JP2009186699A - Lens unit and method of manufacturing the same - Google Patents

Lens unit and method of manufacturing the same Download PDF

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JP2009186699A
JP2009186699A JP2008025862A JP2008025862A JP2009186699A JP 2009186699 A JP2009186699 A JP 2009186699A JP 2008025862 A JP2008025862 A JP 2008025862A JP 2008025862 A JP2008025862 A JP 2008025862A JP 2009186699 A JP2009186699 A JP 2009186699A
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lens
peripheral surface
inner peripheral
lens barrel
outer peripheral
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Kazuhiro Miyagawa
和裕 宮川
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Alps Alpine Co Ltd
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Alps Electric Co Ltd
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Priority to JP2008025862A priority Critical patent/JP2009186699A/en
Priority to TW97151717A priority patent/TW200942893A/en
Priority to CNA2009100061377A priority patent/CN101504481A/en
Publication of JP2009186699A publication Critical patent/JP2009186699A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a lens unit capable of reliably emitting laser beams to a joint part while downsizing a lens, and to provide a method of manufacturing the same. <P>SOLUTION: The lens unit is composed of: the lens 1 made of a transparent resin member; and a lens barrel 2 which stores the lens 1. The lens 1 includes: a lens surface 10 which optically functions; and a flange part 11 which is formed in the surrounding part of the lens surface 10 and is held in an inner circumferential surface 20a of the lens barrel 2. The flange part 11 includes: an outer circumferential surface part 13a abutting on the innner circumferential surface 20a of the lens barrel 2; and an inner circumferential surface part 13b opposite to the outer circumferential surface part 13a and facing the side of the lens surface 10. The inner circumferential surface part 13b is formed like an inclined surface in a direction that diameter of its inner circumference becomes large from an edge of the side of the lens surface 10 toward the tip side edge of the flange part 11, and the outer circumferential surface part 13a of the flange part 11 is laser-joined with the inner circumferential surface 20a of the lens barrel 2. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、樹脂製のレンズを鏡筒に納めてなるレンズユニット及びその製造方法に関し、特にレンズと鏡筒をレーザ接合により固定してなるレンズユニット及びその製造方法に関する。   The present invention relates to a lens unit in which a resin lens is accommodated in a lens barrel and a manufacturing method thereof, and more particularly to a lens unit in which a lens and a lens barrel are fixed by laser bonding and a manufacturing method thereof.

従来、カメラモジュール等に組み込まれるレンズとして、COP樹脂等の樹脂材によって形成されたレンズが用いられている。レンズは、機器内において位置決め固定するために、鏡筒によって保持されてレンズユニットを構成する。このため、レンズには光学的に機能するレンズ面の周囲部に鍔部が形成され、この鍔部が鏡筒の内周面に当接し固定されることで、鏡筒とレンズとが一体化されている。鏡筒とレンズとの一体化は、接着剤によって接着固定することが一般的に行われているが、レーザを用いた接合によるものも知られている。このようなレンズユニットとしては、例えば特許文献1に挙げるようなものがある。
特開2006−11234号公報
Conventionally, as a lens incorporated in a camera module or the like, a lens formed of a resin material such as COP resin has been used. In order to position and fix the lens in the device, the lens is held by a lens barrel to constitute a lens unit. For this reason, the lens is formed with a flange around the optically functioning lens surface, and the collar and the lens are integrated by abutting and fixing the collar to the inner peripheral surface of the lens barrel. Has been. In general, the lens barrel and the lens are integrated and fixed by an adhesive, but a method using a laser is also known. As such a lens unit, for example, there is a lens unit described in Patent Document 1.
JP 2006-11234 A

鏡筒とレンズとをレーザ接合により一体化する従来のレンズユニットは、レンズに形成された鍔部の上下面を鏡筒の内周面から内周方向に突出するよう形成された突出部に当接させ、レンズの光軸方向からレーザを照射して接合を行うものであった。この場合、接合幅を確保するためにレンズの鍔部がある程度の大きさを有している必要がある。これによってレンズユニットが大型化するという問題点を有していた。   In a conventional lens unit that integrates a lens barrel and a lens by laser bonding, the upper and lower surfaces of the collar portion formed on the lens are in contact with the protruding portion formed so as to protrude in the inner peripheral direction from the inner peripheral surface of the lens barrel. It was made to contact, and it joined by irradiating a laser from the optical axis direction of a lens. In this case, it is necessary for the flange portion of the lens to have a certain size in order to ensure the bonding width. This has a problem that the lens unit becomes large.

