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    • 3. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20110284974A1
    • 2011-11-24
    • US13196154
    • 2011-08-02
    • Yasuyuki ARAIYuko TACHIMURAYohei KANNO
    • Yasuyuki ARAIYuko TACHIMURAYohei KANNO
    • H01L29/66
    • H01L27/1266G06K19/025G06K19/07728G06K19/07749H01L27/1214H01L27/13H01L2221/6835H01L2224/73204
    • An object of the present invention is providing a semiconductor device that is capable of improving the reliability of a semiconductor element and enhancing the mechanical strength without suppressing the scale of a circuit. The semiconductor device includes an integrated circuit sandwiched between first and second sealing films, an antenna electrically connected to the integrated circuit, the first sealing film sandwiched between a substrate and the integrated circuit, which includes a plurality of first insulating films and at least one second insulating film sandwiched therebetween, the second sealing film including a plurality of third insulating films and at least one fourth insulating film sandwiched therebetween. The second insulating film has lower stress than the first insulting film and the fourth insulating film has lower stress than the third insulating film. The first and third insulating films are inorganic insulating films.
    • 本发明的目的在于提供一种能够提高半导体元件的可靠性并提高机械强度而不抑制电路规模的半导体装置。 半导体器件包括夹在第一和第二密封膜之间的集成电路,与集成电路电连接的天线,夹在基板和集成电路之间的第一密封膜,其包括多个第一绝缘膜和至少一个第二绝缘膜 夹在其间的绝缘膜,所述第二密封膜包括多个第三绝缘膜和夹在其间的至少一个第四绝缘膜。 第二绝缘膜具有比第一绝缘膜低的应力,并且第四绝缘膜具有比第三绝缘膜更低的应力。 第一和第三绝缘膜是无机绝缘膜。
    • 5. 发明申请
    • Liquid Droplet Ejection System and Control Program of Ejection Condition of Compositions
    • 液滴喷射系统和组合喷射条件控制程序
    • US20110164083A1
    • 2011-07-07
    • US13049078
    • 2011-03-16
    • Shunpei YamazakiJun KoyamaYasuyuki AraiShihji MaekawaYohei Kanno
    • Shunpei YamazakiJun KoyamaYasuyuki AraiShihji MaekawaYohei Kanno
    • B41J2/07
    • H01L51/0004H01L51/56H05K1/0269H05K3/0008H05K3/1241
    • When using a liquid droplet ejection method, a conventional photomask is not required, however, it is required instead that a moving path of a nozzle or a substrate is controlled with accuracy at least in ejecting liquid droplets. According to the characteristics of compositions to be ejected or their pattern, such ejection conditions are desirably set as the moving rate of a nozzle or a substrate, ejection quantity, ejection distance and ejection rate of compositions, atmosphere of the space that the compositions are ejected, the temperature and moisture of the space, and heating temperature of the substrate. A liquid droplet ejection system in accordance with the invention comprises an input means for inputting data of a thin film pattern, a set means for setting a nozzle for a ejecting a composition containing a material for forming the thin film or setting a moving path of the substrate to which the composition is ejected, an image pick-up means for detecting an alignment marker formed on a substrate and a control means for controlling the moving path of the nozzle or the substrate.
    • 当使用液滴喷射方法时,不需要常规的光掩模,然而,需要至少在喷射液滴时精确地控制喷嘴或基板的移动路径。 根据要喷射的组合物或其图案的特征,这种喷射条件期望设置为喷嘴或基底的移动速率,喷射量,喷射距离和组合物的喷射速率,组合物喷出的空间的气氛 ,空间的温度和湿度,以及基板的加热温度。 根据本发明的液滴喷射系统包括用于输入薄膜图案的数据的输入装置,用于设置用于喷射包含用于形成薄膜的材料的组合物的喷嘴的设定装置或设置该薄膜图案的移动路径 用于检测形成在基板上的取向标记的图像拾取装置和用于控制喷嘴或基板的移动路径的控制装置。
    • 7. 发明授权
    • ID label, ID tag, and ID card
    • ID标签,ID标签和身份证
    • US07728734B2
    • 2010-06-01
    • US12336611
    • 2008-12-17
    • Yasuyuki AraiMai AkibaYuko TachimuraYohei Kanno
    • Yasuyuki AraiMai AkibaYuko TachimuraYohei Kanno
    • G08B13/14
    • G06K19/07722G06K19/07749G08B13/2417G08B13/2437
    • In commercial products to which a non-contact type or contact type ID label or ID tag is attached and ID cards, there is fear that, due to a difference between coefficients of thermal expansion between an antenna for communication and a resin provided around the antenna, stress is applied to the resin with the larger coefficient of thermal expansion to break the resin. This contributes to a decrease in manufacturing yield, lifetime, and reliability of an ID label or the like. In an article such as an ID label, an ID tag, and an ID card according to the present invention, a filler is included in a filling layer provided around an antenna forming an ID label, an ID tag, and an ID card so that the difference in coefficient of thermal expansion between the antenna and the filling layer can be reduced. This makes it possible to ease generation of stress due to the difference in coefficient of thermal expansion and prevent peeling and cracks of the filling layer.
