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    • 2. 发明授权
    • Electro-optic device, driving method, and electronic apparatus
    • 电光装置,驱动方法和电子装置
    • US08212800B2
    • 2012-07-03
    • US12431414
    • 2009-04-28
    • Ryo Ishii
    • Ryo Ishii
    • G09G5/00
    • G09G3/204G09G3/001G09G3/20G09G3/3648G09G2300/0439G09G2300/0814G09G2300/0857G09G2310/0224G09G2310/0262
    • An electro-optic device which includes pixels disposed in regions corresponding to intersections between a plurality of scanning lines (Rreal) and a plurality of data lines, the pixels being turned on or off in accordance with data signals, each of the data signals being supplied to the plurality of data lines when the plurality of scanning lines (Rreal) are selected, in which one field is divided into a plurality of sub-fields (Nsf) and the plurality of sub-fields (Nsf) are classified into a first group having a period length formed by equally dividing the one field into a plurality of slots, such that a number of slots in the one field is a division number (Ndiv), and a second group having a period length that is at least four times longer than a period length the first group.
    • 一种电光装置,其包括设置在对应于多个扫描线(Rreal)和多条数据线之间的交叉点的区域中的像素,根据数据信号将像素导通或截止,每个数据信号被提供 当选择多个扫描线(Rreal)时,将多个子场(Nsf)分割为多个子场(Nsf),将多个子场(Nsf)分类为第一组 具有通过将一个场均等地分割成多个时隙形成的周期长度,使得一个场中的时隙数是分割数(Ndiv),并且具有至少四倍的周期长度的第二组 比第一组的时间段长。
    • 3. 发明授权
    • Coordinate input device and display device
    • 坐标输入装置和显示装置
    • US08159471B2
    • 2012-04-17
    • US12051175
    • 2008-03-19
    • Sumio UtsunomiyaTakeshi KoshiharaRyo Ishii
    • Sumio UtsunomiyaTakeshi KoshiharaRyo Ishii
    • G09G5/00
    • G06F3/044
    • Provided is a coordinate input device including: a plurality of detection electrodes which are arranged in a planar shape in a detection area of a substrate; a plurality of routed wires connected to the plurality of detection electrodes; a coating film which coats the plurality of detection electrodes; a detection unit which detects a capacitance variation between the plurality of detection electrodes via the coating film; and a calculation unit which calculates a capacitance forming position from the detected result of the detection unit, wherein the plurality of detection electrodes are formed in the detection area in a first direction and are arranged in a second direction orthogonal to the first direction so as to configure a plurality of detection electrode pairs, each of which is composed of a pair of adjacent detection electrodes, a ratio of the width of one-side detection electrode of the pair of detection electrodes to the width of the other-side detection electrode of the pair of detection electrodes configuring each of the detection electrode pairs is changed according to the first direction, and the plurality of routed wires are connected to one ends of the first direction of the detection electrodes and are formed on the same layer as the plurality of detection electrodes.
    • 提供一种坐标输入装置,包括:在基板的检测区域中排列成平面形状的多个检测电极; 连接到所述多个检测电极的多个布线; 涂覆所述多个检测电极的涂膜; 检测单元,其经由所述涂膜检测所述多个检测电极之间的电容变化; 以及计算单元,其根据检测单元的检测结果计算电容形成位置,其中所述多个检测电极形成在所述检测区域中的第一方向上并且布置在与所述第一方向正交的第二方向上,以便 配置多个检测电极对,每个检测电极对由一对相邻的检测电极构成,一对检测电极的一侧检测电极的宽度与该检测电极的另一侧检测电极的宽度的比率 构成每个检测电极对的一对检测电极根据第一方向改变,并且多条路由布线连接到检测电极的第一方向的一端,并且形成在与多个检测相同的层上 电极。
    • 6. 发明授权
    • Method for driving electrooptical device, driving circuit, and electrooptical device, and electronic apparatus
    • 驱动电光装置,驱动电路,电光装置及电子装置的方法
    • US06873319B2
    • 2005-03-29
    • US09937966
    • 2001-01-26
    • Akira InoueAkihiko ItoRyo IshiiSuguru Yamazaki
    • Akira InoueAkihiko ItoRyo IshiiSuguru Yamazaki
    • G09G3/20G09G3/36G09G5/00
    • G09G3/3648G09G3/2025G09G3/3696G09G2300/0814G09G2300/0823
    • The invention provides an electro-optical device capable of a high-quality and high-definition tone display, a driving method thereof, a driving circuit thereof, and electronic equipment using the same. With the invention, one field is divided into a plurality of sub-fields, such that each pixel is turned on or off in each of the sub-fields so that the proportion of the period during which each pixel is turned on to the period during which the associated pixel is turned off within the one field corresponds to the proportion according to the tone data. Further, when each pixel is turned on, either a first voltage which is higher than a constant reference voltage applied to a counter electrode or a second voltage which is lower than the reference voltage is applied to a pixel electrode of the associated pixel, and when the pixel is turned off, a voltage equal to the reference voltage is applied to the pixel electrode of the pixel.