本発明は前記課題を鑑みてなされたものであり、レンズを小型化しつつ確実にレーザを接合部分に照射することのできるレンズユニット及びその製造方法を提供することを目的とする。   The present invention has been made in view of the above problems, and an object of the present invention is to provide a lens unit that can reliably irradiate a joining portion with a laser while reducing the size of the lens, and a method for manufacturing the lens unit.

前記課題を解決するため、本発明に係るレンズユニットは、透明な樹脂材からなるレンズと、該レンズを納める鏡筒とからなるレンズユニットにおいて、
前記レンズは光学的に機能するレンズ面と、該レンズ面の周囲部に形成され前記鏡筒の内周面に保持される鍔部とを有してなり、該鍔部は前記鏡筒の内周面に当接する外周面部と、該外周面部と対向し前記レンズ面側に面する内周面部とを備え、該内周面部は前記レンズ面側端部から前記鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成されると共に、前記鍔部の外周面部と鏡筒の内周面はレーザ接合されてなることを特徴として構成されている。
In order to solve the above-described problem, a lens unit according to the present invention is a lens unit including a lens made of a transparent resin material and a lens barrel for housing the lens.
The lens includes a lens surface that functions optically, and a flange formed on a peripheral portion of the lens surface and held on an inner peripheral surface of the lens barrel. An outer peripheral surface portion that contacts the peripheral surface, and an inner peripheral surface portion facing the outer peripheral surface portion and facing the lens surface side, the inner peripheral surface portion extending from the lens surface side end portion to the distal end side end portion of the flange portion. The outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-bonded, and the outer peripheral surface portion is formed in an inclined surface shape in the direction in which the inner peripheral diameter increases.

また、本発明に係るレンズユニットは、前記鏡筒の内周面及び該内周面に当接する前記鍔部の外周面部は前記鍔部の内周面部と略平行な傾斜面状に形成されることを特徴として構成されている。   In the lens unit according to the present invention, the inner peripheral surface of the lens barrel and the outer peripheral surface of the flange contacting the inner peripheral surface are formed in an inclined surface substantially parallel to the inner peripheral surface of the flange. It is configured as a feature.

さらに、本発明に係るレンズユニットは、前記鍔部の内周面部は、該内周面部の法線でかつ前記鍔部の外周面部と鏡筒の内周面がレーザ接合される位置を通る仮想線が、前記レンズ面と交差しないような傾斜角度を有することを特徴として構成されている。   Furthermore, in the lens unit according to the present invention, the inner peripheral surface portion of the flange portion is a normal line of the inner peripheral surface portion and passes through a position where the outer peripheral surface portion of the flange portion and the inner peripheral surface of the lens barrel are laser-bonded. The line has an inclination angle that does not intersect the lens surface.

さらにまた、本発明に係るレンズユニットの製造方法は、透明な樹脂材からなるレンズと、該レンズを納める鏡筒とからなるレンズユニットの製造方法において、
前記レンズには光学的に機能するレンズ面と、該レンズ面の周囲部に設けられ前記鏡筒の内周面に保持される鍔部とを形成し、該鍔部には前記鏡筒の内周面に当接する外周面部と、該外周面部と対向し前記レンズ面側に面する内周面部とを形成すると共に、該内周面部を前記レンズ面側端部から前記鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成し、
前記レンズを前記鏡筒内に納め、前記鍔部の内周面部に対して略垂直方向からレーザ光を照射し、前記鍔部の外周面部と鏡筒の内周面とをレーザ接合することを特徴として構成されている。
Furthermore, the manufacturing method of the lens unit according to the present invention is a method of manufacturing a lens unit including a lens made of a transparent resin material and a lens barrel that houses the lens.
The lens has an optically functioning lens surface and a flange provided around the lens surface and held on the inner peripheral surface of the lens barrel. Forming an outer peripheral surface portion contacting the peripheral surface and an inner peripheral surface portion facing the outer peripheral surface portion and facing the lens surface side, and extending the inner peripheral surface portion from the lens surface side end portion to the distal end side end of the flange portion Forming an inclined surface in the direction of increasing the inner diameter toward the part,
The lens is housed in the lens barrel, laser light is irradiated from a substantially perpendicular direction to the inner peripheral surface portion of the collar portion, and the outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-joined. It is structured as a feature.

