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    • 2. 发明申请
    • ULTRA-CAPACITOR STRUCTURES WITH MULTIPLE ULTRA-CAPACITOR CELLS AND METHODS THEREOF
    • 具有多个超电容电容器的超导电容器结构及其方法
    • US20160087460A1
    • 2016-03-24
    • US14576316
    • 2014-12-19
    • THE PAPER BATTERY COMPANY, INC.
    • Dave RICHAnthony SUDANOSudhir Rajaram KULKARNIStaci TRIFILO
    • H02J7/00
    • H01M10/44H01M10/46H01M16/00H01M2220/30H02J7/0029H02J7/345H02M3/07
    • Ultra-capacitor structures and methods thereof are presented. In one aspect, a structure includes: an ultra-capacitor structure having multiple ultra-capacitor cells; and a switching mechanism, the switching mechanism being operable to selectively connect different electrical interconnect configurations of the multiple ultra-capacitor cells of the ultra-capacitor structure to provide any one of a plurality of different voltages or currents to at least one electrical load, and to selectively control charging of the multiple ultra-capacitor cells using energy from at least one battery. In another aspect, a method includes: obtaining an ultra-capacitor structure having multiple ultra-capacitor cells; connecting different electrical interconnect configurations of the multiple ultra-capacitor cells of the ultra-capacitor structure to provide any one of a plurality of different voltages or currents to at least one electrical load; and charging the ultra-capacitor structure using energy from at least one battery.
    • 提出了超电容器结构及其方法。 一方面,结构包括:具有多个超级电容器单元的超级电容器结构; 以及开关机构,所述开关机构可操作以选择性地连接所述超电容器结构的多个超电容器单元的不同电互连配置,以向至少一个电负载提供多个不同电压或电流中的任何一个,以及 以使用来自至少一个电池的能量来选择性地控制所述多个超级电容器电池的充电。 另一方面,一种方法包括:获得具有多个超级电容器单元的超级电容器结构; 连接所述超电容器结构的多个超电容器单元的不同电互连配置以向至少一个电负载提供多个不同电压或电流中的任何一个; 以及使用来自至少一个电池的能量对所述超电容器结构进行充电。
    • 4. 发明申请
    • ENERGY DEVICES WITH ULTRA-CAPACITOR STRUCTURES AND METHODS THEREOF
    • 具有超电容结构的能量装置及其方法
    • US20160197496A1
    • 2016-07-07
    • US14590386
    • 2015-01-06
    • THE PAPER BATTERY COMPANY, INC.
    • Dave RICHStaci TRIFILO
    • H02J7/00H01M10/44H01M10/46H01M16/00
    • H01M10/44H01M10/46H01M16/00H01M2220/30H02J7/0029H02J7/345H02M3/07
    • Energy devices with ultra-capacitor structures and methods thereof are presented. The energy devices include, for example: an ultra-capacitor structure having a power input terminal; and a battery structure electrically connected to the ultra-capacitor structure via a switching element, the switching element being selectively controllable between a first state and a second state, wherein the first state functions as a pass through to electrically connect the battery structure to the power input terminal of the ultra-capacitor structure, and the second state functions to electrically isolate the battery structure from the power input terminal of the ultra-capacitor structure. The methods include: selectively charging the battery structure through the ultra-capacitor structure using at least a portion of the electrical power provided to the power input terminal thereof.
    • 提出了具有超级电容器结构的能量装置及其方法。 能量装置包括例如:具有电力输入端子的超级电容器结构; 以及经由开关元件电连接到超级电容器结构的电池结构,所述开关元件在第一状态和第二状态之间可选择性地控制,其中所述第一状态用作通过,以将所述电池结构电连接到所述电力 超级电容器结构的输入端子,第二状态用于将电池结构与超级电容器结构的电力输入端子电隔离。 所述方法包括:使用提供给其电力输入端的电力的至少一部分,通过超级电容器结构选择性地对电池结构进行充电。
    • 5. 发明申请
    • ULTRA-CAPACITOR STRUCTURES AND ELECTRONIC SYSTEMS WITH ULTRA-CAPACITOR STRUCTURES
    • 具超声电容结构的超电容结构和电子系统
    • US20150092343A1
    • 2015-04-02
    • US14485962
    • 2014-09-15
    • The Paper Battery Company, Inc.
    • Dave RICHShreefal Sudhir MEHTAAnthony SUDANOSudhir Rajaram KULKARNIStaci TRIFILO
    • H01G11/10H05K5/00H01G2/22H01G11/82H01G2/08
    • H01G11/10H01G11/08H01G11/14H01G11/18H01G11/72H01G11/82H01G17/00H02J7/0054H02J7/345H04R1/1008H04R1/105H05K1/18H05K2201/10015Y02E60/13
    • Ultra-capacitor structures and electronic systems and assemblies are provided. In one aspect, the ultra-capacitor structure is configured to selectively power and at least partially house electronic component(s) therein. In one embodiment, the ultra-capacitor structure includes a thermally conductive material facilitating dissipation of heat generated. In another embodiment, the ultra-capacitor structure includes an electrically conductive sheet facilitating electromagnetic shielding. In another aspect, an electronic system includes: an electronic device including electronic component(s); and a support structure physically receiving and electrically coupling to the electronic device, and including an ultra-capacitor structure configured to selectively power the electronic component(s) of the electronic device when electrically coupled to the support structure. In another aspect, an electronic assembly has a first region including electronic component(s), and a second region including an ultra-capacitor structure configured to selectively power the electronic component(s) of the electronic assembly, where the first region is spaced apart from the second region.
