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    • 131. 发明授权
    • Electronic device and method for resuming from hibernation for the same
    • 用于从休眠状态恢复的电子设备和方法相同
    • US09395793B2
    • 2016-07-19
    • US14170548
    • 2014-01-31
    • GETAC TECHNOLOGY CORPORATION
    • Chen-Ping Wang
    • G06F1/32G06F1/16
    • G06F1/3231G06F1/1694G06F2200/1637Y02D10/173
    • An electronic device and method for resuming from hibernation, the electronic device has a light sensing component and a tilt sensing component. When the electronic device is in the hibernation status, external light of electronic device is detected via the light sensing component for attaining light source data, the tilt angle of the electronic device against the horizontal plane is detected via the tilt sensing component for attaining tilt data. Thus, when it is determined that the light source data and the tilt data satisfy a predetermined resuming condition, the electronic device resumes from the hibernation status. With the present invention, when a user is going to operate electronic device, and the user only needs to hold electronic device and the electronic device resumes from the hibernation status and is ready to use without extra trigger actions required.
    • 一种用于从休眠状态恢复的电子设备和方法,电子设备具有光感测组件和倾斜感测组件。 当电子设备处于休眠状态时,通过用于获得光源数据的光感测部件检测电子设备的外部光,通过倾斜感测部件检测电子设备相对于水平面的倾斜角度,以获得倾斜数据 。 因此,当确定光源数据和倾斜数据满足预定的恢复条件时,电子设备从休眠状态恢复。 利用本发明,当用户要操作电子设备时,用户只需要保持电子设备,并且电子设备从休眠状态恢复并且可以在没有额外的触发动作的情况下使用。
    • 132. 发明申请
    • WATERPROOF STRUCTURE FOR USE WITH ELECTRONIC DEVICE
    • 防水结构与电子设备一起使用
    • US20160156379A1
    • 2016-06-02
    • US14819372
    • 2015-08-05
    • GETAC TECHNOLOGY CORPORATION
    • Gwo-Shiang Lee
    • H04B1/3888
    • H04B1/3888H04B2001/3894
    • A waterproof structure for use with an electronic device is provided. The electronic device has a gap. The waterproof structure includes a casing and a waterproof gasket. The casing encloses a periphery of the electronic device. The waterproof gasket is clamped between the casing and the electronic device. The waterproof gasket includes a fixing portion fixed to the casing and a first abutting portion and a second abutting portion which extend from the fixing portion. The first abutting portion and the second abutting portion abut against two opposite sides of the gap of the electronic device, respectively. Hence, the waterproof structure prevents liquid from seeping into the electronic device through the gap or even so in case of jerks or vibrations.
    • 提供了一种用于电子设备的防水结构。 电子设备有间隙。 防水结构包括外壳和防水垫圈。 外壳包围电子设备的外围。 防水垫圈夹在外壳和电子设备之间。 防水垫圈包括固定到壳体的固定部分和从固定部分延伸的第一邻接部分和第二邻接部分。 第一抵接部和第二抵接部分别抵靠电子装置的间隙的两个相对侧。 因此,防水结构防止液体通过间隙渗入电子装置,或者甚至在跳动或振动的情况下渗入电子装置。
    • 133. 发明授权
    • Electronic device and protection method thereof
    • 电子装置及其保护方法
    • US09218508B2
    • 2015-12-22
    • US14020650
    • 2013-09-06
    • GETAC TECHNOLOGY CORPORATION
    • Hsien-Yu Wang
    • G06F21/78G06F21/81G06F21/31G06F21/88
    • G06F21/78G06F21/316G06F21/81G06F21/88G06F2221/2111
    • An electronic device includes a positioning module, a micro processing unit and a first storing device. The micro processing unit electrically connects with the positioning module and the first storing device. The electronic detects a position thereof via the positioning module and generates a positioning coordinate datum. The micro processing unit determines whether the electronic device is in a preset working area through the positioning coordinate datum. When the electronic device is not in the preset working area, the micro processing unit stops the electronic device from accessing the first storing device. When the electronic device is in the preset working area, the micro-processing unit allows the electronic device to access the first storing device and boot a first operating system stored thereon.
