Aperture plate and related system and method
    1.
    发明申请
    Aperture plate and related system and method 有权
    孔板及相关系统及方法

    公开(公告)号:US20060119919A1

    公开(公告)日:2006-06-08

    申请号:US11003179

    申请日:2004-12-03

    CPC classification number: G02B5/005 G02B26/0833

    Abstract: An aperture plate includes an opening and a surface adjacent to the opening. The opening passes electromagnetic energy such as light to a reflector that is aligned with the opening and that directs the electromagnetic energy to a location. The surface reflects incident electromagnetic energy away from the location in a direction that is outside of the range of directions. Such an aperture plate insures that electromagnetic energy, e.g., light, strikes only the desired portions of the reflector, and that peripheral light that is outside of the aperture opening is reflected away from the location, e.g., display screen, toward which the reflector directs the electromagnetic energy. Furthermore, because such an aperture plate is mounted near the reflector, the alignment tolerances are typically less stringent than for an aperture plate mounted near the energy source.

    Abstract translation: 孔板包括开口和与开口相邻的表面。 开口将诸如光的电磁能量传递到与开口对准的反射器,并将电磁能量引导到位置。 该表面反射入射电磁能远离位于方向范围之外的位置。 这样的孔板确保电磁能量(例如光)仅仅触发反射器的期望部分,并且位于孔径开口外部的周边光被反射离开反射器指向的位置,例如显示屏 电磁能量。 此外,由于这种孔板安装在反射器附近,所以对准公差通常不如安装在能量源附近的孔板更不严格。

    Scanned light display system using array of collimating elements in conjunction with large numerical aperture light emitter array
    3.
    发明申请
    Scanned light display system using array of collimating elements in conjunction with large numerical aperture light emitter array 审中-公开
    扫描光显示系统使用准直元件阵列与大数值孔径光发射器阵列相结合

    公开(公告)号:US20060061846A1

    公开(公告)日:2006-03-23

    申请号:US11200484

    申请日:2005-08-08

    CPC classification number: G02B26/0875 G02B26/0816

    Abstract: A scanned light display system includes a light emitter array having a plurality of light sources operable to emit diverging light and an array of collimating elements positioned so that each of the collimating elements receive at least a portion of the light emitted from a corresponding one of the light sources. Each of collimating elements is configured to substantially collimate the received light from at least one corresponding light source into respective beams. The scanned beam display is operable to scan the respective beams to provide an image to a viewer. The displayed image appears substantially fixed to a viewer as the viewer's eye moves relative to the array of collimating elements. In one embodiment, each of the collimating elements is a curved mirror. In other embodiments, each of the collimating elements includes at least one lens or a curved mirror/lens pair.

    Abstract translation: 扫描光显示系统包括光发射器阵列,其具有可操作以发射发散光的多个光源和准直元件阵列,其被定位成使得每个准直元件接收从相应的一个光源发出的光的至少一部分 光源。 准直元件中的每一个被构造成将从至少一个对应的光源的接收的光基本准直到相应的光束。 扫描的光束显示器可操作以扫描相应的光束以向观看者提供图像。 当观看者的眼睛相对于准直元件阵列移动时,所显示的图像基本上固定在观看者身上。 在一个实施例中,每个准直元件是曲面镜。 在其他实施例中,每个准直元件包括至少一个透镜或曲面镜/透镜对。

    MEMS SCANNER WITH DUAL MAGNETIC AND CAPACITIVE DRIVE
    4.
    发明申请
    MEMS SCANNER WITH DUAL MAGNETIC AND CAPACITIVE DRIVE 有权
    具有双磁和电容驱动的MEMS扫描仪

    公开(公告)号:US20060152106A1

    公开(公告)日:2006-07-13

    申请号:US10700279

    申请日:2003-11-03

    CPC classification number: H02N1/008 G02B26/085 G02B26/101

    Abstract: A MEMS scanning device includes more than one type of actuation. In one approach capacitive and magnetic drives combine to move a portion of the device along a common path. In one such structure, the capacitive drive comes from interleaved combs. In another approach, a comb drive combines with a pair of planar electrodes to produce rotation of a central body relative to a substrate. In an optical scanning application, the central body is a mirror. In a biaxial structure, a gimbal ring carries the central body. The gimbal ring may be driven by more than one type of actuation to produce motion about an axis orthogonal to that of the central body. In another aspect, a MEMS scanning device is constructed with a reduced footprint.

