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    • 91. 发明申请
    • DISPLAY DEVICE DRIVING METHOD AND DISPLAY DEVICE
    • 显示设备驱动方法和显示设备
    • US20100020055A1
    • 2010-01-28
    • US12572742
    • 2009-10-02
    • Masaki NoseHisashi Yamaguchi
    • Masaki NoseHisashi Yamaguchi
    • G09G3/36G09G5/00
    • G09G3/3622G02F1/13476G09G3/2011G09G3/2014G09G3/2018G09G3/3614G09G3/3618G09G3/3651G09G3/3692G09G2300/026G09G2320/0204G09G2330/021G09G2340/16G09G2380/02
    • A display device includes a liquid crystal display panel having a first and second substrates with scanning electrodes and data electrodes and a liquid crystal layer; a scanning electrode driving circuit applying to the scanning electrodes scan pulse; a data electrode driving circuit applying to the data electrodes data pulses having combinations of different voltage levels according to write data; and a driving control circuit supplying to the scanning and data electrode driving circuits a pulse control signal controlling the phase of the scan pulses and data pulses. The scanning and data electrode driving circuits control the scan pulses and data pulses at voltage levels according to the pulse control signal, and the driving control circuit inverts or does not invert the phase of the pulse control signal, at each application interval of the scan pulses, according to the number of changed values and unchanged values of the write data.
    • 一种显示装置,包括:液晶显示面板,具有具有扫描电极和数据电极以及液晶层的第一和第二基板; 扫描电极驱动电路,对扫描电极施加扫描脉冲; 数据电极驱动电路,根据写入数据向数据电极施加具有不同电压电平的组合的数据脉冲; 以及向扫描和数据电极驱动电路提供控制扫描脉冲和数据脉冲的相位的脉冲控制信号的驱动控制电路。 扫描和数据电极驱动电路根据脉冲控制信号控制电压电平下的扫描脉冲和数据脉冲,并且驱动控制电路在扫描脉冲的每个施加间隔反相或不反相脉冲控制信号的相位 ,根据变化的数值和不变的数据写入数据。
    • 92. 发明授权
    • Apparatus and method to improve quality of moving image displayed on liquid crystal display device
    • 提高在液晶显示装置上显示的运动图像质量的装置和方法
    • US07133015B1
    • 2006-11-07
    • US09651288
    • 2000-08-30
    • Hidefumi YoshidaMakoto OhashiHisashi Yamaguchi
    • Hidefumi YoshidaMakoto OhashiHisashi Yamaguchi
    • G09G3/36
    • G09G3/3648G09G3/342G09G3/3666G09G2310/024G09G2310/04G09G2310/062G09G2310/063G09G2320/0233G09G2320/0238G09G2320/0247G09G2320/0261G09G2330/021
    • A liquid crystal display device comprises a panel having pixel electrodes arranged at intersections of a plurality of signal lines via switching elements for transmitting display data and a plurality of scanning lines for transmitting control signals, and a control circuit for controlling the panel. The liquid crystal panel is divided into first pixel regions and second pixel regions adjacent to the first pixel regions. The control circuit carries out impulse driving in which the control signals transmitted to each of the scanning lines are activated two times in one frame period for displaying an image. The control circuit writes the display data in either one of the pixel regions and writes reset data in the other pixel regions when the control signals are activated once of the two times. By writing the reset data in the pixel regions, the display data written in an immediately preceding frame are reset. In consecutive frames, the display data written in the pixel regions are always reset in one frame period. Therefore, blurring in a moving image can be alleviated. Since writing the display data and the reset data is carried out separately in the first pixel regions and in the second pixel regions, flicker is prevented from occurring in a display screen.
