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    • 1. 发明授权
    • Glass lens array module with alignment member and manufacturing method thereof
    • 具有对准构件的玻璃透镜阵列模块及其制造方法
    • US08077394B2
    • 2011-12-13
    • US12640670
    • 2009-12-17
    • Chien-Min WuHsueh-Lin ChenBo-Hao ChangSan-Woei Shyu
    • Chien-Min WuHsueh-Lin ChenBo-Hao ChangSan-Woei Shyu
    • G02B27/10
    • G02B13/0085G02B3/0031G02B3/0062G02B3/0075
    • A glass lens array module with alignment fixture and a manufacturing method thereof are revealed. A glass lens array is produced by multi-cavity glass molding and alignment members are arranged on a peripheral of non-optical area of the glass lens array. Optical axis of each of two adjacent glass lens arrays is aligned by corresponding alignment members and the glass lens arrays are assembled by glue. A spacer is disposed between the two adjacent glass lens arrays to form a preset interval if needed. Thus a glass lens array module is formed after curing of the glue. Thereby the alignment of the optical axis of the glass lens is achieved easily and optical precision is also attained. Moreover, the manufacturing processes are simplified and the cost is reduced.
    • 揭示了具有对准夹具的玻璃透镜阵列模块及其制造方法。 玻璃透镜阵列通过多腔玻璃成型制造,并且对准构件布置在玻璃透镜阵列的非光学区域的周边上。 两个相邻的玻璃透镜阵列中的每一个的光轴由对应的对准构件对准,并且玻璃透镜阵列通过胶水组装。 如果需要,间隔件设置在两个相邻的玻璃透镜阵列之间以形成预设间隔。 因此,在固化胶之后形成玻璃透镜阵列模块。 由此,可以容易地实现玻璃透镜的光轴的对准,并且也可实现光学精度。 而且,制造工艺简化,成本降低。
    • 3. 发明授权
    • Molding glass lens and mold thereof
    • 成型玻璃透镜及其模具
    • US07771815B2
    • 2010-08-10
    • US11892950
    • 2007-08-28
    • San-Woei ShyuChia-Wei WangJau-Jan DengWen-Huang LiuChien-Min Wu
    • San-Woei ShyuChia-Wei WangJau-Jan DengWen-Huang LiuChien-Min Wu
    • B32B3/02B32B3/00B32B23/02G02B3/00G02B7/00G02B9/00G02B11/00
    • C03B11/08C03B2215/404C03B2215/49C03B2215/65Y10T428/21Y10T428/219Y10T428/24479Y10T428/24488Y10T428/24777
    • A molding glass lens and a mold thereof are disclosed. The molding glass lens consists of an upper optical surface, a lower optical surface, two outers surrounding the optical surfaces and at least three grooves arranged in the form of a circle disposed on the lower outer and/or the upper outer. The disposition of the grooves has no affecting in original size of the outers as well as assembling with other mechanical parts in les group. The mold of the lens includes an upper molding unit and a lower molding unit. Cavity of each molding unit is composed of a central part for forming an optical surface of the lens and an outer circular part for forming outer of the lens. At least three protrudent parts with the same height are disposed in the form of a circle on the outer circular of the lower molding unit and/or the upper molding unit. Thus the air in the mold cavity is easy to exhaust through the gap formed by protrudent parts and glass preform. Therefore, air bubbles generated during the molding processes are prevented and precision of the glass lens is provided.
    • 公开了一种成型玻璃透镜及其模具。 成型玻璃透镜由上光学表面,下光学表面,围绕光学表面的两个外部和设置在下外部和/或上部外部上的以圆形排列的至少三个凹槽组成。 凹槽的布置对外观的原始尺寸以及与les组中的其他机械部件的组装没有影响。 透镜的模具包括上模制单元和下模制单元。 每个模制单元的腔体由用于形成透镜的光学表面的中心部分和用于形成透镜外部的外部圆形部分组成。 具有相同高度的至少三个凸起部分以下部模制单元和/或上部模制单元的外圆周上的圆形形式设置。 因此,模腔中的空气容易通过突出部分和玻璃预制件形成的间隙排出。 因此,防止了在成型过程中产生的气泡并提供了玻璃透镜的精度。
    • 4. 发明授权
    • Rectangular monobloc optical lens and manufacturing method thereof
    • 矩形单块光学透镜及其制造方法
    • US07312933B2
    • 2007-12-25
    • US11403894
    • 2006-04-14
    • San-Woei ShyuChien-Min Wu
    • San-Woei ShyuChien-Min Wu
    • G02B17/00
    • G02B13/0025C03B11/08C03B2215/49G02B3/00
    • A rectangular monobloc optical lens and a manufacturing method thereof are disclosed. A monobloc optical lens includes a rectangular surround and a central mirror-surface area. The rectangular surround is mounted inside a clipping part of a lens holder. The central mirror-surface area consists of a convex aspherical surface and a concave aspherical surface while the convex aspherical surface faces an image side and the concave aspherical surface faces an object side. The manufacturing method includes the steps of: cutting a sheet made from glass material into a plurality of rectangular sheet units; then setting the rectangular sheet unit into a mold for lens for hot pressing. Thereby, the manufacturing process is simplified and the cost is reduced. Moreover, the lens has high resolution and the volume of the lens is effectively reduced so as to increase the applications of the lens.
