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    • 2. 发明授权
    • Method and device for controlling a storage voltage of a battery pack
    • 用于控制电池组的存储电压的方法和装置
    • US08084998B2
    • 2011-12-27
    • US12651024
    • 2009-12-31
    • Christina M. Lampe-OnnerudYanning SongRichard V. Chamberlain, IIPer Onnerud
    • Christina M. Lampe-OnnerudYanning SongRichard V. Chamberlain, IIPer Onnerud
    • H02J7/00
    • H02J7/0031H01M4/505H01M4/525H01M10/0525H01M10/425H01M10/44H01M10/441H01M10/46H01M10/48H01M10/482H02J7/00H02J7/0057Y02T10/7011
    • A storage voltage of a battery pack is controlled with control electronics. The storage voltage of a battery pack is sensed, and a discharge mechanism is triggered if the storage voltage is within a predetermined range of voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined range of voltage, or if the storage voltage is at or above a predetermined voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined voltage. Control electronics sense a storage voltage of a battery pack and trigger a discharge mechanism if the storage voltage is within a predetermined range of voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined range of voltage, or if the storage voltage is at or above a predetermined voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined voltage. The control electronics are coupled to an electronic device and a battery pack. The control electronics are either implemented into the electronic device or the battery pack, or in a separate control electronic device.
    • 电池组的存储电压由控制电子元件控制。 感测到电池组的存储电压,并且如果存储电压在预定的电压范围内,则触发放电机构,从而将电池组的存储电压调整到低于预定电压范围,或者如果存储 电压处于或高于预定电压,从而将电池组的存储电压调节到预定电压以下。 如果存储电压在预定的电压范围内,则控制电路感测电池组的存储电压并触发放电机构,从而将电池组的存储电压调整到预定的电压范围以下,或者如果存储电压 处于或高于预定电压,从而将电池组的存储电压调节到预定电压以下。 控制电子设备耦合到电子设备和电池组。 控制电子设备被实现到电子设备或电池组中,或者在单独的控制电子设备中实现。
    • 4. 发明申请
    • Control Electronics for Li-ion Batteries
    • 锂离子电池控制电子
    • US20100164436A1
    • 2010-07-01
    • US12651024
    • 2009-12-31
    • Christina M. Lampe-OnnerudYanning SongRichard V. Chamberlain, IIPer Onnerud
    • Christina M. Lampe-OnnerudYanning SongRichard V. Chamberlain, IIPer Onnerud
    • H02J7/04
    • H02J7/0031H01M4/505H01M4/525H01M10/0525H01M10/425H01M10/44H01M10/441H01M10/46H01M10/48H01M10/482H02J7/00H02J7/0057Y02T10/7011
    • A storage voltage of a battery pack is controlled with control electronics. The storage voltage of a battery pack is sensed, and a discharge mechanism is triggered if the storage voltage is within a predetermined range of voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined range of voltage, or if the storage voltage is at or above a predetermined voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined voltage. Control electronics sense a storage voltage of a battery pack and trigger a discharge mechanism if the storage voltage is within a predetermined range of voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined range of voltage, or if the storage voltage is at or above a predetermined voltage, to thereby adjust the storage voltage of the battery pack to below the predetermined voltage. The control electronics are coupled to an electronic device and a battery pack. The control electronics are either implemented into the electronic device or the battery pack, or in a separate control electronic device.
