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    • 1. 发明申请
    • CAMERA MODULE
    • 相机模块
    • US20100142066A1
    • 2010-06-10
    • US12598818
    • 2009-01-22
    • Takahiro OkabeYasutaka TakahashiNoritoshi EguchiMitsuru Ichikawa
    • Takahiro OkabeYasutaka TakahashiNoritoshi EguchiMitsuru Ichikawa
    • G02B7/04
    • G02B7/025G02B7/08
    • A lens holding member (30) is molded by filling a molten synthetic resin from a gate of a mold into a product cavity, and a portion corresponding to the gate of the mold for molding remains thereon as a gate portion (72). By mounting a coil (52) on a rear cylindrical face (60), an adhesive filling recess (70) that opens in a direction parallel to an optical axis of an image pickup optical system (28) is defined by a center face (66), side faces (68) standing from both sides of the center face (66), an outer face (58), and an inner peripheral surface of the coil (52). The gate portion (72) is provided on the center face (66) of the adhesive filling recess (70). By filling the adhesive filling recess (74) with adhesive B, an outer peripheral portion of the lens holding member (30) and an inner peripheral portion of the coil (52) are bonded together, and the gate portion (72) is buried in the adhesive B. These provide a camera module that is advantageous in effectively preventing dust from being generated from the gate portion without necessitating any special treatment process.
    • 通过将熔融的合成树脂从模具的浇口填充到产品空腔中而成型透镜保持构件(30),并且与模具的浇口相对应的部分保留在其上作为浇口部分(72)。 通过将线圈(52)安装在后圆柱面(60)上,沿着与摄像光学系统(28)的光轴平行的方向开口的粘合剂填充凹部(70)由中心面(66 ),从中心面(66)的两侧立起的侧面(68),外面(58)和线圈(52)的内周面。 门部分(72)设置在粘合剂填充凹口(70)的中心面(66)上。 通过用粘合剂B填充粘合剂填充凹部(74),将透镜保持部件(30)的外周部分和线圈(52)的内周部分接合在一起,并将栅极部分(72)埋入 这些提供了一种相机模块,其有利地有效地防止从栅极部分产生灰尘,而不需要任何特殊的处理过程。
    • 2. 发明授权
    • Camera module
    • 相机模块
    • US07990635B2
    • 2011-08-02
    • US12598818
    • 2009-01-22
    • Takahiro OkabeYasutaka TakahashiNoritoshi EguchiMitsuru IchikawaSatoshi Imai
    • Takahiro OkabeYasutaka TakahashiNoritoshi EguchiMitsuru IchikawaSatoshi Imai
    • G02B27/00
    • G02B7/025G02B7/08
    • A lens holding member (30) is molded by filling a molten synthetic resin from a gate of a mold into a product cavity, and a portion corresponding to the gate of the mold for molding remains thereon as a gate portion (72). By mounting a coil (52) on a rear cylindrical face (60), an adhesive filling recess (70) that opens in a direction parallel to an optical axis of an image pickup optical system (28) is defined by a center face (66), side faces (68) standing from both sides of the center face (66), an outer face (58), and an inner peripheral surface of the coil (52). The gate portion (72) is provided on the center face (66) of the adhesive filling recess (70). By filling the adhesive filling recess (74) with adhesive B, an outer peripheral portion of the lens holding member (30) and an inner peripheral portion of the coil (52) are bonded together, and the gate portion (72) is buried in the adhesive B. These provide a camera module that is advantageous in effectively preventing dust from being generated from the gate portion without necessitating any special treatment process.
    • 通过将熔融的合成树脂从模具的浇口填充到产品空腔中而成型透镜保持构件(30),并且与模具的浇口相对应的部分保留在其上作为浇口部分(72)。 通过将线圈(52)安装在后圆柱面(60)上,沿着与摄像光学系统(28)的光轴平行的方向开口的粘合剂填充凹部(70)由中心面 ),从中心面(66)的两侧立起的侧面(68),外面(58)和线圈(52)的内周面。 门部分(72)设置在粘合剂填充凹口(70)的中心面(66)上。 通过用粘合剂B填充粘合剂填充凹部(74),将透镜保持部件(30)的外周部分和线圈(52)的内周部分接合在一起,并将栅极部分(72)埋入 这些提供了一种相机模块,其有利地有效地防止从栅极部分产生灰尘,而不需要任何特殊的处理过程。
    • 3. 发明授权
    • Variable power optical system and image-recording device
    • 可变功率光学系统和图像记录装置
    • US07554749B2
    • 2009-06-30
    • US10579210
    • 2005-09-12
    • Noritoshi EguchiTamotsu Nakano
    • Noritoshi EguchiTamotsu Nakano
    • G02B15/14G02B7/02G03B13/10
    • G02B15/14G02B7/08G02B17/0856
    • A variable power optical system composed of a first optical part (G1) for refraction, a second optical part (G2) for reflection or transmission, and a third optical part (G3) for refraction, with the first optical part being movable with respect to the second and third optical parts to change the focal length of the entire system, wherein the second optical part or the third optical part has a guide 4 which is in contact partly with the first optical part in such a way as to restrict its moving direction and the first optical part is movably held between the second optical part and the third optical part. This structure eliminates the necessity of separately forming the guide to move G1. The guide 4 is formed from a synthetic resin integrally with the stationary optical part (G3).
    • 一种由用于折射的第一光学部件(G1),用于反射或透射的第二光学部件(G2)和用于折射的第三光学部件(G3))组成的可变光焦度系统,所述第一光学部件可相对于 所述第二和第三光学部件改变整个系统的焦距,其中所述第二光学部件或所述第三光学部件具有引导件4,所述引导件4以与所述第一光学部件部分接触的方式限制其移动方向 并且第一光学部件可移动地保持在第二光学部件和第三光学部件之间。 这种结构消除了分开形成导轨以移动G1的必要性。 引导件4由与固定光学部件(G3)一体的合成树脂形成。
    • 5. 发明申请
    • Variable power optical system and image-recording device
    • 可变功率光学系统和图像记录装置
    • US20070115567A1
    • 2007-05-24
    • US10579210
    • 2005-09-12
    • Noritoshi EguchiTamotsu Nakano
    • Noritoshi EguchiTamotsu Nakano
    • G02B7/02
    • G02B15/14G02B7/08G02B17/0856
    • A variable power optical system composed of a first optical part (G1) for refraction, a second optical part (G2) for reflection or transmission, and a third optical part (G3) for refraction, with the first optical part being movable with respect to the second and third optical parts to change the focal length of the entire system, wherein the second optical part or the third optical part has a guide 4 which is in contact partly with the first optical part in such a way as to restrict its moving direction and the first optical part is movably held between the second optical part and the third optical part. This structure eliminates the necessity of separately forming the guide to move G1. The guide 4 is formed from a synthetic resin integrally with the stationary optical part (G3).
    • 由用于折射的第一光学部件(G 1),用于反射或透射的第二光学部件(G 2)和用于折射的第三光学部件(G 3)组成的可变光学系统,第一光学部件可移动 相对于第二光学部件和第三光学部件改变整个系统的焦距,其中第二光学部件或第三光学部件具有引导件4,引导件4以与第一光学部件部分接触的方式限制 其移动方向和第一光学部件可移动地保持在第二光学部件和第三光学部件之间。 该结构消除了单独形成导向件移动G 1的必要性。 引导件4由与固定光学部件(G 3)一体的合成树脂形成。