Design and simulation of DC regulated circuit for current source input type based on Tina-TI

Author:

Xue Tao,Hu Xiangnan,Fang Chun’en,Fu Xuhui,Li Wei,Zhang Ning,Chen Junping

Abstract

Abstract In the multi-output high-voltage isolated power supply for solid-state switches, LCL resonant network is used to obtain the constant current source on the bus, and the bus current is independent of the load. Therefore, the secondary side of the toroidal transformer needs to use the current input voltage regulator circuit. When the input is a current source instead of a voltage source, the traditional voltage regulator circuit is no longer applicable. Therefore, this paper focuses on the study of dc voltage regulated circuit with current source input. Compared with the traditional linear regulated power supply, switching power supply has the advantages of high efficiency, large output power, small size, light weight and low cost. In this paper, pulse width modulation (PWM) technology is used to control the switching on and off, and UC3843 is used to design a switch type regulated power supply with small size, simple circuit, adjustable output and over voltage protection function. Tina-TI software was used for simulation analysis, and the main circuit and control circuit were built. The current source of 1.25A and 40kHz output by the secondary side of the toroidal transformer is converted into a stable 10V DC voltage source, which verified the correctness of the design. Tina-TI software can be used to analyze and design power supply with different requirements, improve power efficiency, reduce design complexity, and thus shorten development cycles.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference11 articles.

1. Design on multiple isolated drive power supply of hybrid DC circuit breaker;Fang;High Voltage Engineering,2016

2. An overview of switching power supply technology development;Zhang;Microelectronics,2016

3. An overview of the basic principle and technology development of switching power supply;Wang;Value Engineering,2018

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