そして、本発明に係るレンズユニットの製造方法は、前記鏡筒の内周面及び該内周面に当接する前記鍔部の外周面部を前記鍔部の内周面部と略平行な傾斜面状に形成することを特徴として構成されている。   And the manufacturing method of the lens unit which concerns on this invention makes the outer peripheral surface part of the said collar part contact | abutted to the inner peripheral surface of the said lens-barrel, and this inner peripheral surface in the inclined surface shape substantially parallel to the inner peripheral surface part of the said collar part. It is configured to form.

本発明に係るレンズユニットによれば、レンズはレンズ面と鍔部とを有し、鍔部は鏡筒の内周面に当接する外周面部と、外周面部と対向しレンズ面側に面する内周面部とを備え、内周面部はレンズ面側端部から鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成されると共に、鍔部の外周面部と鏡筒の内周面はレーザ接合されてなることにより、レンズと鏡筒を周面で接合することができ、レーザ接合しながらも径方向の小型化を図ることができると共に、レーザ光を鍔部の内周面部と垂直な傾斜方向から照射することができるので、レンズを光軸方向に大きくすることなくレーザによる充分な加熱幅をとることができ、光軸方向の小型化をも図ることができる。   According to the lens unit of the present invention, the lens has a lens surface and a flange, and the flange has an outer peripheral surface that contacts the inner peripheral surface of the lens barrel, and an inner surface that faces the outer peripheral surface and faces the lens surface. A peripheral surface portion, and the inner peripheral surface portion is formed in an inclined surface shape in which the inner peripheral diameter increases from the lens surface side end portion toward the distal end side end portion of the collar portion, and the outer peripheral surface portion of the collar portion and the mirror The inner peripheral surface of the tube is laser-bonded, so that the lens and the lens barrel can be bonded by the peripheral surface, and the laser beam can be reduced in size in the radial direction while laser-welding. Can be irradiated from an inclination direction perpendicular to the inner peripheral surface portion, so that a sufficient heating width by the laser can be taken without enlarging the lens in the optical axis direction, and miniaturization in the optical axis direction can also be achieved. it can.

また、本発明に係るレンズユニットによれば、鏡筒の内周面及び鍔部の外周面部は鍔部の内周面部と略平行な傾斜面状に形成されることにより、接合部分をレーザ光の方向に向けることができ、より効率よく加熱を行うことができる。   Further, according to the lens unit of the present invention, the inner peripheral surface of the lens barrel and the outer peripheral surface portion of the collar portion are formed in an inclined surface shape substantially parallel to the inner peripheral surface portion of the collar portion, so that the joint portion is laser light. It can be directed in the direction of, and heating can be performed more efficiently.

さらに、本発明に係るレンズユニットによれば、鍔部の内周面部は、内周面部の法線でかつ鍔部の外周面部と鏡筒の内周面がレーザ接合される位置を通る仮想線が、レンズ面と交差しないような傾斜角度を有することにより、レーザ光をレンズ面と干渉することなく確実に接合部分に照射することができる。   Furthermore, according to the lens unit according to the present invention, the inner peripheral surface portion of the collar portion is a normal line passing through the normal line of the inner peripheral surface portion and the position where the outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-bonded. However, by having an inclination angle that does not intersect the lens surface, it is possible to reliably irradiate the joint portion with laser light without interfering with the lens surface.

