13bの過剰な変形による損傷を防止できる。   In the third embodiment, since there is no light-receiving side damper space 39, a synergistic effect with the light-receiving side damper space 39 cannot be obtained. It is possible to shorten the convergence time of vibration during the movement, and to prevent damage due to excessive deformation of the springs 13a and 13b even when an impact such as dropping is applied.

図6及び図7に第4実施の形態にかかるレンズ駆動装置1を示す。図6は第4実施の形態にかかるレンズ駆動装置の縦断面図であり、図7は分解斜視図である。この第4実施の形態では、上述した第3実施の形態において、結像側スプリング13bに換えて、弾性変形可能な環状気密材(コーン部材)47を設けたものであり、外周側端をベース19に載置してあり、スペーサ21を介してヨーク11で押えてあり、環状気密材47は実質的にベース19とヨーク11との間に挟持されている。 6 and 7 show a lens driving device 1 according to a fourth embodiment. FIG. 6 is a longitudinal sectional view of a lens driving device according to the fourth embodiment, and FIG. 7 is an exploded perspective view. In the fourth embodiment, in place of the imaging-side spring 13b in the third embodiment described above, an elastically deformable annular airtight material (cone member) 47 is provided, and the outer peripheral side end is used as a base. 19 is held by the yoke 11 via the spacer 21, and the annular airtight member 47 is substantially sandwiched between the base 19 and the yoke 11 .

環状気密材47は、樹脂製又は紙製の面体であり、樹脂製の場合にはポリエチレンテレフタレート(PET)、ポリエチレンナフタレート、ポリエーテルニトリル、ポリエーテルイミド等を用いることができる。この環状気密材47は外周側端と内周側端との間でスプリングと同様な弾性変形をすることができると共にレンズ支持体5とベース19との間を気密に保持するものである。   The annular airtight material 47 is a resin or paper face, and in the case of resin, polyethylene terephthalate (PET), polyethylene naphthalate, polyether nitrile, polyether imide, or the like can be used. The annular airtight member 47 can be elastically deformed between the outer peripheral side end and the inner peripheral side end in the same manner as the spring and holds the lens support 5 and the base 19 in an airtight manner.

この第4実施の形態によれば、環状気密材47によりレンズ支持体5とベース19との間を気密に保持するので、結像側ダンパ空間43の気密性が高めることができ、第3実施の形態よりも結像側ダンパ空間43による高いダンパ効果を得ることができる。   According to the fourth embodiment, the space between the lens support 5 and the base 19 is kept airtight by the annular airtight member 47, so that the airtightness of the imaging-side damper space 43 can be improved, and the third embodiment A higher damper effect can be obtained by the imaging-side damper space 43 than in the embodiment.

図8に第5実施の形態にかかるレンズ駆動装置1を示す。図8(a)は第5実施の形態にかかるレンズ駆動装置の縦断面図であり、(b)は環状気密材を抜き出して示す斜視図である。この第5実施の形態では、上述した第4実施の形態において、ベース19とホルダ17との間をシール材41でシールして、結像側ダンパ空間43の気密性を高めていると共に、環状気密材47に空気圧調整孔49を形成して、結像側ダンパ空間43内の空気圧を調整したものである。   FIG. 8 shows a lens driving device 1 according to the fifth embodiment. FIG. 8A is a longitudinal sectional view of a lens driving device according to a fifth embodiment, and FIG. 8B is a perspective view showing an annular airtight material extracted. In the fifth embodiment, in the fourth embodiment described above, the space between the base 19 and the holder 17 is sealed with the sealing material 41 to improve the airtightness of the imaging-side damper space 43 and the annular shape. An air pressure adjusting hole 49 is formed in the airtight member 47 to adjust the air pressure in the imaging side damper space 43.

