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    • 2. 发明授权
    • Automated fundus imaging system
    • 自动眼底成像系统
    • US07458685B2
    • 2008-12-02
    • US11196824
    • 2005-08-03
    • Rongguang LiangDale L. TuckerJeffery R. HawverSeung-Ho BaekVishwas G. AbhyankarRichard WeilDouglass L. Blanding
    • Rongguang LiangDale L. TuckerJeffery R. HawverSeung-Ho BaekVishwas G. AbhyankarRichard WeilDouglass L. Blanding
    • A61B3/14
    • A61B3/14
    • An apparatus for obtaining a retinal image of an eye has a control logic processor (214) for executing a sequence of operations for obtaining the image. A visual target (162) orients the eye of a patient when viewed. An indicator element (410) provides a signal that indicates that the patient is in position. A cornea focus detection section (450) indicates cornea focus, in cooperation with the control logic processor (214). An alignment actuator aligns the optical path according to a signal obtained from the cornea focus detection section (450). A retina focus detection section (452) detects retina focus in cooperation with the control logic processor (214). A focusing actuator (406) is controlled by instructions from the control logic processor (214) according to a signal obtained from the retina focus detection section (452). An image capture light source is energized by the control logic processor (214) for illuminating the retina.
    • 用于获得眼睛的视网膜图像的装置具有用于执行用于获得图像的操作序列的控制逻辑处理器(214)。 视觉目标(162)在观察时定位患者的眼睛。 指示元件(410)提供指示患者就位的信号。 与控制逻辑处理器(214)协作,角膜焦点检测部分(450)指示角膜焦点。 对准致动器根据从角膜焦点检测部(450)获得的信号对准光路。 视网膜聚焦检测部分(452)与控制逻辑处理器(214)协作检测视网膜聚焦。 聚焦致动器(406)由来自控制逻辑处理器(214)的指令根据从视网膜聚焦检测部分(452)获得的信号来控制。 图像捕获光源由控制逻辑处理器(214)激励,用于照亮视网膜。
    • 5. 发明申请
    • Rapid Alignment Methods For Optical Packages
    • 光学封装的快速对准方法
    • US20100272134A1
    • 2010-10-28
    • US12427945
    • 2009-04-22
    • Douglass L. BlandingJacques GollierGarrett Andrew Piech
    • Douglass L. BlandingJacques GollierGarrett Andrew Piech
    • H01S3/10G01B11/00
    • G02F1/377G02F2001/3503G02F2001/3546H01S5/0014H01S5/0092H01S5/06821H01S5/0683
    • A method for aligning an optical package including a semiconductor laser operable to emit an output beam having a first wavelength, a wavelength conversion device operable to convert the output beam to a second wavelength and adaptive optics configured to optically couple the output beam into a waveguide portion of an input facet of the wavelength conversion device includes measuring a power of light having a first wavelength emitted by or scattered from the wavelength conversion device as the output beam is scanned over the input facet of the wavelength conversion device along a first scanning axis. A power of light emitted from the wavelength conversion device is then measured as the output beam is scanned over the input facet along a second scanning axis. A position of the second scanning axis relative to an edge of the wavelength conversion device is based on the measured power of light having the first wavelength. The output beam is then aligned with the waveguide portion of the input facet based on the measured power of light having the second wavelength.
