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    • 52. 发明授权
    • Pack assembly having interconnected battery packs configured to be individually disconnected from assembly
    • 具有互连的电池组的组件组件被构造成单独地从组装断开
    • US07843169B1
    • 2010-11-30
    • US11824816
    • 2007-07-03
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • H01M10/46
    • H01M2/34H01M10/42H01M10/425H01M10/46
    • A battery pack system is disclosed. The battery pack system includes a battery pack having batteries arranged in a plurality of parallel groups that are connected in series. Each parallel group includes a plurality of the batteries connected in parallel. The electronics are configured to drop the current at which the battery pack is operating from a first current level to a second current level one or more times. The second current level is lower than the first current level. The electronics can drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack. In some instances, the electronics intermittently drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack.
    • 公开了一种电池组系统。 电池组系统包括具有以串联连接的多个并联组的电池的电池组。 每个并联组包括并联连接的多个电池。 电子设备被配置为将电池组操作的电流从第一电流水平降低到第二电流水平一次或多次。 第二个当前水平低于第一个当前水平。 在电池组的充电和/或放电期间,电子器件可以将电流从第一电流电平降低到第二电流电平。 在一些情况下,在电池组的充电和/或放电期间,电子设备间歇性地将电流从第一电流水平降低到第二电流水平。
    • 54. 发明授权
    • System having electronics for dropping current of battery pack
    • 具有用于降低电池组电流的电子装置的系统
    • US07573234B1
    • 2009-08-11
    • US11603757
    • 2006-11-22
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • H01M10/46
    • H01M10/441B60L11/1855Y02T10/7005Y02T10/7055
    • A battery pack system is disclosed. The battery pack system includes a battery pack having batteries arranged in a plurality of parallel groups that are connected in series. Each parallel group includes a plurality of the batteries connected in parallel. The electronics are configured to drop the current at which the battery pack is operating from a first current level to a second current level one or more times. The second current level is lower than the first current level. The electronics can drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack. In some instances, the electronics intermittently drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack.
    • 公开了一种电池组系统。 电池组系统包括具有以串联连接的多个并联组的电池的电池组。 每个并联组包括并联连接的多个电池。 电子设备被配置为将电池组操作的电流从第一电流水平降低到第二电流水平一次或多次。 第二个当前水平低于第一个当前水平。 在电池组的充电和/或放电期间,电子器件可以将电流从第一电流电平降低到第二电流电平。 在一些情况下,在电池组的充电和/或放电期间,电子设备间歇地将电流从第一电流电平降低到第二电流电平。
    • 57. 发明授权
    • Implantable power module for powering a medical device
    • 用于为医疗设备供电的可植入电源模块
    • US07486048B2
    • 2009-02-03
    • US10900883
    • 2004-07-29
    • Hisashi TsukamotoPang Hoo Tan
    • Hisashi TsukamotoPang Hoo Tan
    • H01M10/44H01M10/46
    • A61N1/3787A61N1/37223H01M10/44H01M10/613H01M10/623H01M10/6554H01M10/658H01M10/659H02J7/025H02J50/10
    • Disclosed is a medically implantable integrated biocompatible power module incorporating a power source (e.g., battery), a power management circuit (PMC), a magnetically inductive coupling system (MICS) for remote communication and/or inductive charging and a homing device for locating the implanted inductive charging coil. Three configurations are disclosed, each generally suitable for a specified range of energy capacities. The implantable power module (IPM) allows for improved design flexibility for medical devices since the power source may be located remotely and be recharged safely in situ. Special safety aspects may be incorporated, including endothermic phase change heat absorption material (HAM), emergency energy disconnect and emergency energy drain circuits. Communication (one or two way) may be carried out using the inductive charging link, a separate inductive pathway, or other pathway such as RF or via light waves. Homing devices and other means for precisely locating the IPM and/or MICS are disclosed.
    • 公开了一种医疗可植入的集成的生物兼容性功率模块,其包括用于远程通信和/或感应充电的电源(例如,电池),功率管理电路(PMC),磁感应耦合系统(MICS)和用于定位 植入感应充电线圈。 公开了三种配置,每种配置通常适用于特定范围的能量容量。 可植入电源模块(IPM)可以改善医疗设备的设计灵活性,因为电源可以远程定位,并且可以安全地在现场进行充电。 可以并入特殊安全方面,包括吸热相变吸热材料(HAM),应急能量断开和应急能量消耗电路。 可以使用感应充电链路,单独的感应路径或诸如RF或通过光波的其它路径来进行通信(一路或两路)。 公开了归属装置和用于精确定位IPM和/或MICS的其它装置。
    • 60. 发明申请
    • Fluorinated carbon active material
    • 氟化碳活性物质
    • US20060162150A1
    • 2006-07-27
    • US11387622
    • 2006-03-22
    • Hisashi TsukamotoKaname TakeyaHiroyuki YumotoM. Bush
    • Hisashi TsukamotoKaname TakeyaHiroyuki YumotoM. Bush
    • H01M4/04H01M4/58H01M4/66H01M4/62
    • H01M4/583H01G11/30H01G11/32H01G11/38H01M4/04H01M4/0421H01M4/0423H01M4/0426H01M4/0428H01M4/0483H01M4/06H01M4/133H01M4/1393H01M4/624H01M10/0525H01M2004/028Y02E60/13Y10T29/49115
    • Disclosed is an improved type of fluorinated carbon (CFx) for use in electrical storage devices such as batteries and capacitors. The CFx is coated with a conductive material such as gold or carbon using vapor deposition. The resulting material exhibits better conductivity with concomitant lower impedance, higher electrical stability, and improved potential throughout the useful life of the device, as compared to uncoated CFx. The improved conductivity reduces the amount of nonactive material (e.g., carbon black) that needs to be added, thus improving the volumetric energy density. In addition, cells made with the subject CFx exhibit more constant voltages and higher overall voltage (2.0 volts with a lithium metal anode) throughout their useful life. Chemical or physical vapor deposition techniques to deposit a variety of metals or carbon may be used to create the improved CFx. The coated CFx may be used in primary or secondary batteries, as well as capacitors and hybrid devices. Methods for making and using the coated CFx are described.
    • 公开了一种用于诸如电池和电容器的蓄电装置中的改进型氟化碳(CF x X x)。 使用气相沉积,用导电材料如金或碳涂覆CF x x。 与未涂覆的CFX相比,所得到的材料在整个使用寿命期间表现出更好的导电性和伴随的较低阻抗,更高的电稳定性和改善的电位。 改善的导电性降低了需要添加的非活性材料(例如炭黑)的量,从而提高了体积能量密度。 此外,在本发明的使用寿命期内,用受试者CF 制成的电池表现出更恒定的电压和更高的整体电压(使用锂金属阳极2.0伏)。 用于沉积各种金属或碳的化学或物理气相沉积技术可用于产生改进的CF x。 涂覆的CF x X可以用于一次或二次电池,以及电容器和混合装置。 描述制造和使用涂覆的CF x X的方法。