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    • 1. 发明授权
    • Laser scanning unit
    • 激光扫描单元
    • US07190499B2
    • 2007-03-13
    • US10750757
    • 2004-01-05
    • Jau-Jan DengGuo-Zen ChenI-Lin ChuMing-Hua WenSan-Woei Shyu
    • Jau-Jan DengGuo-Zen ChenI-Lin ChuMing-Hua WenSan-Woei Shyu
    • G02B26/08
    • G02B26/0833B41J2/471Y10S359/904
    • A laser scanning unit mainly includes a semiconductor laser, a collimator, a micro electronic mechanic system (MEMS) oscillatory mirror, and an fθ lens or an f sin θ lens. The MEMS oscillatory mirror is disposed between the collimator and the fθ lens to replace a conventional rotary polygonal mirror for controlling a direction in which laser beams are projected from the oscillatory mirror to the fθ lens. With the MEMS oscillatory mirror, the cylindrical lens may be omitted from the laser scanning unit and noises produced by the polygonal mirror rotating at high speed may be avoided. Moreover, the MEMS oscillatory mirror allows bi-directional scanning to therefore enable increased scanning frequency, simplified structure, and improved scanning efficiency.
    • 激光扫描单元主要包括半导体激光器,准直仪,微电子机械系统(MEMS)振荡镜,以及ftheta透镜或fsinθ透镜。 MEMS振荡镜设置在准直器和透镜之间以替代传统的旋转多面镜,用于控制激光束从振荡镜投射到透镜的方向。 利用MEMS振荡镜,可以从激光扫描单元中省略柱面透镜,并且可以避免由高速旋转的多面镜产生的噪声。 此外,MEMS振荡镜允许双向扫描,因此能够增加扫描频率,简化结构,提高扫描效率。
    • 2. 发明申请
    • Laser scanning unit
    • 激光扫描单元
    • US20050146764A1
    • 2005-07-07
    • US10750757
    • 2004-01-05
    • Jau-Jan DengGuo-Zen ChenI-Lin ChuMing-Hua Wen
    • Jau-Jan DengGuo-Zen ChenI-Lin ChuMing-Hua Wen
    • G02B26/08
    • G02B26/0833B41J2/471Y10S359/904
    • A laser scanning unit mainly includes a semiconductor laser, a collimator, a micro electronic mechanic system (MEMS) oscillatory mirror, and an fθ lens or an fsin θ lens. The MEMS oscillatory mirror is disposed between the collimator and the fθ lens to replace a conventional rotary polygonal mirror for controlling a direction in which laser beams are projected from the oscillatory mirror to the fθ lens. With the MEMS oscillatory mirror, the cylindrical lens may be omitted from the laser scanning unit and noises produced by the polygonal mirror rotating at high speed may be avoided. Moreover, the MEMS oscillatory mirror allows bi-directional scanning to therefore enable increased scanning frequency, simplified structure, and improved scanning efficiency.
    • 激光扫描单元主要包括半导体激光器,准直仪,微电子机械系统(MEMS)振荡镜,以及ftheta透镜或fsinθ透镜。 MEMS振荡镜设置在准直器和透镜之间以替代传统的旋转多面镜,用于控制激光束从振荡镜投射到透镜的方向。 利用MEMS振荡镜,可以从激光扫描单元中省略柱面透镜,并且可以避免由高速旋转的多面镜产生的噪声。 此外,MEMS振荡镜允许双向扫描,因此能够增加扫描频率,简化结构,提高扫描效率。
    • 3. 发明申请
    • Micro electronic mechanical system oscillating laser scanning unit
    • 微电子机械系统振荡激光扫描单元
    • US20100046057A1
    • 2010-02-25
    • US11980799
    • 2007-10-31
    • San-Woei ShyuJau-Jan DengMing-Hua Wen
    • San-Woei ShyuJau-Jan DengMing-Hua Wen
    • G02B26/10
    • G02B26/105
    • A MEMS oscillating laser scanning unit (LSU) composed of a MEMS Control Module, a Pre-scan Module and a Post-scan Module is disclosed. The MEMS Control Module consists of a laser source and a MEMS oscillating mirror. The laser source and the MEMS oscillating mirror both are aligned with the same side, opposite to target surface so that laser beam emits from the side of the target surface, reverses by a reflection mirror of the Pre-scan Module and then moves along a plane formed by a central axis as well as an oscillatory rotary axis of the MEMS oscillating mirror, enters center of the MEMS oscillatory mirror. Thus, scanning spots on the target surface are all symmetrical to the central axis. Thus effective area of the MEMS oscillating mirror is reduced and further reduce the cost as well as improve scanning efficiency. Moreover, design of the fθ Lens is simpler and the volume of the LSU is reduced.
