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    • 3. 发明授权
    • Electronic device with USB interface and method for starting USB communication therefor
    • 具有USB接口的电子设备和用于启动USB通信的方法
    • US09201832B2
    • 2015-12-01
    • US14113238
    • 2011-11-21
    • Qirui LiChao LiHuiqin ShiMin XuTao WangPengbin Xu
    • Qirui LiChao LiHuiqin ShiMin XuTao WangPengbin Xu
    • H02J1/00G06F13/40H02J7/00
    • G06F13/4068H02J7/0052H02J2007/0062
    • The disclosure provides an electronic device with a Universal Serial Bus (USB) interface and a method for starting USB communication for a USB interface, so as to solve the problem that a mobile phone terminal device can be damaged easily when a charger shares one interface with USB communication in the conventional art. A control pin of the control circuit of the device is connected with a VCHG pin of a power management chip; an output pin of the control circuit is connected with a USB_VBUS pin of a USB interface chip; a power pin of the control circuit is connected with a fixed voltage input end which inputs a high level; and the control circuit is configured to output a fixed voltage from the output pin of the control circuit when detecting that the voltage of the control pin is more than a set threshold and output a low level from the output pin of the control circuit when detecting that the voltage of the control pin is less than the set threshold. The charging voltage (VCHG) of the handheld terminal product is only used as the control signal which is isolated from the voltage output to the USB_VBUS pin, so that the damage to the device is avoided.
    • 本发明提供一种具有通用串行总线(USB)接口的电子设备和用于启动USB接口的USB通信的方法,以解决当充电器共享一个接口时移动电话终端设备容易损坏的问题 传统技术中的USB通信 设备的控制电路的控制引脚与电源管理芯片的VCHG引脚连接; 控制电路的输出引脚与USB接口芯片的USB_VBUS引脚连接; 控制电路的电源引脚与输入高电平的固定电压输入端相连; 并且所述控制电路被配置为当检测到所述控制引脚的电压大于设定的阈值时从所述控制电路的输出引脚输出固定电压,并且当检测到所述控制电路的输出引脚时从所述控制电路的输出引脚输出低电平 控制引脚的电压小于设定的阈值。 手持终端产品的充电电压(VCHG)仅用作与输出到USB_VBUS引脚的电压隔离的控制信号,从而避免了对器件的损坏。
    • 4. 发明申请
    • ELECTRONIC DEVICE WITH USB INTERFACE AND METHOD FOR STARTING USB COMMUNICATION THEREFOR
    • 具有USB接口的电子设备和用于启动USB通信的方法
    • US20140051479A1
    • 2014-02-20
    • US14113238
    • 2011-11-21
    • Qirui LiChao LiHuiqin ShiMin XuTao WangPengbin Xu
    • Qirui LiChao LiHuiqin ShiMin XuTao WangPengbin Xu
    • H04M1/02
    • G06F13/4068H02J7/0052H02J2007/0062
    • The disclosure provides an electronic device with a Universal Serial Bus (USB) interface and a method for starting USB communication for a USB interface, so as to solve the problem that a mobile phone terminal device can be damaged easily when a charger shares one interface with USB communication in the conventional art. A control pin of the control circuit of the device is connected with a VCHG pin of a power management chip; an output pin of the control circuit is connected with a USB_VBUS pin of a USB interface chip; a power pin of the control circuit is connected with a fixed voltage input end which inputs a high level; and the control circuit is configured to output a fixed voltage from the output pin of the control circuit when detecting that the voltage of the control pin is more than a set threshold and output a low level from the output pin of the control circuit when detecting that the voltage of the control pin is less than the set threshold. The charging voltage (VCHG) of the handheld terminal product is only used as the control signal which is isolated from the voltage output to the USB_VBUS pin, so that the damage to the device is avoided.
    • 本发明提供一种具有通用串行总线(USB)接口的电子设备和用于启动USB接口的USB通信的方法,以解决当充电器共享一个接口时移动电话终端设备容易损坏的问题 传统技术中的USB通信 设备的控制电路的控制引脚与电源管理芯片的VCHG引脚连接; 控制电路的输出引脚与USB接口芯片的USB_VBUS引脚连接; 控制电路的电源引脚与输入高电平的固定电压输入端相连; 并且所述控制电路被配置为当检测到所述控制引脚的电压大于设定的阈值时从所述控制电路的输出引脚输出固定电压,并且当检测到所述控制电路的输出引脚时从所述控制电路的输出引脚输出低电平 控制引脚的电压小于设定的阈值。 手持终端产品的充电电压(VCHG)仅用作与输出到USB_VBUS引脚的电压隔离的控制信号,从而避免了对器件的损坏。
    • 6. 发明授权
    • Renewable energy control systems and methods
    • 可再生能源控制系统和方法
    • US09218035B2
    • 2015-12-22
    • US13763643
    • 2013-02-09
    • Tao LiChao Li
    • Tao LiChao Li
    • G06F1/26
    • G06F1/263
    • Various examples are provided for renewable energy control. In one example, among others, a system includes a PV source, a multi-core processor load, and a solar power manager configured to adjust an operating point of the PV source about a maximum power point by dynamically adjusting a transfer ratio and a load level. In another example, a method includes sensing an output current supplied to a multi-core processor load by a power converter at a first transfer ratio, sensing another output current supplied at a second transfer ratio, and determining an operating point of the PV source with respect to a maximum power point based upon the output currents. In another example, a system includes a power manager configured to switch servers between a renewable energy supply and a utility energy supply based at least in part upon a budget level and the load power consumption.
