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    • 2. 发明授权
    • Method and system for processing online joint guarantee
    • 在线联合保证处理方法和系统
    • US08924456B2
    • 2014-12-30
    • US12298247
    • 2008-10-22
    • Xiaoming HuJing GaoFeng LiJinbo XiaYanmin XuWeiyan LvLijiang ZhangZhengwei Zhang
    • Xiaoming HuJing GaoFeng LiJinbo XiaYanmin XuWeiyan LvLijiang ZhangZhengwei Zhang
    • G06F15/16G06Q40/02
    • G06Q40/02
    • A method and a system are disclosed for processing online joint guarantee. After a server receives an application from a user, the server provides various types of joint guarantee grouping to the user for selection. The server creates a joint guarantee group having a unique ID according to the selection of the user, organizes the information of the joint guarantee group into a data packet and sends the data packet to a bank system to be approved. The method potentially improves the success rate of joint guarantee grouping and removes the geographical limitations. Through the Internet, the method makes it possible to join companies of different geographical locations for online joint guarantee. The method also establishes a complete online alert mechanism, and realizes computerized loan risk control to improve the business credit system.
    • 公开了一种处理在线联合保证的方法和系统。 在服务器从用户接收到应用程序之后,服务器提供各种类型的联合保证分组给用户进行选择。 服务器根据用户的选择创建具有唯一ID的联合保证组,将联合保证组的信息组织成数据包,并将数据包发送到要批准的银行系统。 该方法有可能提高联合保证分组的成功率,并消除地理限制。 通过互联网,该方法可以加入不同地理位置的公司进行在线联合保证。 该方法还建立了完整的在线警报机制,实现了电脑化贷款风险控制,改善了企业信用体系。
    • 6. 发明授权
    • Method of reducing eddy currents caused by a gradient magnetic field in a magnetic resonance system
    • 降低由磁共振系统中的梯度磁场引起的涡流的方法
    • US07633292B2
    • 2009-12-15
    • US12039099
    • 2008-02-28
    • Jing GaoCheng NiZhong You RenChao Wang
    • Jing GaoCheng NiZhong You RenChao Wang
    • G01V3/00
    • G01R33/3806G01R33/385G01R33/389
    • A method for reducing eddy currents caused by the gradient magnetic field in a magnetic resonance system employs an anti-eddy current device formed by a number of laminated metallic plates, and includes the steps of calculating the distribution of the main magnetic field of the magnetic resonance system in the anti-eddy current device, calculating the distribution of the main magnetic field and the gradient magnetic field in the anti-eddy current device, subtracting the calculated distribution of the main magnetic field in the anti-eddy current device from the calculated distribution of the main magnetic field and the gradient magnetic field in the anti-eddy current device, to obtain the distribution of the gradient magnetic field in the anti-eddy current device, and adjusting the setting of the metallic plates of the anti-eddy current device based on the distribution of the gradient magnetic field in the anti-eddy current device, so as to reduce the eddy current. The adjustment in the metallic plates of the anti-eddy current device should be such that the gradient magnetic field is parallel to or substantially parallel to the plane of the metallic plates. The metallic plates can be further divided into a number of areas, or the laminating direction of the metallic plates in different areas can be adjusted according to the specific distribution of the gradient magnetic field to obtain the optimum effect of eddy current reduction.
    • 一种用于减小由磁共振系统中的梯度磁场引起的涡流的方法采用由多个层叠的金属板形成的抗涡流装置,并且包括以下步骤:计算磁共振的主磁场分布 系统在反涡流装置中计算反涡流装置中主磁场和梯度磁场的分布,从计算出的分布中减去计算出的反涡流装置中主磁场的分布 的反涡流装置中的主磁场和梯度磁场,以获得反涡流装置中梯度磁场的分布,并且调整反涡流装置的金属板的设置 基于反涡流装置中梯度磁场的分布,以减少涡流。 防涡流装置的金属板的调整应使得梯度磁场平行于或基本平行于金属板的平面。 金属板可以进一步分为多个区域,也可以根据梯度磁场的特定分布调整不同区域的金属板的层叠方向,以获得涡流减少的最佳效果。
    • 9. 发明授权
    • Digital domain accumulative CMOS-TDI image sensor with low power consumption
    • 数字域累积CMOS-TDI图像传感器,功耗低
    • US08976278B2
    • 2015-03-10
    • US13882181
    • 2012-05-31
    • Suying YaoKaiming NieJiangtao XuJing GaoZaifeng ShiCen Gao
    • Suying YaoKaiming NieJiangtao XuJing GaoZaifeng ShiCen Gao
    • H04N5/3745H04N5/374H04N5/378
    • H04N5/37455H04N5/3743H04N5/378
    • The present invention relates to the field of design of analog digital hybrid integrated circuit. The object of the invention is to reduce ADC conversion rate thus further reducing power consumption of the sensor while not reducing line frequency of the CMOS-TDI. To this end, a digital domain accumulative CMOS-TDI image sensor with low power consumption is provided. It includes a pixel array of n+k lines multiplied m columns, a column parallel signal pre-processing circuit, a column parallel successive approximation (SAR) ADC, a column parallel digital domain accumulator, a column parallel divider, a timing control circuit and an output shift register, wherein n+k+1 coarse quantification memory units are provided to the column parallel digital domain accumulator for storage of coarse quantification results; and memory units for storage of n times of fine quantification results are also provided, thus realizing n stages of TDI signal accumulation after accumulation of n times of fine quantification results. The invention is generally used in hybrid integrated circuit design.
    • 本发明涉及模拟数字混合集成电路的设计领域。 本发明的目的是降低ADC转换速率,从而进一步降低传感器的功耗,同时不降低CMOS-TDI的线路频率。 为此,提供了具有低功耗的数字域累积CMOS-TDI图像传感器。 它包括n + k行乘以m列的像素阵列,列并行信号预处理电路,列并行逐次逼近(SAR)ADC,列并行数字域累加器,列并行分频器,定时控制电路和 输出移位寄存器,其中n + k + 1个粗量化存储单元提供给列并行数字域累加器,用于存储粗量化结果; 并且还提供用于存储n次精细定量结果的存储单元,从而在n次精细定量结果累积后实现了n阶段的TDI信号累积。 本发明一般用于混合集成电路设计。