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    • 3. 发明授权
    • Battery having a built-in controller
    • 电池内置控制器
    • US06835491B2
    • 2004-12-28
    • US09275495
    • 1999-03-24
    • Vladimir GartsteinDragan Danilo Nebrigic
    • Vladimir GartsteinDragan Danilo Nebrigic
    • H01M1048
    • H01M10/48H01M6/5044H01M10/425H01M10/4257H01M2200/00
    • A multiple-cell battery having a built-in controller is disclosed that extends the run time of the battery. The controller may extend the run time of the battery, for example, by converting the cell voltage to an output voltage that is greater than a cut-off voltage of an electronic device, by converting the cell voltage to an output voltage that is less than the nominal voltage of the electrochemical cell of the battery, or by protecting the electrochemical cell from current peaks. The controller may also include a ground bias circuit that provides a virtual ground so that a converter may operate at lower cell voltages. The battery may be a single-cell battery, a universal single-cell battery, a multiple-cell battery or a multiple-cell hybrid battery. The individual cells of the multiple-cell battery may be connected in series or parallel. In addition, the individual cells may have a controller in each cell that is capable of performing one or more functions to extend the run time of the cell.
    • 公开了具有内置控制器的多节电池,其延长了电池的运行时间。 控制器可以延长电池的运行时间,例如通过将电池电压转换成小于电子装置的截止电压的输出电压,将电池电压转换成小于 电池的电化学电池的标称电压,或通过保护电化学电池免受电流峰值的影响。 控制器还可以包括提供虚拟接地的接地偏置电路,使得转换器可以在较低的电池电压下工作。 电池可以是单节电池,通用单节电池,多节电池或多节电池混合电池。 多节电池的单个电池可以串联或并联连接。 此外,各个单元可以在每个单元中具有能够执行一个或多个功能以延长单元的运行时间的控制器。
    • 4. 发明授权
    • Intracutaneous microneedle array apparatus
    • 内皮微针阵列装置
    • US06379324B1
    • 2002-04-30
    • US09328947
    • 1999-06-09
    • Vladimir GartsteinDragan Danilo NebrigicGrover David OwensFaiz Feisal ShermanVadim Vladimirovich Yuzhakov
    • Vladimir GartsteinDragan Danilo NebrigicGrover David OwensFaiz Feisal ShermanVadim Vladimirovich Yuzhakov
    • A61B1720
    • B81C99/0085A61B5/14514A61B5/150022A61B5/150099A61B5/150282A61B5/150389A61B5/150412A61B5/150458A61B5/150969A61B5/150984A61M37/0015A61M2037/0023A61M2037/003A61M2037/0053B29L2031/7544B29L2031/756B81B2201/055
    • A first embodiment microneedle array is constructed of silicon and silicon dioxide compounds using MEMS technology and standard microfabrication techniques to create hollow cylindrical individual microneedles. The resulting array of microneedles can penetrate with a small pressure through the stratum corneum of skin to either deliver drugs or to facilitate interstitial fluid sampling through the hollow microneedles into the epidermis. The delivery of drugs and sampling of fluids can be performed by way of passive diffusion (time release), instantaneous injection, or iontophoresis. In a second embodiment, an array of hollow (or solid) microneedles is constructed of plastic or some other type of molded or cast material. An electric field may be used to increase transdermal flow rate, and the microneedles can be effectively combined with the application of an electric field between an anode and cathode attached to the skin which causes a low-level electric current. As a drug delivery system, the microneedle array includes electrodes that apply an electric potential to the skin between the electrode locations. One of the electrode assemblies is filled with an ionized drug, and the charged drug molecules move into the body due to the applied electric potential. As a body-fluid sampling system, the microneedle array also includes electrodes to assist in moving fluid from the body into a receiving chamber, and which further includes a bioelectrochemical sensor to measure the concentration of a particular substance.
    • 第一实施例微针阵列由硅和二氧化硅化合物构成,使用MEMS技术和标准微加工技术来制造中空圆柱形单个微针。 所得的微针阵列可以通过皮肤的角质层穿透小的压力,以递送药物或促进通过空心微针进入表皮的间质液取样。 可以通过被动扩散(时间释放),瞬时注射或离子电渗法进行药物的输送和液体取样。 在第二实施例中,中空(或固体)微针的阵列由塑料或其它类型的模制或铸造材料构成。 可以使用电场来增加透皮流速,并且可以将微针与附着在皮肤上的阳极和阴极之间的电场的施加有效地组合,这导致低电平电流。 作为药物递送系统,微针阵列包括在电极位置之间向皮肤施加电位的电极。 电极组件中的一个填充有电离药物,并且带电药物分子由于施加的电位而进入体内。 作为体液采样系统,微针阵列还包括有助于将流体从身体移动到接收室中的电极,并且还包括用于测量特定物质浓度的生物电化学传感器。
    • 7. 发明授权
    • Consumer battery having a built-in indicator
    • 消费电池具有内置指示器
    • US06483275B1
    • 2002-11-19
    • US09298804
    • 1999-04-23
    • Dragan Danilo NebrigicVladimir Gartstein
    • Dragan Danilo NebrigicVladimir Gartstein
    • H02J700
    • H01M10/488G01R31/362G01R31/3648G01R31/3686H01M6/5044H01M10/4257H02J7/0065H02J9/061
    • A built-in battery integrated circuit (50) in the form of a flexible circuit board (70) of a consumer battery (10) senses a voltaic cell electrode (32″, 34″) voltage, and when the voltage is indicative of a low state of charge, activates an indicating system (11), alerting a user to the impending battery failure. In addition, a tester actuator button (15) is placed exteriorly on the battery container (12) to manually activate the indicating system (11) to verify that the battery has not become so low of charge as to prevent the indicating system from functioning. Advantageously, the tester actuator button (15) may further enable the built-in battery integrated circuit, thus having all internal electronics unpowered until a user decides to use the battery (10). The indicating system (11) includes an analog indicator such as a bargraph and/or a pulse indicator (64) such as an LED or LCD.