さらにまた、本発明に係るレンズユニットの製造方法によれば、レンズにはレンズ面と鍔部とを形成し、鍔部には外周面部と内周面部とを形成すると共に、内周面部をレンズ面側端部から鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成し、レンズを鏡筒内に納め、鍔部の内周面部に対して略垂直方向からレーザ光を照射し、鍔部の外周面部と鏡筒の内周面とをレーザ接合することにより、レンズと鏡筒を周面で接合することができ、レーザ接合しながらもレンズユニットの径方向の小型化を図ることができると共に、レーザ光を鍔部の内周面部と垂直な傾斜方向から照射することができるので、レンズを光軸方向に大きくすることなくレーザによる充分な加熱幅をとることができ、レンズユニットの光軸方向の小型化をも図ることができる。   Furthermore, according to the method for manufacturing a lens unit according to the present invention, the lens is formed with a lens surface and a flange portion, the flange portion is formed with an outer peripheral surface portion and an inner peripheral surface portion, and the inner peripheral surface portion is formed on the lens. It is formed in the shape of an inclined surface in the direction in which the inner peripheral diameter increases from the end on the surface side toward the end on the front end side of the collar, and the lens is accommodated in the lens barrel, and substantially perpendicular to the inner peripheral surface of the collar By irradiating a laser beam from the laser beam, the lens and the lens barrel can be joined at the peripheral surface by laser joining the outer peripheral surface portion of the collar and the inner peripheral surface of the lens barrel. The size of the direction can be reduced, and the laser beam can be irradiated from an inclination direction perpendicular to the inner peripheral surface portion of the collar portion, so that a sufficient heating width by the laser can be obtained without enlarging the lens in the optical axis direction. The lens unit can be downsized in the optical axis direction It can be also achieved.

そして、本発明に係るレンズユニットの製造方法によれば、鏡筒の内周面及び該内周面に当接する鍔部の外周面部を鍔部の内周面部と略平行な傾斜面状に形成することにより、接合部分をレーザ光の方向に向けることができ、より効率よく加熱を行うことができる。   According to the lens unit manufacturing method of the present invention, the inner peripheral surface of the lens barrel and the outer peripheral surface portion of the collar portion that contacts the inner peripheral surface are formed in an inclined surface shape substantially parallel to the inner peripheral surface portion of the collar portion. By doing so, the joint portion can be directed in the direction of the laser beam, and heating can be performed more efficiently.

本発明の実施形態について、図面に沿って詳細に説明する。図1には、本実施形態におけるレンズユニットの断面図を示している。なお、図1はレンズユニットの断面図のうち右半分のみを示している。この図に示すように本実施形態におけるレンズユニットは、レンズ1を鏡筒2で保持し一体化してなるように構成されている。   Embodiments of the present invention will be described in detail with reference to the drawings. FIG. 1 shows a cross-sectional view of the lens unit in the present embodiment. FIG. 1 shows only the right half of the cross-sectional view of the lens unit. As shown in this figure, the lens unit in the present embodiment is configured such that the lens 1 is held by a lens barrel 2 and integrated.

レンズ1は、透明な樹脂材によって形成されており、中央部が光学的に機能するレンズ面10として構成され、その周囲部には鏡筒2に対して当接し保持されるための鍔部11が形成されている。鏡筒2は、非透明な樹脂材によって形成されており、鍔部11の周面を保持する周面部20と、周面部20の一端から内周側に向かって延びるように形成された平面部21とからなっている。   The lens 1 is formed of a transparent resin material, and a central portion is configured as a lens surface 10 that functions optically. A peripheral portion 11 is a flange portion 11 that is in contact with and held by the lens barrel 2. Is formed. The lens barrel 2 is formed of a non-transparent resin material, and includes a peripheral surface portion 20 that holds the peripheral surface of the flange portion 11 and a flat surface portion that extends from one end of the peripheral surface portion 20 toward the inner peripheral side. 21.

レンズ1の鍔部11は、鏡筒2の周面部20に当接し保持される周面保持部13と、鏡筒2の平面部21に当接し保持される突出部14とを有している。周面保持部13の外周面13aは、鏡筒2の周面部20の内周面20aに当接している。一方で周面保持部13の内周面13bは、外周面13aと対向し、かつレンズ面10側に面している。   The flange portion 11 of the lens 1 has a peripheral surface holding portion 13 that is in contact with and held by the peripheral surface portion 20 of the lens barrel 2, and a protruding portion 14 that is in contact with and held by the flat surface portion 21 of the lens barrel 2. . The outer peripheral surface 13 a of the peripheral surface holding portion 13 is in contact with the inner peripheral surface 20 a of the peripheral surface portion 20 of the lens barrel 2. On the other hand, the inner peripheral surface 13b of the peripheral surface holding portion 13 faces the outer peripheral surface 13a and faces the lens surface 10 side.

