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    • 2. 发明申请
    • SENSING DEVICES AND DISPLAY DEVICES
    • 感测装置和显示装置
    • US20130043942A1
    • 2013-02-21
    • US13210320
    • 2011-08-15
    • Shinji KONOSHITAYoshikazu MatsuiKazuyuki Hashimoto
    • Shinji KONOSHITAYoshikazu MatsuiKazuyuki Hashimoto
    • H03F3/45
    • H03F3/45475G06F3/0416G06F3/044G06F3/045H03F2203/45138
    • A sensing device is provided. The sensing device successively operates in a plurality of operation periods and includes a plurality of first electrodes, a plurality of differential amplifiers, and a plurality of sensing circuits. The first electrodes are disposed successively. The differential amplifiers at least comprise a first differential amplifier and a second differential amplifier. Each of the differential amplifiers comprises a first input terminal and a second input terminal. Each of the sensing circuits has an input terminal and an output terminal. The sensing circuits at least comprise first, second, and third sensing circuits. The input terminals of the sensing circuits are coupled to the first electrodes. The output terminals of sensing circuits are coupled to the differential amplifiers. The output terminal of at least one of the sensing circuits is coupled to both of the first differential amplifier and the second differential amplifier.
    • 提供感测装置。 感测装置在多个操作周期中连续工作,并且包括多个第一电极,多个差分放大器和多个感测电路。 第一电极相继配置。 差分放大器至少包括第一差分放大器和第二差分放大器。 每个差分放大器包括第一输入端和第二输入端。 每个感测电路具有输入端和输出端。 感测电路至少包括第一,第二和第三感测电路。 感测电路的输入端耦合到第一电极。 感测电路的输出端子耦合到差分放大器。 至少一个感测电路的输出端耦合到第一差分放大器和第二差分放大器两者。
    • 3. 发明授权
    • In-cell touch sensor touch area enhancing algorithm
    • 触摸传感器触摸区域增强算法
    • US08674956B2
    • 2014-03-18
    • US13158924
    • 2011-06-13
    • Naoki SumiYoshikazu Matsui
    • Naoki SumiYoshikazu Matsui
    • G06F3/041G06F3/045G06F3/044G06K11/06
    • G06F3/044G06F3/0416
    • A touch detection method includes: scanning the row electrodes or the column electrodes in sequence to obtain touch data of the touch sensor; labeling a plurality of coordinates as a touch image according to the touch data; mirror copying the touch data of the touch image corresponding to at least one column electrode and at least one row electrode which are adjacent to an edge of the pixel active area in the x-direction and the y-direction, respectively, to at least one corresponding location which is outside of the touch sensor active area with respect to the edge of the pixel active area; calculating a location (xave, yave) of the central point of the touch image by a weighted average; and outputting the location (xave, yave) of the central point of the touch image.
    • 触摸检测方法包括:依次扫描行电极或列电极以获得触摸传感器的触摸数据; 根据触摸数据将多个坐标标记为触摸图像; 将与x方向和y方向上的与像素有效区域的边缘相邻的至少一个列电极和至少一个行电极对应的触摸图像的触摸数据镜像复制到至少一个 相对于像素有效区域的边缘在触摸传感器有效区域之外的对应位置; 以加权平均计算触摸图像的中心点的位置(xave,yave); 并输出触摸图像的中心点的位置(xave,yave)。
    • 5. 发明授权
    • Input detection device, input detection method, input detection program, and computer readable media
    • 输入检测装置,输入检测方法,输入检测程序和计算机可读介质
    • US08884894B2
    • 2014-11-11
    • US13241061
    • 2011-09-22
    • Yoshikazu MatsuiNaoki SumiKazuyuki Hashimoto
    • Yoshikazu MatsuiNaoki SumiKazuyuki Hashimoto
    • G06F3/041G06F3/044
    • G06F3/044G06F3/0416
    • An input detection device including: a reading part reading touch inputs from an input interface of a touch sensor by scanning every above two electrode lines which are adjacent on the scanning sequence from an end of the input interface to the opposite end, and acquiring a difference between detection data obtained from a half of the above two electrode lines which are successive and from the other half of the above two electrode lines which are successive; and a calculation part integrating the differences for the entire input interface to obtain touch information, wherein if an integration result obtained in the case where the above two lines stretches over the scanning finish end and the scanning start end is not satisfied with a predetermined value, the calculation part resets the detection data obtained from the electrode line located at the scanning finish end to be the predetermined value.
    • 一种输入检测装置,包括:读取部,从所述输入接口的一端到相对端扫描从扫描序列相邻的上述两条电极线,从触摸传感器的输入接口读取触摸输入, 在从连续的上述两个电极线的一半获得的检测数据和连续的上述两个电极线的另一半之间; 以及积分整个输入界面的差异以获得触摸信息的计算部分,其中如果在上述两条线在扫描结束端和扫描开始端之间延伸的情况下获得的积分结果不满足预定值, 计算部分将从位于扫描完成端的电极线获得的检测数据重置为预定值。
    • 6. 发明申请
    • Multibeam feedhorn, feed apparatus, and multibeam antenna
    • 多波束馈电喇叭,馈电装置和多波束天线
    • US20060262021A1
    • 2006-11-23
    • US11417639
    • 2006-05-04
    • Yoshikazu Matsui
    • Yoshikazu Matsui
    • H01Q13/00
    • H01Q13/025H01Q13/0266
    • A multibeam primary radiator apparatus (2) includes first, second and third primary horns (16, 18, 20). The first primary horn (16) has a generally circular proximal end aperture (22) at its proximal end, and a generally circular distal end aperture (24) at its distal end, which is larger than the proximal end aperture (22). The second and third primary horns (18, 20) have generally circular proximal end apertures (26, 28) at their proximal ends, and larger distal end apertures (30, 32) at their distal ends. The first through third primary horns are disposed with the center axes of the respective proximal end apertures being substantially in parallel with each other. The distance between the center axis of the first primary horn (16) and each of the second and third primary horns (18, 20) is smaller than the diameter of the proximal end aperture (22) of the first primary horn (16). The distal end aperture (30, 32) of each of the second and third primary horns (18, 20) is formed by a semicircular portion (30a, 32a), which is half of a circle having a diameter larger than the proximal end aperture (26, 28), on the side remote from the first primary horn (16), and also a semi-elliptical portion (30b, 32b), which is half of an ellipse, on the side closer to the first primary horn (16). Each semi-elliptical portion (30b, 32b) is contiguous to the associated semicircular portion (30a, 32a) at the two ends of the major axis thereof, and is located in a void in the distal end aperture (24) of the first primary horn (16). The end of the minor axis of each ellipse is located outward of the proximal end aperture (22) of the first primary horn (16).
