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公开(公告)号:US20070215926A1
公开(公告)日:2007-09-20
申请号:US11680147
申请日:2007-02-28
申请人: Kenro Mitsuda , Ikuro Suga , Sadayuki Matsumoto , Makoto Seto , Naoki Ochi , Yoshiyuki Takuma
发明人: Kenro Mitsuda , Ikuro Suga , Sadayuki Matsumoto , Makoto Seto , Naoki Ochi , Yoshiyuki Takuma
IPC分类号: H01L29/94
CPC分类号: H01G9/155 , H01G9/016 , H01G9/02 , H01G9/14 , H01G11/04 , H01G11/10 , H01G11/12 , H01G11/52 , H01G11/72 , Y02E60/13 , Y02T10/7022
摘要: Provided is an electric double layer capacitor including a large capacity single cell having a large electrostatic capacity and a small capacity single cell are connected to the same exterior case in parallel, and a thickness of a separator of the large capacity single cell is made thicker than a thickness of a separator of the small capacity single cell. With this structure, a supply amount of an electrolyte solution to the large capacity single cell is markedly increased compared with the small capacity single cell, thereby being capable of preventing degradation of the large capacity single cells and the small capacity single cells and providing the electric double layer capacitor having an excellent cycle life and having a large power storage amount while keeping characteristics capable of instantaneously allowing large current to flow.
摘要翻译: 提供了一种双电层电容器,其包括具有大静电容量的大容量单电池和小容量单电池并联连接到相同的外壳,并且使大容量单电池的隔板的厚度比 小容量单电池的隔板的厚度。 利用这种结构,与小容量单电池相比,大容量单电池的电解液的供给量显着增加,从而能够防止大容量单电池和小容量单电池的劣化,并提供电 双层电容器具有优异的循环寿命并且具有大的蓄电量,同时保持瞬时允许大电流流动的特性。
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公开(公告)号:US07616429B2
公开(公告)日:2009-11-10
申请号:US11680147
申请日:2007-02-28
申请人: Kenro Mitsuda , Ikuro Suga , Sadayuki Matsumoto , Makoto Seto , Naoki Ochi , Yoshiyuki Takuma
发明人: Kenro Mitsuda , Ikuro Suga , Sadayuki Matsumoto , Makoto Seto , Naoki Ochi , Yoshiyuki Takuma
IPC分类号: H01G9/00
CPC分类号: H01G9/155 , H01G9/016 , H01G9/02 , H01G9/14 , H01G11/04 , H01G11/10 , H01G11/12 , H01G11/52 , H01G11/72 , Y02E60/13 , Y02T10/7022
摘要: Provided is an electric double layer capacitor including a large capacity single cell having a large electrostatic capacity and a small capacity single cell are connected to the same exterior case in parallel, and a thickness of a separator of the large capacity single cell is made thicker than a thickness of a separator of the small capacity single cell. With this structure, a supply amount of an electrolyte solution to the large capacity single cell is markedly increased compared with the small capacity single cell, thereby being capable of preventing degradation of the large capacity single cells and the small capacity single cells and providing the electric double layer capacitor having an excellent cycle life and having a large power storage amount while keeping characteristics capable of instantaneously allowing large current to flow.
摘要翻译: 提供了一种双电层电容器,其包括具有大静电容量的大容量单电池和小容量单电池并联连接到相同的外壳,并且使大容量单电池的隔板的厚度比 小容量单电池的隔板的厚度。 利用这种结构,与小容量单电池相比,大容量单电池的电解液的供给量显着增加,从而能够防止大容量单电池和小容量单电池的劣化,并提供电 双层电容器具有优异的循环寿命并且具有大的蓄电量,同时保持瞬时允许大电流流动的特性。
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公开(公告)号:US20060238957A1
公开(公告)日:2006-10-26
申请号:US11395316
申请日:2006-04-03
申请人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
发明人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
IPC分类号: H01G9/00
摘要: A porous electrolytic solution reservoir which is capable of being impregnated with an electrolytic solution is provided in an exterior case so as to make contact with a separator. The average diameter of the pores in the electrolytic solution reservoir is greater than the average diameter of pores in the separator. The electrolytic solution reservoir is impregnated with a predetermined amount of electrolytic solution, so that the occupation ratio of electrolytic solution within the pores in the separator becomes 50% or more when fully charged, and the occupation ratio of electrolytic solution within the pores in the electrolytic solution reservoir becomes 100% or less when fully discharged.