    • 提供了超电容结构和电子系统和组件。 在一个方面,超电容器结构被配置为选择性地供电并且至少部分地容纳其中的电子部件。 在一个实施例中,超电容器结构包括有助于散发产生热量的导热材料。 在另一实施例中,超电容器结构包括有助于电磁屏蔽的导电片。 另一方面,电子系统包括:包括电子部件的电子设备; 以及物理地接收和电耦合到所述电子设备的支撑结构,并且包括超电容器结构,其被配置为当电耦合到所述支撑结构时选择性地为所述电子设备的电子部件供电。 在另一方面,电子组件具有包括电子部件的第一区域,以及包括超电容结构的第二区域,其被配置为选择性地为电子组件的电子部件供电,其中第一区域间隔开 从第二个地区。
    • 6. 发明申请
    • CHARGING CONTROL FOR SUPERCAPACITOR(S)
    • 超级电脑充电控制(S)
    • US20170063106A1
    • 2017-03-02
    • US15241441
    • 2016-08-19
    • THE PAPER BATTERY COMPANY, INC.
    • Gene Lee ARMSTRONG
    • H02J7/00
    • H02J7/007H02J7/0077H02J7/345
    • Charge processes and systems are provided for charging a supercapacitor. The charging includes: charging a supercapacitor by applying a constant charge to the supercapacitor; and controlling termination of the constant charging of the supercapacitor. In one approach, the controlling termination includes dynamically determining, during the charging, a remaining charge time for the constant charging to substantially fully charge the supercapacitor; and allowing the charging to continue for the remaining charge time, and based on expiration of the remaining charge time, terminating the charging. In another approach, the controlling termination includes: dynamically determining, during the charging, an overcharge voltage value to be reached at the supercapacitor for the constant charging to substantially fully charge the supercapacitor; and allowing the charging to continue until the overcharge voltage value is reached at the supercapacitor, and based on reaching the overcharge voltage value at the supercapacitor, terminating the charging of the supercapacitor.
    • 提供充电过程和系统用于对超级电容器充电。 充电包括:通过向超级电容器施加恒定电荷来对超级电容器充电; 并控制超级电容器的恒定充电的终止。 在一种方法中,控制终端包括在充电期间动态地确定用于恒定充电的剩余充电时间以对超级电容器充分充电; 并且允许充电继续剩余充电时间,并且基于剩余充电时间的到期,终止充电。 在另一种方法中,控制终端包括:在充电期间动态地确定在超级电容器处要达到的用于恒定充电的过充电电压值,以对超级电容器充分充电; 并且允许充电继续直到达到超级电容器的过充电电压值,并且基于达到超级电容器的过充电电压值,终止超级电容器的充电。
    • 7. 发明授权
    • Ultra-capacitor structures and electronic systems with ultra-capacitor structures
    • 超级电容器结构和具有超级电容器结构的电子系统
    • US09583277B2
    • 2017-02-28
    • US14485962
    • 2014-09-15
    • The Paper Battery Company, Inc.
    • Dave RichShreefal Sudhir MehtaAnthony SudanoSudhir Rajaram KulkarniStaci Trifilo
    • H01G11/10H05K5/00H01G2/22H01G11/82H01G2/08H01G17/00
    • H01G11/10H01G11/08H01G11/14H01G11/18H01G11/72H01G11/82H01G17/00H02J7/0054H02J7/345H04R1/1008H04R1/105H05K1/18H05K2201/10015Y02E60/13
    • Ultra-capacitor structures and electronic systems and assemblies are provided. In one aspect, the ultra-capacitor structure is configured to selectively power and at least partially house electronic component(s) therein. In one embodiment, the ultra-capacitor structure includes a thermally conductive material facilitating dissipation of heat generated. In another embodiment, the ultra-capacitor structure includes an electrically conductive sheet facilitating electromagnetic shielding. In another aspect, an electronic system includes: an electronic device including electronic component(s); and a support structure physically receiving and electrically coupling to the electronic device, and including an ultra-capacitor structure configured to selectively power the electronic component(s) of the electronic device when electrically coupled to the support structure. In another aspect, an electronic assembly has a first region including electronic component(s), and a second region including an ultra-capacitor structure configured to selectively power the electronic component(s) of the electronic assembly, where the first region is spaced apart from the second region.
    • 提供了超电容结构和电子系统和组件。 在一个方面,超电容器结构被配置为选择性地供电并且至少部分地容纳其中的电子部件。 在一个实施例中,超电容器结构包括有助于散发产生热量的导热材料。 在另一实施例中,超电容器结构包括有助于电磁屏蔽的导电片。 另一方面,电子系统包括:包括电子部件的电子设备; 以及物理地接收和电耦合到所述电子设备的支撑结构,并且包括超电容器结构,其被配置为当电耦合到所述支撑结构时选择性地为所述电子设备的电子部件供电。 在另一方面,电子组件具有包括电子部件的第一区域,以及包括超电容结构的第二区域,其被配置为选择性地为电子组件的电子部件供电,其中第一区域间隔开 从第二个地区。