    Abstract translation: MEMS扫描装置包括不止一种类型的致动。 在一种方式中,电容和磁驱动器组合以沿着公共路径移动设备的一部分。 在一种这样的结构中,电容驱动来自交织梳。 在另一种方法中,梳状驱动器与一对平面电极组合以产生相对于衬底的中心体的旋转。 在光学扫描应用中,中心体是镜子。 在双轴结构中,万向环带有中心体。 万向节环可以由多于一种类型的致动来驱动,以产生围绕与中心体正交的轴线的运动。 在另一方面,MEMS扫描装置被构造成具有减小的占地面积。

    Wireless interface with enhanced functionality
    5.
    发明申请
    Wireless interface with enhanced functionality 审中-公开
    具有增强功能的无线接口

    公开(公告)号:US20050197093A1

    公开(公告)日:2005-09-08

    申请号:US10795199

    申请日:2004-03-05

    CPC classification number: H04L1/1685

    Abstract: A portable end device, such as a bar code scanner, may be equipped with auxiliary interfaces. The auxiliary interfaces may be easily added to the end device as a replaceable cover, such as a replaceable battery door. A signal path conducts signals to and from the replaceable cover. One auxiliary interface is a Bluetooth radio. Data integrity protocols may be selected to guarantee delivery and guarantee no duplicate deliveries. Host pairing algorithms may provide standard or strong pairing with a host computer. Ergonomic interface features allow a user to control and monitor the operation of the end device and the data link with minimal hardware cost and battery life impact. Host software programs provide data routing, automatic reestablishment of the data link, and other functions. The system is adaptable to a wide array of use environments through the selection of timer parameters in the end device.

    Abstract translation: 诸如条形码扫描器的便携式终端设备可以配备辅助接口。 辅助接口可以容易地添加到终端设备中作为可替换的盖,例如可更换的电池门。 信号路径向可替换盖传导信号。 一个辅助接口是蓝牙无线电。 可以选择数据完整性协议来保证交付并保证没有重复的交付。 主机配对算法可以提供与主机的标准或强配对。 人机工程学界面功能允许用户以最小的硬件成本和电池寿命影响来控制和监视终端设备和数据链路的操作。 主机软件程序提供数据路由,自动重建数据链路等功能。 该系统通过选择终端设备中的定时器参数,适应各种使用环境。

    ENDOSCOPE TIPS, SCANNED BEAM ENDOSCOPES USING SAME, AND METHODS OF USE
    7.
    发明申请
    ENDOSCOPE TIPS, SCANNED BEAM ENDOSCOPES USING SAME, AND METHODS OF USE 审中-公开
    内窥镜提示,使用其的扫描光束内窥镜及其使用方法

    公开(公告)号:US20070238930A1

    公开(公告)日:2007-10-11

    申请号:US11679115

    申请日:2007-02-26

    Abstract: Apparatuses and methods for scanned beam endoscopes, endoscope tips, and scanned beam imagers are disclosed. In one aspect, a scanned beam endoscope includes at least one light detection element that collects light reflected from a FOV through one or more openings in the scanner of the endoscope. In another aspect, the illumination optical fiber may be positioned so that its output end is laterally positioned in relation to the scanner. In yet another aspect, the scanner is oriented to provide a non-axial FOV.

    Abstract translation: 公开了用于扫描束内窥镜,内窥镜尖端和扫描光束成像器的装置和方法。 一方面,扫描光束内窥镜包括至少一个光检测元件,其通过内窥镜的扫描器中的一个或多个开口收集从FOV反射的光。 在另一方面,照明光纤可以被定位成使得其输出端相对于扫描仪横向定位。 在另一方面,扫描器被定向成提供非轴向FOV。

    Methods and apparatuses for selecting and displaying an image with the best focus
    8.
    发明申请
    Methods and apparatuses for selecting and displaying an image with the best focus 有权
    用于选择和显示具有最佳焦点的图像的方法和装置

    公开(公告)号:US20070203394A1

    公开(公告)日:2007-08-30

    申请号:US11364628

    申请日:2006-02-27

    CPC classification number: A61B1/00188

    Abstract: Methods and apparatuses for selecting and displaying an image with the best focus are disclosed. In one aspect, a method of displaying a captured image includes capturing a plurality of images of a field of view (FOV) using an image capture device, selecting one of the images having the best focus, and displaying the selected image on the image capture device. In another aspect, a method of displaying a captured image includes capturing a plurality of images of a FOV, dividing each of the images into a plurality of regions, and comparing corresponding regions from each of the images. The regions having the best focus are selected. A composite image is constructed formed from the regions with the best focus and the composite image is displayed. Image capture devices configured to effect the above methods are also disclosed.

    Abstract translation: 公开了用于选择和显示具有最佳焦点的图像的方法和装置。 一方面,显示拍摄图像的方法包括使用图像拍摄装置拍摄视场(FOV)的多个图像,选择具有最佳焦点的图像之一,并且在图像拍摄上显示所选择的图像 设备。 在另一方面,一种显示拍摄图像的方法包括拍摄FOV的多个图像,将每个图像分割成多个区域,以及对来自每个图像的相应区域进行比较。 选择具有最佳焦点的区域。 从具有最佳聚焦的区域构成合成图像,并显示合成图像。 还公开了配置成实现上述方法的图像捕获装置。

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