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    • 1. 发明申请
    • Communication terminal device and method for controlling same
    • 通信终端装置及其控制方法
    • US20060173964A1
    • 2006-08-03
    • US11236467
    • 2005-09-27
    • Junichi OohamaHiroshi Kawano
    • Junichi OohamaHiroshi Kawano
    • G06F15/16
    • H04L51/28H04L29/12009H04L29/12594H04L51/066H04L51/12H04L61/301H04L61/303H04L67/04
    • A communication terminal device and a method for controlling the same which can operate a mail restriction function effectively without increasing a mail address registered for the mail restriction function are provided. The transmission and the reception of the mail is restricted by storing by a domain conversion table a corresponding relationship between an original domain by the automatic address conversion unit and the domain after the conversion, acquiring by the original domain acquiring unit the original domain based on the domain of the mail address converted by the automatic address conversion unit by referring to the domain conversion table, and controlling by the mail transmission and reception control means the transmission and the reception of the mail by comparing the mail address replaced with the domain of the mail address of the transmitting/receiving mail by the original domain acquired by the original domain acquiring unit with the registered mail address.
    • 提供了一种通信终端设备及其控制方法,其可以有效地操作邮件限制功能,而不增加为邮件限制功能注册的邮件地址。 通过域转换表存储由自动地址转换单元的原始域与转换后的域之间的对应关系来限制邮件的发送和接收,由原始域获取单元基于原始域获取原始域, 通过参考域转换表由自动地址转换单元转换的邮件地址的域,并且通过邮件发送和接收控制装置来控制邮件的发送和接收,通过比较邮件地址替换为邮件的域 由原始域获取单元获得的原始域的发送/接收邮件的地址与登记的邮件地址。
    • 7. 发明申请
    • Screw Driving Device and Screw
    • 螺丝驱动装置和螺丝
    • US20090208308A1
    • 2009-08-20
    • US12430949
    • 2009-04-28
    • Hiroshi KawanoTatsuya Hirahara
    • Hiroshi KawanoTatsuya Hirahara
    • F16B39/24
    • B25B21/00B23P19/06B23P19/065B25B23/0085B25B23/12F16B23/00F16B31/04F16B39/26F16B43/00
    • To provide a screw fastening device that, when performing a screw tightening operation, can substantially reduce the running torque directly applied by external force to a screw driving device.A characteristic constitution is adopted that is equips a screw driving device α2 with a device body 1 that stacks a plurality of piezoelectric elements 3 and 4 that generate predetermined ultrasonic oscillations with the application of a predetermined AC voltage and excites mechanical oscillations in a predetermined direction on an oscillating end surface 1a based on the ultrasonic oscillations; and a male distal end portion 21 that is correspondingly formed to be capable of fitting in a female recess 103 formed in a screw β1 and integrally fixed to the device body 1 on the oscillating end surface 1a of the device body 1 to impart running torque, which is directly applied to the screw driving device α2 by external force, and transmit the mechanical oscillations in the predetermined direction that the device body 1 excites to the screw β1, with which contact is made by fitting in the female recess 103.
    • 为了提供螺钉紧固装置,当执行螺钉紧固操作时,可以将通过外力直接施加的行驶扭矩显着地减小到螺丝驱动装置。 采用一种特征构造,其装备有螺旋驱动装置α2的装置主体1,其堆叠多个压电元件3和4,其通过施加预定的AC电压产生预定的超声波振荡,并且以预定方向激励机械振荡 基于超声波振荡的振荡端面1a; 和相应地形成为能够装配在形成为螺钉β1的阴凹槽103中并且一体地固定到装置主体1的装置主体1的摆动端面1a上以赋予运行转矩的阳极远端部21, 其通过外力直接施加到螺钉驱动装置α2,并且以装置主体1激励到预定方向的机械振动传递到螺钉β1,螺钉β1通过装配在凹槽103中而进行接触。
    • 9. 发明授权
    • Alkaline storage battery
    • 碱性蓄电池
    • US5346781A
    • 1994-09-13
    • US646012
    • 1991-01-28
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • H01M4/24H01M4/38H01M4/80H01M10/24
    • H01M4/242H01M4/383H01M4/808
    • Disclosed is an alkaline storage battery, in which the negative electrode is constituted by a hydrogen absorbing alloy capable of absorbing/desorbing hydrogen electrochemically, and a hydrophobic material is provided in the space between the surface of the negative electrode and the separator while a hydrophilic material is provided in the inside of the negative electrode, thereby properly secure both wetting property and surface hydrophobic property of the negative electrode against the alkaline electrolytic solution. Accordingly, a hydrogen gas generated in charging the battery can be absorbed by a vapor phase reaction in the hydrophobic portion in the surface of the negative electrode which is exposed to the vapor phase and can be absorbed electrochemically in the portion of the negative electrode which is wetted by the electrolytic solution, so that the inner pressure of the battery can be reduced to thereby make it possible to perform quick charging.
    • 公开了一种碱性蓄电池,其中负极由能够电化学吸收/解吸氢的吸氢合金构成,并且在负极表面和隔板之间的空间中设置疏水材料,同时亲水材料 设置在负极的内部,从而适当地确保负极的润湿性和表面疏水性相对于碱性电解液。 因此,在电池充电中产生的氢气可以通过暴露于气相的负极表面中的疏水部分中的气相反应吸收,并且可以在负极的部分电化学吸收 被电解液润湿,从而可以降低电池的内部压力,从而可以进行快速充电。
    • 10. 发明授权
    • Alkaline storage battery
    • 碱性蓄电池
    • US5250369A
    • 1993-10-05
    • US952146
    • 1992-09-28
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • H01M4/24H01M4/38H01M4/80H01M10/52
    • H01M4/383H01M4/242H01M4/808
    • Disclosed is an alkaline storage battery, in which the negative electrode is constituted by a hydrogen absorbing alloy capable of absorbing/desorbing hydrogen electrochemically, and a hydrophobic material is provided in the space between the surface of the negative electrode and the separator while a hydrophilic material is provided in the inside of the negative electrode, thereby properly secure both wetting property and surface hydrophobic property of the negative electrode against the alkaline electrolytic solution. Accordingly, a hydrogen gas generated in charging the battery can be absorbed by a vapor phase reaction in the hydrophobic portion in the surface of the negative electrode which is exposed to the vapor phase and can be absorbed electrochemically in the Portion of the negative electrode which is wetted by the electrolytic solution, so that the inner pressure of the battery can be reduced to thereby make it possible to perform quick charging.
    • 公开了一种碱性蓄电池,其中负极由能够电化学吸收/解吸氢的吸氢合金构成,并且在负极表面和隔板之间的空间中设置疏水材料,同时亲水材料 设置在负极的内部,从而适当地确保负极的润湿性和表面疏水性相对于碱性电解液。 因此,在电池充电中产生的氢气可以通过在暴露于气相的负极表面的疏水部分中的气相反应吸收,并且可以在负极的部分中被电化学吸收 被电解液润湿,从而可以降低电池的内部压力,从而可以进行快速充电。