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    • 41. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20120063205A1
    • 2012-03-15
    • US13230093
    • 2011-09-12
    • Takanori MatsuzakiShuhei NagatsukaHiroki Inoue
    • Takanori MatsuzakiShuhei NagatsukaHiroki Inoue
    • G11C11/24
    • H01L27/1052G11C8/08G11C11/403G11C11/405G11C11/4085G11C16/02G11C16/0433G11C16/0483G11C16/08G11C2211/4016
    • A semiconductor device in which stored data can be held even when power is not supplied and there is no limitation on the number of writing operations is provided. A semiconductor device is formed using a material which can sufficiently reduce the off-state current of a transistor, such as an oxide semiconductor material that is a wide-gap semiconductor. When a semiconductor material which can sufficiently reduce the off-state current of a transistor is used, the semiconductor device can hold data for a long period. In addition, by providing a capacitor or a noise removal circuit electrically connected to a write word line, a signal such as a short pulse or a noise input to a memory cell can be reduced or removed. Accordingly, a malfunction in which data written into the memory cell is erased when a transistor in the memory cell is instantaneously turned on can be prevented.
    • 即使在不提供电力的情况下也可以保存存储的数据,并且没有限制写入操作的数量的半导体装置。 使用可以充分降低诸如作为宽间隙半导体的氧化物半导体材料的晶体管的截止电流的材料形成半导体器件。 当使用可以充分降低晶体管的截止电流的半导体材料时,半导体器件可以长期保存数据。 此外,通过提供电连接到写字线的电容器或噪声去除电路,可以减少或去除诸如短脉冲或输入到存储器单元的噪声的信号。 因此,可以防止当存储单元中的晶体管瞬间导通时擦除写入存储单元的数据的故障。
    • 48. 发明申请
    • Particulate water absorbent agent and production method thereof, and water absorbent article
    • 颗粒状吸水剂及其制造方法和吸水性物品
    • US20080269372A1
    • 2008-10-30
    • US12078802
    • 2008-04-04
    • Yorimichi DairokuYoshifumi AdachiKozo NogiHiroki InoueKatsuyuki WadaYoshio Irie
    • Yorimichi DairokuYoshifumi AdachiKozo NogiHiroki InoueKatsuyuki WadaYoshio Irie
    • C08J5/14
    • C08J3/243A61L15/60B01J20/26B01J20/267B01J2220/68C08J2300/102
    • A particulate water absorbing agent of the present invention includes a water absorbent resin, having a cross-linking structure, whose surface has been cross-linked by adding a surface treatment agent, wherein: (i) a mass average particle diameter (D50) ranges from 200 to 600 μm and 95 to 100 wt % of a particulate water absorbing agent whose particle diameter ranges from less than 850 μm to not less than 150 μm is contained with respect to 100 wt % of whole the particulate water absorbing agent, and (ii) a logarithmic standard deviation (σζ) of particle size distribution ranges from 0.25 to 0.45, and (iii) a compressibility rate defined by a following equation ranges from 0 to 18%, and (iv) a surface tension of a supernatant liquid obtained in 4 minutes after dispersing 0.5 g of the particulate water absorbing agent in 50 ml of physiological saline whose temperature is 20° C. is 55 mN/m or more, the compressibility rate (%)=(P−A)/P×100 where P represents a tapped bulk density of the particulate water absorbing agent and A represents a loose bulk density of the particulate water absorbing agent.
    • 本发明的颗粒状吸水剂包括具有交联结构的吸水性树脂,其表面通过添加表面处理剂进行交联,其中:(i)质量平均粒径(D50)范围 相对于全部颗粒状吸水剂的100重量%,含有200〜600μm,95〜100wt%粒径范围在850μm〜150μm以下的颗粒状吸水剂,( ii)粒度分布的对数标准偏差(sigmazeta)范围为0.25〜0.45,(iii)由下式表示的压缩率为0〜18%,(iv)得到的上清液的表面张力 在将0.5g颗粒状吸水剂分散在温度为20℃的50ml生理盐水中的4分钟内,在&lt;&lt;直线式说明书=“在线式”末端 =“铅”?>压缩性 y率(%)=(PA)/ P×100 <?在线公式描述=“在线公式”end =“tail”?>其中P表示颗粒状吸水剂的抽头堆积密度,A表示 颗粒状吸水剂的松散堆积密度。