    • 提供了可再生能源控制的各种实例。 在一个示例中,系统包括PV源,多核处理器负载和太阳能发电管理器,该太阳能发电管理器被配置为通过动态地调节传输比和负载来调整PV源的关于最大功率点的工作点 水平。 在另一个示例中,一种方法包括以第一传送比率感测由功率转换器提供给多核处理器负载的输出电流,感测以第二传送比提供的另一输出电流,以及确定PV源的工作点, 相对于基于输出电流的最大功率点。 在另一示例中,系统包括功率管理器,其被配置为至少部分地基于预算水平和负载功率消耗来在可再生能源和公用设施能量供应之间切换服务器。
    • 7. 发明申请
    • RENEWABLE ENERGY CONTROL SYSTEMS AND METHODS
    • 可再生能源控制系统和方法
    • US20130212410A1
    • 2013-08-15
    • US13763643
    • 2013-02-09
    • Tao LiChao Li
    • Tao LiChao Li
    • G06F1/26
    • G06F1/263
    • Various examples are provided for renewable energy control. In one example, among others, a system includes a PV source, a multi-core processor load, and a solar power manager configured to adjust an operating point of the PV source about a maximum power point by dynamically adjusting a transfer ratio and a load level. In another example, a method includes sensing an output current supplied to a multi-core processor load by a power converter at a first transfer ratio, sensing another output current supplied at a second transfer ratio, and determining an operating point of the PV source with respect to a maximum power point based upon the output currents. In another example, a system includes a power manager configured to switch servers between a renewable energy supply and a utility energy supply based at least in part upon a budget level and the load power consumption.
    • 提供了可再生能源控制的各种实例。 在一个示例中,系统包括PV源,多核处理器负载和太阳能发电管理器,该太阳能发电管理器被配置为通过动态地调节传输比和负载来调整PV源的关于最大功率点的工作点 水平。 在另一个示例中,一种方法包括以第一传送比率感测由功率转换器提供给多核处理器负载的输出电流,感测以第二传送比提供的另一输出电流,以及确定PV源的工作点, 相对于基于输出电流的最大功率点。 在另一示例中,系统包括功率管理器,其被配置为至少部分地基于预算水平和负载功率消耗来在可再生能源和公用设施能量供应之间切换服务器。
    • 8. 发明授权
    • Method, system and authentication centre for authenticating in end-to-end communications based on a mobile network
    • 用于基于移动网络进行端到端通信认证的方法,系统和认证中心
    • US08468353B2
    • 2013-06-18
    • US13160152
    • 2011-06-14
    • Jiwei WeiXuyan FanChao Li
    • Jiwei WeiXuyan FanChao Li
    • H04L29/06
    • H04L63/0869H04L63/061H04L63/0807H04L63/205H04W12/04H04W12/06
    • The invention discloses a method for authenticating in end-to-end communications based on a mobile network, applied to a system including a first service entity requesting a service, a second service entity providing the service and an entity authentication center, EAC; respectively performing a mutual authentication between the first service entity and the EAC and that between the second service entity and the EAC according to the negotiated authentication mode; if the first service entity requests the second service entity to provide the service, the EAC providing authentication inquiring for the first service entity and the second service entity according to the negotiated authentication mode, and generating a shared derived key according to the negotiated authentication mode; and the first service entity and the second service entity authenticating each other according to the shared derived key and the negotiated authentication mode, and generating a session key for protecting the service.
    • 本发明公开了一种基于移动网络的端到端通信认证方法,应用于包括请求业务的第一业务实体,提供业务的第二业务实体和实体认证中心EAC; 分别根据协商的认证方式在第一服务实体和EAC之间以及第二服务实体与EAC之间进行相互认证; 如果所述第一服务实体请求所述第二服务实体提供所述服务,则所述EAC根据协商的认证方式提供询问所述第一服务实体和所述第二服务实体的认证,并根据协商的认证方式生成共享导出密钥; 所述第一服务实体和所述第二服务实体根据所述共享导出密钥和所述协商认证方式彼此认证,并且生成用于保护所述服务的会话密钥。
    • 10. 发明授权
    • Pipeline for network based server-side 3D image rendering
    • 基于网络的服务器端3D图像渲染的流水线
    • US08386560B2
    • 2013-02-26
    • US12206151
    • 2008-09-08
    • Ke MaLijiang FangChao Li
    • Ke MaLijiang FangChao Li
    • G06F15/16
    • G06T15/005G06T2200/16G06T2210/08H04N21/2343H04N21/4728H04N21/64322H04N21/6587
    • The claimed subject matter provides a system and/or a method that facilitates rendering a portion of an image from a server on a client. A portion of an image can be hosted by a server. A client can utilize a device to interact with the portion of an image via a network. The client can established two or more TCP/IP connections with the server in order to interact with the portion of the image. A pipe component can enforce an isolated pipeline and a processing thread for each of a user manipulation of the portion of the image, a transmission of a user request to manipulate the portion of the image via the network, a rendering of the portion of the image on the server, a compression of the portion of the image on the server, a transmission of the compressed portion of the image via the network, a decompression of the portion of the image on the client, and a display of the portion of the image on the client.
    • 所要求保护的主题提供了有助于从客户端上的服务器呈现图像的一部分的系统和/或方法。 图像的一部分可以由服务器托管。 客户端可以利用设备通过网络与图像的部分进行交互。 客户端可以与服务器建立两个或多个TCP / IP连接,以便与图像的部分进行交互。 管道组件可以强制执行孤立的管道和处理线程,用于用户操纵图像的一部分,用户通过网络操纵图像的部分请求的传输,图像的部分的呈现 在服务器上对服务器上的图像部分进行压缩,通过网络传输图像的压缩部分,解压缩客户端上的图像部分,以及显示图像的该部分 在客户端上