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Microwave silicon on insulator-based design of a power management system for jet propulsion laboratory's rechargeable micro-scale batteries

机译:基于绝缘子上的微波硅的喷气推进实验室可充电微型电池电源管理系统设计

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摘要

In the area of power storage for aerospace applications, Jet Propulsion Laboratory, California Institute of Technology, has developed an all solid-state rechargeable micro-scale lithium ion battery cell (microbattery) rated at 4.25 V, with nano-Ampere-hour capacity. One of the advantages of this development is the ability to fabricate approximately 20,000 individual micro-battery cells adjacent to each other on the same fourinch silicon wafer. To take advantage of a pre/post-fabricated series, parallel or series/parallel connection of the cells, a power management system has been developed and sub-system circuits designed using a combination of device and circuit techniques meeting high voltage switching requirements in silicon on insulator (SOI) technology to reconfigure and control the charge/discharge operation of the cells for practical application. This study will present a detailed analysis of the power management system and its sub-circuit components. The circuit components have been simulated using 3.3 V SOI SPICE models and have been fabricated in a 0.35 ;C;m Microwave SOI process. A description of the system and the results will also be discussed and analysed.
机译:在航空航天应用的动力存储领域,加利福尼亚理工学院的喷气推进实验室已经开发出额定电流为4.25 V的全固态可充电微型锂离子电池(微电池),容量为纳安时。该开发的优点之一是能够在同一四英寸硅晶片上制造彼此相邻的大约20,000个单个微电池单元。为了利用电池的预制/后置串联,并联或串联/并联连接,已经开发了电源管理系统,并使用器件和电路技术的组合设计了子系统电路,以满足硅中的高压开关要求绝缘体(SOI)技术可重新配置和控制电池的充电/放电操作,以供实际应用。这项研究将对电源管理系统及其子电路组件进行详细分析。电路组件已使用3.3 V SOI SPICE模型进行了仿真,并采用0.35; C; m微波SOI工艺制造。系统的描述和结果也将被讨论和分析。

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    《Circuits, Devices & Systems, IET》 |2010年第3期|p.261-268|共8页
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  • 入库时间 2022-08-17 14:16:52

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