    • 多光束初级辐射器装置(2)包括第一,第二和第三主喇叭(16,18,20)。 第一主喇叭(16)在其近端处具有大致圆形的近端孔(22),并且在其远端处具有大于近端孔(22)的大致圆形的远端孔(24)。 第二和第三主喇叭(18,20)在其近端处具有大致圆形的近端孔(26,28),并且在其远端处具有较大的远端孔(30,32)。 第一至第三主喇叭被设置成各个近端孔的中心轴线基本上彼此平行。 第一主喇叭(16)的中心轴线与第二和第三主喇叭(18,20)中的每一个之间的距离小于第一主喇叭(16)的近端孔径(22)的直径。 第二和第三主喇叭(18,20)中的每一个的远端孔(30,32)由半圆形部分(30a,32a)形成,该半圆形部分是直径大于近端 在远离第一主喇叭(16)的一侧上的端部孔(26,28),以及在靠近第一主喇叭(16)的一侧的半椭圆形部分(30b,32b) 主角(16)。 每个半椭圆形部分(30b,32b)在其长轴的两端处与相关联的半圆形部分(30a,32a)邻接,并且位于远端孔(24)中的空隙中, 的第一个主喇叭(16)。 每个椭圆的短轴的端部位于第一主喇叭(16)的近端孔(22)的外侧。
    • 7. 发明授权
    • Touch panel, driving method for the touch panel, program for getting touch information, and memory media
    • 触摸面板,触摸屏的驱动方法,获取触摸信息的程序和记忆媒体
    • US08963852B2
    • 2015-02-24
    • US13212169
    • 2011-08-17
    • Yoshikazu MatsuiNaoki Sumi
    • Yoshikazu MatsuiNaoki Sumi
    • G06F3/041G09G5/00G06F3/045G06F3/044
    • G06F3/0418G06F3/044
    • The purpose of the invention is to provide a touch panel, a driving method for the touch panel, a program for getting touch information, and a memory media, capable of reducing the influence caused by the operation of a display device to the touch panel. The touch panel having a display driven by alternative voltage and a touch sensor reading the touch information from the input interface periodically, includes a touch information detection part synchronizing the beginning timing of a reading operation of the touch sensor with a frame of the display and detecting the touch data in each frame, and a touch information calculation part calculating an average with respect to an even number of successive frames to get a calculated touch data corresponding to a predetermined frame.
    • 本发明的目的是提供一种触摸面板,用于触摸面板的驱动方法,用于获得触摸信息的程序,以及能够将显示装置的操作对触摸面板的影响降低的存储介质。 具有由替代电压驱动的显示器的触摸面板和从输入接口周期性地读取触摸信息的触摸传感器包括触摸信息检测部件,其将触摸传感器的读取操作的开始定时与显示器的框架和检测 每个帧中的触摸数据,以及触摸信息计算部分,计算相对于偶数个连续帧的平均值,以获得与预定帧相对应的计算出的触摸数据。
    • 9. 发明授权
    • Light intensity detecting methods and devices, display devices and storage media
    • 光强检测方法和装置,显示装置和存储介质
    • US08054457B2
    • 2011-11-08
    • US12473197
    • 2009-05-27
    • Yoshikazu Matsui
    • Yoshikazu Matsui
    • G01J1/02
    • G01J1/18G01J1/02G01J1/0219G01J1/0228G09G3/20G09G2360/144
    • A light intensity detecting device is provided to detect a light intensity according to pulse duration of a pulse signal without being affected by noise, including: a time measuring unit for measuring an elapsed time period of the pulse signal that has been raised; a signal state discriminating unit for obtaining a state of the pulse signal; a sampling unit for directing the signal state discriminating unit to obtain the state at a sampling interval corresponding to the elapsed time period; and a falling detecting unit for detecting the pulse signal that has been fallen when a fallen state of the pulse signal is successively obtained for two times. When the fallen pulse signal is detected, the sampling unit directs the signal state discriminating unit to obtain the state of the pulse signal at a time point, which is output as the pulse duration of the pulse signal.
    • 提供了一种光强检测装置,用于根据脉冲信号的脉冲持续时间来检测光强度而不受噪声影响,包括:时间测量单元,用于测量已经提高的脉冲信号的经过时间段; 信号状态判别单元,用于获得脉冲信号的状态; 采样单元,用于指示所述信号状态判别单元以与所述经过时间段对应的采样间隔获得所述状态; 以及下降检测单元,用于当连续获得脉冲信号的下降状态两次时,检测已经下降的脉冲信号。 当检测到下降的脉冲信号时,采样单元引导信号状态判别单元获取作为脉冲信号的脉冲持续时间输出的时间点的脉冲信号的状态。