随着漏电断路器应用场景的不断扩展,用电设备故障时产生的剩余电流呈现非正弦特征,直接影响漏电断路器的动作特性。该文针对电磁式漏电断路器中的剩余电流互感器(residual current transformer,RCT)及其信号调理电路开展了研究。首先,...随着漏电断路器应用场景的不断扩展,用电设备故障时产生的剩余电流呈现非正弦特征,直接影响漏电断路器的动作特性。该文针对电磁式漏电断路器中的剩余电流互感器(residual current transformer,RCT)及其信号调理电路开展了研究。首先,分析剩余电流互感器的工作特点,建立考虑铁心饱和特性和磁滞效应的RCT仿真模型,可精确仿真RCT在各种工况下的传输特性,并能对非正弦大电流下的传输特性进行仿真;其次,对RCT输出信号调理电路进行研究,提出基于并联谐振原理的补偿电容参数设计方法,并分析补偿电容的容差特性对输出电压的影响,在谐振条件下RCT输出特性受外界因素影响最小。最后,通过仿真与实验测试结果对比,验证RCT传输特性仿真模型及补偿电容对输出电压的影响。展开更多
A new,improved pixel-driving circuit is presented based on a current-programmed pixel circuit in order to achieve an AC-driving mode. This driving method realizes an AC-driving mode,removes the threshold voltage varia...A new,improved pixel-driving circuit is presented based on a current-programmed pixel circuit in order to achieve an AC-driving mode. This driving method realizes an AC-driving mode,removes the threshold voltage variation of the driving TFT due to the process variation or long-term operation,which can bring about brightness non-uniformity, and eliminates high peak pulse currents at the beginning and end of recovery time. Simulation is done with AIM-SPICE,and simulation results demonstrate that the OLED is in the reverse-biased state during recovery time.展开更多
文摘随着漏电断路器应用场景的不断扩展,用电设备故障时产生的剩余电流呈现非正弦特征,直接影响漏电断路器的动作特性。该文针对电磁式漏电断路器中的剩余电流互感器(residual current transformer,RCT)及其信号调理电路开展了研究。首先,分析剩余电流互感器的工作特点,建立考虑铁心饱和特性和磁滞效应的RCT仿真模型,可精确仿真RCT在各种工况下的传输特性,并能对非正弦大电流下的传输特性进行仿真;其次,对RCT输出信号调理电路进行研究,提出基于并联谐振原理的补偿电容参数设计方法,并分析补偿电容的容差特性对输出电压的影响,在谐振条件下RCT输出特性受外界因素影响最小。最后,通过仿真与实验测试结果对比,验证RCT传输特性仿真模型及补偿电容对输出电压的影响。
文摘A new,improved pixel-driving circuit is presented based on a current-programmed pixel circuit in order to achieve an AC-driving mode. This driving method realizes an AC-driving mode,removes the threshold voltage variation of the driving TFT due to the process variation or long-term operation,which can bring about brightness non-uniformity, and eliminates high peak pulse currents at the beginning and end of recovery time. Simulation is done with AIM-SPICE,and simulation results demonstrate that the OLED is in the reverse-biased state during recovery time.