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    • 8. 发明申请
    • METHOD OF MEMBRANE SEPARATION
    • 膜分离方法
    • US20140124442A1
    • 2014-05-08
    • US14127997
    • 2012-07-05
    • Taeko NakamuraKenji KowataKatsumi Matsumoto
    • Taeko NakamuraKenji KowataKatsumi Matsumoto
    • C02F1/44C02F1/76
    • C02F1/441B01D61/025B01D61/04B01D65/08B01D2311/04B01D2311/12B01D2321/162C02F1/76C02F2209/29C02F2209/44C02F2303/20
    • Clogging of membrane by slime adhesion is efficiently prevented and stable treatment can be carried out for a long period of time at a low cost by a small amount of chemicals without the membrane deterioration and trihalomethane formation even if applied to the water having a large number of viable cell counts and having water quality of harsh. The method comprises supplying water to be treated to a membrane separation apparatus 4, adding intermittently to the water to be treated a combined chlorine agent comprising sulfamic compound, and repeating a non-addition feeding period in which water to be treated is supplied for 6-120 hours without addition of combined chlorine agent, and an intermittent addition feeding period in which water to be treated is supplied for 0.5-40 hours under addition of a combined chlorine agent at biofilm exfoliating concentration in an early stage of biofilm formation during the non-addition feeding period, wherein viable cell count (log CFU/mL) of water to be treated is 3 or more, and the concentration of the combined chlorine agent in the water in the intermittent addition feeding period is 0.5-20 mg/L as total chlorine, and additive amount of the combined chlorine agent added in the intermittent addition feeding period is the amount in which R represented by the following Formula [4] is 3 or more. R=(Intermittent addition feeding period (h)×[1000×Intermittent addition concentration (mg-Cl/L)]2.5/(Non-addition feeding period (h)3.0×10log CFU/mL)  [4]
    • 有效地防止了膜粘连的堵塞,并且通过少量没有膜劣化的化学品以及三卤甲烷的形成,即使施加到具有大量的膜的水中也能以较低的成本长时间地进行稳定的处理 活细胞计数,水质恶劣。 该方法包括将待处理的水供应到膜分离装置4,间歇地加入待处理的水中,包含氨基磺酸盐化合物的混合氯剂,并重复将未处理的水供给6- 在不加入组合氯剂的情况下120小时,以及间歇加料进料期间,其中在非生物膜生物膜形成的早期阶段,在加入生物膜去角质浓度的组合氯剂中加入待处理的水0.5-40小时, 其中待处理水的活细胞计数(log CFU / mL)为3以上,添加进料期间,间歇加料期间的水中混合氯剂的浓度为0.5〜20mg / L, 氯和添加量在间歇加料进料期间加入的混合氯剂的量是下式[4]表示的R为3或者mor e。 R =(间歇加料时间(h)×[1000×间歇加成浓度(mg-Cl / L)] 2.5 /(非加料加料期间(h)3.0×10log CFU / mL)
    • 9. 发明授权
    • Display device
    • 显示设备
    • US08059081B2
    • 2011-11-15
    • US11682903
    • 2007-03-07
    • Kozo YasudaKatsumi MatsumotoToshio Miyazawa
    • Kozo YasudaKatsumi MatsumotoToshio Miyazawa
    • G09G3/36
    • G09G3/3685G09G2300/0408G09G2310/0289
    • In the display device which is used in a miniaturized portable equipment, when a drive circuit is also connected on the same substrate as pixels, an input signal of low voltage has a level thereof shifted even when the threshold value is large or fluctuated. The display device includes pixel electrodes, switching elements which supply video signals to the pixel electrodes, and a drive circuit which supplies the video signals to the switching elements on the same substrate, wherein the drive circuit includes a level shift circuit, the level shift circuit includes a transistor. In a state that the transistor assumes an ON state, when an input signal is inputted to a source terminal and the input signal is at a low voltage level, a drain terminal assumes a low voltage level. Further, even when the input signal is at a high voltage level equal to or lower than a threshold value, the drain terminal outputs a voltage equal to or more than the threshold value as a high level voltage.
    • 在小型便携式设备中使用的显示装置中,当驱动电路也与像素连接在同一基板上时,即使阈值大或波动,低电压的输入信号也具有偏移电平。 显示装置包括像素电极,向像素电极提供视频信号的开关元件,以及将视频信号提供给同一基板上的开关元件的驱动电路,其中,驱动电路包括电平移位电路,电平移位电路 包括晶体管。 在晶体管处于导通状态的状态下,当输入信号被输入到源极端子并且输入信号处于低电压电平时,漏极端子呈现低电压电平。 此外,即使当输入信号处于等于或低于阈值的高电压电平时,漏极端子输出等于或大于阈值的电压作为高电平电压。
    • 10. 发明申请
    • Display device
    • 显示设备
    • US20090045408A1
    • 2009-02-19
    • US12219899
    • 2008-07-30
    • Takashi SakaiKatsumi Matsumoto
    • Takashi SakaiKatsumi Matsumoto
    • H01L33/00
    • H01L29/78633H01L27/124
    • A display device includes a display panel which forms a plurality of sub pixels on a substrate thereof, and a drive circuit which is configured to drive the plurality of sub pixels, wherein the drive circuit has a thin film transistor formed on the substrate, and the thin film transistor has a semiconductor layer made of poly-silicon. The thin film transistor includes: a source electrode, a semiconductor layer and a drain electrode which are formed on the substrate; a gate insulation film which is formed on the source electrode, the semiconductor layer and the drain electrode; a gate electrode which is formed on the gate insulation film and above the semiconductor layer; an insulation film which is formed on the gate electrode; and a metal layer which is formed on the insulation film in a state that the metal layer covers at least a portion of the gate electrode.
    • 显示装置包括在其基板上形成多个子像素的显示面板和驱动电路,其被配置为驱动多个子像素,其中驱动电路具有形成在基板上的薄膜晶体管, 薄膜晶体管具有由多晶硅制成的半导体层。 薄膜晶体管包括:形成在基板上的源电极,半导体层和漏电极; 形成在源电极,半导体层和漏电极上的栅极绝缘膜; 栅电极,形成在栅极绝缘膜上并在半导体层上方; 形成在栅电极上的绝缘膜; 以及在所述金属层覆盖所述栅电极的至少一部分的状态下形成在所述绝缘膜上的金属层。