    • 本发明提供一种能够进行高品质和高清晰度色调显示的电光装置,其驱动方法,驱动电路和使用该电光装置的电子设备。 利用本发明,一个场被分成多个子场,使得每个子场中的每个像素被打开或关闭,使得每个像素被打开的周期的比例到 关联像素在一个场内关闭的对应于根据色调数据的比例。 此外,当每个像素导通时,高于施加到对电极的恒定参考电压的第一电压或低于参考电压的第二电压被施加到相关像素的像素电极,并且当 关闭像素,将等于参考电压的电压施加到像素的像素电极。
    • 9. 发明授权
    • Air-fuel ratio control system for internal combustion engine and control method of the same
    • 内燃机空燃比控制系统及其控制方法
    • US07712459B2
    • 2010-05-11
    • US12225930
    • 2007-04-23
    • Ryo IshiiNorihisa Nakagawa
    • Ryo IshiiNorihisa Nakagawa
    • F02D41/00
    • F02D41/064F02D41/1454F02D41/1474F02D41/1482F02D2041/1409F02D2041/1422
    • An air-fuel ratio control system includes an air-fuel ratio sensor (23, 24) disposed upstream or downstream of an exhaust purification catalyst, and performs feedback control of the fuel supply amount such that an output value of the air-fuel ratio sensor is controlled to the target air-fuel ratio. The feedback control is performed by calculating a correction amount by summing up the value of a proportional and the value of an integral calculated based on the deviation between the output value of the air-fuel ratio sensor and the target air-fuel ratio, and correcting the fuel supply amount based on the obtained correction amount. At cold startup of the internal combustion engine, the value of the integral is set to be a smaller value from the startup of the internal combustion engine until a predetermined period elapses.
    • 空燃比控制系统包括设置在排气净化催化剂的上游或下游的空燃比传感器(23,24),并且执行燃料供给量的反馈控制,使得空燃比传感器 被控制到目标空燃比。 反馈控制是通过将比例值和基于空燃比传感器的输出值与目标空燃比之间的偏差计算出的积分值相加的值来计算校正量,并且校正 基于获得的校正量的燃料供给量。 在内燃机的冷启动时,积分值被设定为从内燃机启动直到经过预定时间后的较小值。
    • 10. 发明申请
    • ELECTRO-OPTIC DEVICE, DRIVING METHOD, AND ELECTRONIC APPARATUS
    • 电光设备,驱动方法和电子设备
    • US20090278829A1
    • 2009-11-12
    • US12431414
    • 2009-04-28
    • Ryo ISHII
    • Ryo ISHII
    • G09G5/00G09G3/30
    • G09G3/204G09G3/001G09G3/20G09G3/3648G09G2300/0439G09G2300/0814G09G2300/0857G09G2310/0224G09G2310/0262
    • An electro-optic device includes pixels provided in correspondence with intersections between a number Rreal of plural scanning lines and plural data lines and turned on or off in accordance with data signals each supplied to the data lines when the scanning lines are selected. In the electro-optic device, one field is divided into a number Nsf of plural sub-fields and the number Nsf of sub-fields are classified into a first group having a period length formed by equally dividing one field into plural Ndiv and a second group having a period length corresponding to plural times of the sub-field of the first group. In the electro-optic device, gray scales are controlled in one field unit by turning on or off the pixels in each of the number Nsf of sub-fields. The electro-optic device includes: a scanning line driving circuit which, on the assumption of a number Rvir (where Rvir≧Rreal) of virtual scanning lines including the number Rreal of scanning lines, performs interlaced scanning on the number Rvir of virtual scanning lines by the number of lines according to a ratio of the period lengths of the sub-fields arranged in one field; and a data line driving circuit which supplies the data signals to the pixels located in selected scanning lines through the data lines. When two different values obtained as division number Ndiv of the one field are compared to each other, the division number Ndiv is selected such that a number Ys of reference interlaced scanning lines is smaller in the interlaced scanning and a selection period obtained by dividing the one field period by the product of the number Nsf of sub-fields and the number Rvir of virtual scanning lines is longer.
    • 电光装置包括对应于多条扫描线的数目Rreal与多条数据线之间的交点相对应设置的像素,并根据当选择扫描线时提供给数据线的数据信号而导通或截止。 在电光装置中,将一场分割成多个子场的Nsf,将子场数Nsf划分成具有通过将一场等分成多个Ndiv而形成的周期长度的第一组, 组具有对应于第一组的子场的多次的周期长度。 在电光装置中,通过打开或关闭子场数Nsf中的每个像素中的灰度级来控制灰度级。 电光装置包括:扫描线驱动电路,假设包含扫描线数目的Rreal的虚拟扫描线的Rvir(其中Rvir> = Rreal),对虚拟扫描的数量Rvir执行隔行扫描 根据排列在一个场中的子场的周期长度的比率,以线数排列; 以及数据线驱动电路,其通过数据线将数据信号提供给位于所选择的扫描线中的像素。 当将作为一场的分割数Ndiv获得的两个不同值彼此进行比较时,分割数Ndiv被选择为使得在隔行扫描中参考隔行扫描线的数量Ys较小,并且通过将一 子场数Nsf和虚拟扫描行数Rvir的场周期越长。