この第5実施の形態によれば、レンズ支持体5の移動の場合には、結像側ダンパ空間の空気圧を空気圧調整孔49から逃すので、レンズ支持体5の移動が抑制されるのを防止でき、レンズ支持体5がスムーズに移動できると共に、レンズ支持体5停止するときの振動や落下等の衝撃による急激な移動の場合には、結像側ダンパ空間43が有効に作用することができる。   According to the fifth embodiment, when the lens support 5 is moved, the air pressure in the imaging-side damper space is released from the air pressure adjusting hole 49, so that the movement of the lens support 5 is prevented from being suppressed. In addition, the lens support 5 can move smoothly, and the imaging-side damper space 43 can act effectively in the case of a sudden movement due to an impact such as vibration or dropping when the lens support 5 is stopped. .

尚、空気圧調整孔49の数や大きさは適宜必要に応じて設定する。   Note that the number and size of the air pressure adjusting holes 49 are appropriately set as necessary.

図9に第6実施の形態にかかるレンズ駆動装置1を示す。図9は第6実施の形態にかかるカメラ装置の縦断面図である。この第6実施の形態では、上述した第1実施の形態にかかるレンズ駆動装置1において、フレーム15の開口に閉鎖部材25を設けないで、カメラの組付け部材51に組付けたものであり、組付け部材51はフレーム15の受光側面15aに密着して設けている。組付け部材51にはレンズ3の対向面に開口53が設けてあり、この開口53を透明な受光側閉鎖部材25で塞いで、受光側閉鎖部材25、組付け部材51、フレーム15、ヨーク11、レンズ支持体5及びレンズ3とで囲まれる空間に密閉した受光側ダンパ空間39を形成したものである。   FIG. 9 shows a lens driving device 1 according to the sixth embodiment. FIG. 9 is a longitudinal sectional view of a camera apparatus according to the sixth embodiment. In the sixth embodiment, in the lens driving device 1 according to the first embodiment described above, the closing member 25 is not provided in the opening of the frame 15 and is assembled to the assembly member 51 of the camera. The assembly member 51 is provided in close contact with the light receiving side surface 15 a of the frame 15. The assembly member 51 is provided with an opening 53 on the opposite surface of the lens 3. The opening 53 is closed with a transparent light-receiving side closing member 25, and the light-receiving side closing member 25, the assembly member 51, the frame 15, and the yoke 11. A light receiving side damper space 39 is formed in a space surrounded by the lens support 5 and the lens 3.

この第6実施の形態によれば、第1実施の形態と同様に受光側ダンパ空間39と結像側ダンパ空間43との2つのダンパ空間39、43がレンズ支持5に両側から作用するので、第1実施の形態と同様な作用効果を奏することができる。   According to the sixth embodiment, since the two damper spaces 39 and 43 of the light receiving side damper space 39 and the imaging side damper space 43 act on the lens support 5 from both sides as in the first embodiment. The same effects as those of the first embodiment can be achieved.

図10に第7実施の形態にかかるレンズ駆動装置1を示す。図10は第7実施の形態にかかるカメラ装置の縦断面図である。この第7実施の形態では、上述した第6実施の形態にかかるレンズ駆動装置1において、フレーム15と組付け部材51との間に弾性部材(ゴム材)を設けてフレーム15と組付け部材51との間の気密を図ったものである。   FIG. 10 shows a lens driving device 1 according to the seventh embodiment. FIG. 10 is a longitudinal sectional view of a camera apparatus according to the seventh embodiment. In the seventh embodiment, in the lens driving device 1 according to the sixth embodiment described above, an elastic member (rubber material) is provided between the frame 15 and the assembly member 51 to provide the frame 15 and the assembly member 51. Is intended to be airtight.

この第7実施の形態によれば、第6実施の形態における受光側ダンパ空間39の気密性を高めることができるから、更に受光側ダンパ空間39のダンパ作用を高めることができる。   According to the seventh embodiment, since the airtightness of the light receiving side damper space 39 in the sixth embodiment can be increased, the damper action of the light receiving side damper space 39 can be further increased.

本発明は、上述した実施の形態に限らず、本発明の要旨を逸脱しない範囲で種々変形可能である。   The present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the scope of the present invention.

