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    • 42. 发明授权
    • Method and apparatus for fast booting a portable computing device allowing for immediate operation
    • 用于快速启动便携式计算设备以允许立即操作的方法和装置
    • US08156320B2
    • 2012-04-10
    • US12207106
    • 2008-09-09
    • Jaime A. BorrasJose M. FernandezZaffer S. Merchant
    • Jaime A. BorrasJose M. FernandezZaffer S. Merchant
    • G06F9/00G06F13/00
    • G06F9/44573G06F9/4401
    • The present invention discloses a portable computing device (200) including a processor (202), non-volatile memory (206), and a volatile memory (208). An execute in place (XIP) kernel (210) stored in the non-volatile memory is executed immediately upon powering up the device. As the XIP kernel is executed, the processor maintain state and context information (212) in the volatile memory. The XIP kernel includes user interface and application segments, allow the user to perform some functions immediately upon powering up the device. While executing the XIP kernel and full code instantiation (214) is loaded into the volatile memory. The full code instantiation includes identical code as is in the XIP kernel, in addition to other code. Once loaded, execution is switched (412) from the XIP kernel to the full code instantiation, providing full functionality of the device.
    • 本发明公开了一种包括处理器(202),非易失性存储器(206)和易失性存储器(208)的便携式计算设备(200)。 存储在非易失性存储器中的执行就绪(XIP)内核(210)在加电设备时立即执行。 当执行XIP内核时,处理器将状态和上下文信息(212)维护在易失性存储器中。 XIP内核包括用户界面和应用程序段,允许用户在启动设备时立即执行某些功能。 在执行XIP内核并将完整代码实例化(214)加载到易失性存储器中时。 除了其他代码之外,完整的代码实例包括与XIP内核中相同的代码。 一旦加载,执行从XIP内核切换到(412)到完全代码实例化,提供设备的全部功能。
    • 43. 发明申请
    • METHOD AND APPARATUS FOR FAST BOOTING A PORTABLE COMPUTING DEVICE ALLOWING FOR IMMEDIATE OPERATION
    • 用于快速打印即时操作的便携式计算设备的方法和装置
    • US20100058045A1
    • 2010-03-04
    • US12207106
    • 2008-09-09
    • Jaime A. BORRASJose M. FERNANDEZZaffer S. MERCHANT
    • Jaime A. BORRASJose M. FERNANDEZZaffer S. MERCHANT
    • G06F15/177G06F12/02
    • G06F9/44573G06F9/4401
    • The present invention discloses a portable computing device (200) including a processor (202), non-volatile memory (206), and a volatile memory (208). An execute in place (XIP) kernel (210) stored in the non-volatile memory is executed immediately upon powering up the device. As the XIP kernel is executed, the processor maintain state and context information (212) in the volatile memory. The XIP kernel includes user interface and application segments, along the user to perform some functions immediately upon powering up the device. While executing the XIP kernel and full code instantiation (214) is loaded into the volatile memory. The full code instantiation includes identical code as is in the XIP kernel, in addition to other code. Once loaded, execution is switched (412) from the XIP kernel to the full code instantiation, providing full functionality of the device.
    • 本发明公开了一种包括处理器(202),非易失性存储器(206)和易失性存储器(208)的便携式计算设备(200)。 存储在非易失性存储器中的执行就绪(XIP)内核(210)在加电设备时立即执行。 当执行XIP内核时,处理器将状态和上下文信息(212)维护在易失性存储器中。 XIP内核包括用户界面和应用程序段,用户可以在启动设备时立即执行某些功能。 在执行XIP内核并将完整代码实例化(214)加载到易失性存储器中时。 除了其他代码之外,完整的代码实例包括与XIP内核中相同的代码。 一旦加载,执行从XIP内核切换到(412)到完全代码实例化,提供设备的全部功能。
    • 44. 发明申请
    • MULTI MODEL ADDRESS BOOK
    • 多模式地址簿
    • US20070281676A1
    • 2007-12-06
    • US11421565
    • 2006-06-01
    • Jaime A. BorrasIwona TurlikKenneth J. ZdunekStephen L. Spear
    • Jaime A. BorrasIwona TurlikKenneth J. ZdunekStephen L. Spear
    • H04M3/00
    • H04M1/56H04M1/2745H04M1/274508H04M1/72563H04W76/10
    • A wireless communication device (102) includes a multi-mode transceiver (204) that is operable to communicate with a plurality of communication networks. The device (102) also includes a memory (216) for storing: an electronic address book (226) that includes a plurality of identifiers (302), each identifier (302) identifying a call destination device; a plurality of access network choices (304) for at least one of the identifiers (302); and a plurality of service choices (308) for at least one of the identifiers. The device (102) further includes a controller (210) having access to the memory (216) for determining a preferred call model and selecting one of the plurality of access network choices and one of the plurality of service choices as a preferred call model for at least one of the identifiers.
