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    • 32. 发明申请
    • COVER FOR A PORTABLE ELECTRONIC DEVICE
    • 用于便携式电子设备的盖子
    • US20090279241A1
    • 2009-11-12
    • US12466763
    • 2009-05-15
    • Shawn R. GettemyWilliam Robert HansonEiji Nakagawa
    • Shawn R. GettemyWilliam Robert HansonEiji Nakagawa
    • G06F1/16
    • G06F1/1601G06F1/1626G06F1/1643G06F1/1656G06F3/0412
    • A cover for an electronic device for a portable electronic device is disclosed. The cover may comprise a thin, flexible transparent layer coupled with a supporting structure over a display screen and a digitizer mechanism. The digitizer mechanism may include a flexible conductive paste and a digitizing element. Users input data by applying mechanical pressure on the cover which deflects it and causes the conductive paste to contact and activate the digitizing element disposed beneath. A decorative border may be molded into the cover to conceal the electrical elements of the portable electronic device. The decorative border may be disposed directly beneath the flexible cover. The cover may be dust-free, waterproof, and have an outer surface that is free of any steps, openings, or indentations. Indentations may be molded into the cover to indicate button functions.
    • 公开了一种用于便携式电子设备的电子设备的盖子。 盖可以包括与显示屏幕上的支撑结构耦合的薄柔性透明层和数字转换器机构。 数字转换器机构可以包括柔性导电浆料和数字化元件。 用户通过在盖上施加机械压力来输入数据,使其偏转并使导电膏接触并激活设置在下面的数字化元件。 装饰边框可以模制到盖中以隐藏便携式电子设备的电气元件。 装饰边框可以直接设置在柔性罩下面。 盖可以是无尘的,防水的,并且具有没有任何台阶,开口或凹陷的外表面。 压痕可以模制到盖中以指示按钮功能。
    • 38. 发明授权
    • High transparency integrated enclosure touch screen assembly for a portable hand held device
    • US06992659B2
    • 2006-01-31
    • US09863788
    • 2001-05-22
    • Shawn R. Gettemy
    • Shawn R. Gettemy
    • G09G5/00
    • G06F3/0421
    • An integrated enclosure/touch screen assembly. A touch screen assembly consisting of a display mechanism and optical sensor mechanism are enclosed within a single piece cover. The optical sensor mechanism consists of lens structure and optical sensor couple to the lens structure. The single piece cover includes a transparent top surface and the lens structure is embedded within the transparent top surface. The transparent top surface of the single piece cover provides an enclosure that is both dust free and waterproof.The lens structure of the single piece cover functions by columnating light across the transparent surface. The optical touch sensor is coupled to the lens structure to register contact with the transparent surface via the lens structure by detecting disturbances in the columnated light. In one embodiment, the single piece cover is constructed by embedding the lens structure directly into the transparent surface. This process forms the single piece cover and also may be used to provide various shapes for the outer edges of the cover. The single piece cover eliminates exposed seams of the touch screen assembly. Additionally, the transparent surface is disposed directly above the display without any intervening layers, thereby improving the transmission of light to the display.
    • 39. 发明授权
    • Input detection system for a portable electronic device
    • 便携式电子设备的输入检测系统
    • US09489018B2
    • 2016-11-08
    • US12612115
    • 2009-11-04
    • Shawn R. GettemyYoon Kean Wong
    • Shawn R. GettemyYoon Kean Wong
    • G06F3/045G06F1/16G06F3/041
    • G06F1/1698G06F1/1622G06F1/1626G06F1/1641G06F1/1647G06F1/1656G06F1/1677G06F3/0412G06F3/045G06F2200/1632
    • A proximity input detection system for an electronic device. In one embodiment, the present invention utilizes an inductive field sensor to detect a change in a magnetic field when an input device with a coil is within a threshold distance. In another embodiment, the present invention utilizes a capacitive sensor which can locate the position of an electrically conductive object which is within a threshold distance. The capacitive sensor can also be used, for example, as a switch to activate the device if a user picks it up. The present invention allows user inputs to be detected without actually touching the electronic device. The present invention can also be used to detect inputs through intervening non-metallic layers such as a protective cover or another display of the device without using additional input sensors.
    • 一种用于电子设备的接近输入检测系统。 在一个实施例中,当具有线圈的输入装置在阈值距离内时,本发明利用感应场传感器来检测磁场的变化。 在另一个实施例中,本发明利用一种电容传感器,其可以定位在阈值距离内的导电物体的位置。 例如,电容式传感器也可以用作开关以在用户拾取时激活设备。 本发明允许在不实际触摸电子设备的情况下检测用户输入。 本发明还可用于通过介入的非金属层(例如保护盖或设备的另一显示器)来检测输入,而不使用附加的输入传感器。
    • 40. 发明授权
    • Display backlight with closely spaced light-emitting diode packages
    • 显示背光与紧密排列的发光二极管封装
    • US09239489B2
    • 2016-01-19
    • US13568949
    • 2012-08-07
    • David A. DoyleShawn R. Gettemy
    • David A. DoyleShawn R. Gettemy
    • G02F1/1335F21V8/00
    • G02F1/133608G02B6/002G02B6/0035G02B6/0055G02F2001/133612H01L2224/48247H01L2224/48257
    • An electronic device may be provided with a display having backlight structures that include a light guide plate formed from a clear polymer film. The polymer film may have an edge into which light is emitted from an adjacent array of light-emitting diodes. The light emitting diodes may each include a semiconductor device that emits light. The semiconductor device in each diode may be mounted on lead frame structures and wirebonded to the lead frame structures with first and second wire bonds. To improve backlight homogeneity and thereby reduce the mixing distance for light in the light guide plate, the diodes may be spaced closely together using diode packages having end faces that are free of lead frame structures. Exposed lead frame structures for soldering the light-emitting diodes to a substrate may be formed under the light-emitting diodes and on rear surfaces of the light-emitting diodes.
    • 电子设备可以设置有具有背光结构的显示器,该显示器包括由透明聚合物膜形成的导光板。 聚合物膜可以具有从相邻阵列的发光二极管发射光的边缘。 发光二极管可以各自包括发光的半导体器件。 每个二极管中的半导体器件可以安装在引线框架结构上并且通过第一和第二引线键合引线键合到引线框架结构。 为了提高背光均匀性,从而减少导光板中的光的混合距离,二极管可以使用具有不具有引线框架结构的端面的二极管封装件紧密地间隔开。 可以在发光二极管和发光二极管的背面的下方形成用于将发光二极管焊接到基板的裸露引线框架结构。