采用0.35μm 18 V DPTM BCD工艺技术给出电流模降压型DC-DC转换器的功率级设计,该功率级可以输出3A负载电流,转换效率可达到94.5%。主要针对转换器中核心部分功率级进行设计,其中包括同步开关功率晶体管设计、片上电感电流检测电路、功...采用0.35μm 18 V DPTM BCD工艺技术给出电流模降压型DC-DC转换器的功率级设计,该功率级可以输出3A负载电流,转换效率可达到94.5%。主要针对转换器中核心部分功率级进行设计,其中包括同步开关功率晶体管设计、片上电感电流检测电路、功率晶体管驱动电路设计以及功率级的版图设计考虑,最后给出了该功率级设计的测试结果 。展开更多
This paper explores pole placement techniques for the 4th order C1 DC-to-DC Buck converter focusing on optimizing various performance metrics. Refinements were made to existing ITAE (Integral of Time-weighted Absolute...This paper explores pole placement techniques for the 4th order C1 DC-to-DC Buck converter focusing on optimizing various performance metrics. Refinements were made to existing ITAE (Integral of Time-weighted Absolute Error) polynomials. Additionally, metrics such as IAE (Integral Absolute Error), ISE (Integral of Square Error), ITSE (Integral of Time Squared Error), a MaxMin metric as well as LQR (Linear Quadratic Regulator) were evaluated. PSO (Particle Swarm Optimization) was employed for metric optimization. Time domain response to a step disturbance input was evaluated. The design which optimized the ISE metric proved to be the best performing, followed by IAE and MaxMin (with equivalent results) and then LQR.展开更多
文摘This paper explores pole placement techniques for the 4th order C1 DC-to-DC Buck converter focusing on optimizing various performance metrics. Refinements were made to existing ITAE (Integral of Time-weighted Absolute Error) polynomials. Additionally, metrics such as IAE (Integral Absolute Error), ISE (Integral of Square Error), ITSE (Integral of Time Squared Error), a MaxMin metric as well as LQR (Linear Quadratic Regulator) were evaluated. PSO (Particle Swarm Optimization) was employed for metric optimization. Time domain response to a step disturbance input was evaluated. The design which optimized the ISE metric proved to be the best performing, followed by IAE and MaxMin (with equivalent results) and then LQR.