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    • 93. 发明授权
    • Radio communication equipment having a floating connector
    • 具有浮动连接器的无线电通信设备
    • US06554640B1
    • 2003-04-29
    • US09584084
    • 2000-06-01
    • Noboru KoikeYutaka Nakamura
    • Noboru KoikeYutaka Nakamura
    • H01R300
    • H01R13/6315
    • A radio communication equipment having a battery compartment and a battery pack provided in the battery compartment, the equipment including a first connector block having a female portion provided at the battery pack, and the first connector block having a first contact with a first contact portion and a second contact portion facing the first contact portion, and a second connector block having a male portion provided at the battery, and the second connector block having a second contact having elasticity with a third contact portion and a fourth contact portion facing the third contact portion, wherein the second connector block is engaged with the first connector block, and the third contact portion is pressed against the first contact portion and the fourth contact portion is pressed against the second contact portion by the elasticity of the second contact.
    • 一种无线电通信设备,具有设置在所述电池室中的电池室和电池组,所述设备包括:第一连接器块,具有设置在所述电池组件上的阴部分,所述第一连接器块具有与第一接触部分的第一接触;以及 面对第一接触部分的第二接触部分和具有设置在电池上的阳部分的第二连接器块,并且第二连接器块具有具有弹性的第二接触件,第三接触部分和面向第三接触部分的第四接触部分 其中第二连接器块与第一连接器块接合,并且第三接触部分被按压在第一接触部分上,并且第四接触部分被第二接触件的弹性压靠在第二接触部分上。
    • 94. 发明授权
    • Micro actuator having clamping parts
    • 具有夹紧部件的微型致动器
    • US06450702B1
    • 2002-09-17
    • US09716331
    • 2000-11-21
    • Hitoshi KomoriyaYutaka NakamuraTakao Hirahara
    • Hitoshi KomoriyaYutaka NakamuraTakao Hirahara
    • G02B636
    • H02N1/008G02B6/4202
    • There is provided a micro actuator displacing a micro portion by use of an electrostatic force, the micro actuator comprising a first stationary part; a displacement part spaced apart from the first stationary part by a predetermined distance in a confronting manner, the displacememt part being displaceable relative to the first stationary part; a second stationary part; the lock parts being displaceable relative to the second stationary part; wherein the displacement part is displaced by application of a voltage between the first stationary part and the displacement part, the lock parts being displaced by application of a voltage between the second stationary part and the lock parts, and wherein the lock parts clamp the displacement part with no voltage applied, the lock parts releasing the displacement part with a voltage applied.
    • 提供了通过使用静电力来移动微小部分的微型致动器,微致动器包括第一静止部分; 位移部件,以相对的方式与第一固定部分间隔预定距离,位移部分可相对于第一固定部分移动; 第二静止部分; 锁定部件可相对于第二固定部件移动; 其中所述位移部分通过在所述第一静止部分和所述位移部分之间施加电压而移位,所述锁定部分通过在所述第二固定部分和所述锁定部件之间施加电压而移位,并且其中所述锁定部分夹持所述位移部分 在没有施加电压的情况下,锁定部件施加电压而释放位移部分。
    • 100. 发明申请
    • IONIZED WATER PRODUCTION METHOD AND PRODUCTION DEVICE
    • 离子水生产方法和生产设备
    • US20120255874A1
    • 2012-10-11
    • US13509687
    • 2011-11-10
    • Kazunori OsamuraTakao KawajiriYutaka NakamuraNoboru KudoMasae Shimizu
    • Kazunori OsamuraTakao KawajiriYutaka NakamuraNoboru KudoMasae Shimizu
    • C25B9/18C02F1/461
    • C02F1/4618C02F2001/4619C02F2201/003C02F2201/46115C02F2201/4614C02F2301/08Y02E60/366
    • An energy-saving ionized water production device and a production method are provided that are capable of producing strongly alkaline ionized in a short period of time.An ionized water production device 1 is used that is configured such that a first electrolysis cell 20A is arranged in a first electrolysis bath 10A, a second electrolysis cell 20B is arranged in a second electrolysis bath 10B, and alkaline ionized water formed in an electrolysis diaphragm 21 of the first electrolysis cell 20A is quantitatively and continuously transferred to an electrolysis diaphragm of the second electrolysis cell 20B by a transfer pump 50 arranged in a water filling pipe 27A of the first electrolysis cell 20A, and current is applied by setting the current applied to the first electrolysis cell 20A to 5 amperes to 15 amperes and setting the current applied to the second electrolysis cell 20B to 15 amperes to 20 amperes within a range of a total current applied to the first electrolysis cell 20A and the second electrolysis cell 20B of 25 amperes to 30 amperes.
    • 提供了能够在短时间内产生强碱性离子化的节能电离水生产装置和制造方法。 使用电离水生产装置1,其被构造成使得第一电解槽20A布置在第一电解槽10A中,第二电解槽20B布置在第二电解槽10B中,并且在电解膜中形成碱性离子水 21通过布置在第一电解槽20A的充水管27A中的输送泵50定量连续地转移到第二电解槽20B的电解膜,并且通过设定施加的电流施加电流 到第一电解槽20A至5安培至15安培,并且将施加到第二电解槽20A的电流设定为15安培至20安培,在施加到第一电解槽20A和第二电解槽20B的总电流的范围内 25安培至30安培。