    • 无线通信设备(102)包括可操作以与多个通信网络进行通信的多模式收发器(204)。 设备(102)还包括存储器(216),用于存储:包括多个标识符(302)的电子地址簿(226),标识呼叫目的地设备的每个标识符(302) 用于所述标识符(302)中的至少一个的多个接入网络选择(304); 以及用于至少一个标识符的多个服务选择(308)。 设备(102)还包括控制器(210),其具有访问存储器(216),用于确定优选呼叫模型,并且选择多个接入网络选择中的一个,并且将多个服务选择中的一个作为优选呼叫模型, 至少一个标识符。
    • 46. 发明授权
    • Contactless battery charger with wireless control link
    • 非接触式电池充电器,带无线控制连接
    • US06184651B2
    • 2001-02-06
    • US09531402
    • 2000-03-20
    • Jose M. FernandezJaime A. Borras
    • Jose M. FernandezJaime A. Borras
    • H02J700
    • H02M3/33523H02J7/025H02J50/12H02J50/40H02J50/80
    • In a contactless charging system charging energy is transferred across an inductive coupler to charge a battery (21) of a portable device, such as a two-way radio, cellular phone, paging device, or wireless communicator. The inductive coupler also provides a way for communicating at least one signal, such as to improve the charging process and the transfer of charging energy. Charging efficiency is improved by voltage regulation using feedback through the inductive coupler, or via a wireless RF link, and a controller (11) in-circuit with the primary side (12) of the inductive coupler. The controller (11) may communicate information signals via inductive coupling, or via a wireless RF link, for communicating with other devices such as smart cards and microphones or for control or data transfer.
    • 在非接触式充电系统中,充电能量通过电感耦合器传送,以对诸如双向无线电,蜂窝电话,寻呼设备或无线通信器的便携式设备的电池(21)充电。 感应耦合器还提供用于传达至少一个信号的方式,例如改善充电过程和充电能量的传输。 通过使用通过电感耦合器或经由无线RF链路的反馈的电压调节以及与电感耦合器的初级侧(12)在电路中的控制器(11)来提高充电效率。 控制器(11)可以经由感应耦合或经由无线RF链路来传送信息信号,以与诸如智能卡和麦克风之类的其它设备进行通信或用于控制或数据传输。
    • 47. 发明授权
    • Communication device capable of estimating signal quality without
synchronization pattern
    • 无需同步模式即可估计信号质量的通信设备
    • US5715240A
    • 1998-02-03
    • US642548
    • 1996-05-03
    • Jaime A. BorrasSteven C. JasperJames P. MichelsTroy J. Beukema
    • Jaime A. BorrasSteven C. JasperJames P. MichelsTroy J. Beukema
    • H04L7/00H04L7/10H04N3/06H04N3/14
    • H04L7/0004H04L7/10
    • A method determines the signal usability of an adjacent channel in a multi-cell communication system without the aid of synchronization symbols. In general, a three step search is used to arrive at the adjacent channel signal quality. The first step is a coarse timing phase search. This is accomplished through a signal quality estimates (606). The second step arrives at the optimum time phase by first interpolating (608) the received signal around the time phase selected in the first step to generate additional samples. After the interpolation (608), signal quality estimates are calculated (610) for the time phases immediately surrounding the time phase found in the first step. The optimum time phase corresponds to the maximum of these quality estimates. Finally, in the third step, the signal quality estimate is calculated for the optimum time phase. This provides the adjacent channel signal quality estimate desired.
    • 一种方法确定多小区通信系统中相邻信道的信号可用性,而不需要同步符号。 通常,使用三步搜索来获得相邻信道信号质量。 第一步是粗略的时序相位搜索。 这是通过信号质量估计来实现的(606)。 第二步通过首先内插(608)在第一步骤中选择的时间相位周围的接收信号以产生附加样本,到达最佳时间阶段。 在内插(608)之后,针对在第一步骤中发现的时间段周围的时间阶段计算信号质量估计(610)。 最佳时间段对应于这些质量估计的最大值。 最后,在第三步中,针对最佳时间阶段计算信号质量估计。 这提供了期望的相邻信道信号质量估计。