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    • 61. 发明申请
    • Content delivery during call idle time
    • 通话空闲时间内容传送
    • US20090185667A1
    • 2009-07-23
    • US12009228
    • 2008-01-17
    • Eyal BychkovUri Ron
    • Eyal BychkovUri Ron
    • H04M1/64H04B1/38
    • H04M7/129H04L65/60H04M1/72522H04M1/72544H04M1/72558H04M3/4288H04M3/44H04M3/4878H04W4/18Y02D70/122
    • A method for effective utilization of call idle time, including automatically detecting that a first person using a phone has initiated a phone call to a second person, and that the second person has not yet answered the call, wherein the phone is operative in an idle mode to present content pre-designated by the first person, and is operative in a normal mode to send and receive voice communications to and from the second person and to not present the pre-designated content, activating the idle mode of the phone in response to the automatically detecting, further automatically detecting that the second person has answered the call, and automatically activating the normal mode of the phone in response to the further automatically detecting. A cell phone is also described and claimed.
    • 一种用于有效利用呼叫空闲时间的方法,包括自动检测使用电话的第一人已经启动了对第二人的电话呼叫,并且所述第二人还没有应答所述呼叫,其中所述电话在空闲中操作 模式以呈现由第一人预先指定的内容,并且以正常模式操作以向和从第二人发送和接收语音通信,并且不呈现预先指定的内容,响应地激活电话的空闲模式 为了自动检测,进一步自动检测第二人已经应答了该呼叫,并且响应于进一步的自动检测自动激活电话的正常模式。 手机也被描述和声明。
    • 64. 发明授权
    • SD switch box in a cellular handset
    • SD开关盒在蜂窝手机中
    • US07970433B2
    • 2011-06-28
    • US11827525
    • 2007-07-11
    • Itay ShermanEyal BychkovYaron Segalov
    • Itay ShermanEyal BychkovYaron Segalov
    • H04M1/00
    • H04M1/0202G06F13/385H04L25/02Y02D70/122
    • A cellular handset, including a cellular base band modem, including a UART interface, and an SD host interface, a NAND flash memory, a NAND controller coupled with the NAND flash memory, a host device including a host controller, wherein the electronic host device supports an SD connection, and a convergence controller coupled with the cellular base band modem, the host device and the NAND controller, including a UART port for transferring data to and from the cellular base band modem via the UART interface, an SD port for transferring data to and from the cellular base band modem via the SD host interface, an SD port for transferring data to and from the NAND flash memory via the NAND controller, an SD port for transferring data to and from the host device via the host controller, a first mailbox into which the base band modem writes messages and from which the host device reads messages, and a second mailbox into which the host device writes messages and from which the cellular base band modem reads messages. A method is also described and claimed.
    • 包括蜂窝基带调制解调器的蜂窝手机,包括UART接口和SD主机接口,NAND闪速存储器,与NAND闪速存储器耦合的NAND控制器,包括主机控制器的主机设备,其中电子主机设备 支持SD连接,以及与蜂窝基带调制解调器,主机设备和NAND控制器耦合的收敛控制器,包括用于经由UART接口向蜂窝基带调制解调器传送数据的UART端口,用于传送的SD端口 通过SD主机接口与蜂窝基带调制解调器之间的数据,用于通过NAND控制器向NAND闪速存储器传送数据的SD端口,用于经由主机控制器向主机设备传送数据的SD端口, 基带调制解调器写入消息并从主机设备读取消息的第一邮箱,以及主机设备写入消息的第二邮箱,并且蜂窝基站 带调制解调器读取消息。 还描述并要求保护的方法。
    • 67. 发明授权
    • Bi-directional battery charging for coupled electronic devices
    • 双向电池充电用于耦合电子设备
    • US07863856B2
    • 2011-01-04
    • US12008499
    • 2008-01-11
    • Itay ShermanTamr Demri
    • Itay ShermanTamr Demri
    • H02J7/00
    • H02J7/0054G06F1/1626G06F1/1632G06F1/263H02J7/0013H04M1/6041H04M1/72527Y02D70/122
    • A system for bi-directional battery charging, including a first electronic device, including a first rechargeable battery, for providing power to the first electronic device, and a first battery charger, and a second electronic device, including a second rechargeable battery, for providing power to the second electronic device, a second battery charger, a voltage boost that receives an input voltage from the first rechargeable battery and is selectively enabled to either up-convert the input voltage as input to the second battery charger, or else to passively pass the input voltage to the second battery charger; and a controller for programmatically controlling the first and the second battery chargers and the voltage boost, wherein the second electronic device attaches to the first electronic device to operate in combination therewith, and wherein the controller is programmed to decide, based on the voltages of the first and the second rechargeable batteries: (i) whether to supply power to the second electronic device from the first or second rechargeable battery, (ii) whether to charge the second rechargeable battery from the first rechargeable battery, and (iii) whether to enable or disable the voltage boost. A method is also described and claimed.
