High-Voltage Pulsed Power Generator for
Jan 28, 2025 · Beam injection systems in hadron colliders require kickers generating ±50 kV peak voltages into a 50 Ω impedance, with peak
Jan 28, 2025 · Beam injection systems in hadron colliders require kickers generating ±50 kV peak voltages into a 50 Ω impedance, with peak
Dec 1, 2023 · A voltage-fed single-stage multiple-input inverter is developed for hybrid wind/photovoltaic energy generating systems. In this research proposes a re
Sep 18, 2024 · The voltage reinjection strategy is an effective solution to improve the voltage quality of the voltage source inverters for high-power applications. In this article, the
Jan 28, 2025 · Beam injection systems in hadron colliders require kickers generating ±50 kV peak voltages into a 50 Ω impedance, with peak currents of 1000 A and sub-10 ns rise and fall
Oct 19, 2023 · The proposed generator can provide high-voltage bipolar output pulses with the desired specifications from a low input DC voltage.
Jul 16, 2025 · Research from all publishers Recent developments in high-voltage pulse power systems have underscored the integration of advanced solid-state components.
The high frequency and high voltage pulse is one of the key technologies for the insulation evaluation of inverter-fed motors. Generating, managing, and safeguarding such pulses
Apr 27, 2025 · To meet the requirements of uniform and stable discharge plasma, high ionization efficiency and fast plasma diffusion, a bipolar 10 kV 1 kW high-voltage pulse
Nov 7, 2023 · Bipolar pulse generators represent a key element in various biomedical and industrial applications. This article presents a novel high-voltage bipolar pulse generator based
Dec 22, 2023 · This results in a pulse capable of delivering substantial power to a des- ignated target. High-voltage pulse generators (HVPG) find extensive applications in emerging
1. Introduction Pulse power technologies have become increasingly prominent in recent years due to their ability to generate high-voltage and short-duration pulses, which have significant
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In this paper, a boost inverter-based bipolar high voltage pulse generator with high-voltage gain is proposed. The proposed generator can provide high-voltage bipolar output pulses with the desired specifications from a low input DC voltage.
This paper presents a novel high-voltage pulse power generator utilizing a distributed pulser architecture. It combines gallium nitride (GaN) transistors in a Marx topology with an inductive adder, achieving nanosecond-scale switching speeds and high-power efficiency.
High-voltage pulse power generation systems represent a pivotal technology in modern engineering, enabling the delivery of rapid, high-energy pulses that are essential across a spectrum of applications, including industrial processing, environmental remediation, and medical treatments.
This results in a pulse capable of delivering substantial power to a des- ignated target. High-voltage pulse generators (HVPG) find extensive applications in emerging applications, such as ultra- wideband radiation, material modification, cancer treatment, sterilization, and fusion systems.