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    • 4. 发明授权
    • Three-dimensional optical coherence tomography confocal imaging apparatus
    • 三维光学相干断层扫描共焦成像装置
    • US08553209B2
    • 2013-10-08
    • US12912018
    • 2010-10-26
    • Chien-Chung TsaiKuang-Yu HsuYen-Sheng LinSheng-Lung Huang
    • Chien-Chung TsaiKuang-Yu HsuYen-Sheng LinSheng-Lung Huang
    • G01N21/00G01B11/02
    • G01B9/02042G01B9/02005G01B9/02091G01B2290/45
    • A 3D OCT confocal imaging apparatus includes a light source module for providing an illumination beam with wider bandwidth from a crystal fiber; a reference source module; a pickup module; a beam splitter; an optical filter; and a sensor module. When the illumination beam illuminates a sample, a pickup objective lens and a piezoelectric actuator of the pickup module together provide an image beam scanning the sample in depth direction. The image beam and a reference beam from the reference source module together form an interference image beam, which is converted by a photosensor into a coherence image electric signal. Meanwhile, the interference image beam passes through a pinhole to form a confocal image, which is converted by an excited light photometer into a confocal image electric signal. With an image processing system, a 3D OCT confocal microscopic image of the sample can be produced from these image electric signals.
    • 3D OCT共焦成像装置包括用于从晶体光纤提供具有更宽带宽的照明光束的光源模块; 参考源模块; 拾取模块; 分束器; 滤光片; 和传感器模块。 当照明光束照射样品时,拾取模块的拾取物镜和压电致动器一起提供在深度方向上扫描样品的图像束。 来自参考源模块的图像束和参考光束一起形成干涉图像束,其由光电传感器转换成相干图像电信号。 同时,干涉图像光束通过针孔形成共焦图像,该共焦图像由激发光光度计转换成共焦图像电信号。 利用图像处理系统,可以从这些图像电信号产生样本的3D OCT共聚焦显微镜图像。
    • 7. 发明授权
    • ROM automatic burning device
    • ROM自动刻录设备
    • US06525528B2
    • 2003-02-25
    • US09900862
    • 2001-07-10
    • Yen-Sheng Lin
    • Yen-Sheng Lin
    • G01R3102
    • G11C29/56
    • An automatic ROM burning device, comprising a support plate that is erected almost vertically. On the surface of the support plate is at least one feeder chute, inside which is inserted an IC rod, enabling the ROM component inside the IC rod waiting to be burned with data to lower in sequential order by gravity, while a moving mechanism moves it under the control of a control unit into a burner unit. The burner unit serves to conduct data burning and test operation on the components under the control of a control unit, and categorize the components according to the results obtained from the burning and testing operation. After data burning is completed, a moving mechanism delivers the components to a moving unit, moving the categorized components to separate discharge troughs; those of the same category are guided into empty IC rods for discharge. Therefore, under the control of the control unit, several ROM components are processed in data burning, categorized and delivered into the discharge IC rods of respective categories.
    • 一种自动ROM刻录装置,包括几乎垂直竖立的支撑板。 在支撑板的表面上至少有一个进料槽,其中插入有IC棒,使IC棒内的ROM部件等待被燃烧,数据按照重力按顺序降低,而移动机构移动 在控制单元的控制下进入燃烧器单元。 燃烧器单元用于在控制单元的控制下对部件进行数据燃烧和测试操作,并根据从燃烧和测试操作获得的结果对部件进行分类。 在数据燃烧完成后,移动机构将组件传送到移动单元,将分类的组件移动到单独的排放槽; 相同类别的引导件进入空的IC棒排放。 因此,在控制单元的控制下,在数据燃烧中对几个ROM组件进行处理,分类并传送到各个类别的放电IC棒。
    • 8. 发明授权
    • Memory address mapping method for controlling storage of images in memory device and memory address mapping circuit thereof
    • 用于控制存储器件中存储图像的存储器地址映射方法及其存储器地址映射电路
    • US08587598B2
    • 2013-11-19
    • US12772964
    • 2010-05-03
    • Yen-Sheng Lin
    • Yen-Sheng Lin
    • G09G5/399G06F12/02
    • H04N19/423H04N7/012
    • A memory address mapping method of controlling storage of images in a memory device is provided. The memory device includes banks each having a plurality of pages. The memory address mapping method includes: receiving a first image; and referring to an image partition setting to generate a first memory address setting for each horizontal line partition in the first image, wherein the image partition setting defines that one image is divided into horizontal line groups each having at least one horizontal line, and each of the horizontal line groups is divided into horizontal line partitions in a horizontal line direction. First memory address settings of the horizontal line partitions in each horizontal line group of the first image control that a corresponding horizontal line group having the horizontal line partitions included therein is not stored into a same bank of the memory device.
    • 提供了一种用于控制存储器件中的图像存储的存储器地址映射方法。 存储器件包括各自具有多页的存储体。 所述存储器地址映射方法包括:接收第一图像; 并且参考图像分割设置来生成第一图像中的每个水平线分区的第一存储器地址设置,其中图像分割设置定义一个图像被划分为每个具有至少一个水平线的水平线组,并且每个 水平线组在水平线方向上分为水平线分隔。 其中包含水平线分区的相应水平线组的第一图像控制的每个水平线组中的水平线分区的第一存储器地址设置未被存储到存储器件的同一组中。
    • 9. 发明申请
    • MEMORY ADDRESS MAPPING METHOD FOR CONTROLLING STORAGE OF IMAGES IN MEMORY DEVICE AND MEMORY ADDRESS MAPPING CIRCUIT THEREOF
    • 用于控制存储器件中的图像存储的存储器地址映射方法及其存储器地址映射电路
    • US20110102447A1
    • 2011-05-05
    • US12772964
    • 2010-05-03
    • Yen-Sheng Lin
    • Yen-Sheng Lin
    • G06F12/02
    • H04N19/423H04N7/012
    • A memory address mapping method of controlling storage of images in a memory device is provided. The memory device includes banks each having a plurality of pages. The memory address mapping method includes: receiving a first image; and referring to an image partition setting to generate a first memory address setting for each horizontal line partition in the first image, wherein the image partition setting defines that one image is divided into horizontal line groups each having at least one horizontal line, and each of the horizontal line groups is divided into horizontal line partitions in a horizontal line direction. First memory address settings of the horizontal line partitions in each horizontal line group of the first image control that a corresponding horizontal line group having the horizontal line partitions included therein is not stored into a same bank of the memory device.
    • 提供了一种用于控制存储器件中的图像存储的存储器地址映射方法。 存储器件包括各自具有多页的存储体。 所述存储器地址映射方法包括:接收第一图像; 并且参考图像分割设置来生成第一图像中的每个水平线分区的第一存储器地址设置,其中图像分割设置定义一个图像被划分为每个具有至少一个水平线的水平线组,并且每个 水平线组在水平线方向上分为水平线分隔。 其中包含水平线分区的相应水平线组的第一图像控制的每个水平线组中的水平线分区的第一存储器地址设置未被存储到存储器件的同一组中。