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公开(公告)号:US07636232B2
公开(公告)日:2009-12-22
申请号:US12260222
申请日:2008-10-29
申请人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
发明人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
IPC分类号: H01G9/00
摘要: A porous electrolytic solution reservoir which is capable of being impregnated with an electrolytic solution is provided in an exterior case so as to make contact with a separator. The average diameter of the pores in the electrolytic solution reservoir is greater than the average diameter of pores in the separator. The electrolytic solution reservoir is impregnated with a predetermined amount of electrolytic solution, so that the occupation ratio of electrolytic solution within the pores in the separator becomes 50% or more when fully charged, and the occupation ratio of electrolytic solution within the pores in the electrolytic solution reservoir becomes 100% or less when fully discharged.
摘要翻译: 在外壳中设置能够浸渍电解液的多孔电解液储存器,以便与隔膜接触。 电解液储存器中的孔的平均直径大于分离器中孔的平均直径。 电解液储存器用预定量的电解液浸渍,使得当充满电时,隔膜孔内电解液的占有率变为50%以上,电解液中电解液的占空比 溶液储存器在完全放电时变为100%以下。
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公开(公告)号:US20090059473A1
公开(公告)日:2009-03-05
申请号:US12260222
申请日:2008-10-29
申请人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
发明人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
IPC分类号: H01G9/155
摘要: A porous electrolytic solution reservoir which is capable of being impregnated with an electrolytic solution is provided in an exterior case so as to make contact with a separator. The average diameter of the pores in the electrolytic solution reservoir is greater than the average diameter of pores in the separator. The electrolytic solution reservoir is impregnated with a predetermined amount of electrolytic solution, so that the occupation ratio of electrolytic solution within the pores in the separator becomes 50% or more when fully charged, and the occupation ratio of electrolytic solution within the pores in the electrolytic solution reservoir becomes 100% or less when fully discharged.
摘要翻译: 在外壳中设置能够浸渍电解液的多孔电解液储存器,以便与隔膜接触。 电解液储存器中的孔的平均直径大于分离器中孔的平均直径。 电解液储存器用预定量的电解液浸渍,使得当充满电时,隔膜孔内电解液的占有率变为50%以上,电解液中孔隙内的电解质的占有率 溶液储存器在完全放电时变为100%以下。
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公开(公告)号:US07463478B2
公开(公告)日:2008-12-09
申请号:US11395316
申请日:2006-04-03
申请人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
发明人: Kenro Mitsuda , Yoshiyuki Takuma , Daigo Takemura , Kazuki Kubo , Tetsuo Mitani , Fumiyuki Miyamoto , Takashi Masuda
IPC分类号: H01G9/00
摘要: A porous electrolytic solution reservoir which is capable of being impregnated with an electrolytic solution is provided in an exterior case so as to make contact with a separator. The average diameter of the pores in the electrolytic solution reservoir is greater than the average diameter of pores in the separator. The electrolytic solution reservoir is impregnated with a predetermined amount of electrolytic solution, so that the occupation ratio of electrolytic solution within the pores in the separator becomes 50% or more when fully charged, and the occupation ratio of electrolytic solution within the pores in the electrolytic solution reservoir becomes 100% or less when fully discharged.
摘要翻译: 在外壳中设置能够浸渍电解液的多孔电解液储存器,以便与隔膜接触。 电解液储存器中的孔的平均直径大于分离器中孔的平均直径。 电解液储存器用预定量的电解液浸渍,使得当充满电时,隔膜孔内电解液的占有率变为50%以上,电解液中电解液的占空比 溶液储存器在完全放电时变为100%以下。
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公开(公告)号:US4685287A
公开(公告)日:1987-08-11
申请号:US800028
申请日:1985-11-20
申请人: Yoshiyuki Takuma
发明人: Yoshiyuki Takuma
CPC分类号: H01M8/04089 , F02C3/28 , F02C7/26 , H01M8/06 , H01M8/04223
摘要: A compressor system includes a compressor, a turbine for driving the compressor, and an auxiliary burner. Compressed air from an external source is supplied to drive the turbine during start-up. The air compressed by the compressor is then supplied to the auxiliary burner to drive the turbine and the compressed air from the external source is shut-off to keep the compressor system running only by the compressed air from the compressor itself.
摘要翻译: 压缩机系统包括压缩机,用于驱动压缩机的涡轮机和辅助燃烧器。 供应来自外部源的压缩空气以在启动期间驱动涡轮机。 然后由压缩机压缩的空气被供应到辅助燃烧器以驱动涡轮机,并且来自外部源的压缩空气被切断,以使压缩机系统仅由来自压缩机本身的压缩空气运行。
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