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用于致动器的磁膜
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作者 大舟 《光机电信息》 1997年第10期31-33,共3页
永久磁铁薄片与薄膜,越来越多地应用在致动技术中。从多个最小磁铁的机械连接过渡到磁性多极分布,可以采用新的系统解决方案。在这方面,认识磁力、膜厚和极宽(极跟)之间的关系是一个决定性的标准。为了开发利用磁力传输的致动器,需要带... 永久磁铁薄片与薄膜,越来越多地应用在致动技术中。从多个最小磁铁的机械连接过渡到磁性多极分布,可以采用新的系统解决方案。在这方面,认识磁力、膜厚和极宽(极跟)之间的关系是一个决定性的标准。为了开发利用磁力传输的致动器,需要带有精细磁极分布的永久磁铁薄膜。图1示出一个以永久激励磁阻步进马达为基础的X和XY直接驱动机构,其中要求薄磁片的厚度为100μm。采用现代磁性材料,利用薄膜制作工艺和通过脉冲技术精细磁极结构的最新方法, 展开更多
关键词 致动器 磁膜 磁力传输
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Theoretical Design of Energy Harvesting Module or Wireless Power Transmission Receiver Using Magnetic Field of 0.2 mT at 60 Hz 被引量:1
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作者 Kunihisa Tashiro Hiroyuki Wakiwaka Yu Uchiyama 《Journal of Energy and Power Engineering》 2013年第4期740-745,共6页
This paper presents a theoretical design method for a magnetic energy harvesting module. This module consists of an air-core coil and resonant capacitor. With a simple RLC circuit model, it can derive an equation of h... This paper presents a theoretical design method for a magnetic energy harvesting module. This module consists of an air-core coil and resonant capacitor. With a simple RLC circuit model, it can derive an equation of harvesting energy as a function of coil size. In order to demonstrate the magnetic field, a uniform magnetic field is generated by the developed coil system. From the experimented results, it is successfully demonstrated 100 mW of energy harvesting from a magnetic field of 0.09 mT at 60 Hz. This value is in good agreement with the estimated results. Harvested energy is proportional to the square of the magnetic flux density. However, ICNIRP2010 provides a guideline that an acceptable level for human health in a public space is 0.2 mT at power-line frequency. This paper also discuss the possibilities of several applications related with both magnetic energy harvesting and wireless power transmission. 展开更多
关键词 Magnetic energy harvesting wireless power transmission theoretical design ICNIRP2010.
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Classical Theory of Hot-Electron Transport in Electric and Magnetic Fields
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作者 WENGMing-Qi WuHang-Sheng 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第3期370-374,共5页
Balance equation approach to the hot-electron transport in electric and magnetic fields is reformulated. The balance equations are re-derived from the Boltzmann equation. A new expression for the distribution function... Balance equation approach to the hot-electron transport in electric and magnetic fields is reformulated. The balance equations are re-derived from the Boltzmann equation. A new expression for the distribution function is reported in the present paper. It is homogeneous steady solution of the Boltzmann equation in constant relaxation time approximation. It holds when or . As an example, the mobility of 2D electron gas in the GaAs-AlGaAs heterojunction is computed as a function of electric field and magnetic field. 展开更多
关键词 hot-electron transport balance equation Boltzmann equation MOBILITY
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Research on Electro-Magnetic Environment of UHV Transmission Lines
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作者 Wu Guifang Lu Jiayu +1 位作者 Shao Fangyin Ye Qing 《Electricity》 2005年第3期42-46,共5页
Employing even higher voltage level to promote power transmission economy is an important subject in the program of power transmission from west to east. The influence of electro-magnetic environment of transmission p... Employing even higher voltage level to promote power transmission economy is an important subject in the program of power transmission from west to east. The influence of electro-magnetic environment of transmission project being closely related with human health and construction cost has to be seriously considered before advancing transmission voltage. This paper analyzes and discusses overseas and domestic research achievements on radio interference, audible noise, power frequency electric field, power frequency magnetic fields, DC resultant field intensity and ion stream involved in power transmission at ultra-high-voltage (UHV)AC and ± 800 kV DC or even higher voltage levels. Suggestions on limiting electro-magnetic effects and their ceiling value as well as measures to improve electro-magnetic environment are put forward. 展开更多
关键词 electro-magnetic environment power transmission DC UHV
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