    • 在与非接触型或接触型ID标签或ID标签相连的商业产品中,ID卡有恐惧,由于通信用天线与设置在天线周围的树脂之间的热膨胀系数之间的差异 对具有较大的热膨胀系数的树脂施加应力以破坏树脂。 这有助于ID标签等的制造产量,寿命和可靠性的降低。 在根据本发明的诸如ID标签,ID标签和ID卡的物品中,在形成ID标签,ID标签和ID卡的天线周围的填充层中包括填充物,使得 可以降低天线与填充层之间的热膨胀系数的差异。 这使得可以缓解由于热膨胀系数的差异导致的应力的产生,并且防止填充层的剥离和裂纹。
    • 8. 发明授权
    • Semiconductor device and manufacturing method thereof
    • 半导体装置及其制造方法
    • US07572718B2
    • 2009-08-11
    • US11092773
    • 2005-03-30
    • Yohei KannoYasuko Watanabe
    • Yohei KannoYasuko Watanabe
    • H01L21/3205
    • H01L29/42384H01L21/268H01L27/1292H01L29/4908H01L29/66757H01L29/78621
    • In the case of providing an LDD region for a TFT, it is necessary to form separately an insulating film to be a mask or to contrive the shape of a gate electrode layer in order to have the concentration difference in impurities injected in a semiconductor film; therefore, the number of patterning steps has increased as a matter of course and the step has become complicated. A semiconductor device according to one feature of the invention comprises a semiconductor layer including a channel region, a pair of impurity regions, and a pair of low-concentration impurity regions; and a gate electrode layer having a single layer structure or a laminated structure, of which film thickness is not even, which is formed to be in contact with the semiconductor layer by sandwiching a gate insulating film therebetween. Particularly, the gate electrode layer, of which film thickness is not even, can be formed easily by employing a droplet discharging method; thus, the convenience of the droplet discharging method can be taken with full advantage.
    • 在为TFT提供LDD区域的情况下,需要分别形成作为掩模的绝缘膜或者为了使注入半导体膜中的杂质的浓度差成为栅极电极层的形状; 因此,图案化步骤的数量当然增加,并且步骤变得复杂。 根据本发明的一个特征的半导体器件包括:半导体层,包括沟道区,一对杂质区和一对低浓度杂质区; 以及通过在其间夹有栅极绝缘膜而形成为与半导体层接触的膜厚不均匀的单层结构或层叠结构的栅极电极层。 特别地,通过采用液滴喷射法可以容易地形成膜厚不均匀的栅电极层; 因此,可以充分利用液滴喷射方法的方便性。
    • 10. 发明申请
    • Film-like article and method for manufacturing the same
    • 薄膜状制品及其制造方法
    • US20070159353A1
    • 2007-07-12
    • US10586049
    • 2005-01-20
    • Yasuyuki AraiMai AkibaYohei KannoYuko Tachimura
    • Yasuyuki AraiMai AkibaYohei KannoYuko Tachimura
    • G08C19/04G08C19/10
    • H01L27/1266H01L27/12H01L27/1214H01L27/13
    • Since the chip formed from a silicon wafer is thick, the chip is protruded from the surface or the chip is so large that it can be seen through the eyes, which affects the design of a business card or the like. Hence, it is an object of the present invention to provide a new integrated circuit which has a structure by which the design is not affected. In view of the above problems, it is a feature of the invention to equip a film-like article with a thin film integrated circuit. It is another feature of the invention that the IDF chip has a semiconductor film of 0.2 mm or less, as an active region. Therefore, the IDF chip can be made thinner as compared with a chip formed from a silicon wafer. In addition, such an integrated circuit can have light transmitting characteristic unlike a chip formed from a silicon wafer.
    • 由于由硅晶片形成的芯片较厚,所以芯片从表面突出,或者芯片大到可以通过眼睛看到,影响到名片的设计等。 因此,本发明的目的是提供一种新的集成电路,其具有不影响设计的结构。 鉴于上述问题,本发明的一个特征是为薄膜集成电路配备薄膜状制品。 本发明的另一个特征是IDF芯片具有0.2mm以下的半导体膜作为活性区域。 因此,与由硅晶片形成的芯片相比,可以使IDF芯片更薄。 此外,这种集成电路可以具有与由硅晶片形成的芯片不同的透光特性。