周面保持部13の内周面13bは、レンズ面10側の端部から鍔部11の先端部にかけて傾斜状となるように形成されている。具体的には、レンズ面10側端部から鍔部11の先端側端部に向かって、内周面13bの内周径が大きくなる方向の傾斜面状に形成されている。これにより、内周面13bはレンズ面10側でかつ図中やや斜め上方に向かって面するようになっている。   The inner peripheral surface 13b of the peripheral surface holding portion 13 is formed so as to be inclined from the end portion on the lens surface 10 side to the distal end portion of the flange portion 11. Specifically, it is formed in an inclined surface shape in a direction in which the inner peripheral diameter of the inner peripheral surface 13b increases from the end portion on the lens surface 10 side toward the front end side end portion of the flange portion 11. Thereby, the inner peripheral surface 13b faces the lens surface 10 side and slightly obliquely upward in the figure.

レンズ1の周面保持部13と鏡筒2の周面部20は、接合部30により接合固定されている。接合部30は、レーザ接合により、鏡筒2の周面部20の内周面20aがレンズ1の周面保持部13側と接合された状態となっており、これによってレンズ1と鏡筒2とを固定している。   The peripheral surface holding portion 13 of the lens 1 and the peripheral surface portion 20 of the lens barrel 2 are bonded and fixed by a bonding portion 30. The joining portion 30 is in a state in which the inner peripheral surface 20a of the peripheral surface portion 20 of the lens barrel 2 is joined to the peripheral surface holding portion 13 side of the lens 1 by laser bonding, thereby the lens 1 and the lens barrel 2 are connected to each other. Is fixed.

接合部30を形成するためのレーザ光は、図1の仮想線3に沿って照射される。仮想線3は、レンズ1の周面保持部13の内周面13bに対して垂直となる当該内周面13bの法線であって、接合部30の位置を通る線である。仮想線3は、内周面13bの法線であることから、その傾斜角度によってその角度が決まり、内周面13bの傾斜角度は仮想線3がレンズ面10と交差しないように設定される。これによりレーザ光を、レンズ面10と干渉することなく、透明なレンズ1の周面保持部13を介して、接合部30となる鏡筒2の内周面20aに照射することができる。   Laser light for forming the joint portion 30 is irradiated along the virtual line 3 in FIG. The imaginary line 3 is a normal line of the inner peripheral surface 13 b that is perpendicular to the inner peripheral surface 13 b of the peripheral surface holding portion 13 of the lens 1, and is a line that passes through the position of the joint portion 30. Since the imaginary line 3 is a normal line of the inner peripheral surface 13 b, the angle is determined by the inclination angle, and the inclination angle of the inner peripheral surface 13 b is set so that the imaginary line 3 does not intersect the lens surface 10. As a result, the laser light can be applied to the inner peripheral surface 20 a of the lens barrel 2 serving as the joint portion 30 through the peripheral surface holding portion 13 of the transparent lens 1 without interfering with the lens surface 10.

レーザ光は、傾斜状に形成されたレンズ1の周面保持部13の内周面13bに対して略垂直に入射するように、レンズユニットに対して傾斜状に照射されるので、レーザ光がレンズ1の周面保持部13に入射し反射することによる損失を最低限に抑えることができ、確実に鏡筒2の内周面20aを加熱して溶融させることができる。例えば鏡筒2はポリカーボネートで、レンズ1をアクリル樹脂とすることにより、これらをレーザ光の照射により溶着させ接合することができる。   Since the laser light is applied to the lens unit in an inclined manner so as to be incident substantially perpendicular to the inner peripheral surface 13b of the peripheral surface holding portion 13 of the lens 1 formed in an inclined shape, the laser light is emitted. Loss caused by entering and reflecting the peripheral surface holding portion 13 of the lens 1 can be minimized, and the inner peripheral surface 20a of the lens barrel 2 can be reliably heated and melted. For example, the lens barrel 2 is made of polycarbonate, and the lens 1 is made of acrylic resin, so that these can be welded and bonded together by irradiation with laser light.

