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    • 1. 发明授权
    • Systems and methods for touch-based two-stage text input
    • 基于触摸的两阶段文本输入的系统和方法
    • US09256366B2
    • 2016-02-09
    • US13584966
    • 2012-08-14
    • Hui DaiChang-Ki JeongChang-Hwan KimJeong J. MaPhillip D. Rasky
    • Hui DaiChang-Ki JeongChang-Hwan KimJeong J. MaPhillip D. Rasky
    • G06F3/041G06F3/0488
    • G06F3/04886
    • Embodiments relate to systems and methods for touch-based two-stage text input. An electronic device (102), such as a wearable wireless device, can be configured with a two-stage input interface (116) on a display (104). A first stage can include a seek area (120), which displays a subset of letters or other symbols to represent the full range of symbolic elements that are available, in a compressed form. The user can identify an intended target range (128) by touching an area at or around the letter or other symbol of interest. That input triggers the display of a second stage of the interface in a separate selection area (122), in which all letters or other symbols in the target range are expanded and displayed. The user can then touch and lift off the letter or other symbol they wish to choose, for example, to insert in a message or application.
    • 实施例涉及用于基于触摸的两阶段文本输入的系统和方法。 诸如可穿戴式无线设备的电子设备(102)可以在显示器(104)上配置有两级输入接口(116)。 第一阶段可以包括搜索区域(120),其以压缩形式显示字母或其他符号的子集以表示可用的符号元素的全部范围。 用户可以通过触摸字母或其他感兴趣符号周围的区域来识别预期的目标范围(128)。 该输入触发在单独的选择区域(122)中显示界面的第二阶段,其中扩展和显示目标范围中的所有字母或其他符号。 然后,用户可以触摸并提起他们希望选择的字母或其他符号,例如插入消息或应用程序。
    • 4. 发明授权
    • Electronic device with battery ejection mechanism
    • 具有电池排出机构的电子设备
    • US08367237B2
    • 2013-02-05
    • US12775432
    • 2010-05-06
    • De-Hua LiuJian-Hui DaiMeng-Hua HeYu-Tao ChenTe-Sheng Jan
    • De-Hua LiuJian-Hui DaiMeng-Hua HeYu-Tao ChenTe-Sheng Jan
    • H01M2/10H02B1/00H05K5/00H05K7/00H04B1/034
    • H01M2/1066
    • An electronic device comprises a housing, a battery retainer arranged in the housing, a battery, a movable member and at least one resilient member. The battery retainer defines a battery cavity and a spring tab. The battery retained in the battery cavity defines a recessed portion and a protrusion protruding from the bottom of the recessed portion. The recessed portion defines a plurality of sloped surfaces and vertical walls surrounding the protrusion. The protrusion defines a side wall. The movable member comprises a first end rotatably connected to the battery retainer and a second end connecting the sloped surfaces. After the battery is pushed into the battery cavity, one of the sloped surfaces engages the second end of the movable member to move until the second end disengages from the side wall of the protrusion.
    • 电子设备包括壳体,布置在壳体中的电池保持器,电池,可动构件和至少一个弹性构件。 电池保持器限定电池腔和弹簧片。 保留在电池腔中的电池限定了从凹部的底部突出的凹部和突起。 凹陷部分限定了多个倾斜表面和围绕突起的垂直壁。 突出部限定侧壁。 可移动构件包括可旋转地连接到电池保持器的第一端和连接倾斜表面的第二端。 在电池被推入电池腔中之后,其中一个倾斜表面与可动件的第二端接合以移动直到第二端与突起的侧壁脱离。
    • 10. 发明授权
    • Offline extraction of configuration data
    • 离线提取配置数据
    • US08381300B2
    • 2013-02-19
    • US12359347
    • 2009-01-26
    • Hui DaiAnil F. ThomasCatalin D. Sandu
    • Hui DaiAnil F. ThomasCatalin D. Sandu
    • H04L29/06
    • G06F21/56G06F17/30351
    • A configuration scanning system is described herein that scans a system configuration database for malware-related information with less impact on other operations that access the system configuration database. The system employs techniques to reduce the impact on other operations that access the configuration database, including parsing a file-based stored version of the configuration database, accessing the configuration database using opportunistic locking, and caching configuration information obtained by scanning the configuration database. In this way, the system is able to respond to requests antimalware programs using cached information without impacting other programs using the configuration database. Thus, the configuration scanning system protects a computer system against malware while reducing the burden on the configuration database and on other programs that access the configuration database.
    • 本文描述了一种配置扫描系统,其扫描系统配置数据库以获得与访问系统配置数据库的其他操作相关的恶意软件相关信息。 该系统采用技术来减少对访问配置数据库的其他操作的影响,包括解析基于文件的存储版本的配置数据库,使用机会锁定访问配置数据库,以及缓存通过扫描配置数据库获取的配置信息。 以这种方式,系统能够使用缓存信息来响应请求反恶意软件程序,而不会使用配置数据库影响其他程序。 因此,配置扫描系统保护计算机系统免受恶意软件的影响,同时减少配置数据库和访问配置数据库的其他程序的负担。