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    • 2. 发明授权
    • Battery charging using a portable energy storage device
    • 使用便携式储能装置进行电池充电
    • US06737830B2
    • 2004-05-18
    • US10188488
    • 2002-07-02
    • Heather N. BeanMark N. RobinsMatt Flach
    • Heather N. BeanMark N. RobinsMatt Flach
    • H01M1044
    • H02J7/345
    • A battery charger provides remote or untethered charging of a rechargeable battery. The battery charger provides untethered charging either in situ within a battery-powered device or external to the device. The battery charger comprises a power converter and an energy storage device connected to the power converter. A battery charging system comprises the battery charger and independent electrical connection devices. One connection device connects the battery charger to an external energy source to acquire energy that is stored in the storage device. Another connection device connects the battery charger to a battery for charging. The connection devices are independent and battery charging is untethered in that the battery charger need not be connected to the external energy source while the battery charger charges the battery. A method of charging the battery comprises charging the battery with energy stored in a portable energy storage device.
    • 电池充电器可以对可充电电池进行远程或无连接充电。 电池充电器可以在电池供电的设备内部或设备外部提供原位充电。 电池充电器包括电源转换器和连接到电力转换器的能量存储装置。 电池充电系统包括电池充电器和独立的电连接装置。 一个连接装置将电池充电器连接到外部能量源以获取存储在存储装置中的能量。 另一个连接装置将电池充电器连接到电池进行充电。 连接设备是独立的,并且电池充电不受限制,因为电池充电器不需要连接到外部能源,同时电池充电器为电池充电。 一种对电池充电的方法包括用存储在便携式能量存储装置中的能量对电池充电。
    • 6. 发明授权
    • Photoelectric imaging sensor and method having a metallized plate capacitively coupled to an electron emitting plate
    • 具有电容耦合到电子发射板的金属化板的光电成像传感器和方法
    • US07105794B2
    • 2006-09-12
    • US10919715
    • 2004-08-17
    • Heather N. BeanMark N. Robins
    • Heather N. BeanMark N. Robins
    • H01L27/00
    • H04N5/30
    • A photoelectric imaging sensor and method that provide for electronic shuttering and frequency filtering. An exemplary sensor includes a biased conductive frame disposed adjacent to an electron emitting plate that is coupled by way of a reset field effect transistor to ground. A metallized plate is insulated from (capacitively coupled to) the electron emitting plate and is coupled by way of a charge isolation field effect transistor (to ground. Electronic shuttering and frequency filtering in the photoelectric imaging sensor is implemented is as follows. The conductive frame is biased by predetermined amounts to control the surface work function of the electron emitting plate and set the incident light frequency at which photoelectrons are emitted by the electron emitting plate, thus providing for frequency filtering and electronically shuttering of the photoelectric imaging sensor. Electronic shuttering is provided by gating the metallized plate using the charge isolation field effect transistor.
    • 一种提供电子快门和频率滤波的光电成像传感器和方法。 示例性传感器包括邻近电子发射板设置的偏置导电框架,电子发射板通过复位场效应晶体管耦合到地。 金属化板与电子发射板绝缘(电容耦合),并通过电荷隔离场效应晶体管(对地)耦合,光电成像传感器中的电子快门和频率滤波实现如下:导电框架 偏置预定量以控制电子发射板的表面功函数,并设置由电子发射板发射光电子的入射光频率,从而提供光电成像传感器的频率滤波和电子快门,电子快门 通过使用电荷隔离场效应晶体管栅极化金属化板来提供。
    • 7. 发明授权
    • Dual-purpose compartment for a hybrid battery and fuel cell powered device
    • 用于混合电池和燃料电池供电设备的双用途隔间
    • US06955863B2
    • 2005-10-18
    • US10280883
    • 2002-10-25
    • Heather N. BeanMark N. Robins
    • Heather N. BeanMark N. Robins
    • H01M2/10H01M8/04H01M12/00H01M14/00H01M16/00
    • H01M8/04208H01M2/1055H01M8/2475H01M16/006H01M2250/30Y02B90/18
    • A compartment interchangeably holds either a battery or a fuel cartridge for powering a portable electronic device. The compartment includes electrical contacts to access energy stored in a battery. The compartment further includes a fuel port to access fuel stored in a fuel cartridge. Either of the battery or the fuel cartridge may be installed in the compartment. A portable electronic device, which is powered interchangeably by either a battery or a fuel cell, includes the compartment. A method of powering the portable electronic device includes installing either a battery or a fuel cartridge into a compartment that interchangeably holds the battery and the fuel cartridge, and powering the device using energy stored in the respectively installed battery or energy stored in fuel contained in the respectively installed fuel cartridge.
    • 车厢可互换地容纳用于为便携式电子设备供电的电池或燃料盒。 隔室包括用于访问存储在电池中的能量的电触头。 隔室还包括用于进入存储在燃料盒中的燃料的燃料口。 电池或燃料盒中的任一个可以安装在隔间中。 由电池或燃料电池互换供电的便携式电子设备包括隔室。 为便携式电子设备供电的方法包括将电池或燃料盒安装到可互换地保持电池和燃料盒的隔室中,以及使用储存在分别安装的电池中的能量或储存在 分别安装油箱。
    • 8. 发明授权
    • Method and digital camera for indicating when image data has been captured for a three-dimensional target object
    • 用于指示三维目标对象的图像数据被捕获的方法和数字照相机
    • US07050625B2
    • 2006-05-23
    • US10274120
    • 2002-10-21
    • Heather N. BeanMark N. Robins
    • Heather N. BeanMark N. Robins
    • G06K9/00
    • H04N5/2621H04N5/262
    • A method and digital camera are disclosed for capturing a complete set of image data for a three-dimensional target object by capturing image data from multiple images from different perspectives of the target object. The camera captures an image of the object from an initial perspective. Based on image data retrieved from the image, discontinuous edges of the object are identified for the initial perspective. The camera continues capturing image data for the object by capturing images from different perspectives, until complete image data is obtained. As each image is captured, the camera attempts to resolve discontinuous edges identified in any of the images. If all of the discontinuous edges cannot be resolved, then another image of the target object is captured from another perspective. When all of the discontinuous edges are resolved, the camera indicates that complete image data has been obtained, using an indicator.
    • 公开了一种用于通过从目标物体的不同观点从多个图像捕获图像数据来捕获用于三维目标对象的完整图像数据的方法和数字照相机。 相机从初始角度捕获对象的图像。 基于从图像检索的图像数据,识别对象的不连续边缘的初始透视图。 相机通过从不同的角度捕获图像来继续拍摄对象的图像数据,直到获得完整的图像数据。 当拍摄每张图像时,相机会尝试解析任何图像中识别的不连续边缘。 如果所有不连续边缘都无法解析,则从另一个角度捕获目标对象的另一个图像。 当所有不连续边缘被解决时,相机指示已经使用指示器获得完整的图像数据。