Smart power integrated circuits (ICs), as the combination of control and power functions on a single chip, enable the production of more miniaturized systems. This paper presents an experimental method for the small-signal frequency-response analysis of smart power ICs in switch-mode power supplies. In this method, the switching-duty-cycle output of a power IC is converted into a digital signal by using two high-speed counters during each switching period, and the power IC's control input signal is simultaneously converted into a digital signal by an analog-to-digital converter. After processing the data of the duty-cycle output and the control input, not only the transient response but also the frequency response of the power IC can be obt...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Digital control platforms have become extremely powerful in terms of computational performan...
Smart power ICs are widely used in universal input power supplies. This paper presents a detailed an...
Smart power ICs are widely used in universal input power supplies. This paper presents a detailed an...
This paper presents a modeling method for the small-signal frequency response analysis of a monolith...
This paper presents a modeling method for the small-signal frequency response analysis of a monolith...
The small signal model of a smart power IC is one of the most important elements for a power system ...
Abstract—Recent work has shown the feasibility of integrating nonparametric frequency-domain system ...
Frequency response analysis is a well established system identification method. In this paper, a sim...
The paper presents a novel method for non-intrusive appliances identification. It can be used for en...
This paper deals with the susceptibility to radio frequency interference of smart power integrated c...
Digital control platforms have become extremely powerful in terms of computational performan...
Digital control platforms have become extremely powerful in terms of computational performan...
Absfrucf-A practical approach for on-line identification of power converter dynamic responses using ...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Digital control platforms have become extremely powerful in terms of computational performan...
Smart power ICs are widely used in universal input power supplies. This paper presents a detailed an...
Smart power ICs are widely used in universal input power supplies. This paper presents a detailed an...
This paper presents a modeling method for the small-signal frequency response analysis of a monolith...
This paper presents a modeling method for the small-signal frequency response analysis of a monolith...
The small signal model of a smart power IC is one of the most important elements for a power system ...
Abstract—Recent work has shown the feasibility of integrating nonparametric frequency-domain system ...
Frequency response analysis is a well established system identification method. In this paper, a sim...
The paper presents a novel method for non-intrusive appliances identification. It can be used for en...
This paper deals with the susceptibility to radio frequency interference of smart power integrated c...
Digital control platforms have become extremely powerful in terms of computational performan...
Digital control platforms have become extremely powerful in terms of computational performan...
Absfrucf-A practical approach for on-line identification of power converter dynamic responses using ...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Digital control platforms have become extremely powerful in terms of computational performan...