    • 一种液晶显示装置,包括具有通过用于发送显示数据的开关元件和用于发送控制信号的多条扫描线而布置在多条信号线的交点处的像素电极的面板和用于控制面板的控制电路。 液晶面板被划分为与第一像素区域相邻的第一像素区域和第二像素区域。 控制电路进行脉冲驱动,其中发送到每个扫描线的控制信号在一个帧周期中被激活两次以显示图像。 控制电路将显示数据写入任一个像素区域,并且当控制信号两次激活一次时,将复位数据写入其他像素区域。 通过在像素区域中写入复位数据,写入前一帧的显示数据被复位。 在连续帧中,写入像素区域的显示数据总是在一个帧周期内重置。 因此,可以减轻运动图像中的模糊。 由于在第一像素区域和第二像素区域中单独执行写入显示数据和复位数据,因此防止在显示屏幕中发生闪烁。
    • 94. 发明授权
    • Power supply device for driving liquid crystal, liquid crystal device and electronic equipment using the same
    • 用于驱动液晶的电源装置,液晶装置和使用其的电子设备
    • US06476591B2
    • 2002-11-05
    • US09977941
    • 2001-10-17
    • Hisashi YamaguchiTadashi Yasue
    • Hisashi YamaguchiTadashi Yasue
    • H03H106
    • G09G3/3696G09G2330/021
    • A power supply device for driving liquid crystal which generates four liquid crystal drive voltages V1 and V4 between first and second reference voltages, the power supply device comprising: a voltage division circuit 102 which divides a voltage between voltages between voltages V1 and V5 and generates four pairs of first voltages NV1 to NV4 and second voltages PV1 to PV4; and four impedance conversion circuits 103 and 104 which generate impedance converted liquid crystal drive voltages V1 to V4 based on the four pairs of the first and second voltages. Each impedance conversion circuit comprises voltage follower type of differential amplifier circuits 120 and 110 to which a pair of the first and second voltages is input, and an output circuit 130 which is driven by the differential amplification circuits. The N-type transistor 134 and P-type transistor 132 in the output circuit are independently driven by the first and second output voltages VN, VP from the differential amplification circuits 120 and 110.
    • 一种用于驱动液晶的电源装置,其在第一和第二参考电压之间产生四个液晶驱动电压V1和V4,所述电源装置包括:分压电路102,其分压电压V1和V5之间的电压,并产生四个 一对第一电压NV1至NV4和第二电压PV1至PV4; 以及基于四对第一和第二电压产生阻抗转换的液晶驱动电压V1至V4的四个阻抗转换电路103和104。 每个阻抗转换电路包括输入一对第一和第二电压的电压跟随器类型的差分放大器电路120和110,以及由差分放大电路驱动的输出电路130。 输出电路中的N型晶体管134和P型晶体管132由差分放大电路120和110的第一和第二输出电压VN,VP独立地驱动。
    • 95. 发明授权
    • Percutaneously administrable patch preparation
    • 经皮给药的贴剂制剂
    • US5820877A
    • 1998-10-13
    • US663186
    • 1996-06-14
    • Hisashi YamaguchiHiroyuki MaedaYoshirou Kamihoriuchi
    • Hisashi YamaguchiHiroyuki MaedaYoshirou Kamihoriuchi
    • A61M35/00A61K9/70A61L15/16A61M37/00
    • A61K9/703A61K9/7084
    • A percutaneous or permucosal patch drug preparation. The preparation includes: (1) a backing layer impermeable to a drug component, (2) a drug storage layer which holds the drug component therein and is situated under the central portion of the backing layer, (3) a protective film which is impermeable to the drug component, has notches and is situated under the drug storage layer and the peripheral portion of the backing layer, (4) a pressure-sensitive adhesive layer which is situated under the protective film, and (5) a releasable liner layer which is impermeable to the drug component and situated under the pressure-sensitive layer. When the releasable liner layer is peeled off of the preparation, the protective film is torn along the notches and the portion of the protective film surrounded by the notches is removed together with the releasable liner layer and a portion of the adhesive between the protective film and the releasable liner layer. The patch drug preparation is held on the skin or mucosa of a patient by the pressure-sensitive adhesive remaining on the peripheral portion of the protective film. The drug held in the drug storage layer is released directly to the mucosa or to the skin.
