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    • 62. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING GLOBAL PLATFORM COMPLIANT TRUSTED EXECUTION ENVIRONMENT
    • 提供全球平台综合执行环境的系统和方法
    • WO2016105651A1
    • 2016-06-30
    • PCT/US2015/056654
    • 2015-10-21
    • INTEL CORPORATION
    • VARADARAJAN, SrikanthLAL, ReshmaZMUDZINSKI, Krystof C.
    • H04L9/32
    • H04L9/3234G06F9/4406G06F9/45533G06F9/45558G06F9/4843G06F9/54G06F21/74G06F2009/45587G09C1/00H04L2209/127
    • Method of providing a Global Platform (GP) compliant Trusted Execution Environment (TEE) starts with main processor executing an application stored in memory device. Application includes client application (CA) and trusted application (TA). Executing the application includes running CA in client process and TA in TEE host process. Client process and TEE host process are separate. Using TEE host process, a request including identifier of the TA is received from client process to open session. Using GP Trusted Services enclave included in TEE host process, TA enclave associated with the identifier is determined and loaded in the TEE host process using the GP Trusted Services enclave to establish the session. Using TEE host process, commands to be invoked in TA enclave and set of parameters needed for commands are received from client process. Using GP Internal APIs, commands in TA enclave associated with identifier are executed. Other embodiments are also described.
    • 提供全球平台(GP)兼容的可执行环境(TEE)的方法从执行存储在存储设备中的应用程序的主处理器开始。 应用程序包括客户端应用程序(CA)和可信应用程序(TA)。 执行应用程序包括在客户端进程中运行CA,在TEE主机进程中运行TA。 客户端进程和TEE主机进程是分开的。 使用TEE主机进程,从客户端进程接收到包括TA标识符的请求以打开会话。 使用包含在TEE主机进程中的GP可信服务飞地,使用GP可信服务飞地来确定和加载与TID主机进程相关联的TA标识符以建立会话。 使用TEE主机进程,可以从客户端进程接收在TA包中调用的命令和命令所需的参数集。 使用GP Internal API,执行与标识符相关联的TA包层中的命令。 还描述了其它实施例。
    • 64. 发明申请
    • POWER MANAGEMENT FOR MEMORY ACCESSES IN A SYSTEM-ON-CHIP
    • 片上系统存储器访问的电源管理
    • WO2016048513A2
    • 2016-03-31
    • PCT/US2015/046508
    • 2015-08-24
    • INTEL CORPORATION
    • PARTIWALA, Suketu R.BIBIKAR, VasudevMACHER, StefanROHIT, Verma R.ABRAHAM, PhilipVAZ, Irwin J.KATHURIA, Manan
    • G06F1/32
    • G06F1/3275G06F1/3243G06F1/3287G11C7/1072Y02D10/13Y02D10/14Y02D10/171
    • Techniques and mechanisms to manage power states for a system-on-chip (SOC). Multiple modules of the SOC include a first module to perform a task including one or more accesses to a memory. In an embodiment, the SOC is transitioned to one of a path-to-memory-available (PMA) power state and a path-to-memory-not-available (PMNA) power state, where the transition is in response to an indication that, of the multiple modules, only the first module is to access the memory during the task. The PMA power state enables data communication between the memory and the first module and prevents data communication between the memory and any other module of the multiple modules. In another embodiment, the PMNA power state prevents data communication between the memory and any of the multiple modules, but allows a low latency transition from the PMNA power state to the PMA power state.
    • 管理片上系统(SOC)电源状态的技术和机制。 SOC的多个模块包括执行包括对存储器的一个或多个访问的任务的第一模块。 在一个实施例中,SOC转换到可用存储器路径(PMA)功率状态和不可用存取路径(PMNA)功率状态之一,其中转换响应于指示 在多个模块中,只有第一个模块在任务期间访问存储器。 PMA电源状态启用了存储器和第一个模块之间的数据通信,并阻止了存储器与多个模块中的任何其他模块之间的数据通信。 在另一个实施例中,PMNA功率状态阻止存储器与多个模块中的任何模块之间的数据通信,但允许从PMNA功率状态到PMA功率状态的低等待时间转变。

    • 67. 发明申请
    • DATA TRANSMISSION FOR TOUCHSCREEN DISPLAYS
    • 数据传输用于触摸屏显示
    • WO2015148008A1
    • 2015-10-01
    • PCT/US2015/016169
    • 2015-02-17
    • INTEL CORPORATION
    • ROBERTS, Richard D.PEARSON, Tom E.
    • G06F3/041
    • G06F3/042G06F3/0421G06F3/0428G06F2203/04109
    • Embodiments of the disclosure describe data transmission via a touchscreen display of a mobile computing device. The mobile computing device includes a peripheral component, integrated into a touchscreen display surface housing, and a plurality of photonic pulse transmitters and receivers disposed on edges of the touchscreen display surface. One or more receivers receive pulses from the photonic pulse transmitters for detecting user touch inputs on the touchscreen display surface. A photonic pulse modulator modulates a pulse to be transmitted from one of the photonic pulse transmitters based, at least in part, on peripheral component data. A photonic pulse demodulator demodulates the modulated pulse received by the pulse detector(s) to retrieve the peripheral component data. By utilizing these pulse transmitters/receivers, used for user touch input detection, to also exchange data via modulated light, the bezel area around the touchscreen display surface may be reduced.
    • 本公开的实施例描述了经由移动计算设备的触摸屏显示器的数据传输。 移动计算设备包括集成到触摸屏显示表面外壳中的外围组件以及设置在触摸屏显示表面边缘上的多个光子脉冲发射器和接收器。 一个或多个接收器接收来自光子脉冲发射器的脉冲,用于检测触摸屏显示表面上的用户触摸输入。 光子脉冲调制器至少部分地基于外围组件数据来调制要从一个光子脉冲发射器传输的脉冲。 光子脉冲解调器解调由脉冲检测器接收的调制脉冲以检索外围元件数据。 通过利用用于用户触摸输入检测的这些脉冲发射器/接收器,还可以通过调制光进行数据交换,所以触摸屏显示面周围的边框区域可能会减少。
    • 70. 发明申请
    • REUSABLE CLOSURE
    • 可重复关闭
    • WO2015120313A1
    • 2015-08-13
    • PCT/US2015/014888
    • 2015-02-06
    • PRESERVINOLUZAICH, Gregory John
    • LUZAICH, Gregory John
    • B65D51/24
    • B65D51/244B65D39/0076B65D79/02Y02W30/807
    • A preservation apparatus and method for using the same are disclosed herein. In one embodiment, the preservation apparatus comprising: a removable closure adapted to fit together in sealed relationship with a first container for containing an item, where the removable closure comprises a second container to contain a substance operable to collect oxygen molecules contained within the first container. The preservation apparatus also comprises a removable cap adapted to cover a portion of the removable closure including the second container, in order prevent the second container from being exposed to oxygen molecules outside the cap.
    • 本文公开了一种保存装置及其使用方法。 在一个实施方案中,保存装置包括:可移除的封闭物,其适于与第一容器密封地关系地装配在一起,用于容纳物品,其中可移除的封闭物包括第二容器,以容纳可操作以收集包含在第一容器内的氧分子的物质 。 保存装置还包括适于覆盖包括第二容器的可移除封闭件的一部分的可拆卸盖,以防止第二容器暴露于盖外部的氧分子。