Method for manufacturing optic transmission modules and system for inspecting bit error rate characters
    1.
    发明授权
    Method for manufacturing optic transmission modules and system for inspecting bit error rate characters 失效
    用于制造光传输模块的方法和用于检查误码率字符的系统

    公开(公告)号:US06661503B1

    公开(公告)日:2003-12-09

    申请号:US09485723

    申请日:2000-05-12

    IPC分类号: G01N2100

    CPC分类号: G01M11/331

    摘要: A method of manufacturing an optic transmission module assures a high reliability for the module by inspecting the character of a low bit error rate (BER) of the module quickly and accurately. The module is employed in an optical communication system (light transmission system) required to cope with information communication systems that are becoming faster and faster in operation and larger and larger in capacity. Also disclosed is a system and a method for inspection of the BER character which uses a rectangular wave pulse as an interference light to calculate a degradation quantity of a signal-to-noise ratio (S/N) on the basis of a simple theory, thereby inspecting the BER character by extrapolating a case in which there is no interference light (S/X=∞ or X=0) with use of a sign error rate theoretical value according to a bit error rate of a light signal measured according to the degradation quantity.

    摘要翻译: 制造光传输模块的方法通过快速,准确地检查模块的低误码率(BER)的特性来确保模块的高可靠性。 该模块用于应对在运行中变得越来越快,容量越来越大的信息通信系统所需的光通信系统(光传输系统)中。 还公开了一种基于简单的理论,使用矩形波脉冲作为干涉光来检查BER特性的系统和方法来计算信噪比(S / N)的劣化量, 从而通过使用符号误差率理论值,根据根据该信号测量的光信号的误码率外推不存在干扰光的情况(S / X =∞或X = 0)来检查BER特性 降解量。

    Display device
    2.
    发明授权

    公开(公告)号:US07042425B2

    公开(公告)日:2006-05-09

    申请号:US10255077

    申请日:2002-09-26

    IPC分类号: G09G3/10 G09G3/30

    摘要: A display device for realizing gray-scale display by changing an amplitude of a modulation voltage which is output from a data-side driving circuit. A driving control circuit is capable of supplying a first display data signal representing (m+n) grades, obtained by adding m grades represented by a second display data signal externally input and an adjustable range n. The data-side driving circuit is capable of outputting modulation voltages having (m+n) types of amplitudes to a plurality of first electrodes in accordance with a first display data signal. The amplitude of the modulation voltage corresponding to the light emission characteristic of a prescribed light emitting layer among a plurality of light emitting layers is adjusted to an amplitude in the adjustable range n from the amplitude corresponding to the grade represented by the second display data signal.