    • 消费电池(10)的柔性电路板(70)形式的内置电池集成电路(50)感测电池单元电极(32“,34”)电压,并且当电压为指示时 充电状态低的情况下,激活指示系统(11),提示用户即将发生电池故障。 此外,将测试器执行器按钮(15)放置在电池容器(12)的外部,以手动启动指示系统(11),以验证电池未变得如此低的电量,以防止指示系统起作用。 有利地,测试者执行器按钮(15)还可以使得内置的电池集成电路能够使得所有内部电子装置都不起动,直到用户决定使用电池(10)为止。 指示系统(11)包括诸如条形图和/或诸如LED或LCD的脉冲指示器(64)的模拟指示器。
    • 8. 发明授权
    • Dynamically-switched power converter
    • 动态开关电源转换器
    • US06646415B1
    • 2003-11-11
    • US10009872
    • 2002-04-12
    • Dragan Danilo NebrigicVladimir Gartstein
    • Dragan Danilo NebrigicVladimir Gartstein
    • H02J700
    • H01M6/5044H01M10/488H02J7/0065H02M3/07H02M3/1588Y02B40/90Y02B70/1466
    • A DC/DC power converter is efficiently switched to produce a predetermined output voltage across a load capacitor as required by a load device. In particular, a capacitive and/or inductive element is switched between a charge and discharge state as required to maintain the output voltage. For a capacitive-only power converter, or charge pump, comparison of the output voltage to a reference voltage efficiently switches a fly capacitor between charging and discharging states. Also, power converter based on switching of an inductive element with a synchronous rectifier and switch to charge the load capacitor is made more efficient by a hysteretic comparison of the output voltage to predetermined thresholds for stopping the Pulse Width Modulation (PWM) modulation when the predetermined output voltage is achieved. The power converters illustrated are suitable for integrated circuit implementation and may be combined with other elements of a battery to produce a more efficient battery, achieving longer service life and output voltage stability.
    • 有效地切换DC / DC电力转换器以根据负载装置的要求在负载电容器两端产生预定的输出电压。 特别地,电容和/或电感元件根据需要在充电和放电状态之间切换以维持输出电压。 对于仅电容式功率转换器或电荷泵,将输出电压与参考电压的比较有效地在充电和放电状态之间切换飞电容器。 此外,通过对输出电压与用于停止脉冲宽度调制(PWM)调制的预定阈值的预定阈值的滞后比较,当预定的功率转换器基于具有同步整流器的电感元件的开关和用于对负载电容器充电的开关进行充电时, 实现输出电压。 所示的功率转换器适用于集成电路实现,并且可以与电池的其它元件组合以产生更有效的电池,实现更长的使用寿命和输出电压稳定性。
    • 10. 发明授权
    • Single and multiple cell battery with built-in controller
    • 单电池和多节电池,内置控制器
    • US09397370B2
    • 2016-07-19
    • US11726101
    • 2007-03-21
    • Dragan Danilo NebrigicMilan Marcel JevtitchVladimir GartsteinWilliam Thomas MllamJames Vig SherrillNicholas BuskoPeter Hansen
    • Dragan Danilo NebrigicMilan Marcel JevtitchVladimir GartsteinWilliam Thomas MllamJames Vig SherrillNicholas BuskoPeter Hansen
    • H01M6/00H01M10/42H01M10/44
    • H01M10/42H01M10/44
    • Single and multiple cell batteries are provided with built-in controllers that monitor the cell or cells and provide a safety disconnect when certain monitored conditions are detected by the controller. Preferred single and multiple cell batteries have their cell or cells within a container having a positive terminal and a negative terminal. The built-in controller monitors the cell or cells for each of the following conditions: over temperature, short-circuit, overcharge, and over-discharge and the controller provides a safety disconnect when one of the monitored conditions exist. A multiple cell battery includes a built-in controller that monitors the temperature of the cells and provides a safety disconnect that electronically disconnects all of the cells when at least one of the cells exceeds a predetermined temperature, or a controller that monitors the state of charge of each of the cells and individually controls the charge cycle of each of the cells, or a controller that monitors the temperature of the cells and to provides a safety disconnect when at least one of the cells exceeds a predetermined temperature.
    • 提供单电池和多电池电池,内置控制器,用于监控电池或电池,并在控制器检测到某些监控条件时提供安全断开。 优选的单电池和多电池电池将其电池或电池放在具有正极端子和负极端子的容器内。 内置控制器可监控以下每种情况下的电池或电池:过温,短路,过充电和过放电,并且当存在受监控条件之一时,控制器提供安全断开。 多单元电池包括内置的控制器,其监视电池的温度,并提供安全断开器,当电池中的至少一个电池超过预定温度时电子断开所有电池,或监视充电状态的控制器 并且单独地控制每个电池的充电循环,或者当至少一个电池超过预定温度时监视电池的温度并提供安全断开的控制器。