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Design and Implementation of High Power Factor LED Driver with Hot Swap, Smart Output Voltage Regulation and Dimming Control
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作者 Yu-En Wu Kuo-Chan Huang 《Journal of Energy and Power Engineering》 2013年第12期2354-2362,共9页
In this paper, a high power factor LED driver with hot swap, smart output voltage regulation and dimming control is proposed. The dimming control is used to change LED brightness. During converter is working, the hot ... In this paper, a high power factor LED driver with hot swap, smart output voltage regulation and dimming control is proposed. The dimming control is used to change LED brightness. During converter is working, the hot swap function supply users to remove and insert LED module. The smart output voltage can regulate quickly and rightly output voltage in different number of LED series connection. The system consists two stages, one is 50 W flyback converter which is used as power factor corrector, it is input source is 110-220 V, PF (power factor) is about 0,994. The other is Boost DC/DC converter, it can offer 35-60 V of output voltage. Finally, a prototype has been built and tested. The simulation and experimental results are shown to verify the feasibility of the proposed method. 展开更多
关键词 Hot swap smart output voltage regulation dimming control flyback converter boost converter.
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光纤激光深熔焊接小孔形成过程的研究 被引量:7
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作者 赵乐 韩雪 +3 位作者 邹江林 郑凯 肖荣诗 武强 《激光与光电子学进展》 CSCD 北大核心 2020年第7期219-225,共7页
为研究小孔的形成过程,在光纤激光平板扫描焊接低碳钢中,采用调制激光出光时间的方式进行实验。结果表明:小孔的形成过程极为迅速,完整的形成时间在ms量级。低速焊接时,小孔的形成过程包括急速增加、缓慢增加和基本稳定不变三个阶段。... 为研究小孔的形成过程,在光纤激光平板扫描焊接低碳钢中,采用调制激光出光时间的方式进行实验。结果表明:小孔的形成过程极为迅速,完整的形成时间在ms量级。低速焊接时,小孔的形成过程包括急速增加、缓慢增加和基本稳定不变三个阶段。高速焊接时,小孔的形成过程仅有急速增加过程。进一步实验结果表明:小孔的形成时间不超过激光焊接特征时间,且激光焊接特征时间随焊接速度的增加而减小,这是高速焊接时小孔仅有快速形成过程的原因。 展开更多
关键词 纤激 深熔焊接 调制出光 小孔 熔深
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PC Based Optical Salinity Sensor for Different Temperatures 被引量:1
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作者 Savarimuthu ROBINSON Rangaswamy NAKKEERAN 《Photonic Sensors》 SCIE EI CAS 2012年第2期187-192,共6页
Abstract: The homogeneous, intensity modulated salinity sensor using the photonic crystal ring resonator (PCRR) is proposed and designed for monitoring the salinity of the seawater from 0% to 100% (0 g/L to 100 g/... Abstract: The homogeneous, intensity modulated salinity sensor using the photonic crystal ring resonator (PCRR) is proposed and designed for monitoring the salinity of the seawater from 0% to 100% (0 g/L to 100 g/L) at 25℃. The concentration of the salinity in the seawater changes the refractive index of the seawater. The change in the refractive index of the seawater brings the change in the output signal intensity of the sensor as the output power and mapping the salinity level, the seawater flows inside the sensor. By detecting the salinity can be evaluated. The proposed sensor is composed of periodic Si rods embedded in an air host with a circular PCRR placed between the inline quasi waveguides. Approximately, 2.69% of output power reduction is observed for every 5% (5 g/L) increase in the salinity as the seawater has a unique refractive index for each salt level. With this underlying principle, the performance of the sensor is analyzed for different temperatures. 展开更多
关键词 Optical sensor salinity measurement photonic crystal refractive index
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