Design of Series Resonant High-voltage Constant Current Power Supply
Yuchen Wang, Yahong Yang, Haitao Chen, Lei Wang, Mochen Xu, Sheng Cai, Jun Huang
Abstract
Yuchen Wang, Yahong Yang, Haitao Chen, Lei Wang, Mochen Xu, Sheng Cai, Jun Huang
Abstract
For the generation of short high-power pulses in many applications, power modulators based on capacitor discharge are used. Additionally, depending on the modulator concept, a galvanic isolation also has to be provided. This article designs a series resonant high-voltage constant current power supply, which includes transformer design, main topology research and component selection. In this paper, compared with other well-known topologies of charging power supply, the proposed full-bridge-based series resonant circuit allows the power supply to charge the load capacitance in constant current mode. The input is ac 380V/50Hz, and the output voltage is 2100Vdc. At the same time, it realizes soft switching, which improves efficiency and reduces switching loss.
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For the generation of short high-power pulses in many applications, power modulators based on capacitor discharge are used. Additionally, depending on the modulator concept, a galvanic isolation also has to be provided. This article designs a series resonant high-voltage constant current power supply, which includes transformer design, main topology research and component selection. In this paper, compared with other well-known topologies of charging power supply, the proposed full-bridge-based series resonant circuit allows the power supply to charge the load capacitance in constant current mode. The input is ac 380V/50Hz, and the output voltage is 2100Vdc. At the same time, it realizes soft switching, which improves efficiency and reduces switching loss.
Key concepts: Galvanic isolation, Constant power circuit, Switched-mode power supply, Capacitive power supply, Electrical engineering, Switched-mode power supply applications, Constant current, Capacitor