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    • 1. 发明申请
    • Color image sensor with tunable color filter
    • 带可调滤色片的彩色图像传感器
    • US20070046794A1
    • 2007-03-01
    • US11215887
    • 2005-08-30
    • Fan HeMichael FrenzerZili LiCarl Shurboff
    • Fan HeMichael FrenzerZili LiCarl Shurboff
    • H04N9/04H04N3/14H04N5/335H04N9/083
    • H04N9/045H04N5/3741H04N5/37452H04N5/376H04N2209/043
    • An apparatus (20) for recording a color image, comprises an image sensor (22) having a plurality of pixels (24) formed in a monolithic substrate. Each of the plurality of pixels (24) includes three floating gate semiconductor devices (80, 82, 84). A color tunable filter (30) is positioned between a photosensitive semiconductor device (86) and an electromagnetic radiation source. A FET transistor (130) has a drain (134) connected to the cathode (120) of the photodiode (86), and a source (136) connected to the anode (118) of the photodiode (86) and to control gates (94, 104, 114) of each of the three floating gate semiconductor devices (80, 82, 84). The color tunable filter (30) allows all desired combinations of colors to pass while each of the three floating gate semiconductor devices (80, 82, 84) are respectively selected to store the color image.
    • 一种用于记录彩色图像的设备(20)包括具有形成在单片基板中的多个像素(24)的图像传感器(22)。 多个像素(24)中的每一个包括三个浮置栅极半导体器件(80,82,84)。 颜色可调滤光器(30)位于光敏半导体器件(86)和电磁辐射源之间。 FET晶体管(130)具有连接到光电二极管(86)的阴极(120)的漏极(134)和连接到光电二极管(86)的阳极(118)并且控制栅极(86)的源极 所述三个浮置栅极半导体器件(80,82,84)中的每一个的栅极(94,104,114)。 颜色可调滤光器(30)允许所有期望的颜色组合通过,同时分别选择三个浮置栅极半导体器件(80,82,84)中的每一个以存储彩色图像。
    • 3. 发明授权
    • Compact stationary lens optical zoom image capture system
    • 紧凑型固定镜头光学变焦摄像系统
    • US08643748B2
    • 2014-02-04
    • US11943249
    • 2007-11-20
    • Fan HeMichael FrenzerKevin JohnsonDongxue Wang
    • Fan HeMichael FrenzerKevin JohnsonDongxue Wang
    • H04N5/262H04N5/225
    • H04N5/2254G02B15/02H04N5/232H04N5/23241H04N5/23245H04N5/23296
    • An electronic optical zoom system (100) includes a first lens assembly (101) and a second lens assembly (102). The first lens assembly (101) and the second lens assembly (102) may be adjacently disposed or concentrically disposed. The first lens assembly (101) and second lens assembly (102), in one embodiment, have different magnification configurations. An image sensor (103) captures electronic images of a subject (109). Optical zoom capability is achieved by an alterable electronic optical device (851), such as a switchable mirror (105). The alterable electronic optical device (851) selectively redirects received light between a first optical path (107) from a reflective surface (106) to a second optical path (117) from the alterable electronic optical device (851) depending upon the state of the alterable electronic optical device (851). The electronic optical zoom system (100) thereby provides optical zoom capabilities in a compact package without the need for physically moving lens assemblies.
    • 电子光学变焦系统(100)包括第一透镜组件(101)和第二透镜组件(102)。 第一透镜组件(101)和第二透镜组件(102)可以相邻地设置或同心地设置。 在一个实施例中,第一透镜组件(101)和第二透镜组件(102)具有不同的放大配置。 图像传感器(103)捕获被摄体(109)的电子图像。 通过诸如可切换镜(105)的可变电子光学装置(851)实现光学变焦能力。 可变电子光学装置(851)根据所述可变电子光学装置(851)的状态,将接收到的光从所述可变电子光学装置(851)选择性地重定向在从所述反射表面(106)到第二光路(117)的第一光路(107) 可变电子光学装置(851)。 因此,电子光学变焦系统(100)在紧凑的封装中提供光学变焦能力,而不需要物理移动的透镜组件。
    • 4. 发明申请
    • Spectrum Verification Imaging System and Method
    • 频谱验证成像系统和方法
    • US20090086192A1
    • 2009-04-02
    • US11863424
    • 2007-09-28
    • Fan HeShumin ChengMichael FrenzerBin JiangVahid Goudarzi
    • Fan HeShumin ChengMichael FrenzerBin JiangVahid Goudarzi
    • G01N21/00G01J3/46G01N21/25
    • G01J1/124G01J2003/466
    • A system (200) and method (800) for determining whether a sample object (203) has a color that is within a predetermined range is provided. The system (200) includes a light source (201) capable of projecting lights having different light wavelength spectrum upon the sample object (203). A controller (222) causes the light source (201) to project a first light wavelength spectrum upon the sample object (203), then another, then another, and so forth. While each light is projecting upon the object, a monochromatic image capture device (202) captures an image having luminous intensity information. The luminous intensity information, or a subset thereof selected by an image selection tool (232) is then compared to the statistical range, which is derived from a plurality of images taken of a reference object (403).
