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    • 26. 发明申请
    • Miniaturized optical mouse core
    • 小型化光电鼠标芯
    • US20060284845A1
    • 2006-12-21
    • US11152169
    • 2005-06-15
    • Rong WuShih ChenShu Chang
    • Rong WuShih ChenShu Chang
    • G09G5/08
    • G06F3/0317
    • An optical mouse system with a high-angle optical path features small size and low power consumption. The illumination source and optical sensor are mounted in the same plane, directly on the PCB. The higher angle of the optical path causes more light to be reflected to the optical sensor, increasing optical efficiency and allowing a smaller, lower powered LED to be used. This also results in increased sensitivity of the optical sensor, allowing use of the mouse on surfaces on which conventional optical mice cannot function adequately. Sensitivity can be further increased by optional isolation of the optical sensor and illumination source. Lower power usage increases battery life for mobile or wireless-mouse use, while reducing thermal waste considerations. This allows the creation of a significantly smaller form factor for the overall package, thereby reducing materials costs and giving designers more flexibility for external design considerations.
    • 具有高角度光路的光学鼠标系统具有体积小,功耗低的特点。 照明源和光学传感器直接安装在同一平面上。 光路的较高角度导致更多的光被反射到光学传感器,提高光学效率并允许使用较小的较低功率的LED。 这还导致光学传感器的灵敏度增加,允许将鼠标用于常规光学鼠标不能充分发挥作用的表面上。 可以通过光学传感器和照明源的可选隔离来进一步提高灵敏度。 更低的功耗使移动或无线鼠标使用的电池寿命延长,同时减少了热废物的考虑。 这允许为整个包装创建一个明显较小的外形尺寸,从而降低材料成本,并为设计人员提供更多的外部设计考虑的灵活性。
    • 29. 发明授权
    • Method of fabricating a reclaimable uniform conditioning blotter roll
    • 制造可回收的均匀调理吸墨辊的方法
    • US5752144A
    • 1998-05-12
    • US625391
    • 1996-04-01
    • Joseph C. MamminoWilliam G. HerbertShu ChangTheodore C. Ludwig
    • Joseph C. MamminoWilliam G. HerbertShu ChangTheodore C. Ludwig
    • C25D1/02C25D1/08G03G15/11
    • C25D1/02C25D1/08G03G15/11G03G2215/017
    • A method of fabricating a blotter roll for uniformly conditioning liquid images consisting of toner particles and carrier liquid. The method includes electroforming a semi-rigid resilient and perforated metallic substrate for preventing undesirable impressions of substrate outlines and footprints on an image being conditioned. The resilient metallic substrate is electroformed so as to be seamless and to have a cylindrical hollow interior, and first and second open ends. The method next includes forming at least a first absorbent foam layer over the semi-rigid resilient substrate for absorbing carrier liquid from the image being conditioned, and filling the cylindrical hollow interior of the semi-rigid resilient substrate using a porous foam insert for rigidifying the semi-rigid resilient substrate, and for uniformly spreading throughout the hollow interior, vacuum effects on the image being conditioned, of a vacuum source connected to the hollow interior for drawing carrier liquid from the image being conditioned.
    • 一种制造用于均匀调理由调色剂颗粒和载体液体组成的液体图像的吸墨辊的方法。 该方法包括电铸半刚性弹性和穿孔的金属基底,用于防止正在调理的图像上的衬底轮廓和足迹的不期望的印象。 弹性金属基底被电铸以便是无缝的并且具有圆柱形的中空内部以及第一和第二开放端。 该方法接下来包括在半刚性弹性基底上形成至少第一吸收性泡沫层,用于从被调节的图像吸收载液,并使用多孔泡沫插入物填充半刚性弹性基底的圆柱形中空内部,以使 半刚性弹性基材,并且为了均匀地遍布整个中空内部,对连接到中空内部的真空源进行调节的图像的真空效应,用于从被调节的图像中抽取载体液体。
    • 30. 发明授权
    • Direct inkjet fabrication of drug delivery devices
    • 药物输送装置的直接喷墨制造
    • US09381154B2
    • 2016-07-05
    • US13156503
    • 2011-06-09
    • Jing ZhouShu Chang
    • Jing ZhouShu Chang
    • A61K9/20C09D11/34A61K9/00A61K9/24
    • A61K9/0056A61K9/209A61K9/2095B33Y30/00B33Y80/00
    • In some aspects of the present application, a method of forming one or more layers of at least a portion of a drug delivery device (DDD) is described. The method can include providing a substrate; providing one or more DDD components that are dissolved or dispersed in one or more pharmaceutically compatible phase change inks; ejecting, by one or more nozzles, a first portion of the one or more pharmaceutically compatible phase change inks to form a first layer on the substrate; and ejecting, by the one or more nozzles, a second portion of the pharmaceutically compatible phase change inks to form a second layer over the first layer.
    • 在本申请的一些方面,描述了形成药物递送装置(DDD)的至少一部分的一个或多个层的方法。 该方法可以包括提供基底; 提供溶解或分散在一种或多种药学上相容的相变油墨中的一种或多种DDD组分; 通过一个或多个喷嘴喷射所述一种或多种药学上相容的相变油墨的第一部分以在所述基底上形成第一层; 以及通过所述一个或多个喷嘴喷射所述药学上相容的相变油墨的第二部分,以在所述第一层上形成第二层。