    • PCT No.PCT / AU95 / 00124 Sec。 371日期1996年6月14日第 102(e)日期1996年6月14日PCT 1995年3月10日PCT PCT。 第WO95 / 16440号公报 日期:1995年6月22日经皮或粘膜贴剂药物制剂。 该制剂包括:(1)药物成分不可渗透的背层,(2)将药物成分保持在其中并位于背衬层中心部分下方的药物储存层,(3)不渗透保护膜 具有切口并且位于药物储存层和背衬层的周边部分之下,(4)位于保护膜下方的压敏粘合剂层,和(5)可剥离衬垫层, 对药物成分是不可渗透的,位于压敏层下方。 当可释放的衬里层从制剂上剥离时,保护膜沿着切口撕开,并且由凹口包围的保护膜的部分与可剥离的衬垫层一起被去除,一部分粘合剂在保护膜和 可剥离衬里层。 贴剂药物制剂通过保留在保护膜周边部分上的压敏粘合剂保持在患者的皮肤或粘膜上。 保存在药物储存层中的药物直接释放到粘膜或皮肤上。
    • 96. 发明授权
    • Method of driving a display device
    • 驱动显示装置的方法
    • US5233340A
    • 1993-08-03
    • US900754
    • 1992-06-19
    • Hisashi YamaguchiAtsushi SakamotoKazuo ShojiKioichi YamamotoToshihiro OhbaHisashi Uede
    • Hisashi YamaguchiAtsushi SakamotoKazuo ShojiKioichi YamamotoToshihiro OhbaHisashi Uede
    • G09G3/30
    • G09G3/30
    • A method of driving a display device with a plurality of scanning side electrodes and a plurality of data side electrodes which are disposed in directions intersecting each other, and a dielectric layer interposed between the scanning side electrodes and the data side electrodes, and including steps of applying modulation voltages corresponding to display data to the data side electrodes, and also applying writing voltages of positive or negative polarity to the scanning side electrodes through line sequence, so as to cause picture elements composed of the dielectric layer to emit light. The driving method further includes steps of thinning out the display data, and applying a plurality of kinds of modulation voltages different in amplitude according to each frame, so as to cause the picture elements to effect gradation display of different brightness in multi-stages.
    • 一种驱动显示装置的方法,所述显示装置具有沿彼此交叉的方向设置的多个扫描侧电极和多个数据侧电极以及介于所述扫描侧电极和所述数据侧电极之间的电介质层,并且包括以下步骤: 将对应于显示数据的调制电压施加到数据侧电极,并且通过线序列向扫描侧电极施加正极性或负极性的写入电压,以使得由电介质层组成的像素发光。 驱动方法还包括以下步骤:根据每个帧稀疏显示数据和应用幅度不同的多种调制电压,以使得像素在多级中实现不同亮度的灰度显示。
    • 98. 发明授权
    • Touch sensing device
    • 触摸感应装置
    • US4567470A
    • 1986-01-28
    • US488399
    • 1983-04-25
    • Kazuo YoshikawaHisashi YamaguchiToru Asano
    • Kazuo YoshikawaHisashi YamaguchiToru Asano
    • G06F3/044G06K11/06H03K17/96G06F3/02
    • H03K17/9622H03K2017/9613
    • A touch sensing device employing a new sensing method of the present invention is composed of the sensing portion which senses capacitance change of the touch sensing electrodes forming the touch panel, plurality of capacitance compensating capacitors which are used in common for the sensing electrodes in order to compensate fluctuation of touch sensing electrodes of the touch panel, and the ROM which is storing the data for selecting the capacitance compensating capacitors. The ON-OFF output voltage levels in the touch/non-touch conditions to the touch sensing electrodes can be equalized for each electrode and thereby the touch sensing with high accuracy can be realized by selecting the capacitance compensating capacitor by means of the ROM at the time of retrieving each touch sensing electrode.
    • 采用本发明的新的感测方法的触摸感测装置由感测部分,其感测形成触摸面板的触摸感测电极的电容变化,多个电容补偿电容器共同用于感测电极,以便 补偿触摸面板的触摸感测电极的波动,以及存储用于选择电容补偿电容器的数据的ROM。 触摸/非触摸条件下的触摸/非触摸条件下的ON-OFF输出电压电平可以对于每个电极均衡,从而可以通过在ROM中的ROM选择电容补偿电容器来实现高精度的触摸感测 检索每个触摸感测电极的时间。