动态电源管理(dynamic power management,DPM)是一种动态重构系统资源以提供适当系统处理能力和优化的系统功耗的设计方法,着眼于动态获得功耗和效率之间的平衡。动态电源管理结合津科WOLF-Linux系统采用的类纸显示单元的应用需求,产生...动态电源管理(dynamic power management,DPM)是一种动态重构系统资源以提供适当系统处理能力和优化的系统功耗的设计方法,着眼于动态获得功耗和效率之间的平衡。动态电源管理结合津科WOLF-Linux系统采用的类纸显示单元的应用需求,产生了DPM结合APM的脉冲式动态电源管理方法。该方法目标是在对媒体阅读系统中实现阅读不耗电的目标。展开更多
This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load ra...This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load range using the energy of the output capacitor. Ma king use of parasitic capacitors of the lagging switches and parallel auxiliary i nductance with the primary winding of the transformer, the lagging switches can realize zero voltage switching (ZVS) under any load. Compared with the ZCS PWM Boost FB converter, the new converter has no current duty cycle loss. Operat ional principle and parameter design are analyzed. Experimental results verify the effectiveness of the proposed converter.展开更多
文摘动态电源管理(dynamic power management,DPM)是一种动态重构系统资源以提供适当系统处理能力和优化的系统功耗的设计方法,着眼于动态获得功耗和效率之间的平衡。动态电源管理结合津科WOLF-Linux系统采用的类纸显示单元的应用需求,产生了DPM结合APM的脉冲式动态电源管理方法。该方法目标是在对媒体阅读系统中实现阅读不耗电的目标。
文摘This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load range using the energy of the output capacitor. Ma king use of parasitic capacitors of the lagging switches and parallel auxiliary i nductance with the primary winding of the transformer, the lagging switches can realize zero voltage switching (ZVS) under any load. Compared with the ZCS PWM Boost FB converter, the new converter has no current duty cycle loss. Operat ional principle and parameter design are analyzed. Experimental results verify the effectiveness of the proposed converter.