探究Si C BJT基极驱动电路拓扑,对Si C BJT基极驱动电路损耗的构成进行了分析和对比,提出单基极电阻和阻容网络两种单电源基极驱动方案,对开关速度进行了对比。针对单电源阻容网络驱动方案,对其关键电路参数进行了分析,并针对一款Si C ...探究Si C BJT基极驱动电路拓扑,对Si C BJT基极驱动电路损耗的构成进行了分析和对比,提出单基极电阻和阻容网络两种单电源基极驱动方案,对开关速度进行了对比。针对单电源阻容网络驱动方案,对其关键电路参数进行了分析,并针对一款Si C BJT器件给出了优化的参数组合设计结果,实验测试得出驱动1 200 V/6 A Si C BJT驱动损耗为3.85 W,该驱动电路优势明显,并具有进一步优化的空间。展开更多
Many conventional switching power supplies in input AC line voltage and filtering it with large electrolytic computers and low power motor drive systems operate by rectifying the capacitors. This results in undesirabl...Many conventional switching power supplies in input AC line voltage and filtering it with large electrolytic computers and low power motor drive systems operate by rectifying the capacitors. This results in undesirable side effects such as the generation of distorted input current waveform. The input power factor is also poor. Further, the input current has the shape of narrow pulses, which in turn increases its value. The reduction in input current harmonics and improved power factor operation of motor drive systems and switching power supplies are important from the energy saving point of view and also to satisfy the harmonic standards. This paper proposes a full bridge PWM rectifier with load current feedforward. The proposed approach has some advantages, including a quick response for the load fluctuation, the reduction of the number of sensors and simplified control, as compared with the conventional methods. From simulated results, it is clarified that the proposed control method is effective and useful.展开更多
文摘探究Si C BJT基极驱动电路拓扑,对Si C BJT基极驱动电路损耗的构成进行了分析和对比,提出单基极电阻和阻容网络两种单电源基极驱动方案,对开关速度进行了对比。针对单电源阻容网络驱动方案,对其关键电路参数进行了分析,并针对一款Si C BJT器件给出了优化的参数组合设计结果,实验测试得出驱动1 200 V/6 A Si C BJT驱动损耗为3.85 W,该驱动电路优势明显,并具有进一步优化的空间。
文摘Many conventional switching power supplies in input AC line voltage and filtering it with large electrolytic computers and low power motor drive systems operate by rectifying the capacitors. This results in undesirable side effects such as the generation of distorted input current waveform. The input power factor is also poor. Further, the input current has the shape of narrow pulses, which in turn increases its value. The reduction in input current harmonics and improved power factor operation of motor drive systems and switching power supplies are important from the energy saving point of view and also to satisfy the harmonic standards. This paper proposes a full bridge PWM rectifier with load current feedforward. The proposed approach has some advantages, including a quick response for the load fluctuation, the reduction of the number of sensors and simplified control, as compared with the conventional methods. From simulated results, it is clarified that the proposed control method is effective and useful.