With the continuous miniaturization of electronic products, the compact structure of wireless power transfer (WPT) is extraordinarily necessary for consumer electronics. In addition, to meet the need in charging, load independent output current (CC) and constant output voltage (CV) are supposed to be taken into consideration since it is regarded as one of the most popular methods for charging batteries. This paper studies a switchable and compact design for a wireless charger. The compensation network can be changed between double LCL topology and LCL-S topology. Configurable CC and CV outputs can be achieved by adopting two switches without utilizing sophisticated control loops or any communication between the transmitter and the receiver....
With the presence of traditional thick and heavy cables for charging, the risk of humans exposed to ...
With the development of the logistics industry, low-voltage systems, such as intelligent logistics v...
For meeting the actual demand of constant current (CC) and constant voltage (CV) in lithium-ion batt...
Compared with plugged-in chargers, wireless power transfer (WPT) systems for battery chargers have n...
The main emphasis of research for battery wireless charger should be on four parts, including load-i...
Inductive power transfer (IPT) is an attractive wireless power charging option in many applications ...
Double-sided Inductor–Capacitor–Capacitor (LCC) or hybrid compensation network is often used in the ...
The impact of changing inner diameter of wireless power transfer (WPT) coils on coupling coefficient...
In this paper, a novel dual-topology wireless power transfer system for the battery charging applica...
Industrial wireless charging systems use standardized coils to guarantee interoperability between di...
The LCL topology (formed by an LC tank with a transmitting coil) is extensively utilized in wireless...
The wireless communication technologies has been found in all aspects of our social and economic lif...
This paper presents a design of the wireless charging system for e-byke applications. The double-sid...
Abstract—Inductively Coupled Power Transfer (ICPT) systems are designed to deliver power efficiently...
In this paper, a wireless charger for portable electronics devices is presented. A power transmitte...
With the presence of traditional thick and heavy cables for charging, the risk of humans exposed to ...
With the development of the logistics industry, low-voltage systems, such as intelligent logistics v...
For meeting the actual demand of constant current (CC) and constant voltage (CV) in lithium-ion batt...
Compared with plugged-in chargers, wireless power transfer (WPT) systems for battery chargers have n...
The main emphasis of research for battery wireless charger should be on four parts, including load-i...
Inductive power transfer (IPT) is an attractive wireless power charging option in many applications ...
Double-sided Inductor–Capacitor–Capacitor (LCC) or hybrid compensation network is often used in the ...
The impact of changing inner diameter of wireless power transfer (WPT) coils on coupling coefficient...
In this paper, a novel dual-topology wireless power transfer system for the battery charging applica...
Industrial wireless charging systems use standardized coils to guarantee interoperability between di...
The LCL topology (formed by an LC tank with a transmitting coil) is extensively utilized in wireless...
The wireless communication technologies has been found in all aspects of our social and economic lif...
This paper presents a design of the wireless charging system for e-byke applications. The double-sid...
Abstract—Inductively Coupled Power Transfer (ICPT) systems are designed to deliver power efficiently...
In this paper, a wireless charger for portable electronics devices is presented. A power transmitte...
With the presence of traditional thick and heavy cables for charging, the risk of humans exposed to ...
With the development of the logistics industry, low-voltage systems, such as intelligent logistics v...
For meeting the actual demand of constant current (CC) and constant voltage (CV) in lithium-ion batt...