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    • 1. 发明授权
    • Sealed battery
    • 密封电池
    • US08940422B2
    • 2015-01-27
    • US11885252
    • 2006-03-16
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • H01M2/12
    • H01M2/0404H01M2/043H01M2/08H01M2/12H01M2/1229H01M2/1247H01M10/281
    • A battery cell includes a battery housing case formed with a through hole communicating with an interior space, a hollow rivet, and a seal rubber. The hollow rivet has a seal surface annularly extending outside the battery housing case, and a hollow portion formed with an exhaust port continuous to the inner edge of the seal surface and positioned at the through hole to allow gas in the interior space to flow out through the exhaust port. The seal rubber has a contact unit extending annularly facing the seal surface to press the seal surface and is provided so as to close the exhaust port. The contact unit is formed to project toward the seal surface so as to contact the seal surface at a position away from the inner edge of the seal surface. Such an arrangement prevents an electrolyte leakage over a long period of time.
    • 电池单元包括形成有与内部空间连通的通孔的电池外壳,中空铆钉和密封橡胶。 中空铆钉具有环形延伸到电池壳体外部的密封表面,以及形成有与密封表面的内边缘连续并位于通孔处的排气口的中空部分,以允许内部空间中的气体流出 排气口。 密封橡胶具有接触单元,该接触单元环形地面向密封表面延伸以按压密封表面并且设置成关闭排气口。 接触单元形成为朝向密封表面突出,以便在远离密封表面的内边缘的位置处接触密封表面。 这种布置防止电解质在长时间内泄漏。
    • 3. 发明申请
    • SEALED BATTERY AND VEHICLE
    • 密封电池和车辆
    • US20120088128A1
    • 2012-04-12
    • US13375820
    • 2010-06-02
    • Tomohiro MatsuuraKatsumi ItoAkira FujiiToshihiro Odagaki
    • Tomohiro MatsuuraKatsumi ItoAkira FujiiToshihiro Odagaki
    • H01M2/12
    • H01M2/1241Y02E60/12
    • A safety valve (40, 140, 240, 340) formed in a portion of a case of a sealed battery includes a fracture groove portion (50, 150, 250, 350) formed in a thin portion (42, 142, 242, 342). The thin portion (42, 142, 242, 342) is formed in a horizontally long shape or a vertically long shape that has a curved outer edge portion (45, 145, 245, 345) in which at least a portion of the outer edge portion (43) is curved. This thin portion (42, 142, 242, 342) has a center straight groove portion (60, 160, 260, 360) that extends in the longer direction of the thin portion in the center portion of the thin portion, and a pair of side groove portions (70, 170, 270, 370) that are formed in both side in the longer direction of the center straight groove portion (60, 160, 260, 360) and connected to longer direction end portions (60A, 60B, 160A, 160B, 260A, 260B) of the center straight groove portion. Here, a portion of the side groove portion (70, 170, 270, 370) is formed curved following the curved outer edge portion (45, 145, 245, 345).
    • 形成在密封电池的壳体的一部分中的安全阀(40,140,​​240,340)包括形成在薄部分(42,142,242,342)中的断裂槽部分(50,150,250,350) )。 薄壁部分(42,142,242,342)形成为具有弯曲外缘部分(45,145,245,345)的水平长形状或垂直长形状,其中至少一部分外缘 部分(43)是弯曲的。 该薄部分(42,142,242,342)具有中心直槽部分(60,160,260,360),该中心直槽部分在薄部分的中心部分的薄壁部分的较长方向上延伸,并且一对 形成在中心直槽部(60,160,260,360)的长度方向上的两侧并与长方向端部(60A,60B,160A)连接的侧槽部(70,170,270,370) ,160B,260A,260B)。 这里,侧槽部(70,170,270,370)的一部分在弯曲的外缘部(45,145,245,345)之后形成为弯曲的形状。
    • 4. 发明申请
    • Sealed Battery
    • 密封电池
    • US20080199763A1
    • 2008-08-21
    • US11885252
    • 2006-03-16
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • H01M2/12
    • H01M2/0404H01M2/043H01M2/08H01M2/12H01M2/1229H01M2/1247H01M10/281
    • A battery cell comprising a battery housing case formed with a through hole communicating with an interior space, a hollow rivet, and a seal rubber. The hollow rivet has a seal surface annularly extending outside the battery housing case, and a hollow portion formed with an exhaust port continuous to the inner edge of the seal surface and positioned at the through hole to allow gas in the interior space to flow out through the exhaust port. The seal rubber has a contact unit extending annularly facing the seal surface to press the seal surface and is provided so as to close the exhaust port. The contact unit is formed to project toward the seal surface so as to contact the seal surface at a position away from the inner edge of the seal surface. Such an arrangement prevents an electrolyte leakage over a long period of time.
