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A high-efficiency RF suppression circuit for fluorescent lamp inverters using charge pump and partial smoothing capacitors

机译:使用电荷泵和局​​部平滑电容器的荧光灯逆变器的高效RF抑制电路

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A highly efficient RF' suppression circuit for fluorescent lamp inverters based on charge pump and partial smoothing capacitors is proposed The circuit consists of a pumping capacitor, a partial smoothing capacitor and a control switch. Thepumping capacitor is of comparatively small capacitance and the control switch operates to ensure that the pumping capacitor charging current is proportional to the AC power supply voltage even across the interval where the AC voltage is near zero.Effective use of current charging reduces the RF harmonic components in the supply current and improves the power factor The charging voltage of the pumping capacitor (Vcp) and the charging voltage of the partial smoothing capacitor (Vch) together effectinverter driving of the lamp circuit. when the lamp starts, the control switch provides the high voltage, Vcp+Vch. After the lamp has started, Vcp and Vch are switched in alternation. During the period in which the partial smoothing capacitor is charging; the time constants of the choke coil at the rectifier circuit input and the partial smoothing circuit are optimized, while use of the charging voltage of the pump capacitor prevents the sudden appearance of a charging current at the input. Test circuitsexhibited a power factor of 97.4% (well above the 85% rating), and the third to eleventh harmonies were at about half of the rated values demonstrating the feasibility of a high-power-factor, low-RF inverter.
机译:基于电荷泵和局​​部平滑电容器荧光灯的逆变器A高效RF”抑制电路所提出的电路由抽运电容器,部分平滑电容器和一个控制开关。 Thepumping电容器比较小的电容和控制开关进行操作,以确保泵电容器充电电流正比于甚至跨越其中AC电压接近zero.Effective使用电流充电的间隔中的交流电源电压降低了RF谐波分量在电源电流和提高功率因数的泵浦电容器(VCP)和局部平滑电容器(Vch时)一起effectinverter驱动灯电路的充电电压的充电电压。灯启动时,控制开关提供高电压,Vcp的+ Vch时。在灯启动后,VCP和Vch的交替切换。期间,其中所述局部平滑电容器是充电期间;在整流器电路输入扼流圈和局部平滑电路的时间常数被优化,同时使用泵电容器防止充电电流的输入处的突然出现的充电电压的。测试circuitsexhibited的97.4%(井85%的评价以上)的功率因数,而第三到第十一和声在约展示高功率因数,低RF变频器的可行性的额定值的一半。

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