    • 电池组的存储电压由控制电子元件控制。 感测到电池组的存储电压,并且如果存储电压在预定的电压范围内,则触发放电机构,从而将电池组的存储电压调整到低于预定电压范围,或者如果存储 电压处于或高于预定电压,从而将电池组的存储电压调节到预定电压以下。 如果存储电压在预定的电压范围内,则控制电路检测电池组的存储电压并触发放电机构,从而将电池组的存储电压调整到预定的电压范围以下,或者如果存储电压 处于或高于预定电压,从而将电池组的存储电压调节到预定电压以下。 控制电子设备耦合到电子设备和电池组。 控制电子设备被实现到电子设备或电池组中,或者在单独的控制电子设备中。
    • 7. 发明申请
    • CID Retention Device for Li-Ion Cell
    • 用于锂离子电池的CID保留装置
    • US20110024396A1
    • 2011-02-03
    • US12902358
    • 2010-10-12
    • Per OnnerudPhillip E. PartinRichard V. Chamberlain, IIJan-Roger B. LinnaMimmo Elia
    • Per OnnerudPhillip E. PartinRichard V. Chamberlain, IIJan-Roger B. LinnaMimmo Elia
    • B23K11/11B23K31/02
    • H01M2/34H01M2/0217H01M2/022H01M2/1235H01M2/345H01M10/0525H01M2002/0205Y10T29/49108
    • A low pressure current interrupt device (CID) activates at a minimal threshold internal gauge pressure in a range of, for example, between about 4 kg/cm2 and about 9 kg/cm2. Preferably, the CID includes a first conductive plate and a second conductive plate in electrical communication with the first conductive plate, the electrical communication between the first and the second conductive plates being interrupted at the minimal threshold internal gauge pressure. More preferably, the first conductive plate includes a frustum having a first end and a second end, a base extending radially from a perimeter of the first end of the frustum, and an essentially planar cap sealing the second end of the frustum. The first end has a broader diameter than the second end. More preferably, the second conductive plate is in electrical contact with the essentially planar cap through a weld. A battery, preferably a lithium-ion battery, comprises a CID as described above. A method of manufacturing such a CID comprises forming first and second conductive plates as described above, and welding the second conductive plate onto the first conductive plate while a temperature of the first conductive plate is controlled so as not to exceed the melting point of a surface of the first conductive plate opposite the weld.
    • 低压电流中断装置(CID)在例如约4kg / cm 2至约9kg / cm 2的范围内以最小阈值内部表压启动。 优选地,CID包括与第一导电板电连通的第一导电板和第二导电板,第一和第二导电板之间的电气连通在最小的内部表压下被中断。 更优选地,第一导电板包括具有第一端和第二端的截头圆锥体,从平截头体的第一端的周边径向延伸的基部以及密封平截头体的第二端的基本平坦的盖。 第一端具有比第二端更宽的直径。 更优选地,第二导电板通过焊缝与基本上平面的盖电接触。 电池,优选锂离子电池,包括如上所述的CID。 制造这种CID的方法包括如上所述形成第一和第二导电板,并且将第二导电板焊接到第一导电板上,同时将第一导电板的温度控制为不超过表面的熔点 的第一导电板与焊缝相对。
    • 8. 发明授权
    • CID retention device for Li-ion cell
    • 用于锂离子电池的CID保留装置
    • US07838143B2
    • 2010-11-23
    • US12214535
    • 2008-06-19
    • Per OnnerudPhillip E. PartinRichard V. Chamberlain, IIJan-Roger B. LinnaMimmo Elia
    • Per OnnerudPhillip E. PartinRichard V. Chamberlain, IIJan-Roger B. LinnaMimmo Elia
    • H01M14/00H01M2/26H01M2/28
    • H01M2/34H01M2/0217H01M2/022H01M2/1235H01M2/345H01M10/0525H01M2002/0205Y10T29/49108
    • A low pressure current interrupt device (CID) activates at a minimal threshold internal gauge pressure in a range of, for example, between about 4 kg/cm2 and about 9 kg/cm2. Preferably, the CID includes a first conductive plate and a second conductive plate in electrical communication with the first conductive plate, the electrical communication between the first and the second conductive plates being interrupted at the minimal threshold internal gauge pressure. More preferably, the first conductive plate includes a frustum having a first end and a second end, a base extending radially from a perimeter of the first end of the frustum, and an essentially planar cap sealing the second end of the frustum. The first end has a broader diameter than the second end. More preferably, the second conductive plate is in electrical contact with the essentially planar cap through a weld. A battery, preferably a lithium-ion battery, comprises a CID as described above. A method of manufacturing such a CID comprises forming first and second conductive plates as described above, and welding the second conductive plate onto the first conductive plate while a temperature of the first conductive plate is controlled so as not to exceed the melting point of a surface of the first conductive plate opposite the weld.
    • 低压电流中断装置(CID)在例如约4kg / cm 2至约9kg / cm 2的范围内以最小阈值内部表压启动。 优选地,CID包括与第一导电板电连通的第一导电板和第二导电板,第一和第二导电板之间的电气连通在最小的内部表压下被中断。 更优选地,第一导电板包括具有第一端和第二端的截头圆锥体,从平截头体的第一端的周边径向延伸的基部以及密封平截头体的第二端的基本平坦的盖。 第一端具有比第二端更宽的直径。 更优选地,第二导电板通过焊缝与基本上平面的盖电接触。 电池,优选锂离子电池,包括如上所述的CID。 制造这种CID的方法包括如上所述形成第一和第二导电板,并且将第二导电板焊接到第一导电板上,同时将第一导电板的温度控制为不超过表面的熔点 的第一导电板与焊缝相对。