このようなレンズユニットを製造するには、予め樹脂成形によりレンズ面10及び鍔部11を有したレンズ1を形成すると共に、レンズ1を納められるように鏡筒2を形成しておき、レンズ1を鏡筒2内に納め、鍔部11の内周面13bに対して略垂直方向となる仮想線3に沿ってレーザ光を照射し、鍔部11の外周面13aと鏡筒2の内周面20aとをレーザ接合することにより接合部30を形成する。これによってレンズ1と鏡筒2とを一体化し、本実施形態のレンズユニットを完成する。   In order to manufacture such a lens unit, the lens 1 having the lens surface 10 and the flange portion 11 is formed in advance by resin molding, and the lens barrel 2 is formed so that the lens 1 can be accommodated. Is placed in the lens barrel 2 and irradiated with laser light along an imaginary line 3 that is substantially perpendicular to the inner peripheral surface 13b of the collar portion 11, so that the outer peripheral surface 13a of the collar portion 11 and the inner circumference of the lens barrel 2 are irradiated. The joint portion 30 is formed by laser joining the surface 20a. As a result, the lens 1 and the lens barrel 2 are integrated to complete the lens unit of this embodiment.

このように、レンズ1と鏡筒2を周面でレーザ接合するようにしたので、レンズ1を径方向に大きくすることなく確実に鏡筒2と接合させることができ、レンズユニットの径方向における小型化を図ることができる。   Thus, since the lens 1 and the lens barrel 2 are laser-bonded on the peripheral surface, the lens 1 can be reliably bonded to the lens barrel 2 without enlarging in the radial direction, and the lens unit in the radial direction of the lens unit. Miniaturization can be achieved.

図2には鍔部11の内周面13bが傾斜していない場合におけるレンズユニットの断面図を示している。この図に示すように、鍔部11の内周面13bが傾斜していない場合には、内周面13bに対して垂直な方向、すなわちレンズ1の径方向と平行な方向にレーザ光を照射することとなる。この場合には、レーザ光による加熱幅を充分にとるため、鍔部11及びそれを保持する鏡筒2を、光軸方向に長く形成する必要があり、レンズユニットの薄型化を阻害することとなる。本発明のレンズユニットは、鍔部11の内周面13bが傾斜状に形成されていることにより、レーザ光をレンズユニットに対して傾斜した方向から照射することができ、レンズ1の鍔部11と鏡筒2を光軸方向に長くしなくても、充分な加熱幅をとることができるので、レンズユニットの光軸方向における小型化、すなわち薄型化を図ることができる。   FIG. 2 shows a cross-sectional view of the lens unit when the inner peripheral surface 13b of the flange 11 is not inclined. As shown in this figure, when the inner peripheral surface 13b of the flange 11 is not inclined, the laser beam is irradiated in a direction perpendicular to the inner peripheral surface 13b, that is, in a direction parallel to the radial direction of the lens 1. Will be. In this case, in order to sufficiently take the heating width by the laser light, it is necessary to form the flange portion 11 and the lens barrel 2 that holds the flange portion 11 in the optical axis direction, which hinders the thinning of the lens unit. Become. In the lens unit of the present invention, since the inner peripheral surface 13b of the flange portion 11 is formed in an inclined shape, it is possible to irradiate laser light from a direction inclined with respect to the lens unit. In addition, a sufficient heating width can be obtained without lengthening the lens barrel 2 in the optical axis direction, so that the lens unit can be reduced in size in the optical axis direction, that is, thinner.

次に、本発明の第2の実施形態について説明する。図3には、本実施形態におけるレンズユニットの断面図を示している。本実施形態のレンズユニットの構成は、第1の実施形態のレンズユニットと概ね共通するので、当該共通する点についての説明は省略する。   Next, a second embodiment of the present invention will be described. FIG. 3 shows a cross-sectional view of the lens unit in the present embodiment. Since the configuration of the lens unit of the present embodiment is generally the same as that of the lens unit of the first embodiment, description of the common points is omitted.

