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    • 1. 发明申请
    • CHARGING A BATTERY
    • 充电电池
    • WO2014004035A2
    • 2014-01-03
    • PCT/US2013/044587
    • 2013-06-06
    • INTEL CORPORATIONDAS, RipanGURUMOORTHY, NagasubramanianKEATES, Andy
    • DAS, RipanGURUMOORTHY, NagasubramanianKEATES, Andy
    • H02J7/04H02J7/00H02J13/00
    • H02J7/045H02J7/041
    • A method and system for applying a multi-rate charge to a battery are included herein. The method includes detecting a plurality of predetermined electrical measurements and a plurality of predetermined charge currents. The method also includes detecting an electrical measurement of the battery. Additionally, the method includes selecting a charge current from the plurality of predetermined charge currents to be applied to the battery based on the electrical measurement of the battery and the plurality of predetermined electrical measurements. Furthermore, the method includes applying the charge current to the battery. The method also includes detecting a plurality of subsequent electrical measurements of the battery. In addition, the method includes applying a plurality of subsequent charge currents to the battery based on the plurality of subsequent electrical measurements of the battery and the plurality of predetermined charge currents.
    • 这里包括用于将多速率电荷施加到电池的方法和系统。 该方法包括检测多个预定电测量和多个预定充电电流。 该方法还包括检测电池的电测量。 此外,该方法包括基于电池的电测量和多个预定电测量,从多个预定充电电流中选择要施加到电池的充电电流。 此外,该方法包括将充电电流施加到电池。 该方法还包括检测电池的多个随后的电测量。 此外,该方法包括基于电池的多个随后的电测量和多个预定的充电电流将多个后续的充电电流施加到电池。
    • 6. 发明申请
    • BATTERY RELIABILITY ODOMETER
    • 电池可靠性光度计
    • WO2017054003A1
    • 2017-03-30
    • PCT/US2016/053841
    • 2016-09-26
    • INTEL CORPORATION
    • RODRIGUEZ, JorgeUAN-ZO-LI, Alexander B.MATSUMURA, NaokiKEATES, AndyHERMERDING, James G.
    • G06F1/26H02J7/00G01R31/36
    • H01M10/48H01M2010/4278H02J7/0021H02J7/0047H02J7/0091H02J7/047
    • Various embodiments may be generally directed to techniques for using an observed battery stress history to manage operation of a computing system component in a high power performance mode when powered by a battery. Various embodiments include techniques for tracking stresses to a battery. Various embodiments include techniques for comparing the battery stress history to a degradation baseline for the battery. Various embodiments include techniques for developing a degradation baseline for a battery including, for example, a degradation baseline based on expected stress to a battery and/or a degradation baseline based on a battery reliability model. Various embodiments include techniques for determining a battery stress surplus or deficit. Various embodiments include techniques for managing operation of a performance enhancing mode or high power performance mode of a computing system component based on the determined battery stress surplus or deficit.
    • 各种实施例可以通常涉及当由电池供电时使用观察到的电池应力历史来管理高功率性能模式下的计算系统组件的操作的技术。 各种实施例包括用于跟踪电池的应力的技术。 各种实施例包括用于将电池应力历史与电池的劣化基准进行比较的技术。 各种实施例包括用于开发用于电池的劣化基线的技术,包括例如基于电池的预期应力和/或基于电池可靠性模型的劣化基准的劣化基准。 各种实施例包括用于确定电池应力剩余或缺陷的技术。 各种实施例包括基于所确定的电池应力剩余或缺陷来管理计算系统组件的性能增强模式或高功率性能模式的操作的技术。
    • 7. 发明申请
    • BATTERY STRUCTURE FOR EYEWEAR APPARATUS
    • 眼镜装置的电池结构
    • WO2016105703A1
    • 2016-06-30
    • PCT/US2015/061351
    • 2015-11-18
    • INTEL CORPORATION
    • KEATES, Andy
    • G02B27/01H02J7/35
    • G02C11/10H01M10/0436H01M10/465H02J7/355
    • An eyewear apparatus is provided that includes a lens structure having a lens panel, and a battery structure on the lens panel. The battery structure may include an anode, a separator and a cathode, and may also include a solar panel. The anode may be provided on the lens panel, the separator may be provided on the anode, the cathode may be provided on the separator, and the solar panel may be provided on the cathode. The battery structure may be used with the eyewear apparatus to store energy for electronic components associated with the eyewear apparatus. The electronic components may receive power from the battery structure. The solar panel may be provided on the battery structure. The solar panel may receive energy from sunlight or other light and provide energy to the battery structure.
    • 提供了一种眼镜装置,其包括具有透镜面板的透镜结构和在透镜面板上的电池结构。 电池结构可以包括阳极,隔板和阴极,并且还可以包括太阳能电池板。 阳极可以设置在透镜面板上,隔膜可以设置在阳极上,阴极可以设置在隔板上,并且太阳能电池板可以设置在阴极上。 电池结构可以与眼镜装置一起使用以存储与眼镜装置相关联的电子部件的能量。 电子部件可以从电池结构接收电力。 太阳能电池板可以设置在电池结构上。 太阳能电池板可以从阳光或其他光接收能量,并向电池结构提供能量。