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    • 41. 发明授权
    • Junction barrier schottky diode and method for manufacturing the same
    • 结型势垒肖特基二极管及其制造方法
    • US09466735B2
    • 2016-10-11
    • US14731105
    • 2015-06-04
    • Synaptics Display Devices GK
    • Tomoaki Tanaka
    • H01L29/872H01L29/06
    • H01L29/872H01L29/0619H01L29/0649H01L29/0692
    • A junction barrier Schottky diode is formed by shifting second semiconductor regions of a second conductivity type in a staggered shape in a first semiconductor region of a first conductivity type so that pn junction regions are formed at predetermined distances between the second semiconductor regions and the first semiconductor region. A third semiconductor region of the first conductivity type is formed between the second semiconductor regions in order to form a Schottky junction region. An electrode is formed on the second and third semiconductor regions. The second semiconductor regions arranged at equal distances in an X direction are formed in a plurality of columns in a Y direction. An amount of shift between adjacent columns in the X direction is set such that a Y-direct ion distance between the second semiconductor regions in the different columns is larger than an X-direction distance between the second semiconductor regions in each column.
    • 接合势垒肖特基二极管通过在第一导电类型的第一半导体区域中以交错形状移位第二导电类型的第二半导体区域形成,使得在第二半导体区域和第一半导体区域之间以预定距离形成pn结区域 地区。 为了形成肖特基结区域,在第二半导体区域之间形成第一导电类型的第三半导体区域。 在第二和第三半导体区域上形成电极。 沿X方向排列成相等距离的第二半导体区域在Y方向上形成为多列。 X方向上的相邻列之间的偏移量被设定为使得不同列中的第二半导体区域之间的Y直接离子距离大于每列中的第二半导体区域之间的X方向距离。
    • 42. 发明申请
    • SEMICONDUCTOR DEVICE AND ELECTRONIC APPARATUS
    • 半导体器件和电子设备
    • US20160284309A1
    • 2016-09-29
    • US15071948
    • 2016-03-16
    • Synaptics Display Devices GK
    • Noriyuki ISHIIAtsushi SHIKATA
    • G09G3/36G11C19/00
    • G09G3/3696G09G2330/02
    • A semiconductor device has a first mode in which the semiconductor device is used alone and a second mode in which the semiconductor device is used in combination with another semiconductor device. Incase that one driven device is driven using the semiconductor device in the first mode and the second mode, power supply lines are caused to allow electrical conduction to each other outside of each semiconductor device in order to cancel errors of operation power supply voltages of each semiconductor device. In case that a power supply unit of each semiconductor device is operable by receiving an instruction for release of a low power consumption state, a supply start timing of the operation power supply voltages in the second mode is delayed as compared to that in the first mode.
    • 半导体器件具有其中单独使用半导体器件的第一模式和其中半导体器件与另一半导体器件组合使用的第二模式。 在第一模式和第二模式中,使用半导体器件驱动一个驱动器件,使得电源线允许在每个半导体器件的外部彼此导通,以消除每个半导体的工作电源电压的误差 设备。 在每个半导体器件的电源单元通过接收用于释放低功耗状态的指令来操作的情况下,与第一模式相比,第二模式中的操作电源电压的供应开始定时被延迟 。
    • 44. 发明授权
    • CDR circuit and semiconductor device
    • CDR电路和半导体器件
    • US09419787B2
    • 2016-08-16
    • US14791578
    • 2015-07-06
    • Synaptics Display Devices GK
    • Kosuke Tsuiji
    • H04L7/033H04L7/04H03L7/07H03L7/08H03L7/081
    • H04L7/0331H03L7/07H03L7/08H03L7/0807H03L7/0812H04L7/041H04L7/10
    • A clock data recovery (CDR) circuit includes a sampling circuit, a synchronization circuit that synchronizes a frequency of an oscillation clock signal from an oscillation circuit with a frequency of input data of a specific pattern which is sampled in the sampling circuit, and synchronizes a phase of the oscillation clock signal with a phase of the sampled input data, and a data pattern recognition circuit that detects whether the input data sampled in the sampling circuit has a specific pattern. The data pattern recognition circuit starts an operation for detecting whether the input data has a specific pattern in response to a frequency lock start instruction. The synchronization circuit starts an operation for synchronizing the frequency on condition that it is determined by the data pattern recognition circuit that the input data has a specific pattern.