    • 公开了一种矩形单体光学透镜及其制造方法。 单体光学透镜包括矩形环绕和中心镜面区域。 矩形环绕安装在透镜架的夹持部分内。 中央镜面区域由凸非球面和凹非球面组成,而凸非球面则面向像侧,而凹面非球面则面向物侧。 该制造方法包括以下步骤:将由玻璃材料制成的片材切割成多个矩形片单元; 然后将矩形片单元设置到用于热压的透镜用模具中。 由此,简化制造工序,降低成本。 此外,透镜具有高分辨率,并且有效地减小了透镜的体积,从而增加了透镜的应用。
    • 7. 发明授权
    • Lens displacement mechanism using shaped memory alloy
    • 透镜位移机构采用成形记忆合金
    • US08077411B2
    • 2011-12-13
    • US12010406
    • 2008-01-24
    • San-Woei ShyuShr-Bin WuChih-Hsiung Huang
    • San-Woei ShyuShr-Bin WuChih-Hsiung Huang
    • G02B7/02
    • G02B7/08
    • A lens displacement mechanism using shaped memory alloy (SMA) applied to an auto-focusing lens module is disclosed. The lens displacement mechanism comprising at least one SMA wire. Two opposite ends of the SMA wire are fixed and a longitudinal mid-point of an intermediate movable portion between the two opposite ends is tightened and is fixed on a corresponding hook disposed on an outer edge of the lens so that the intermediate movable portion is tightened between the two opposite ends. When the SMA wire is heated, the intermediate movable portion contracts to pull the hook of the lens for driving the lens to move and slide along with an optical axis so as to achieve auto-focus control. The present lens displacement mechanism is simple in structure and reflow process. Therefore, the present displacement mechanism is suitable to be used in portable camera or mobile phone or PDA, which needs to be small and have easily mass production by SMT.
    • 公开了一种应用于自动聚焦透镜模块的成形记忆合金(SMA)的透镜位移机构。 所述透镜位移机构包括至少一个SMA线。 SMA线的两个相对端被固定,并且两个相对端之间的中间可动部分的纵向中点被紧固并且固定在设置在透镜的外边缘上的相应的钩上,使得中间可动部分被紧固 在两个相对端之间。 当SMA线被加热时,中间可动部分收缩以拉动透镜的钩以驱动透镜与光轴一起移动和滑动,以实现自动对焦控制。 本发明的晶体位移机构结构简单,回流工艺简单。 因此,本发明的移动机构适用于便携式摄像机或移动电话或PDA,其需要较小且易于通过SMT大量生产。
    • 9. 发明申请
    • Tetra-mirror multi-reflection scanning module
    • 四镜多反射扫描模块
    • US20100328733A1
    • 2010-12-30
    • US12576555
    • 2009-10-09
    • Ai-Lien LaiChing-Yuan LinSan-Woei Shyu
    • Ai-Lien LaiChing-Yuan LinSan-Woei Shyu
    • H04N1/04
    • H04N1/03H04N1/02815H04N1/0287H04N1/0303H04N1/0305
    • The present invention discloses an image scanning module having four reflecting mirrors, the image scanning module comprises at least one source, four reflection mirrors, a pickup lens, an image sensor and a frame, wherein at least one of reflection mirror is multi-reflection along the optical path, satisfies the specific optical conditions. The TTL (total tracking length) can only be adjusted through the arrangement of the distance of the four reflecting mirrors and will not need to adjust through the angle of the four reflecting mirrors. Accordingly, the benefit of present invention not only increases the field of depth by increasing the total length of optical path in the limited space, but also be convenient to assemble respectively to different total tracking length.
    • 本发明公开了一种具有四个反射镜的图像扫描模块,该图像扫描模块包括至少一个源,四个反射镜,拾取透镜,图像传感器和框架,其中至少一个反射镜是沿着多反射 光路满足特定的光学条件。 TTL(总跟踪长度)只能通过四个反射镜的距离排列进行调整,不需要通过四个反射镜的角度进行调整。 因此,本发明的优点不仅通过在有限空间中增加光路的总长度而增加了深度的领域,而且还方便地分别组装到不同的总跟踪长度。
    • 10. 发明授权
    • Two-element f-θ lens used for micro-electro mechanical system (MEMS) laser scanning unit
    • 两元素f-&thetas; 用于微机电系统(MEMS)激光扫描单元的透镜
    • US07821721B2
    • 2010-10-26
    • US12424313
    • 2009-04-15
    • Bo-Yuan ShihSan-Woei Shyu
    • Bo-Yuan ShihSan-Woei Shyu
    • G02B9/00G02B26/08
    • G02B13/0005G02B9/10G02B26/0833
    • A two-element f-θ lens used for a micro-electro mechanical system (MEMS) laser scanning unit includes a first lens and a second lens, the first lens is a biconvex lens, the second lens is a meniscus lens of which the convex surface is disposed on a side of a MEMS mirror, at least one optical surface is an Aspherical surface in both main scanning direction and sub scanning direction, and satisfies special optical conditions. The two-element f-θ lens corrects the nonlinear relationship between scanned angle and the time into the linear relationship between the image spot distances and the time. Meanwhile, the two-element f-θ lens focuses the scan light to the target in the main scanning and sun scanning directions, such that the purpose of the scanning linearity effect and the high resolution scanning can be achieved.
    • 一个双元素f-&thetas; 用于微机电系统(MEMS)激光扫描单元的透镜包括第一透镜和第二透镜,第一透镜是双凸透镜,第二透镜是弯月透镜,其凸面设置在 MEMS反射镜,至少一个光学表面是主扫描方向和副扫描方向上的非球面,并且满足特殊的光学条件。 两元素f-&Thetas; 透镜将扫描角度与时间之间的非线性关系校正为图像点距离与时间之间的线性关系。 同时,双元素的F- 透镜在主扫描和太阳扫描方向上将扫描光聚焦到目标,使得可以实现扫描线性效应和高分辨率扫描的目的。