    • 电子设备包括定位模块,微处理单元和第一存储设备。 微处理单元与定位模块和第一存储装置电连接。 电子装置通过定位模块检测其位置,并产生定位坐标数据。 微处理单元通过定位坐标基准确定电子设备是否处于预设工作区域。 当电子设备不在预设工作区域时,微处理单元停止电子设备访问第一存储设备。 当电子设备处于预设工作区域时,微处理单元允许电子设备访问第一存储设备并引导其上存储的第一操作系统。
    • 139. 发明申请
    • RING STRUCTURE FOR REDUCING FLASH GLARE AND A MANUFACTURING METHOD THEREOF
    • 用于减少闪光玻璃的环形结构及其制造方法
    • US20150168807A1
    • 2015-06-18
    • US14518848
    • 2014-10-20
    • GETAC TECHNOLOGY CORPORATION
    • Po-Tsun Chao
    • G03B11/04B29C45/14B29D11/00H04N5/44
    • G03B11/045B29C45/14B29C45/14336G03B2215/0503G03B2215/0567G03B2215/0575H04N5/2251
    • A ring structure for reducing flash glare and a manufacturing method thereof are provided. The ring structure for reducing flash glare is assembled on a camera module with a lens and a flashlight and includes a transparent substrate and a shading plate. The flashlight and the lens are fully separated by the shading plate to prevent light rays of the flashlight from interfering with the lens through the transparent substrate. The manufacturing method includes: providing a transparent substrate; forming a C-shaped hole on the transparent substrate; and injecting a plastic to fill the C-shaped hole and thereby form a shading plate on the transparent substrate. The manufacturing method entails performing a processing process on the transparent substrate directly and forming the shading plate by injection molding to not only simplify the manufacturing process but also makes the ring structure waterproof.
    • 提供了用于减少闪光眩光的环形结构及其制造方法。 用于减少闪光眩光的环结构组装在具有透镜和手电筒的相机模块上,并且包括透明基板和遮光板。 手电筒和透镜被遮光板完全分开,以防止手电筒的光线通过透明基板干涉透镜。 该制造方法包括:提供透明基板; 在透明基板上形成C形孔; 并注入塑料以填充C形孔,从而在透明基底上形成遮光板。 该制造方法需要直接对透明基板进行加工处理,并通过注射成型形成遮光板,不仅简化了制造工艺,而且使环形结构防水。
    • 140. 发明授权
    • Heat dissipating material and method for preparing the same
    • 散热材料及其制备方法
    • US08980120B2
    • 2015-03-17
    • US13939132
    • 2013-07-10
    • Getac Technology Corporation
    • Tien-Chieh WuYen-Feng Shih
    • H01M10/653C09K5/06
    • H01M10/504C09K5/063
    • A heat dissipating material and a method for preparing the same, of which the method comprises the following steps: providing paraffin wax, boron nitride, graphite, and a modified multi-walled carbon nanotube; heating the paraffin wax until the paraffin wax is softened; and mixing the boron nitride, the graphite, the modified multi-walled carbon nanotube and the paraffin wax. Wherein, based on the total weight of the heat dissipating material, the content of the paraffin wax is from 50 to 60% by weight; the content of boron nitride is from 20 to 40% by weight; the content of the graphite is from 3 to 15% by weight; and the content of the modified multi-walled carbon nanotube is from 1 to 5% by weight.
    • 一种散热材料及其制备方法,其特征在于包括以下步骤:提供石蜡,氮化硼,石墨和改性多壁碳纳米管; 加热石蜡直到石蜡软化; 并混合氮化硼,石墨,改性多壁碳纳米管和石蜡。 其中,基于散热材料的总重量,石蜡的含量为50〜60重量% 氮化硼的含量为20〜40重量% 石墨的含量为3〜15重量% 改性多壁碳纳米管的含量为1〜5重量%。