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    • 3. 发明专利
    • Coin type battery
    • 硬币类型电池
    • JP2008084752A
    • 2008-04-10
    • JP2006265041
    • 2006-09-28
    • Sanyo Electric Co LtdSanyo Energy Tottori Co Ltd三洋エナジー鳥取株式会社三洋電機株式会社
    • SHOSE TOMOYUKIKIDA KATSUYUKIKONDO MASAOAKAI YASUO
    • H01M2/06H01M2/02H01M2/04
    • H01M2/0413H01M2/0222H01M10/052H05K3/341H05K2201/0373H05K2201/10462H05K2201/10643H05K2201/10659Y02P70/613Y10S228/901
    • PROBLEM TO BE SOLVED: To provide a coin type battery capable of increasing soldering strength to a circuit board even if the capacity is increased by increasing the total height of the battery only by the thickness of a lead plate. SOLUTION: The coin type battery 10 is airtightly sealed by sealing the opening part of a first armor can 11 also serving as a positive terminal through an insulating gasket 15 with a second armor can 12 also serving as a negative terminal, and the lead plate 15 is welded to one outer surface of the armor cans 11, 12. A grid-like recessed and projecting surface is formed on the whole circular bottom outer surface where the lead plate 19 is not welded of the armor can 12 by the projecting parts 13 and the recessed parts 13a formed between the projecting parts 13, and grid-like recessed and projecting surface is formed on the whole circular bottom inner surface by the projecting parts 14 and the recessed parts 14a formed between the projecting parts 14. The flow out of molten solder can be prevented and the connection strength to the circuit board can be increased. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够增加对电路板的焊接强度的硬币型电池,即使通过仅通过增加铅板的厚度来增加电池的总高度来增加容量。 解决方案:硬币型电池10通过绝缘垫片15密封也用作正极端子的第一铠装罐体11的开口部分,并且还具有也用作负极端子的第二铠装罐体12而密封地密封,并且 引线板15焊接到装甲罐11,12的一个外表面。在整个圆形底部外表面上形成格栅状的凹凸表面,其中引导板19未被铠装罐12焊接在突出部 在突出部分14和形成在突出部分14之间的凹进部分14a之间,在整个圆形底部内表面上形成部分13和形成在突出部分13之间的凹进部分13a和格栅状的凹凸表面。 可以防止熔融焊料的熔化,并且可以提高与电路板的连接强度。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Battery holder
    • 电池座
    • JP2005158582A
    • 2005-06-16
    • JP2003397365
    • 2003-11-27
    • Sanyo Electric Co Ltd三洋電機株式会社
    • SHOSE TOMOYUKIHIROMI KENICHI
    • H01M2/10
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a battery holder capable of saving space while restraining a replacement cost of a pin type lithium ion battery.
      SOLUTION: This battery holder for holding a battery having a first electrode projecting from a first end out of both ends in the longitudinal direction of an armoring can is provided with: a tubular body part 201 for holding the first end side of the battery in a form capable of being inserted and extracted in the longitudinal direction; a metal terminal part 202 and a metal terminal part 203 brought into a state connected to the first electrode and a second electrode of the battery in the inserted state and led to the outside of the body part 201; and a PTC element 205 fitted to either of the terminal part 202 and the terminal part 203 in the body part 201.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够在抑制针式锂离子电池的更换成本的同时节省空间的电池保持器。 解决方案:用于保持具有第一电极的电池座,其具有从铠装罐的纵向方向上的两端突出的第一端部,该管状主体部分201用于保持第一端侧的第一端侧 电池,其能够沿长度方向插入和拔出; 金属端子部分202和金属端子部分203处于连接到第一电极的状态和处于插入状态的电池的第二电极并被引导到主体部分201的外部; 以及安装在主体部分201中的端子部分202和端子部分203中的任一个的PTC元件205.版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Battery exhaustion display apparatus
    • 电池排放显示装置
    • JP2007101181A
    • 2007-04-19
    • JP2005280422
    • 2005-09-27
    • Sanyo Electric Co Ltd三洋電機株式会社
    • TANAKA AKIHITOSHOSE TOMOYUKIINAMINE SHOICHIMAEDA HIROJI
    • G01R31/36G01R19/165
    • PROBLEM TO BE SOLVED: To provide a battery exhaustion display apparatus capable of facilitating recognition as to whether a battery is short of voltage or not.