    • 一种电池单元,包括形成有与内部空间连通的通孔的电池外壳,中空铆钉和密封橡胶。 中空铆钉具有环形延伸到电池壳体外部的密封表面,以及形成有与密封表面的内边缘连续并位于通孔处的排气口的中空部分,以允许内部空间中的气体流出 排气口。 密封橡胶具有接触单元,该接触单元环形地面向密封表面延伸以按压密封表面并且设置成关闭排气口。 接触单元形成为朝向密封表面突出,以便在远离密封表面的内边缘的位置处接触密封表面。 这种布置防止电解质在长时间内泄漏。
    • 7. 发明授权
    • Information processing structures
    • US06661022B2
    • 2003-12-09
    • US09926698
    • 2001-12-04
    • Takashi MorieAtsushi IwataMakoto NagataToshio YamanakaTomohiro Matsuura
    • Takashi MorieAtsushi IwataMakoto NagataToshio YamanakaTomohiro Matsuura
    • H01L2906
    • B82Y10/00G11C11/34G11C2216/08H01L29/7613H01L29/7888
    • An information processing structure is disclosed that is formed of single electron circuits each operating rapidly and stably by way of a single electron operation. The information processing structure includes a MOSFET (11), and a plurality of quantum dots (13) disposed immediately above a gate electrode (12) of the MOSFET and each of which is made of a microconductor or microsemiconductor of a nanometer scale in size. Between each of the quantum dots and the gate electrode is there formed an energy barrier that an electron is capable of directly tunneling. The total number of such electrons moved between the quantum dots and the gate electrode is used to represent information. In the structure, a power source electrode (14) is disposed in contact with the quantum dots and a pair of information electrodes (15) is disposed across a quantum dot in contact therewith for having electric potentials applied thereto, representing data of information. Between each of the quantum dots and the power source electrode is there also formed a potential barrier that an electron is capable of directly tunneling. A capacitive coupling is provided between the information electrodes in pair and the quantum dot between them to prevent movement of an electron between the quantum dot and the information electrodes, and an electron is rendered movable by the Coulomb blockade through the quantum dot between the power source electrode and the gate electrode in response to a relative electric potential determined at the information electrodes.
    • 9. 发明授权
    • Battery
    • 电池
    • US08852771B2
    • 2014-10-07
    • US13376930
    • 2010-07-08
    • Kazuyuki KusamaTomohiro Matsuura
    • Kazuyuki KusamaTomohiro Matsuura
    • H01M10/02H01M2/30H01M2/04H01M10/52H01M4/70H01M10/04H01M10/052H01M2/26H01M2/12
    • H01M10/0431H01M2/1229H01M2/263H01M10/052H01M10/0587Y02E60/122
    • A battery includes a cylindrical shaft core, and a wound electrode formed by winding a first electrode plate, a second electrode plate, and a separator around the outer periphery of the core. The wound electrode has a first wound portion formed by winding a first active material uncoated portion of the first electrode plate, a second wound portion formed by winding a second active material uncoated portion of the second electrode plate, and a power generating portion positioned between the first and second wound portions and formed by winding the first and second electrode plates, and the separator. The shaft core has a current collector portion composed of a metal, which is comprised of a joint portion connected to the first or second wound portion. The portions of the first or second wound portion, which are positioned on the outside of the shaft core in the radial direction with respect to the joint portion, are overlapped and welded to the joint portion.
    • 电池包括圆筒形轴芯和缠绕电极,其通过围绕芯的外周缠绕第一电极板,第二电极板和隔板而形成。 卷绕电极具有通过卷绕第一电极板的第一活性材料未涂覆部分而形成的第一卷绕部分,通过缠绕第二电极板的第二活性材料未涂覆部分形成的第二卷绕部分和位于第二电极板之间的发电部分 第一和第二卷绕部分,并且通过卷绕第一和第二电极板以及隔膜而形成。 轴芯具有由金属构成的集电部,该集电部由连接到第一或第二卷绕部的接合部组成。 第一或第二卷绕部分相对于接合部分在径向方向上位于轴芯的外侧上的部分被重叠并焊接到接合部分。
    • 10. 发明授权
    • Solid-state imaging device
    • 固态成像装置
    • US08797440B2
    • 2014-08-05
    • US13230023
    • 2011-09-12
    • Tomohiro Matsuura
    • Tomohiro Matsuura
    • H04N5/335
    • H04N5/378H04N5/3577
    • According to one embodiment, a solid-state imaging device includes an analog-to-digital conversion circuit which subjects a first and a second pixel voltages from pixels to first and second signal processing, and outputs a digital value corresponding to a difference value between the first pixel voltage and the second pixel voltage, a reference voltage generation circuit which outputs reference voltages having first and second pulse waveforms to the analog-to-digital conversion circuit. The reference voltage generation circuit includes an integration circuit. In the first signal processing which compares the reference voltage with the first pixel voltage, the reference voltage generation circuit supplies a first current to the integration circuit, and generates the first pulse waveform, after the first signal processing, the reference voltage generation circuit supplies a second current to the integration circuit, and returns a voltage value of the first pulse waveform to an initial value.
    • 根据一个实施例,固态成像装置包括模拟数字转换电路,其对来自像素的第一和第二像素电压进行第一和第二信号处理,并输出对应于 第一像素电压和第二像素电压,将具有第一和第二脉冲波形的参考电压输出到模数转换电路的参考电压产生电路。 参考电压产生电路包括积分电路。 在将参考电压与第一像素电压进行比较的第一信号处理中,参考电压产生电路向积分电路提供第一电流,并且在第一信号处理之后产生第一脉冲波形,参考电压产生电路提供 第二电流到积分电路,并将第一脉冲波形的电压值返回到初始值。