    • 一种用于对准包括可操作以发射具有第一波长的输出光束的半导体激光器的光学封装的方法,可操作以将输出光束转换为第二波长的波长转换装置,以及被配置为将输出光束光耦合到波导部分 所述波长转换装置的输入面包括:测量当所述波长转换装置沿着第一扫描轴扫描所述输出光束时从所述波长转换装置发射或散射的具有第一波长的光的功率。 然后当输出光束沿着第二扫描轴在输入刻面上扫描时,测量从波长转换装置发射的光的功率。 第二扫描轴相对于波长转换装置的边缘的位置是基于测量的具有第一波长的光的功率。 然后基于测量的具有第二波长的光的功率,将输出光束与输入小面的波导部分对准。
    • 7. 发明授权
    • Multi-axis positioning apparatus
    • 多轴定位装置
    • US07275332B2
    • 2007-10-02
    • US11062971
    • 2005-02-22
    • Douglass L. Blanding
    • Douglass L. Blanding
    • B23Q16/00B23Q1/25
    • F16M11/2035F16C11/12F16M11/06
    • An apparatus for supporting a platform (84) relative to a base (82), has first, second, and third flexible shaft couplings (80). Each flexible shaft coupling (80) is mechanically coupled between the platform (84) and the base (82). Each flexible shaft coupling (80) has a rigid intermediate member (12) and a platform coupling (104) with a plurality of folded sheet flexures (20). Each folded sheet flexure (20) is coupled to the rigid intermediate member (12) on one side of a fold (36) and coupled to the platform (84) on the opposite side of the fold (36). Each flexible shaft coupling (80) also has a base coupling (102) with a plurality of folded sheet flexures (20) wherein each folded sheet flexure (20) is coupled to the rigid intermediate member (12) on one side of a fold (36) and coupled to the base (82) on the opposite side of the fold (36).
    • 一种用于相对于基座(82)支撑平台(84)的装置具有第一,第二和第三柔性轴联接件(80)。 每个柔性轴联接器(80)机械地联接在平台(84)和基座(82)之间。 每个柔性轴联接器(80)具有刚性中间构件(12)和具有多个折叠片材挠曲件(20)的平台联接件(104)。 每个折叠的片材挠曲件(20)在折叠(36)的一侧上联接到刚性中间构件(12)并且在折叠(36)的相对侧上联接到平台(84)。 每个柔性轴联接器(80)还具有带有多个折叠片材挠曲件(20)的基座联接器(102),其中每个折叠的片材挠曲件(20)在折叠的一侧(...)连接到刚性中间构件(12) 36),并且在折叠(36)的相对侧上耦合到基部(82)。
    • 9. 发明授权
    • Method and apparatus for alignment of scan line optics with target medium
    • 扫描线光学元件与目标介质对准的方法和装置
    • US5294943A
    • 1994-03-15
    • US785346
    • 1991-10-31
    • Douglass L. BlandingMichael E. HarriganDavid Kessler
    • Douglass L. BlandingMichael E. HarriganDavid Kessler
    • G02B26/12H04N1/047H04N1/113H04N1/12H04N1/21G01D15/16
    • G02B26/126H04N1/0473H04N1/1135H04N1/12H04N2201/0471H04N2201/04755
    • Positioning of a scan line (L) relative to a recording medium drum (15) of a polygon printer is established by independently adjusting blocks (35, 36) mounted on a scan line generating optics module (10). The blocks (35, 36) have inverted V-notches (38) that nest in two-point tangential contact onto cylindrical surfaces of drum bearings (33, 34). X, z, .theta..sub.x and .theta..sub.z positions are set by x and z direction adjustment screws (44, 45, 49, 50) mounted on frame (11) that move against blocks (35, 36) against the bias of springs (61) and the weight of the frame (11). Clamping screws (56, 57) pass through oversized holes (58) and z direction elongated slots (59) on blocks (35, 36) to releasably lock blocks (35, 36) after adjustment. Alignment of holes (58), slots (59) and notches (38) maintains a constant angle of incidence during adjustment. A notch (41) of projection (40) of frame ( 11) engages with a pin (42) on printer body (29) to set y and .theta..sub.y positioning.
    • 通过独立调整安装在扫描线生成光学模块(10)上的块(35,36)来建立相对于多边形打印机的记录介质滚筒(15)的扫描线(L)的定位。 块体(35,36)具有倒置的V形凹口(38),它们以两点切向接触的方式嵌在滚筒轴承(33,34)的圆柱形表面上。 X,Z,(θ)x和(θ)z位置由安装在框架上的x和z方向调节螺钉(44,45,49,50)来设定, 的弹簧(61)和框架(11)的重量。 夹紧螺钉(56,57)在块(35,36)上穿过大尺寸的孔(58)和z方向的细长槽(59),以在调节后可释放地锁定块(35,36)。 孔(58),槽(59)和凹口(38)的对准在调节期间保持恒定的入射角。 框架(11)的突起(40)的凹口(41)与打印机主体(29)上的销(42)接合以设定y和(θ)y定位。