図3に示すように、レンズ1の周面保持部13の外周面13aは、周面保持部13の内周面13bと平行となるような傾斜面状に形成されている。また、周面保持部13の外周面13aが当接する鏡筒2の内周面20aも、周面保持部13の内周面13bと平行となるような傾斜面状に形成されている。レーザ光が照射される向きを示す仮想線3は、第1の実施形態と同様である。   As shown in FIG. 3, the outer peripheral surface 13 a of the peripheral surface holding portion 13 of the lens 1 is formed in an inclined surface shape that is parallel to the inner peripheral surface 13 b of the peripheral surface holding portion 13. Further, the inner peripheral surface 20 a of the lens barrel 2 in contact with the outer peripheral surface 13 a of the peripheral surface holding portion 13 is also formed in an inclined surface shape that is parallel to the inner peripheral surface 13 b of the peripheral surface holding portion 13. The virtual line 3 indicating the direction in which the laser beam is irradiated is the same as in the first embodiment.

本実施形態のレンズユニットは、図3に示すような構成を有していることにより、接合部30がレーザ光に対して略垂直となるため、接合部30におけるレーザ光の反射を低減することができ、より効率よくレーザ光により加熱して接合を行うことができる。   Since the lens unit of the present embodiment has a configuration as shown in FIG. 3, the joining portion 30 is substantially perpendicular to the laser light, so that reflection of the laser light at the joining portion 30 is reduced. It is possible to perform bonding by heating with laser light more efficiently.

以上、本発明の実施形態について説明したが、本発明の適用はこれら実施形態には限られず、その技術的思想の範囲内において様々に適用されうるものである。例えば、これら実施形態においては、レンズ1が鏡筒2に1枚納められたものについて示したが、複数枚のレンズ1が鏡筒2に納められるものについても、本発明を適用することができる。   As mentioned above, although embodiment of this invention was described, application of this invention is not restricted to these embodiment, It can apply variously within the range of the technical idea. For example, in these embodiments, one lens 1 is stored in the lens barrel 2, but the present invention can also be applied to a lens in which a plurality of lenses 1 are stored in the lens barrel 2. .

第1の実施形態におけるレンズユニットの断面図である。It is sectional drawing of the lens unit in 1st Embodiment. 鍔部の内周面が傾斜していない場合におけるレンズユニットの断面図である。It is sectional drawing of a lens unit in case the inner peripheral surface of a collar part is not inclined. 第2の実施形態におけるレンズユニットの断面図である。It is sectional drawing of the lens unit in 2nd Embodiment.

符号の説明Explanation of symbols

1 レンズ
2 鏡筒
10 レンズ面
11 鍔部
13 周面保持部
13a 外周面
13b 内周面
14 突出部
20 周面部
20a 内周面
21 平面部
30 接合部
DESCRIPTION OF SYMBOLS 1 Lens 2 Lens tube 10 Lens surface 11 Grow part 13 Peripheral surface holding | maintenance part 13a Outer peripheral surface 13b Inner peripheral surface 14 Projection part 20 Peripheral surface part 20a Inner peripheral surface 21 Planar part 30 Joint part

Claims (5)