例えば、第4及び第5実施の形態において、スペーサ21はなくても良い。また、第4及び第5実施の形態において、更に結像側スプリング13bを設けるものであっても良い。   For example, in the fourth and fifth embodiments, the spacer 21 may not be provided. In the fourth and fifth embodiments, an image forming side spring 13b may be further provided.

第2実施の形態において、図12に示すように、フレーム15及びベース19に空気圧調整孔61を設けて、受光側ダンパ空間39及び結像側ダンパ空間43の空気圧を調整するものであってもよい。この空気圧調整孔61はフレーム15又はベース19のいずれかに設けるものであっても良いし、第2実施の形態に限らず、第1、第3、第4実施の形態や、第6及び第7実施の形態においても同様に空気調整孔61を設けてもよい。更に、第第5実施の形態において、環状気密材47に設けた空気圧調整孔49に換えて、或いは空気圧調整孔49と共にベース19に空気調整孔61を設けるものであってもよい。   In the second embodiment, as shown in FIG. 12, an air pressure adjusting hole 61 is provided in the frame 15 and the base 19 to adjust the air pressure in the light receiving side damper space 39 and the imaging side damper space 43. Good. The air pressure adjusting hole 61 may be provided in either the frame 15 or the base 19, and is not limited to the second embodiment, but may be the first, third, and fourth embodiments, the sixth and Similarly, in the seventh embodiment, the air adjustment hole 61 may be provided. Further, in the fifth embodiment, the air adjustment hole 61 may be provided in the base 19 in place of the air pressure adjustment hole 49 provided in the annular airtight material 47 or together with the air pressure adjustment hole 49.

第1実施の形態にかかるレンズ駆動装置の縦断面図である。It is a longitudinal cross-sectional view of the lens drive device concerning 1st Embodiment. 第1実施の形態にかかるレンズ駆動装置の分解斜視図である。It is a disassembled perspective view of the lens drive device concerning a 1st embodiment. 第1実施の形態にかかるレンズ駆動装置の一部を切断して示す斜視図である。It is a perspective view which cut | disconnects and shows a part of lens drive device concerning 1st Embodiment. 第2実施の形態にかかるレンズ駆動装置の縦断面図である。It is a longitudinal cross-sectional view of the lens drive device concerning 2nd Embodiment. 第3実施の形態にかかるレンズ駆動装置の縦断面図である。It is a longitudinal cross-sectional view of the lens drive device concerning 3rd Embodiment. 第4実施の形態にかかるレンズ駆動装置の縦断面図である。It is a longitudinal cross-sectional view of the lens drive device concerning 4th Embodiment. 第4実施の形態にかかるレンズ駆動装置の分解斜視図である。It is a disassembled perspective view of the lens drive device concerning 4th Embodiment. (a)は第5実施の形態にかかるレンズ駆動装置の縦断面図であり、(b)は環状気密材を抜き出して示す斜視図である。(A) is a longitudinal cross-sectional view of the lens drive device concerning 5th Embodiment, (b) is a perspective view which extracts and shows an annular airtight material. 第6実施の形態にかかるカメラ装置の縦断面図である。It is a longitudinal cross-sectional view of the camera apparatus concerning 6th Embodiment. 第7実施の形態にかかるカメラ装置の縦断面図である。It is a longitudinal cross-sectional view of the camera apparatus concerning 7th Embodiment. 第1実施の形態にかかるレンズ駆動装置について、レンズ支持体が移動したときにおけるレンズ支持体の振動を経過時間毎に測定したグラフである。It is the graph which measured the vibration of the lens support body for every elapsed time when the lens support body moved about the lens drive device concerning a 1st embodiment. 本発明の変形例にかかるレンズ駆動装置の縦断面図である。It is a longitudinal cross-sectional view of the lens drive device concerning the modification of this invention.

