Description: 用C8051F300设计锂离子电池充电器的解决方案!给大家参考!-C8051F300 design with lithium ion battery charger solution! For your reference! Platform: |
Size: 9219 |
Author:王金柱 |
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Description: yright 2002 Cygnal Integrated Products, Inc. // // Filename: LIION_BC_MAIN.c // Target Device: 8051F300 // Created: 11 SEP 2002 // Created By: DKC // Tool chain: KEIL Eval C51 // // This is a stand alone battery charger for a Lithium ION battery. // It utilizes a buck converter, controlled by the on-chip 8-bit PWM, // to provide constant current followed by constant voltage battery charge. Platform: |
Size: 8845 |
Author:王培明 |
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Description: yright 2002 Cygnal Integrated Products, Inc. // // Filename: LIION_BC_MAIN.c // Target Device: 8051F300 // Created: 11 SEP 2002 // Created By: DKC // Tool chain: KEIL Eval C51 // // This is a stand alone battery charger for a Lithium ION battery. // It utilizes a buck converter, controlled by the on-chip 8-bit PWM, // to provide constant current followed by constant voltage battery charge. Platform: |
Size: 8192 |
Author: |
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Description: HT46R46 之应用-锂电池充电器,详细介绍
了充电的原理和部分程序流程-HT46R46-lithium battery chargers, introduced in detail the principles of charging some of the procedures and processes Platform: |
Size: 31744 |
Author: |
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Description: 用C8051F300设计锂离子电池充电器的解决方案!给大家参考!-C8051F300 design with lithium ion battery charger solution! For your reference! Platform: |
Size: 9216 |
Author:王金柱 |
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Description: 简单实用的锂电池充电器原理图。
现在市面上的大多数充电器均采用的此原理图设计制造。很有应用价值!-Simple and practical lithium battery charger schematic. Most chargers are now available in the market are used in this schematic design and manufacture. Great value! Platform: |
Size: 15360 |
Author:李 |
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Description: 北京大学化学与分子工程学院 一篇锂离子电池相关论文 -Chemistry and Molecular Engineering, Peking University School of a lithium-ion battery-related papers Platform: |
Size: 23552 |
Author:wuxin |
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Description: 锂离子电池介绍,详细介绍锂离子电池应用。-Lithium-ion battery, the details on the application of lithium-ion battery. Platform: |
Size: 13373440 |
Author:Jonathan |
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Description: 在PSACAD平台上搭建的一个简单的锂离子蓄电池模型,可供参考-Structures on in PSACAD platforms a simple model of a lithium-ion battery for reference Platform: |
Size: 2048 |
Author:living英 |
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Description: 该论文主要介绍了如何建立一个考虑了电池发热和电池容量衰减的动态锂离子电池模型(A dynamic lithium-ion battery model considering the effects of temperature and capacity fading) Platform: |
Size: 543744 |
Author:1帆 |
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Description: 锂离子电池储能的一阶响应仿真模型,能基本实现电池储能的充放电。(The first-order response simulation model of Li-ion battery energy storage can basically realize the charge and discharge of battery energy storage.) Platform: |
Size: 31744 |
Author:电气青年 |
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Description: Battery management is not a new concept—monitoring and control concepts were proposed as
early as the 1960s to improve battery safety. After years of intensive study, it remains a field
needing more research. This is not because we did not learn much during the past 50 years, we
did. But the subject of study is rapidly changing. The materials and structure of the battery
anode, cathode and electrolytes continue to evolve and improve, and the electrochemistry
and aging mechanisms also continue to change. The performance and capacity of batteries
degrade due to the disordering and deforming of electrode structure, decomposition of the
electrolyte, dissolution of metal, dendrite formation, and so on. The relative importance of these
mechanisms is battery-chemistry dependent, and the rate of degradation changes significantly
with many factors, including operating temperature, charge and discharge rate, and depth of
discharge. Finally, these aging mechanisms happen at different timescales, posing challenges
to data collection and analysis. The safety incidents of the Boeing Dreamliner battery systems
in 2012 remind us that much remains to be done before advanced high energy density battery
systems can be used safely and reliably in challenging applications such as aircraft and electric
vehicles Platform: |
Size: 3412996 |
Author:nutankumar |
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