    • 时钟数据恢复(CDR)电路包括采样电路,使来自振荡电路的振荡时钟信号的频率与在采样电路中采样的特定模式的输入数据的频率同步的同步电路, 具有采样输入数据的相位的振荡时钟信号的相位,以及检测采样电路中采样的输入数据是否具有特定模式的数据模式识别电路。 数据模式识别电路响应于频率锁定开始指令开始检测输入数据是否具有特定模式的操作。 在由数据模式识别电路确定输入数据具有特定模式的条件下,同步电路开始同步频率的操作。
    • 46. 发明授权
    • Liquid crystal display device adapted to partial display
    • 适用于部分显示的液晶显示装置
    • US09368083B2
    • 2016-06-14
    • US14582048
    • 2014-12-23
    • Synaptics Display Devices GK
    • Goro SakamakiKi-hwak Yun
    • G06F3/038G09G5/00G09G3/36G02F1/1333
    • G09G3/3648G02F2001/133391G09G3/3655G09G3/3688G09G2300/0408G09G2310/027G09G2310/04
    • A liquid crystal display device includes a liquid crystal display panel; and a driver driving the liquid crystal display panel. The liquid crystal display panel includes: a first substrate on which subpixels each including a pixel electrode are integrated; and a second substrate opposed to the first substrate, a plurality of common electrodes being formed on the second substrate. The display region of the liquid crystal display panel is divided into a plurality of sections respectively corresponding to the common electrodes. When a partial display in which an image is selectively displayed in a selected section is performed, the liquid crystal driver drives the common electrode corresponding to the selected section to a predetermined common voltage level, sets the common electrodes corresponding to the non-selected sections to a predetermined reference level, and sets pixel electrodes of subpixels in the non-selected sections to the reference voltage level.
    • 液晶显示装置包括:液晶显示面板; 以及驱动液晶显示面板的驱动器。 液晶显示面板包括:第一基板,每个子像素均包括像素电极; 以及与所述第一基板相对的第二基板,在所述第二基板上形成有多个公共电极。 液晶显示面板的显示区域被分成对应于公共电极的多个部分。 当执行选择性地显示选定部分的图像的部分显示时,液晶驱动器将对应于所选择的部分的公共电极驱动到预定的公共电压电平,将对应于未选择部分的公共电极设置为 预定的参考电平,并且将非选择部分中的子像素的像素电极设置为参考电压电平。
    • 47. 发明授权
    • Touch panel controller and semiconductor device
    • 触摸屏控制器和半导体器件
    • US09354741B2
    • 2016-05-31
    • US14166971
    • 2014-01-29
    • Synaptics Display Devices GK
    • Yusuke UchidaTatsuya IshiiTsuyoshi KuroiwaAkihito AkaiHisayoshi KajiwaraKazuo Okado
    • G06F3/041G06F3/044
    • G06F3/0416G06F3/044
    • The touch panel controller activates a touch panel having a detection plane superposed on a display plane of a display device, and performs a touch detection. The touch panel controller uses a cycle of 1/n (n is a positive integer) of a display frame cycle on the display plane as the detection frame cycle of the detection plane. The touch panel controller decides an order of driving the detection-scan electrodes in each detection frame cycle according to predetermined phase-delay and phase-advance positions with respect to a display-scan electrode drive position of the display device so as to correspond to an order of the detection-scan electrode array of the touch panel. The touch panel controller makes possible to avoid the coincidence of display-scan and touch-detection positions without thinning touch detections even with the detection frame cycle of a touch sensor shorter than the display frame cycle of a liquid crystal panel.