      SOLUTION: The battery exhaustion display apparatus includes both a lower-bound voltage detection circuit 11 for measuring an output voltage of a battery B, detecting the state not exceeding a prescribed lower-bound voltage value in which the output voltage is greater than a zero volt, and outputting the state of detection not exceeding the prescribed lower-bound voltage value and a display circuit 12 for turning an irreversible display body 5 into a display state through the use of battery output on the basis of the state of detection from the lower-bound voltage detection circuit 11. The irreversible display body 5 is made of a heat discoloration material.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供能够便于识别电池是否电压不足的电池耗尽显示装置。 解决方案:电池耗尽显示装置包括用于测量电池B的输出电压的下限电压检测电路11,检测不超过输出电压大于的规定下限电压值的状态 输出零电压,并输出不超过规定的下限电压值的检测状态;以及显示电路12,用于通过基于检测状态使用电池输出将不可逆显示体5转换为显示状态 下界电压检测电路11.不可逆显示体5由热变色材料制成。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Electrode plate manufacturing method for battery and hopper for manufacturing electrode plate
    • 用于制造电极板的电极和电极的电极板制造方法
    • JP2008251409A
    • 2008-10-16
    • JP2007093026
    • 2007-03-30
    • Sanyo Electric Co Ltd三洋電機株式会社
    • SHOSE TOMOYUKINARUSE SATORUMAEDA HIROJI
    • H01M4/08
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a technology capable of restraining occurrence of cracks on a sheet of a mixture by preventing a bridge phenomenon in a hopper supplying a mixture when manufacturing an electrode plate for a battery by a hot rolling method.
      SOLUTION: The hoppers 20A and 20B are arranged at the upper part of a pair of heated rollers 10A and 10B, and the mixture 1 for a positive electrode is supplied from the lower part of the hopper between the pair of heated rollers 10A and 10B. Side wall sections 21c and 21d opposite in the direction of rotary shafts 11a and 11b are arranged in the hopper 20A. A plurality of air leading holes 24 for leading air into the hopper 20A are opened on the side wall sections 21a and 21b. Air chamber walls 25c and 25d are arranged on the outside of the side wall sections 21c and 21d so as to cover a zone where the air leading holes 24 are arranged. Air is fed into an air chamber through air leading pipes 26c and 26d, and the air is led into the hopper 20A from the air chamber through respective air leading holes 24.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种能够通过热轧方法制造电池用电极板时,通过防止在供给混合物的料斗中的桥接现象来抑制混合物片上的裂纹发生的技术。

      解决方案:料斗20A和20B布置在一对加热辊10A和10B的上部,并且用于正极的混合物1从料斗的下部从一对加热辊10A 和10B。 在旋转轴11a和11b的方向上相反的侧壁部分21c和21d布置在料斗20A中。 在侧壁部分21a和21b上打开用于引导进入料斗20A的空气的多个空气引导孔24。 空气室壁25c和25d布置在侧壁部分21c和21d的外侧,以覆盖排气孔24的区域。 空气通过空气引导管26c和26d进入空气室,空气通过相应的空气引导孔24从空气室引入料斗20A。(C)2009,JPO&INPIT

    • 9. 发明专利
    • Cylindrical battery manufacturing method
    • 圆柱电池制造方法
    • JP2008251189A
    • 2008-10-16
    • JP2007087244
    • 2007-03-29
    • Sanyo Electric Co Ltd三洋電機株式会社
    • TANAKA AKIHITOSHOSE TOMOYUKINARUSE SATORU
    • H01M10/04H01M2/34H01M10/0566H01M10/0587
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a cylindrical battery manufacturing method that allows simple manufacturing of a cylindrical battery without causing troubles even when an electrolyte is previously poured into an exterior can.
      SOLUTION: The cylindrical battery manufacturing method is used for manufacturing a cylindrical battery that is composed by storing a winding electrode body 8 in a bottomed cylindrical exterior can 7 while using a collector rod as a winding core. The method includes an insertion step involving the following operations. An insulating plate 6 has a size that allows its outer edge part to be in contact with the inner peripheral wall of the exterior can 7. The insulating plate is arranged so as to be located closer to the bottom part side of the exterior can 7 than the electrode body 8. One end part of the collector rod is arranged so as to be brought into contact with one main face of the insulating plate 6. In that state, the electrode body 8 and the insulating plate 6 are inserted into the exterior can 7 up to the storage scheduled position through a can mouth of the exterior can 7 poured with an electrolyte 86 in order to immerse the insulating plate 6 and the electrode body 8 into the electrolyte 86. An average settling speed of the electrode body 8 in the electrolyte 86 in the insertion step is adjusted so as to be balanced with an impregnation speed of the electrolyte 86 into the electrode body 8.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种圆柱形电池制造方法,即使当电解液预先注入外部罐时,也能够简单地制造圆柱形电池而不引起故障。 解决方案:圆柱形电池的制造方法用于制造圆筒形电池,该圆柱形电池是通过将绕组电极体8储存在有底的圆柱形外壳7中而使用集电棒作为卷绕芯。 该方法包括涉及以下操作的插入步骤。 绝缘板6具有允许其外边缘部分与外部罐7的内周壁接触的尺寸。绝缘板被布置成位于比外部罐7的底部侧更靠近 电极体8.集电棒的一端部配置成与绝缘板6的一个主面接触。在该状态下,电极体8和绝缘板6插入外部罐 7通过外部罐7的罐口进入储存预定位置7,以电解液86浇注,以便将绝缘板6和电极体8浸入电解液86中。电极体8的平均沉降速度在 调节插入步骤中的电解液86以使电解质86的浸渍速度与电极体8平衡。(C)2009,JPO&INPIT