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    • 7. 发明申请
    • MULTIPLEXED FOURIER PTYCHOGRAPHY IMAGING SYSTEMS AND METHODS
    • 多重傅立叶成像系统和方法
    • WO2016090331A1
    • 2016-06-09
    • PCT/US2015/064126
    • 2015-12-04
    • CALIFORNIA INSTITUTE OF TECHNOLOGY
    • HORSTMEYER, Roarke W.ZHENG, GuoanYANG, Changhuei
    • G02B21/36
    • G02B21/367G02B27/58
    • Certain embodiments pertain to Multiplexed Fourier Ptychographic imaging systems and methods. In one example, the Multiplexed Fourier Ptychographic imaging system includes an LED array configured to illuminate a sequence of LED patterns for illuminating a sample being imaged. The system includes LED circuitry configured to independently control power to turn on multiple LEDs simultaneously in each LED pattern of the array. The system has a light detector that acquires a first set of lower resolution images of the sample each image acquired during exposure time during illumination by a unique LED pattern. The system uses the first set of lower resolution images to generate a second set of lower resolution images associated with each LED in the LED array and iteratively updates overlapping regions in the Fourier domain with the second set of lower resolution images to generate a higher resolution image.
    • 某些实施例涉及多路复用傅立叶Ptychographic成像系统和方法。 在一个示例中,多路复用傅立叶谱图成像系统包括被配置为照亮一系列LED图案以照射被成像的样品的LED阵列。 该系统包括配置成独立控制电源以在阵列的每个LED图案中同时打开多个LED的LED电路。 该系统具有光检测器,其通过独特的LED图案获得在照射期间的曝光时间期间获取的每个图像的样本的第一组较低分辨率图像。 该系统使用第一组较低分辨率图像来产生与LED阵列中的每个LED相关联的第二组较低分辨率图像,并且用第二组较低分辨率图像迭代地更新傅立叶域中的重叠区域以产生较高分辨率图像 。
    • 9. 发明申请
    • ANGLED BUS BAR
    • 安装总线条
    • WO2013158843A1
    • 2013-10-24
    • PCT/US2013/037115
    • 2013-04-18
    • VIEW, INC.JACK, GordonPRADHAN, AnshuNADKARNI, Kaustubh
    • JACK, GordonPRADHAN, AnshuNADKARNI, Kaustubh
    • G02F1/153G02B26/00
    • G02F1/155
    • This disclosure provides configurations, methods of use, and methods of fabrication for a bus bar of an optically switchable device. In one aspect, an apparatus includes a substrate and an optically switchable device disposed on a surface of the substrate. The optically switchable device has a perimeter with at least one corner including a first side, a second side, and a first vertex joining the first side and the second side. A first bus bar and a second bus bar are affixed to the optically switchable device and configured to deliver current and/or voltage for driving switching of the device. The first bus bar is proximate to the corner and includes a first arm and a second arm having a configuration that substantially follows the shape of the first side, the first vertex, and the second side of the corner.
    • 本公开提供了可光学切换装置的母线的配置,使用方法和制造方法。 一方面,一种装置包括基板和设置在基板的表面上的光可切换装置。 光学可切换装置具有至少一个角部的周边,所述至少一个角部包括第一侧面,第二侧面和连接第一侧面和第二侧面的第一顶点。 第一母线和第二母线固定到光学可开关设备并且被配置为传送用于驱动器件切换的电流和/或电压。 第一汇流条靠近角落并且包括第一臂和第二臂,该第一臂和第二臂具有大致遵循角部的第一侧面,第一顶点和第二侧面的形状的构造。
    • 10. 发明申请
    • COAXIAL DISTANCE MEASUREMENT VIA FOLDING OF TRIANGULATION SENSOR OPTICS PATH
    • 双向传感器折弯的同轴距离测量
    • WO2013148643A1
    • 2013-10-03
    • PCT/US2013/033827
    • 2013-03-26
    • VIEW, INC.BAXTER, BruceMULLINS, Dennis
    • BAXTER, BruceMULLINS, Dennis
    • G01C3/08G01C3/22G01S17/08
    • B23K26/048B23K26/364G01S7/481G01S17/48
    • This disclosure provides apparatus and methods for scribing a substrate. In one aspect, an apparatus includes optics for focusing a scribe beam onto a substrate and a beam focus adjustment mechanism for adjusting the optics. A triangulation- based distance sensor determines a distance between the triangulation-based distance sensor and the substrate, with the triangulation-based distance sensor being positioned at a location offset from the scribe beam. Reflecting elements are positioned to reflect an incident beam from the triangulation-based distance sensor's source to the substrate and then back to the triangulation-based distance sensor's detector. The beam focus adjustment mechanism adjusts the optics based on the distance between the triangulation-based distance sensor and the substrate so that the scribe beam is focused at a desired position on the substrate.
    • 本公开提供了用于划线衬底的设备和方法。 一方面,一种装置包括用于将划线束聚焦到衬底上的光学器件和用于调整光学器件的束聚焦调节机构。 基于三角测距的距离传感器确定基于三角测距的距离传感器和基板之间的距离,基于三角测距的距离传感器位于偏离划线的位置。 反射元件被定位成将来自基于三角测距的距离传感器源的入射光束反射到衬底,然后返回到基于三角测距的距离传感器的检测器。 束聚焦调节机构基于基于三角测距的距离传感器和基板之间的距离来调节光学元件,使得划线束聚焦在基板上的期望位置。