    • 触摸面板控制器激活具有叠加在显示装置的显示平面上的检测平面的触摸面板,并进行触摸检测。 触摸面板控制器使用显示平面上的显示帧周期的1 / n(n为正整数)的周期作为检测平面的检测帧周期。 触摸板控制器根据相对于显示装置的显示扫描电极驱动位置的预定相位延迟和相位提前位置,在每个检测帧周期中决定驱动检测扫描电极的顺序,以对应于 触摸面板的检测扫描电极阵列的顺序。 即使触摸传感器的检测帧周期短于液晶面板的显示帧周期,触摸面板控制器也可以避免显示扫描和触摸检测位置的重合,而不会使触摸检测变薄。
    • 49. 发明申请
    • DEVICE AND METHOD FOR IMAGE ENLARGEMENT AND DISPLAY PANEL DRIVER USING THE SAME
    • 用于图像放大和显示面板驱动器的装置和方法
    • US20160078599A1
    • 2016-03-17
    • US14847125
    • 2015-09-08
    • SYNAPTICS DISPLAY DEVICES GK
    • Hirobumi FURIHATATakashi NOSEMasao ORIO
    • G06T3/40G06F3/14
    • G06T3/4007G06T3/40G06T3/403G09G5/391G09G2310/0216G09G2340/04H04N1/00469
    • A display panel driver includes a scaler circuit performing image enlargement processing on input image data corresponding to an input image to generate α-times enlarged image data corresponding to an α-times enlarged image (α is a number larger than one which cannot be represented as 2k); and a driver section driving a display panel. In calculating a pixel value of a target pixel of the α-times enlarged image, the scaler circuit generates enlarged image data including 2n-times enlarged image data corresponding to a 2n-times enlarged image obtained by enlarging the input image with an enlargement factor of 2n (n is the smallest integer determined so that 2n is larger than α), and calculates the pixel value of the target pixel from the 2n-times enlarged image data through interpolation processing of pixel values of pixels of the 2n-times enlarged image corresponding to the target pixel of the α-times enlarged image.
    • 显示面板驱动器包括对与输入图像相对应的输入图像数据执行图像放大处理的定标器电路,以生成与α倍放大图像相对应的α次放大图像数据(α是大于不能表示为 2k); 以及驱动显示面板的驱动部。 在计算α倍放大图像的目标像素的像素值时,缩放电路产生放大图像数据,该放大图像数据包括2n倍放大图像数据,对应于通过放大输入图像获得的2n倍放大图像,放大因子 2n(n是确定为2n大于α的最小整数),并且通过对2n倍放大图像的像素的像素值进行插值处理,从2n倍放大图像数据计算目标像素的像素值 到α倍放大图像的目标像素。
    • 50. 发明授权
    • Capacitive touch panel device with differing drive pulse widths
    • 具有不同驱动脉冲宽度的电容式触摸屏设备
    • US09250740B2
    • 2016-02-02
    • US14037707
    • 2013-09-26
    • Synaptics Display Devices GK
    • Akihito AkaiTatsuya IshiiKazuo Okado
    • G06F3/044G06F3/041
    • G06F3/0416G06F3/0418G06F3/044
    • It becomes possible to use drive pulses having different pulse widths for one kind of drive pulse signal period. Therefore, even if a voltage acting on a crossing part of drive and detection electrodes is periodically changed through a stray capacitance attributed to an external object such as a finger in an undesired manner, the pulse width of the drive pulse is never fixed with respect to the period, and the periodic buildup of a certain voltage on a detection signal, which would make appreciable noise, is suppressed. Thus, the reduction of detection signals can be suppressed in quantity without switching the pulse signal frequency of the drive pulse of a touch panel.
    • 对于一种驱动脉冲信号周期,可以使用具有不同脉冲宽度的驱动脉冲。 因此,即使作用于驱动和检测电极的交叉部分的电压由于诸如手指等外部物体而引起的杂散电容周期性地变化,驱动脉冲的脉冲宽度也不会相对于 周期以及对检测信号的一定电压的周期性累积将被抑制,这将产生可观的噪声。 因此,可以在不切换触摸面板的驱动脉冲的脉冲信号频率的情况下抑制检测信号的减少。