    • 公开了由MEMS控制模块,预扫描模块和后扫描模块组成的MEMS振荡激光扫描单元(LSU)。 MEMS控制模块由激光源和MEMS振荡镜组成。 激光源和MEMS振荡镜都与与靶表面相对的相同侧对准,使得激光束从目标表面的侧面发射,由预扫描模块的反射镜反转,然后沿着平面移动 由MEMS振荡镜的中心轴以及振荡旋转轴形成,进入MEMS振荡镜的中心。 因此,目标表面上的扫描点都与中心轴对称。 因此,MEMS振荡镜的有效面积减小,进一步降低成本并提高扫描效率。 而且,f&thetas的设计; 镜头更简单,并且LSU的音量减小。
    • 4. 发明授权
    • Method for measuring and assembling transceiver optical sub-assembly
    • 收发器光学子组件的测量和组装方法
    • US06851870B1
    • 2005-02-08
    • US10740677
    • 2003-12-22
    • Jau-Jan DengI-Lin ChuGuo-Zen Chen
    • Jau-Jan DengI-Lin ChuGuo-Zen Chen
    • G02B2/255
    • G02B6/4204G02B6/4221
    • In measuring and assembling a transceiver optical sub-assembly that includes a one-piece or two-piece housing having two opposite apertures separately for an optical fiber and a functional element to assemble thereto, and a lens located between the fiber and the functional element, an image sensor is aligned with the fiber aperture to set a focus on a fiber coupling plane in the housing, and a light spot presented on the fiber coupling plane by a laser beam emitted from the functional element through the lens, or an image of a light-emitting area or a receiving area of the functional element presented on the fiber coupling plane via the lens, is measured to adjust size and/or position thereof, so as to precisely align and fix the functional element to the housing.
    • 在测量和组装收发器光学子组件中,该收发器光学子组件包括具有单独用于光纤的两个相对的孔和用于组装的功能元件的一体式或两件式壳体,以及位于光纤与功能元件之间的透镜, 图像传感器与光纤孔径对准以将焦点设置在壳体中的光纤耦合平面上,并且通过通过透镜从功能元件发射的激光束在光纤耦合平面上呈现的光斑,或者图像 测量通过透镜在光纤耦合平面上呈现的功能元件的发光区域或接收区域以调整其尺寸和/或位置,以便将功能元件精确对准并固定到外壳。
    • 5. 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。
    • 8. 发明申请
    • LENS ARRAY FOR PARTITIONED IMAGE SENSOR
    • 用于分割图像传感器的镜头阵列
    • US20130320195A1
    • 2013-12-05
    • US13486787
    • 2012-06-01
    • Chia-Wei WangJau-Jan DengYun-Chiang Hsu
    • Chia-Wei WangJau-Jan DengYun-Chiang Hsu
    • H01L27/146
    • H01L27/14627H01L27/14625H01L31/02162H04N5/3415
    • An apparatus includes an image sensor having N image sensor regions arranged thereon. A lens array having a including N lens structures is disposed proximate to the image sensor. Each one of the N lens structures is arranged to focus a single image onto a respective one of the N image sensor regions. The N lens structures include a first lens structure having a first focal length and positioned the first focal length away from the respective one of the N image sensor regions. A second lens structure having a second focal length is positioned the second focal length away from the respective one of the N image sensor regions. A third lens structure having a third focal length is positioned the third focal length away from the respective one of the N image sensor regions. The first, second and third focal lengths are different.
    • 一种装置包括具有N个图像传感器区域的图像传感器。 具有N个透镜结构的透镜阵列设置在图像传感器附近。 N个透镜结构中的每一个被布置成将单个图像聚焦到N个图像传感器区域中的相应一个上。 N透镜结构包括具有第一焦距并且将第一焦距定位成远离N个图像传感器区域中的相应一个的第一透镜结构。 具有第二焦距的第二透镜结构被定位成远离N个图像传感器区域中的相应一个的第二焦距。 具有第三焦距的第三透镜结构被定位成离开N个图像传感器区域中的相应一个的第三焦距。 第一,第二和第三焦距是不同的。