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Design of High-voltage Electrostatic Generator Based on STM32 被引量:4
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作者 孔凡雪 李世光 +2 位作者 高正中 蔺相斌 张洪薇 《Journal of Measurement Science and Instrumentation》 CAS 2011年第1期72-74,共3页
This paper intreduced a high-precision high-voltage elec- trostatic generator which utilized STM32F103 as the main coutroller. The hardware and software design of the system were detailed. The full use of ample on-chi... This paper intreduced a high-precision high-voltage elec- trostatic generator which utilized STM32F103 as the main coutroller. The hardware and software design of the system were detailed. The full use of ample on-chip resources of STM32F103, such as ADC and the PWM output of timer, contributed to the small size and low cost of the system. The 16-bit PWM signals, generated by the timer on chip, served to adjust the our-put voltage accurately. The tot~ screen was responsible for the setting and display of output voltage, and the friendly humawcomptaer interaction was built. Experimental results indicated that this high-voltage static generator was of high precision and great practicability for application. 展开更多
关键词 STM32F103 high-voltage static generator voltage multiplying rectifier
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Proposal of High Gain, Reduced Stress with Low-Duty-Cycle Two-Input Boost Converter for Renewable Energy Systems
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作者 L. Chitra M. Karpagam K. Saranyadevi 《Circuits and Systems》 2016年第4期489-496,共8页
A two-input boost converter with voltage multiplier cell is proposed in this paper. Then a family of two-input converters with and without voltage multiplier cell are derived and their results are compared to achieve ... A two-input boost converter with voltage multiplier cell is proposed in this paper. Then a family of two-input converters with and without voltage multiplier cell are derived and their results are compared to achieve high voltage gain, low duty cycle, and reduced voltage stress. From the analysis of different topologies, a modified two-input converter with two-stage voltage multiplier cell has good operating characteristics. The switch voltage stress and duty cycle of the modified converter is significantly very less than that of the other converter topologies. The modified DC-DC converter with 50% duty cycle achieves a voltage gain of 10 and the results are verified by using MATLAB/Simulink software. 展开更多
关键词 voltage multiplier Cell (VMC) DC-DC Converter Boost Converter SIMULINK voltage Gain voltage Stress Duty Cycle
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Analysis and Design of Single Switch Hybrid Step-Up Converter
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作者 Ravivarman Shanmugasundaram Jeyabharath Rajaiah Veena Parasunath 《Circuits and Systems》 2016年第4期211-221,共11页
A Single Switch Hybrid Step-up Converter with high voltage gain, which is suitable for renewable energy system, is proposed in this paper. The proposed converter consists of one switched diode-inductor cell and a capa... A Single Switch Hybrid Step-up Converter with high voltage gain, which is suitable for renewable energy system, is proposed in this paper. The proposed converter consists of one switched diode-inductor cell and a capacitor. While switching, both are charged in parallel from the input source and discharged in series to the output. In order to obtain extra voltage gain at lower duty cycle, the voltage multiplier cell is integrated with the proposed converter. The main advantages of the converter are high voltage gain, reduced voltage stress, simple structure and low output voltage ripples. The operating principle and steady state theoretical analysis are presented. A 250 W prototype converter is implemented with 12 V input and 120 V output to verify the design and analysis of this converter and it has an efficiency of over 90% in all operations. 展开更多
关键词 DC-DC Power Conversion Switched-Inductor Step-Up Converter voltage multiplier
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Modeling and analysis of power extraction circuits for passive UHF RFID applications 被引量:1
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作者 樊勃 戴宇杰 +1 位作者 张小兴 吕英杰 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第1期90-99,共10页
Modeling and analysis of far field power extraction circuits for passive UHF RF identification (RFID) applications are presented. A mathematical model is derived to predict the complex nonlinear performance of UHF v... Modeling and analysis of far field power extraction circuits for passive UHF RF identification (RFID) applications are presented. A mathematical model is derived to predict the complex nonlinear performance of UHF voltage multiplier using Schottky diodes. To reduce the complexity of the proposed model, a simple linear approximation for Schottky diode is introduced. Measurement results show considerable agreement with the values calculated by the proposed model. With the derived model, optimization on stage number for voltage multiplier to achieve maximum power conversion efficiency is discussed. Furthermore, according to the Bode-Fano criterion and the proposed model, a limitation on maximum power up range for passive UHF RFID power extraction circuits is also studied. 展开更多
关键词 power extraction circuits passive UHF RFID MODEL voltage multiplier power conversion efficiency power up range
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