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    • 5. 发明授权
    • Display panel and large display using such display panel
    • 显示面板和大显示屏使用这种显示面板
    • US07551245B2
    • 2009-06-23
    • US10536311
    • 2003-11-26
    • Amir Ben-ShalomNoritaka EgamiZenichirou Hara
    • Amir Ben-ShalomNoritaka EgamiZenichirou Hara
    • G02F1/133G02F1/1335G09G5/00
    • G02F1/1345G02F1/13336G02F1/1339G02F2001/13456
    • A tiling of multiple display panels having reduced seam widths (gap) therebetween using a plurality of single edge connect display panels, wherein for each display panel: interconnect lines in the lateral direction are formed on a front plate; input portions of the interconnect lines are routed on an area where a sealing portion is formed and are extended outwardly from the bottom edge of the display panel; the area where the sealing portion is formed is a non-display area of the display panel on the front plate that is bonded to a rear plate with a seal material; and the input portions routed the bottom side of the front plate are extended outwardly from the bottom edge of the rear plate. The input portions are formed in part on the rear plate and electrical connection is established by bonding the front plate and the rear plate via through holes.
    • 使用多个单边连接显示面板,在其间具有减小的接缝宽度(间隙)的多个显示面板的平铺,其中对于每个显示面板:横向方向上的互连线形成在前板上; 互连线的输入部分在形成密封部分的区域上布线,并从显示面板的底部边缘向外延伸; 密封部分形成的区域是前板上的显示面板的非显示区域,该显示面板用密封材料粘合到后板上; 并且布置在前板的底侧的输入部分从后板的底部边缘向外延伸。 输入部分部分地形成在后板上,并且通过通孔将前板和后板接合而建立电连接。
    • 6. 发明授权
    • Analog input apparatus
    • 模拟输入设备
    • US5532582A
    • 1996-07-02
    • US302340
    • 1994-09-08
    • Noritaka Egami
    • Noritaka Egami
    • G01D3/036H03F3/45G01R1/02G01B7/16
    • G01D3/0365H03F3/45479
    • An analog input apparatus comprises bridge measuring devices 11 and 31 connected to a bipolar voltage power supply 5, analog multiplexers 18, 19, 38, and 39 responsive to an output level of an oscillator 4B for switching a polarity and outputting two outputs of each of the bridge measuring devices 11 and 31, amplifiers 12 and 32 for amplifying bipolar outputs provided through the analog multiplexers 18, 19, 38, and 39, and an analog-to-digital converter 2 for converting outputs of the amplifiers 12 and 32 into digital form and outputting the resultant digital values. An analog input method comprises the steps of correcting a measured value with the digital value output when voltage at either middle point of a bridge circuit is fed into both input terminals of a differential analog amplifier or feeding two middle-point voltages of a bridge circuit into input terminal of an analog amplifier in order and providing a measured value based on the difference between the digital values output from the analog amplifier.
    • 模拟输入装置包括连接到双极性电压电源5的桥式测量装置11和31,响应于振荡器4B的输出电平的模拟多路复用器18,19,38和39,用于切换极性并输出两个输出 桥接测量装置11和31,用于放大通过模拟多路复用器18,19,38和39提供的双极性输出的放大器12和32以及用于将放大器12和32的输出转换成数字的模拟 - 数字转换器2 形成并输出所得到的数字值。 一种模拟输入方法包括以下步骤:当桥接电路的任一中间点的电压被馈送到差分模拟放大器的两个输入端或馈送桥式电路的两个中点电压时,用数字值输出校正测量值 输入端,并根据从模拟放大器输出的数字值之差提供测量值。
    • 9. 发明授权
    • Train detection apparatus, train-location detection system and train-approach-alarm generating apparatus
    • 列车检测装置,列车位置检测系统和列车进近报警发生装置
    • US06290187B1
    • 2001-09-18
    • US09195101
    • 1998-11-18
    • Noritaka Egami
    • Noritaka Egami
    • B61L2334
    • B61L1/06B61L23/06
    • A band pass filter 12a for detecting a component in the vicinity of a frequency (1 kHz) having the highest propagation efficiency among oscillations generated when a train runs, a band pass filter 12c for detecting a component in the vicinity a frequency (5.5 kHz) having the lowest propagation efficiency and a microcomputer 16 are provided, the microcomputer 16 being arranged to determine a state in which the train has approached a relatively near location, a state in which the train has approached a very near location, a state in which the train has passed through and exists at a very near location or a state in which the train exists at a relatively near location. A conventional track circuit must, as a matter of course, have insulating portions for rails and incorporate a signal cable for communicating a result of the detection, causing the cost to be enlarged. The present invention is able to eliminate the foregoing necessities and reduce the cost.
    • 用于检测在列车运行时产生的振荡之间具有最高传播效率的频率(1kHz)附近的分量的带通滤波器12a,用于检测频率(5.5kHz)附近的分量的带通滤波器12c, 具有最低传播效率的微型计算机16,微型计算机16被配置为确定列车已经接近相对靠近的位置的状态,列车已接近非常靠近的位置的状态,其中 火车已经通过并存在于非常靠近的位置或火车存在于相对靠近的位置的状态。 传统轨道电路当然必须具有用于轨道的绝缘部分,并且包含用于传达检测结果的信号电缆,从而导致成本增大。 本发明能够消除上述的需要并降低成本。