透明な樹脂材からなるレンズと、該レンズを納める鏡筒とからなるレンズユニットにおいて、
前記レンズは光学的に機能するレンズ面と、該レンズ面の周囲部に形成され前記鏡筒の内周面に保持される鍔部とを有してなり、該鍔部は前記鏡筒の内周面に当接する外周面部と、該外周面部と対向し前記レンズ面側に面する内周面部とを備え、該内周面部は前記レンズ面側端部から前記鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成されると共に、前記鍔部の外周面部と鏡筒の内周面はレーザ接合されてなることを特徴とするレンズユニット。
In a lens unit composed of a lens made of a transparent resin material and a lens barrel for housing the lens,
The lens includes a lens surface that functions optically, and a flange formed on a peripheral portion of the lens surface and held on an inner peripheral surface of the lens barrel. An outer peripheral surface portion that contacts the peripheral surface, and an inner peripheral surface portion facing the outer peripheral surface portion and facing the lens surface side, the inner peripheral surface portion extending from the lens surface side end portion to the distal end side end portion of the flange portion. The lens unit is characterized by being formed in an inclined surface shape in which the inner peripheral diameter increases toward the inner side, and the outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-bonded.
前記鏡筒の内周面及び該内周面に当接する前記鍔部の外周面部は前記鍔部の内周面部と略平行な傾斜面状に形成されることを特徴とする請求項1記載のレンズユニット。   2. The inner peripheral surface of the lens barrel and the outer peripheral surface portion of the flange portion contacting the inner peripheral surface are formed in an inclined surface shape substantially parallel to the inner peripheral surface portion of the flange portion. Lens unit. 前記鍔部の内周面部は、該内周面部の法線でかつ前記鍔部の外周面部と鏡筒の内周面がレーザ接合される位置を通る仮想線が、前記レンズ面と交差しないような傾斜角度を有することを特徴とする請求項1または2記載のレンズユニット。   The inner peripheral surface portion of the collar portion is such that a virtual line passing through a position where the outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-bonded is not intersected with the lens surface. The lens unit according to claim 1, wherein the lens unit has an inclined angle. 透明な樹脂材からなるレンズと、該レンズを納める鏡筒とからなるレンズユニットの製造方法において、
前記レンズには光学的に機能するレンズ面と、該レンズ面の周囲部に設けられ前記鏡筒の内周面に保持される鍔部とを形成し、該鍔部には前記鏡筒の内周面に当接する外周面部と、該外周面部と対向し前記レンズ面側に面する内周面部とを形成すると共に、該内周面部を前記レンズ面側端部から前記鍔部の先端側端部に向かって内周径が大きくなる方向の傾斜面状に形成し、
前記レンズを前記鏡筒内に納め、前記鍔部の内周面部に対して略垂直方向からレーザ光を照射し、前記鍔部の外周面部と鏡筒の内周面とをレーザ接合することを特徴とするレンズユニットの製造方法。
In a method of manufacturing a lens unit comprising a lens made of a transparent resin material and a lens barrel for housing the lens,
The lens has an optically functioning lens surface and a flange provided around the lens surface and held on the inner peripheral surface of the lens barrel. Forming an outer peripheral surface portion contacting the peripheral surface and an inner peripheral surface portion facing the outer peripheral surface portion and facing the lens surface side, and extending the inner peripheral surface portion from the lens surface side end portion to the distal end side end of the flange portion Forming an inclined surface in the direction of increasing the inner diameter toward the part,
The lens is housed in the lens barrel, laser light is irradiated from a substantially perpendicular direction to the inner peripheral surface portion of the collar portion, and the outer peripheral surface portion of the collar portion and the inner peripheral surface of the lens barrel are laser-joined. A method for manufacturing a lens unit.
前記鏡筒の内周面及び該内周面に当接する前記鍔部の外周面部を前記鍔部の内周面部と略平行な傾斜面状に形成することを特徴とする請求項4記載のレンズユニットの製造方法。   The lens according to claim 4, wherein an inner peripheral surface of the lens barrel and an outer peripheral surface portion of the flange portion contacting the inner peripheral surface are formed in an inclined surface shape substantially parallel to the inner peripheral surface portion of the flange portion. Unit manufacturing method.
JP2008025862A 2008-02-06 2008-02-06 Lens unit and method of manufacturing the same Withdrawn JP2009186699A (en)

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CNA2009100061377A CN101504481A (en) 2008-02-06 2009-02-03 Lens apparatus and manufacturing method thereof

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JPWO2016084390A1 (en) * 2014-11-27 2017-04-27 京セラ株式会社 Lens, lens unit and imaging device
WO2022124186A1 (en) * 2020-12-09 2022-06-16 株式会社小糸製作所 Lens structure

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TWI453485B (en) * 2012-04-03 2014-09-21 Largan Precision Co Ltd An optical lens assembly and a laser welding method used for the same
CN104678463A (en) 2013-11-28 2015-06-03 玉晶光电(厦门)有限公司 Optical lens, mold for manufacturing lens and manufacturing method
JP6445218B2 (en) * 2016-03-29 2018-12-26 富士フイルム株式会社 Lens unit
KR20220056698A (en) * 2020-10-28 2022-05-06 삼성전기주식회사 Camera Module

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Publication number Priority date Publication date Assignee Title
JPWO2016084390A1 (en) * 2014-11-27 2017-04-27 京セラ株式会社 Lens, lens unit and imaging device
WO2022124186A1 (en) * 2020-12-09 2022-06-16 株式会社小糸製作所 Lens structure

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