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    • 52. 发明申请
    • ARRAY ANTENNA OF MOBILE TERMINAL AND IMPLEMENTING METHOD THEREOF
    • 移动终端阵列天线及其实施方法
    • US20130300629A1
    • 2013-11-14
    • US13976700
    • 2011-06-13
    • Hui JiangHao AiLu ZhangYing LiuChao Li
    • Hui JiangHao AiLu ZhangYing LiuChao Li
    • H01Q1/50
    • H01Q1/50H01Q1/243H01Q9/0407H01Q9/0414H01Q21/28H01Q21/29Y10T29/49016
    • An antenna array of a mobile terminal and an implementing method thereof are disclosed in this document. The antenna array includes: a mobile terminal floorboard, configured to act as a radiation body to radiate antenna energy coupled by multiple pairs of coupling units, and multiple pairs of coupling units corresponding to multiple antennas, each of which are fixed at two ends of the mobile terminal floorboard and are configured to inspire a waveguide mode of the mobile terminal floorboard to radiate the coupled antenna energy through feed points of feed lines of each coupling unit therein, located at the same side of a dielectric material plate; and a matching circuit located at the other side of the dielectric material plate, connected with the feed points located at the opposite side of the dielectric material plate and configured to implement impedance matching of a micro-strip feed line of each coupling unit.
    • 本文中公开了移动终端的天线阵列及其实现方法。 天线阵列包括:移动终端地板块,其被配置为充当辐射体以辐射由多对耦合单元耦合的天线能量,以及对应于多个天线的多对耦合单元,每对耦合单元固定在 配置为启动移动终端地板块的波导模式,以通过位于介电材料板的同一侧的每个耦合单元的馈送线的馈送点辐射耦合的天线能量; 以及匹配电路,位于电介质材料板的另一侧,与位于电介质材料板的相对侧的馈电点相连,并被配置为实现每个耦合单元的微带馈电线的阻抗匹配。
    • 54. 发明授权
    • Method for forming an organic light emitting diode device
    • 用于形成有机发光二极管器件的方法
    • US08440479B2
    • 2013-05-14
    • US12749637
    • 2010-03-30
    • Kelvin NguyenButchi R. VaddiLu Zhang
    • Kelvin NguyenButchi R. VaddiLu Zhang
    • H01L51/50H01L21/312H01J1/62B23B17/00
    • H01L51/448H01L27/322H01L51/5246H01L51/56H05B33/04H05B33/10Y02E10/549
    • A method for sealing an organic light emitting diode (OLED) device is disclosed wherein the OLED device comprises a color filter. A color filter is deposited on a first glass plate or substrate and a glass-based frit is then deposited in a loop around the color filter, The deposited fit loop is then heated by electromagnetic energy to evaporate organic constituents and to sinter the fit in a pre-sintering step. An OLED device may then be assembled by positioning a second glass plate comprising an organic light emitting material deposited thereon in overlying registration with the first glass plate, with the color filer and the organic light emitting material positioned between the plates. The fit is then heated with a laser to form a hermetic seal between the first and second glass plates.
    • 公开了一种用于密封有机发光二极管(OLED)器件的方法,其中OLED器件包括滤色器。 滤色器沉积在第一玻璃板或基板上,然后将玻璃基玻璃料围绕滤色器沉积在环中。然后通过电磁能量加热沉积的配合环以蒸发有机成分并将其熔合在 预烧结步骤。 然后可以通过将包含沉积在其上的有机发光材料的第二玻璃板与第一玻璃板重叠对准来组装OLED器件,其中彩色滤光片和有机发光材料位于板之间。 然后用激光加热配合,以在第一和第二玻璃板之间形成气密密封。
    • 56. 发明授权
    • System and method for generating alert signals in a weather awareness and warning system
    • 在天气意识和警告系统中产生警报信号的系统和方法
    • US08244418B1
    • 2012-08-14
    • US12217457
    • 2008-07-03
    • David A. FrankLu Zhang
    • David A. FrankLu Zhang
    • G01W1/00G08B21/00
    • G01W1/00G01C23/00G01W2001/006
    • A weather awareness and warning system (“WAWS”) provides aircraft position data and weather data input to a weather alert (“WA”) processor from a navigation system and a datalink system. The weather data contains three-dimensional delineations of a defined weather area. The WA processor determines an aircraft alert position and a weather alert zone; if the aircraft alert position falls within or penetrates the weather alert zone, the WA processor generates an alert signal and provides a weather alert signal to an alerting system comprising of visual alert(s) displayed on a display unit such as an HDD unit or a HUD unit, or an aural alert sounded by an aural alert unit. The aircraft alert position and weather alert zone could be determined by the WA processor by executing an algorithm(s) embedded in software containing the disclosed embodiments and methods.
    • 天气意识和警告系统(“WAWS”)提供从导航系统和数据链路系统输入到天气警报(“WA”)处理器的飞机位置数据和天气数据。 天气数据包含定义的天气区域的三维描绘。 WA处理器确定飞行器警报位置和天气警报区域; 如果飞机警报位置落入或穿透天气警报区域,则WA处理器产生警报信号,并向包括显示在诸如HDD单元或显示器的显示单元上的视觉警报的警报系统提供天气警报信号 HUD单元或由听觉警报单元发出的听觉警报。 航空器警报位置和天气警报区域可以由WA处理器通过执行嵌入在包含所公开的实施例和方法的软件中的算法来确定。
    • 57. 发明授权
    • Hermetically-sealed packages for electronic components having reduced unused areas
    • 用于电子元件的密封封装,减少了未使用的面积
    • US08198807B2
    • 2012-06-12
    • US12072792
    • 2008-02-28
    • Kelvin NguyenMichelle Nicole Haase PastelLu Zhang
    • Kelvin NguyenMichelle Nicole Haase PastelLu Zhang
    • H01L51/50
    • H01L21/67005H01L51/5246
    • Hermetically-sealed packages for electronic components, e.g., OLEDs, are provided. The packages have a first glass substrate (12), a second glass substrate (16), and a wall (14) that separates the first and second substrates (12,16) and hermetically seals the electronic component (18) between the substrates (12,16). The package has a reduced outer unused area characterized by distances Dfirst (32a) and Dsecond (32b) at least one of which, and, in certain embodiments, both of which are less than 200 microns, e.g., one or both of Dfirst (32a) and Dsecond (32b) is approximately 100 microns. The reduction in unused area can be used to increase viewing area, improve electrical lead design, and/or increase package strength through the use of a wider sintered frit wall (14).
    • 提供用于电子部件(例如OLED)的密封封装。 封装具有第一玻璃基板(12),第二玻璃基板(16)和分隔第一和第二基板(12,16)并密封基板之间的电子部件(18)的壁(14) 12,16)。 包装具有减小的外部未使用区域,其特征在于距离Dfirst(32a)和D second(32b),其中至少一个,并且在某些实施例中,它们都小于200微米,例如Dfirst(32a) )和Dsecond(32b)约为100微米。 未使用面积的减少可用于通过使用更宽的烧结玻璃料壁(14)来增加观察面积,改善电气引线设计和/或增加封装强度。