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    • 1. 发明授权
    • Ramp signal generator and image sensor
    • 斜坡信号发生器和图像传感器
    • US08841594B2
    • 2014-09-23
    • US13171505
    • 2011-06-29
    • Hee Bum Lee
    • Hee Bum Lee
    • H01L27/146H03M1/12H03K4/06G05F1/00H03M1/58H04N5/378H03K4/08
    • H03K4/08H04N5/378
    • Disclosed are a ramp signal generator and an image sensor. The ramp signal generator includes: a comparator comparing a first bias voltage input to a first input terminal and a second bias voltage input to a second input terminal and outputting a ramp signal from an output terminal; a ramp signal adjustment unit including a plurality of switched capacitors made up of switches and capacitors connected in series, and connected in parallel between a first input terminal of the comparator and an output terminal of the comparator; and a controller switching the switches of the plurality of switched capacitors to adjust the ramp signal output from the comparator such that the ramp signal becomes nonlinear over time.
    • 公开了一种斜坡信号发生器和图像传感器。 斜坡信号发生器包括:比较输入到第一输入端的第一偏置电压和输入到第二输入端的第二偏置电压并从输出端输出斜坡信号的比较器; 斜坡信号调整单元,包括由串联连接的开关和电容器组成的多个开关电容器,并且并联在比较器的第一输入端子和比较器的输出端子之间; 以及控制器切换多个开关电容器的开关以调整从比较器输出的斜坡信号,使得斜坡信号随时间变得非线性。
    • 3. 发明申请
    • CONDUCTIVE FILM AND METHOD FOR MANUFACTURING THE SAME
    • 导电膜及其制造方法
    • US20120090875A1
    • 2012-04-19
    • US12984376
    • 2011-01-04
    • Kyoung Soo ChaeYong Soo OhJong Young LeeHee Bum Lee
    • Kyoung Soo ChaeYong Soo OhJong Young LeeHee Bum Lee
    • H01B5/00B05D5/12B31B1/62
    • G06F3/041G06F2203/04103Y10T156/10
    • Disclosed herein is a conductive film. The conductive film includes: a base member; a transparent electrode formed on the base member; and electrode wirings connected to one side or both sides of the transparent electrode and having a first metal layer formed on the lower portion thereof and a second metal layer made of a metal different from the first metal layer and formed to be thicker than the thickness of the first metal layer stacked on the upper portion thereof.The conductive film and the method for manufacturing the same form the electrode wirings by stacking the second metal layer on the upper portion of the first metal layer to prevent the second metal layer from being spread to both sides due to the first metal layer. As a result, the present invention can form the fine electrode wirings and reduce the non-display region of the conductive film.
    • 这里公开了导电膜。 导电膜包括:基底构件; 形成在所述基底构件上的透明电极; 以及电极配线,其与透明电极的一侧或两侧连接,并且具有形成在其下部的第一金属层和由与第一金属层不同的金属制成的第二金属层,并且形成为比第一金属层的厚度厚 第一金属层堆叠在其上部。 导电膜及其制造方法通过在第一金属层的上部层叠第二金属层而形成电极配线,以防止由于第一金属层而使第二金属层扩散到两侧。 结果,本发明可以形成精细电极布线并且减小导电膜的非显示区域。
    • 4. 发明申请
    • Circuit board and method of manufacturing the same
    • 电路板及其制造方法
    • US20110061902A1
    • 2011-03-17
    • US12654674
    • 2009-12-29
    • Hee Bum LeeKyoung Soo Chae
    • Hee Bum LeeKyoung Soo Chae
    • H05K1/00
    • H05K1/167H05K1/0206H05K1/0209H05K3/4629H05K3/4644H05K3/4685H05K2201/09245H05K2201/09781
    • There is provided a circuit board. The circuit board according to an aspect of the invention may include: an insulating base body; a plurality of circuit patterns including a first conductive pattern and a second conductive pattern facing the first conductive pattern at a predetermined interval therebetween; a printed resistor connecting the first conductive pattern and the second conductive pattern; and a heat radiation pattern provided on the insulating base body and overlapping at least partially overlapping the printed resistor.According to an aspect of the invention, a circuit board facilitating a design of a heating structure by forming a printed resistor on a circuit board and forming a heat radiation structure overlapping or connected to the printed resistor, and a method of manufacturing the same can be provided.
    • 提供了一个电路板。 根据本发明的一个方面的电路板可以包括:绝缘基体; 多个电路图形,包括第一导电图案和第二导电图案,其间以预定的间隔面对第一导电图案; 连接第一导电图案和第二导电图案的印刷电阻器; 以及设置在所述绝缘基体上并与所述印刷电阻器至少部分重叠的重叠的热辐射图案。 根据本发明的一个方面,通过在电路板上形成印刷电阻器并形成与印刷电阻器重叠或连接的散热结构的便于设计加热结构的电路板及其制造方法可以是 提供。
    • 6. 发明申请
    • METHOD FOR RECOGNIZING MULTI-TOUCH OF RESISTIVE TOUCH SCREEN
    • 用于识别电阻触摸屏的多触点的方法
    • US20110254803A1
    • 2011-10-20
    • US12818013
    • 2010-06-17
    • Kyoung Soo CHAEHee Bum LeeYun Ki HongYong Soo OhJong Young Lee
    • Kyoung Soo CHAEHee Bum LeeYun Ki HongYong Soo OhJong Young Lee
    • G06F3/045
    • G06F3/045G06F2203/04104
    • Disclosed herein is a method for recognizing a resistive touch screen. The method for recognizing the resistive touch screen includes: sensing touch generated at the resistive touch screen; calculating a difference value, a searching value by detecting voltage at two electrode wirings connected with a transparent resistive layer of the resistive touch screen; and comparing the searching value with a reference value that is a difference value between voltages detected at the two electrode wirings when the resistive touch screen is single-touched, whereby the single touch and the multi-touch can be differentiated.Further, the embodiment sets the error range in the single touch and the error range in the multi-touch and compares these error ranges, thereby making it possible to more accurately differentiate the multi-touch and the single touch and provides various input information, thereby making it possible to provide various user interfaces.
    • 本文公开了一种用于识别电阻式触摸屏的方法。 用于识别电阻式触摸屏的方法包括:感测在电阻式触摸屏上产生的触摸; 通过检测与电阻式触摸屏的透明电阻层连接的两个电极布线处的电压来计算差值; 以及当所述电阻式触摸屏被单触摸时,将所述搜索值与作为在所述两个电极布线处检测到的电压之间的差值的参考值进行比较,从而可以区分所述单触摸和所述多点触摸。 此外,本实施例在单触摸中设置误差范围和多点触摸中的误差范围,并比较这些误差范围,从而可以更准确地区分多点触摸和单触摸并提供各种输入信息,由此 使得可以提供各种用户界面。