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    • 3. 发明申请
    • ELECTRONIC DOCUMENT RASTERIZING METHOD AND ELECTRONIC DOCUMENT RASTERIZING DEVICE
    • 电子文档扫描方法和电子文档扫描装置
    • US20130031471A1
    • 2013-01-31
    • US13468101
    • 2012-05-10
    • Wenhui XuCheng DuFumihiro HasegawaKoichi Inoue
    • Wenhui XuCheng DuFumihiro HasegawaKoichi Inoue
    • G06F17/00
    • G06T11/00
    • Disclosed are an electronic document rasterizing method and an electronic document rasterizing device. The method comprises a thumbnail image rasterizing step of calculating an initial resolution for rasterizing a thumbnail image of the electronic document page, and then carrying out rasterization with regard to the thumbnail image of the electronic document page; an electronic document page dividing step of dividing, based on a designated resolution and the size of a display area, the electronic document page into plural regional segments; a region-of-interest determining step of determining, in response of designation of a position of interest, a current region of interest in the plural regional segments; and a region-of-interest rasterizing step of determining at least one document segment belonging to the current region of interest, and then rasterizing the current region of interest by rasterizing the document segment belonging to the current region of interest based on the designated resolution.
    • 公开了电子文档光栅化方法和电子文档光栅化装置。 该方法包括缩小图像光栅化步骤,用于计算用于光栅化电子文档页面的缩略图图像的初始分辨率,然后对于电子文档页面的缩略图图像执行光栅化; 电子文档页面分割步骤,根据指定的分辨率和显示区域的大小将电子文档页划分成多个区域段; 一个利益感兴趣区域确定步骤,用于响应于感兴趣的位置的指定,确定多个区域段中的当前感兴趣区域; 以及感兴趣区域栅格化步骤,用于确定属于当前感兴趣区域的至少一个文档段,然后基于所指定的分辨率光栅化属于当前感兴趣区域的文档段来对当前的感兴趣区域进行光栅化。
    • 7. 发明申请
    • BATTERY HEATING CIRCUITS AND METHODS BASED ON BATTERY DISCHARGING AND CHARGING USING RESONANCE COMPONENTS IN SERIES AND MULTIPLE CHARGE STORAGE COMPONENTS
    • 基于电池放电和充电的电池加热电路和方法使用系列中的谐振组件和多个充电存储组件
    • US20120025781A1
    • 2012-02-02
    • US13184915
    • 2011-07-18
    • Wenhui XuYaochuan HanWei FengQinyao YangWenjin XiaShibin MaXianyin Li
    • Wenhui XuYaochuan HanWei FengQinyao YangWenjin XiaShibin MaXianyin Li
    • H02J7/00
    • H01L23/345H01L2924/0002H01M10/615H01M10/625H01M10/651H01M10/657H01M10/6571H01M10/6572H02J7/0014H02J7/0054H02J7/0075H02J7/0091H02J7/0093H02M3/158Y02E60/12Y02T10/7055H01L2924/00
    • Certain embodiments of the present invention provide a battery heating circuit, comprising a plurality of switch units (1), a switching control module (100), a damping component R1, an energy storage circuit, and a polarity inversion unit (101), wherein: the energy storage circuit is connected with the battery, and comprises a current storage component L1 and a plurality of charge storage components C1; the plurality of charge storage components C1 are connected with the plurality of switch units (1) in series in one-to-one correspondence to form a plurality of branches; the plurality of branches are connected in parallel with each other and then connected with the current storage component L1 and damping component R1 in series; the switching control module (100) is connected with the switch units (1), and is configured to control ON/OFF of the switch units (1), so that the energy flows back-and-forth between the battery and the energy storage circuit when the switch units (1) switch on; the polarity inversion unit (101) is connected with the energy storage circuit, and is configured to invert the voltage polarity of the plurality of charge storage components C1 after the switch units (1) switch from ON state to OFF state. For example, the heating circuit provided in certain embodiments of the present invention can improve charge/discharge performance of the battery, as well as safety and work efficiency in the battery heating process.
    • 本发明的某些实施例提供一种电池加热电路,包括多个开关单元(1),开关控制模块(100),阻尼组件R1,能量存储电路和极性反转单元(101),其中 能量存储电路与电池连接,具有电流存储部L1和多个电荷存储部C1; 多个电荷存储组件C1与多个开关单元(1)一一对应地串联连接以形成多个分支; 多个分支彼此并联连接,然后与当前存储部件L1和阻尼部件R1串联连接; 切换控制模块(100)与开关单元(1)连接,并且被配置为控制开关单元(1)的接通/断开,使得能量在电池和能量存储器之间来回流动 电路当开关单元(1)接通时; 极性反转单元(101)与能量存储电路连接,并且被配置为在开关单元(1)从接通状态切换到断开状态之后反转多个电荷存储组件C1的电压极性。 例如,在本发明的某些实施例中提供的加热电路可以改善电池的充放电性能,以及电池加热过程中的安全性和工作效率。