    • 一种用于双向电池充电的系统,包括用于向第一电子设备提供电力的第一电子设备和第一电池充电器,以及包括第二可充电电池的第二电子设备,用于提供 对第二电子设备的电力,第二电池充电器,接收来自第一可再充电电池的输入电压的升压,并且被选择性地使得能够将作为输入的输入电压上变频到第二电池充电器,或被动地通过 第二电池充电器的输入电压; 以及用于以编程方式控制所述第一和第二电池充电器和所述电压升高的控制器,其中所述第二电子设备附接到所述第一电子设备以与之组合操作,并且其中所述控制器被编程为基于所述电压 第一和第二可充电电池:(i)是否从第一或第二可充电电池向第二电子设备供电,(ii)是否从第一可充电电池对第二可再充电电池充电,以及(iii)是否启用 或禁用升压。 还描述并要求保护的方法。
    • 68. 发明授权
    • Bridge design for SD and MMC data buses
    • SD和MMC数据总线的桥设计
    • US07812640B2
    • 2010-10-12
    • US12534413
    • 2009-08-03
    • Itay Sherman
    • Itay Sherman
    • H03K19/0175
    • G06F13/4291
    • A circuit with bi-directional signal transmission, including a first signal source, for generating a first signal comprising one bit per clock cycle during a first plurality of clock cycles, a second signal source, for generating a second signal including one bit per clock cycle during a second plurality of clock cycles, a first buffer, coupled with the first signal source, that outputs the first signal when the first buffer is enabled, a second buffer, coupled with the second signal source, that outputs the second signal when the second buffer is enabled, and a plurality of logical gates, coupled with the first signal source, the second signal source, the first buffer and the second buffer, that control enablement of the first buffer and the second buffer, such that (i) at any given clock cycle at least one of the first buffer and the second buffer is disabled, and (ii) when the first buffer and said the buffer are both disabled, subsequent generation of a ‘0’ bit in the first signal or the second signal causes enablement of the first buffer or the second buffer, respectively.
    • 一种具有双向信号传输的电路,包括第一信号源,用于在第一多个时钟周期期间产生包括每个时钟周期的一个比特的第一信号,第二信号源,用于产生包括每个时钟周期一个比特的第二信号 在第二多个时钟周期期间,与所述第一信号源耦合的第一缓冲器,当所述第一缓冲器被使能时,所述第一缓冲器输出所述第一信号,所述第二缓冲器与所述第二信号源耦合,当所述第二缓冲器 缓冲器被启用,以及与第一信号源耦合的多个逻辑门,第二信号源,第一缓冲器和第二缓冲器,其控制第一缓冲器和第二缓冲器的启用,使得(i) 给定的时钟周期,禁用第一缓冲器和第二缓冲器中的至少一个,以及(ii)当第一缓冲器和所述缓冲器都被禁止时,在第一个信号中随后产生“0”位 nal或第二信号分别引起第一缓冲器或第二缓冲器的启用。
    • 69. 发明授权
    • Adjustable cut-off voltage for mobile device battery
    • 移动设备电池的可调节截止电压
    • US07795842B2
    • 2010-09-14
    • US11891777
    • 2007-08-13
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • H02J7/00
    • H02J9/002H02J7/0031Y02D70/122
    • A power management system for a mobile electronic device, including a microprocessor for continually monitoring a voltage of a battery within a mobile electronic device, wherein the device can operate in either a standalone mode powered by the battery, or in an externally powered mode, and wherein the battery is charged when the device is in external power mode, and a power manager coupled with said voltage meter, for controlling operation of the device according to the following logic: if the monitored voltage falls below an upper turn-on threshold, UTOT, during operation of the device in standalone mode, but is above a lower turn-on threshold, LTOT, then automatically turning the device off, and enabling the device to be turned on in an emergency mode, wherein at least one emergency action is enabled, and if the monitored voltage falls below LTOT during operation of the device in standalone mode, then automatically turning the device off, and preventing the device from being turned on. A method is also described and claimed.
    • 一种用于移动电子设备的电源管理系统,包括用于连续监视移动电子设备内的电池电压的微处理器,其中所述设备可以以由电池供电的独立模式或以外部供电模式操作,以及 其中当所述设备处于外部电源模式时,所述电池被充电,以及与所述电压计耦合的电源管理器,用于根据以下逻辑控制所述设备的操作:如果所监视的电压低于上限导通阈值,则UTOT 在独立模式下的设备操作期间,但是高于较低的导通阈值LTOT,则自动关闭设备,并且在紧急模式下启用该设备,其中启用至少一个紧急动作 ,并且如果在独立模式下设备运行期间监视的电压低于LTOT,则自动关闭设备,并防止设备转动 n。 还描述并要求保护的方法。