    • 提供了一种用于确定样本对象(203)是否具有在预定范围内的颜色的系统(200)和方法(800)。 系统(200)包括能够将具有不同光波长光谱的光投射到样本物体(203)上的光源(201)。 控制器(222)使得光源(201)将样品(203)上的第一光波长谱投影到另一个,另一个则另一个等等。 当每个光投射在物体上时,单色图像捕获装置(202)捕获具有发光强度信息的图像。 然后将由图像选择工具(232)选择的发光强度信息或其子集与从参考对象(403)拍摄的多个图像导出的统计范围进行比较。
    • 6. 发明申请
    • Method and system for automatically focusing a camera
    • 摄像机自动对焦的方法和系统
    • US20070152062A1
    • 2007-07-05
    • US11323499
    • 2005-12-31
    • Fan HeMichael Frenzer
    • Fan HeMichael Frenzer
    • G06K7/10G03B17/00
    • G03B13/36H04N5/23212
    • A method and system for automatically focusing an image received by an image capturing unit (100) relative to a target is disclosed. The target is present in a sequence of one or more scanned frames. The method includes dividing (302) each frame from the sequence of one or more scanned frames in a plurality of sections. The method further includes iteratively determining (304) a relative focus of the target within each section of the plurality of sections. The method further includes adjustment (306) of a position of at least a first light path adjustment element in response to the determined relative focus.
    • 公开了一种用于自动聚焦由图像捕获单元(100)相对于目标接收的图像的方法和系统。 目标以一个或多个扫描帧的序列存在。 该方法包括从多个部分中的一个或多个扫描帧的序列中划分(302)每个帧。 该方法还包括在多个部分的每个部分内迭代地确定(304)目标的相对焦点。 该方法还包括响应于所确定的相对焦点来调节(306)至少第一光路调节元件的位置。
    • 7. 发明授权
    • Spectrum verification imaging system and method
    • 频谱验证成像系统及方法
    • US07773224B2
    • 2010-08-10
    • US11863424
    • 2007-09-28
    • Fan HeShumin ChengMichael FrenzerBin JiangVahid Goudarzi
    • Fan HeShumin ChengMichael FrenzerBin JiangVahid Goudarzi
    • G01J3/51
    • G01J1/124G01J2003/466
    • A system (200) and method (800) for determining whether a sample object (203) has a color that is within a predetermined range is provided. The system (200) includes a light source (201) capable of projecting lights having different light wavelength spectrum upon the sample object (203). A controller (222) causes the light source (201) to project a first light wavelength spectrum upon the sample object (203), then another, then another, and so forth. While each light is projecting upon the object, a monochromatic image capture device (202) captures an image having luminous intensity information. The luminous intensity information, or a subset thereof selected by an image selection tool (232) is then compared to the statistical range, which is derived from a plurality of images taken of a reference object (403).
    • 提供了一种用于确定样本对象(203)是否具有在预定范围内的颜色的系统(200)和方法(800)。 系统(200)包括能够将具有不同光波长光谱的光投射到样本物体(203)上的光源(201)。 控制器(222)使得光源(201)将样品(203)上的第一光波长谱投影到另一个,另一个则另一个等等。 当每个光投射在物体上时,单色图像捕获装置(202)捕获具有发光强度信息的图像。 然后将由图像选择工具(232)选择的发光强度信息或其子集与从参考对象(403)拍摄的多个图像导出的统计范围进行比较。
    • 9. 发明申请
    • Electrochemical Cell with Reduced Magnetic Field Emission and Corresponding Devices
    • 具有减少磁场发射的电化学电池和相应的装置
    • US20110262779A1
    • 2011-10-27
    • US12916573
    • 2010-10-31
    • Hossein MalekiMichael FrenzerJerald A. HallmarkJim Krause
    • Hossein MalekiMichael FrenzerJerald A. HallmarkJim Krause
    • H01M2/00
    • H01M2/263H01M2/026H01M2/0292H01M10/0431H01M10/0436H01M10/052H01M10/425H01M2220/30
    • A battery pack having reduced magnetic emitted noise includes a housing having an electrode assembly (700) disposed therein. The electrode assembly (700) includes a cell stack comprising a cathode (701) and an anode (702) with a separator disposed therebetween. The cell stack of the electrode assembly (700) has a first end (705) and a second end (706). A first electrical conductor (703) coupled to the anode (702) at the first end (705) of the cell stack. A second electrical conductor (704) coupled to the cathode (701) at the first end (705) of the cell stack. The first electrical conductor (703) and second electrical conductor (704) can be configured with different lengths, geometrical shapes, or placement locations such that during discharge, current (711,712) passes across the cathode (701) and anode (702) in substantially opposite directions at a substantially similar magnitude so as to reduce magnetic field noise generated by the electrode assembly (700).
    • 具有减小的磁性发射噪声的电池组包括具有设置在其中的电极组件(700)的壳体。 电极组件(700)包括电池组,其包括阴极(701)和阳极(702),其间设置有隔板。 电极组件(700)的电池堆具有第一端(705)和第二端(706)。 在电池堆的第一端(705)处耦合到阳极(702)的第一电导体(703)。 在电池堆的第一端(705)处耦合到阴极(701)的第二电导体(704)。 第一电导体(703)和第二电导体(704)可以被配置为具有不同的长度,几何形状或放置位置,使得在放电期间,电流(711,712)基本上穿过阴极(701)和阳极(702) 以相当大小相似的方向,以便减小由电极组件(700)产生的磁场噪声。