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    • 7. 发明申请
    • NOVEL HIGH SPEED SIGNAL ROUTING TOPOLOGY FOR BETTER SIGNAL QUALITY
    • 用于更好的信号质量的新型高速信号路由拓扑
    • US20160205767A1
    • 2016-07-14
    • US14595175
    • 2015-01-12
    • QUALCOMM Incorporated
    • Yokesh SUBRAMANIAN
    • H05K1/02H05K1/18
    • H05K1/0213G11C5/025H05K1/0243H05K1/0246H05K1/0248H05K1/025H05K1/18H05K2201/09227H05K2201/09254
    • An apparatus including an output driver on a PCB and a number of chips on the PCB, the chips including a first chip and a second chip. The PCB includes a first transmission line connected to the output driver, a second transmission line connected to the first transmission line and the first chip, the second transmission line having a length greater than or equal to 10 times a length of the first transmission line, and a third transmission line connected to the first transmission line and the second chip, the third transmission line having a length greater than or equal to 10 times the length of the first transmission line. The second transmission line connects to the first chip without being coupled to a termination resistor on the PCB and the third transmission line connects to the second chip without being coupled to a termination resistor on the PCB.
    • 一种包括PCB上的输出驱动器和PCB上的多个芯片的装置,所述芯片包括第一芯片和第二芯片。 PCB包括连接到输出驱动器的第一传输线,连接到第一传输线和第一芯片的第二传输线,第二传输线的长度大于或等于第一传输线的长度的10倍, 以及连接到所述第一传输线和所述第二芯片的第三传输线,所述第三传输线的长度大于或等于所述第一传输线的长度的10倍。 第二传输线连接到第一芯片而不连接到PCB上的终端电阻器,并且第三传输线路连接到第二芯片,而不与PCB上的终端电阻耦合。
    • 8. 发明申请
    • ULTRA-SMALL LED ELECTRODE ASSEMBLY AND METHOD FOR MANUFACTURING SAME
    • 超小型LED电极组件及其制造方法
    • US20160148911A1
    • 2016-05-26
    • US14903858
    • 2014-07-08
    • PSI CO., LTD.
    • Young Rag Do
    • H01L25/075H01L33/38H01L33/62
    • H01L25/0753H01L33/38H01L33/62H01L2924/0002H01L2933/0066H05K1/0295H05K1/0296H05K1/111H05K3/3442H05K2201/09236H05K2201/09254H05K2201/09381H05K2201/0939H05K2201/09427H05K2201/09954H05K2201/10106H05K2201/10583H05K2201/10636H05K2201/10651H05K2203/048Y02P70/611H01L2924/00
    • Provided are a nano-scale LED assembly and a method for manufacturing the same. First, a nano-scale LED device that is independently manufactured may be aligned and connected to two electrodes different from each other to solve a limitation in which a nano-scale LED device having a nano unit is coupled to two electrodes different from each other in a stand-up state. Also, since the LED device and the electrodes are disposed on the same plane, light extraction efficiency of the LED device may be improved. Furthermore, the number of nano-scale LED devices may be adjusted. Second, since the nano-scale LED device does not stand up to be three-dimensionally coupled to upper and lower electrodes, but lies to be coupled to two electrodes different from each other on the same plane, the light extraction efficiency may be very improved. Also, since a separate layer is formed on a surface of the LED device to prevent the LED device and the electrode from being electrically short-circuited, defects of the LED electrode assembly may be minimized. Also, in preparation for the occurrence of the very rare defects of the LED device, the plurality of LED devices may be connected to the electrode to maintain the original function of the nano-scale LED electrode assembly.
    • 提供了一种纳米级LED组件及其制造方法。 首先,独立制造的纳米级LED器件可以对准并连接到彼此不同的两个电极,以解决将具有纳米单元的纳米级LED器件耦合到彼此不同的两个电极的限制 站立状态。 此外,由于LED器件和电极设置在同一平面上,所以可以提高LED器件的光提取效率。 此外,可以调整纳米级LED器件的数量。 第二,由于纳米尺度的LED器件不能立即连接到上电极和下电极,而是要被连接到在同一平面上彼此不同的两个电极,所以光提取效率可以非常改善 。 此外,由于在LED器件的表面上形成单独的层以防止LED器件和电极电短路,所以可以使LED电极组件的缺陷最小化。 此外,为了准备LED装置的非常罕见的缺陷的发生,可以将多个LED器件连接到电极以保持纳米级LED电极组件的原始功能。