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    • 3. 发明授权
    • Lighted exterior rearview mirror system
    • 照明外部后视镜系统
    • US07997777B2
    • 2011-08-16
    • US12854481
    • 2010-08-11
    • Todd W. PastrickLinda K. MolenkampRoger L. Koops
    • Todd W. PastrickLinda K. MolenkampRoger L. Koops
    • B60Q1/34B60R1/12G02B7/192H05B1/00
    • B60Q1/2665B60Q2900/30B60R1/1207B60R21/12B60R2001/1284Y10S362/802
    • A lighted exterior rearview mirror system includes an exterior rearview mirror assembly including a reflective element and an electrically-operable actuator. The exterior rearview mirror assembly includes a breakaway joint assembly. The reflective element has an electrically powered heater operable to remove ice or dew from the reflective element. The exterior rearview mirror assembly includes a turn signal indicator lamp that has a light source and a lens. The lamp is included in the exterior rearview mirror assembly and unaffected by operation of the actuator. The breakaway joint assembly includes a wire-way through which a wire cable passes. The wire cable includes wires for operating the actuator, the heater and the lamp. The lens of the lamp has a portion that faces rearward of the vehicle and a portion that wraps around an outward side of a casing of the exterior rearview mirror assembly.
    • 照明的外部后视镜系统包括包括反射元件和电动可操作致动器的外部后视镜组件。 外部后视镜组件包括分离接头组件。 反射元件具有电动加热器,其可操作以从反射元件去除冰或露水。 外部后视镜组件包括具有光源和透镜的转向信号指示灯。 灯具包含在外后视镜组件中,不受执行器的操作影响。 分离接头组件包括电线通过的线路。 线缆包括用于操作致动器,加热器和灯的线。 灯的透镜具有面向车辆后方的部分和围绕外部后视镜组件的壳体的外侧的部分。
    • 7. 发明申请
    • TEMPERATURE-CONTROL DEVICE FOR AN OPTICAL ASSEMBLY
    • 用于光学组件的温度控制装置
    • US20110181851A1
    • 2011-07-28
    • US13049703
    • 2011-03-16
    • Armin SchoeppachTimo Laufer
    • Armin SchoeppachTimo Laufer
    • G03B27/54G02B7/00G02B7/192
    • G02B7/1815G03F7/70825G03F7/70891
    • A temperature-control device is used for controlling the temperature of an optical assembly with at least one optical body, the temperature of which is to be controlled, with at least one optical surface which can be acted upon by a heat flow. The temperature-control device has a heat sink to receive a heat flow, which is emitted by the optical body or a transmission body which is in thermal connection with the optical body. The heat sink is arranged adjacent to a peripheral region of the optical surface. The temperature-control device has a heating mechanism with at least one heating body, which is arranged adjacent to the optical body. The heating body is connected via a physical heat bridge to the heat sink.
    • 使用温度控制装置来控制具有至少一个光学体的光学组件的温度,该光学体的温度被控制,其中至少一个光学表面可被热流作用。 温度控制装置具有散热器以接收由光学体或与光学体热连接的透射体发射的热流。 散热器布置成与光学表面的周边区域相邻。 温度控制装置具有加热机构,该加热机构具有与光学体相邻配置的至少一个加热体。 加热体通过物理热桥连接到散热器。
    • 8. 发明授权
    • Light pulse multiprocessing unit, light pulse generator using the same, and light pulse multiprocessing method
    • 光脉冲多处理单元,光脉冲发生器使用相同,以及光脉冲多处理方法
    • US07771066B2
    • 2010-08-10
    • US11723848
    • 2007-03-22
    • Mitsuru NamikiYuji Sakai
    • Mitsuru NamikiYuji Sakai
    • G02B5/08G02B7/192G02B7/182
    • B23K26/0622A61B5/0059
    • A light pulse multiprocessing unit has a half mirror and N delay elements, each having a refractive index n. The N delay elements are arranged on one side of the half mirror from one end of the half mirror toward the other end and have thicknesses Δ, 2Δ, . . . , 2N−1Δ different from each other, where Δ is the smallest thickness. The half mirror is placed in parallel in the proximity of an intermediate position between two mirrors and the N delay elements are arranged between one of the mirrors and the half mirror. Each of the N delay elements is a plane-parallel plate and is placed at an angle such that the direction of the normal line of the surface of the plane-parallel plate is different from a direction followed from one end of the half mirror toward the other end.
    • 光脉冲多处理单元具有半反射镜和N个延迟元件,每个具有折射率n。 N个延迟元件布置在半反射镜的一侧,半反射镜的一端朝向另一端,并具有厚度Dgr,2和Dgr。 。 。 ,2N-1&Dgr; 彼此不同,其中&Dgr; 是最小的厚度。 半反射镜平行放置在两个反射镜之间的中间位置附近,并且N个延迟元件布置在反射镜之一和半反射镜之间。 N个延迟元件中的每一个是平面平行板,并且被设置成使得平面平行板的表面的法线的方向与从半反射镜的一端朝向 另一端
    • 10. 发明申请
    • Suspension for maintaining mirror flatness of a MEMS device in a scanner systenm or the like
    • 用于维持扫描器系统等中的MEMS器件的镜面平坦度的悬架
    • US20080266630A1
    • 2008-10-30
    • US11796533
    • 2007-04-26
    • Dean R. BrownWyatt O. DavisJason B. TauscherDavid R. Bowman
    • Dean R. BrownWyatt O. DavisJason B. TauscherDavid R. Bowman
    • G02B7/192G02B26/10
    • G02B26/085
    • Briefly, in accordance with one or more embodiments, a MEMS device may comprise a coil frame having a drive coil disposed thereon and being supported by one or more suspension arms disposed along an axis of the coil frame, and a mirror platform having a mirror disposed thereon. The mirror platform may be coupled to the coil frame at connection points generally disposed along the axis in order to reduce deflection of the mirror platform to reduce stress on the mirror in order to maintain the relative flatness of the mirror surface. Furthermore, the mirror platform may include flexible members disposed near an edge of the mirror platform generally along the axis to isolate the mirror platform and the mirror from warping of the coil frame and twist of the suspension arms to further maintain the relative flatness of the mirror.
    • 简而言之,根据一个或多个实施例,MEMS装置可以包括线圈框架,其具有设置在其上的驱动线圈并且由沿着线圈框架的轴线设置的一个或多个悬架臂支撑,以及具有布置的反射镜平台 上。 镜平台可以在通常沿着轴线设置的连接点处耦合到线圈框架,以便减少镜台的偏转,以减小反射镜上的应力,以便保持镜面的相对平坦度。 此外,反射镜平台可以包括大致沿着轴线设置在反射镜平台的边缘附近的柔性部件,以隔离反射镜平台和反射镜以避免线圈框架翘曲和悬挂臂的扭转,以进一步保持镜子的相对平坦度 。