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    • 43. 发明授权
    • Dynamic optical beam steering
    • 动态光束转向
    • US5067829A
    • 1991-11-26
    • US579513
    • 1990-09-10
    • James E. JaskieMichael S. LebbyFred V. Richard
    • James E. JaskieMichael S. LebbyFred V. Richard
    • G02B26/08G02F1/29
    • G02B26/0816G02F1/29
    • A system for dynamically steering a light beam alters the path of a light beam using refraction. The light beam passes through multiple layers of optically transparent elastic material. Electrodes are attached to the bottom and top surfaces of the optically transparent layers. Voltages applied to the electrodes cause the optically transparent layers to deform. This deformation causes a change in the angle at which the light beam intercepts the surfaces of the optically transparent layers. The light beam is refracted based upon the angle of intercept and the index of refraction of the optically transparent layers. The direction of travel of the light beam can thus be controlled by varying the voltages across the electrodes.
    • 用于动态地转向光束的系统利用折射来改变光束的路径。 光束通过多层光学透明的弹性材料。 电极附着在光学透明层的底表面和顶表面上。 施加到电极的电压导致光学透明层变形。 这种变形导致光束截取光学透明层的表面的角度的变化。 基于截取角度和光学透明层的折射率折射光束。 因此,可以通过改变电极两端的电压来控制光束的行进方向。
    • 45. 发明授权
    • Self eject latch mechanism for an optical transceiver module
    • 用于光收发模块的自弹出锁定机构
    • US06966703B1
    • 2005-11-22
    • US10769967
    • 2004-02-02
    • Michael S. LebbySamuel Ho
    • Michael S. LebbySamuel Ho
    • G02B6/36G02B6/42H04B10/00
    • G02B6/4292G02B6/4201G02B6/4261
    • An actuator-based latching/delatching mechanism in combination with an optical module includes a housing having a front face with an opening and an optical transceiver designed to be nestingly engaged in the opening. A front surface of the transceiver is flush with the face of the housing in a fully nestingly engaged orientation. A pivot arm is pivotally mounted adjacent a rear end of the housing for pivotal movement between a latching orientation in which the transceiver is fully nestingly engaged in the housing and a delatching orientation in which a force pivots the arm against the transceiver to move the transceiver out of the engaged orientation. An actuator, with an end accessible exterior of the housing, is mounted in the housing for movements from latching to delatching orientations in response to a force applied to the end of the actuator.
    • 与光学模块结合的基于致动器的闭锁/去拾取机构包括具有开口的前表面的壳体和设计成嵌合在开口中的光学收发器。 收发器的前表面以完全嵌套的方向与壳体的表面齐平。 枢轴臂邻近壳体的后端可枢转地安装,用于在闭锁方向之间枢转运动,其中收发器完全嵌套在壳体中,并且其中力将臂相对于收发器枢转以使收发器移动 的接合方向。 具有壳体的端部可接近外部的致动器被安装在壳体中,用于响应于施加到致动器的端部的力而从锁定到拾取方向的运动。
    • 48. 发明授权
    • Perishable media information storage mechanism and method of fabrication
    • 易腐媒体信息存储机制及制作方法
    • US06228440B1
    • 2001-05-08
    • US09124174
    • 1998-07-28
    • Conan B. DaileyMichael S. Lebby
    • Conan B. DaileyMichael S. Lebby
    • C09K1900
    • G11B23/281G11B7/0037G11B7/244G11B7/246G11B7/247G11B7/2472G11B7/25G11B7/2534G11B7/2542G11B7/258G11B7/2585G11B7/259G11B7/2595G11B20/00086Y10S428/913Y10T428/10
    • A perishable media information storage mechanism, including a substrate, a data layer for recording data thereon the information storage mechanism, a reflective layer, and a protective lacquer coating. The data layer includes a material responsive to at least one predetermined data elimination factor and includes one of a decayable dye material, a liquid crystal material, a photosensitive material or a plurality of magnetoresistive memory cells. The data layer is characterized as recording data and eliminating access to data in response to at least one of a predetermined use or time factor. In addition, included is a method for fabricating a perishable media information storage mechanism including the steps of providing a substrate, forming a data layer on a surface of the substrate, forming a reflective layer on an uppermost surface of the data layer, and forming a protective coating on an uppermost surface of the reflective layer.
    • 一种易腐媒体信息存储机构,包括基板,用于在其上记录信息的数据层,信息存储机构,反射层和保护漆涂层。 数据层包括响应于至少一个预定数据消除因子的材料,并且包括可衰变的染料材料,液晶材料,感光材料或多个磁阻存储器单元之一。 数据层被表征为记录数据,并且响应于预定使用或时间因素中的至少一个而消除对数据的访问。 此外,包括一种用于制造易腐坏介质信息存储机构的方法,包括以下步骤:提供基板,在基板的表面上形成数据层,在数据层的最上表面上形成反射层,并形成 保护涂层在反射层的最上表面上。