1 レンズ駆動装置
2 筐体
3 レンズ
5 レンズ支持体
7 コイル体
9 マグネット
11 ヨーク
13a 受光側スプリング
13b 結像側スプリング
15 フレーム
17 ホルダ
19 ベース
25 受光側閉鎖部材
31 受光素子
35 結像側閉鎖部材
37、38、41 シール材
47 環状気密材
51 組付け部材
55 弾性部材
DESCRIPTION OF SYMBOLS 1 Lens drive device 2 Housing | casing 3 Lens 5 Lens support body 7 Coil body 9 Magnet 11 Yoke 13a Light reception side spring 13b Image formation side spring 15 Frame 17 Holder 19 Base 25 Light reception side closing member 31 Light receiving element 35 Image formation side closing member 37 , 38, 41 Sealing material 47 Annular airtight material 51 Assembly member 55 Elastic member

Claims (2)

レンズを保持する環状のレンズ支持体と、コイル体と、マグネットと、ヨークと、スプリングとを筐体内に具備し、筐体は、レンズの受光側に設けたフレームと、レンズの結像側に設けたホルダと、フレームとホルダとの間に設けたベースとから構成されており、ベースにヨークが密着固定してあり、ホルダは受光素子を固定した基板に取付けるものであり、ヨークはベースの内周に環状に設けてあり且つ断面コ字状を成しており、マグネットはヨークのコ字内に配置してあり、コイル体はレンズ支持体の外周に固定して且つマグネットに対面してヨークのコ字内に配置してあり、スプリングは筐体とレンズ支持体との間に設けて筐体に対してレンズ支持体を光軸方向に移動可能に支持しており、コイル体に給電して生じる電磁力によりレンズ支持体をレンズの光軸方向に駆動して電磁力とスプリングの付勢力との釣り合いにより所定位置にレンズ支持体を保持するレンズ駆動装置において、フレーム及びホルダには各々レンズとの対面位置に開口が形成されており、ホルダの開口を透明な結像側閉鎖部材で塞ぐと共にレンズ支持体とベースとの間に弾性変形可能な環状気密材を設け、環状気密材の内周縁の全周に亘ってレンズ支持体が密着してあり、環状気密材の外周縁の全周をヨークとベースとで密着挟持してあり、ホルダ、結像側閉鎖部材、ベース、レンズ支持体、レンズ及び環状気密材とで囲まれる空間に密閉した結像側ダンパ空間を形成したことを特徴とするレンズ駆動装置。 An annular lens support that holds the lens, a coil body, a magnet, a yoke, and a spring are provided in the housing. The housing is provided on the light receiving side of the lens and on the imaging side of the lens. And a base provided between the frame and the holder. A yoke is closely fixed to the base. The holder is attached to a substrate on which the light receiving element is fixed. It is provided in a ring shape on the inner circumference and has a U-shaped cross section, the magnet is arranged in the U-shape of the yoke, and the coil body is fixed to the outer circumference of the lens support and faces the magnet. Located in the U-shape of the yoke, the spring is provided between the case and the lens support, and supports the lens support so that it can move in the optical axis direction relative to the case. The electromagnetic force generated by the In a lens driving device that holds a lens support in a predetermined position by driving the support in the optical axis direction of the lens and balancing the electromagnetic force and the biasing force of the spring, the frame and the holder are each opened at a position facing the lens. There are formed, the elastically deformable annular airtight material provided between the busy Gutotomoni lens support base an opening of the holder with a transparent image-side closure member, the entire circumference of the inner peripheral edge of the annular airtight material The lens support is in close contact, and the entire circumference of the outer peripheral edge of the annular airtight material is tightly clamped between the yoke and the base, and the holder, the imaging side closing member, the base , the lens support, the lens, and the annular airtight A lens driving device characterized in that a closed imaging-side damper space is formed in a space surrounded by a material . 環状気密材には結像側ダンパ空間内の空気圧を調整する孔が形成してあることを特徴とする請求項に記載のレンズ駆動装置。
2. The lens driving device according to claim 1 , wherein a hole for adjusting an air pressure in the imaging side damper space is formed in the annular hermetic material.
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