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Journal ArticleDOI

Series resonant ZCS-PFM DC-DC converter with multistage rectified voltage multiplier and dual-mode PFM control scheme for medical-use high-voltage X-ray power generator

Junming Sun, +3 more
- Vol. 147, Iss: 6, pp 527-534
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TLDR
In this paper, a series resonant high frequency transformer-linked multistage DC voltage multiplier was proposed for X-ray power generator applications, where the secondary turn numbers and secondary-side stray capacitance of the high-voltage, high-frequency transformer, as well as the rectifier diode voltage ratings were reduced.
Abstract
In general, high-voltage DC power supplies employing a variety of high-frequency inverters are implemented for constant value control schemes. In particular, their good transient and steady state performances cannot be achieved under wide load variations for a medical-use high-voltage X-ray generator, ranging from 20 kV to 150 kV in the output voltage and from 0.5 mA to 1250 mA, respectively. A high-voltage DC power supply designed for X-ray power generator applications is considered, which uses a series resonant inverter-linked multistage DC voltage multiplier instead of a conventional high-voltage diode module rectifier connected to the secondary side of a high-voltage transformer. A constant on-time/variable frequency control scheme of this converter operating at zero-current soft switching mode is described. Introducing the capacitor-diode cascaded multistage voltage multiplier, the secondary turn numbers and secondary-side stray capacitance of the high-voltage, high-frequency transformer, as well as the rectifier diode voltage ratings, can be greatly reduced. It is shown that the proposed converter control scheme of the two-step selective changed frequency selection switching is more effective for improving the output voltage responses. The series resonant high frequency transformer-linked voltage-multiplying rectifier is evaluated for an X-ray high-voltage generator on the basis of simulation analysis and observed data in experiment.

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Citations
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TL;DR: In this article, the current topologies of capacitor-diode voltage multipliers (CDVM) are investigated and a comparative analysis is carried out between different CDVM topologies.
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Approximate Equivalent-Circuit Modeling and Analysis of Type-II Resonant Immittance Converters

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Novel constant frequency time ratio controlled series load resonant high frequency soft switching inverter

TL;DR: In this article, series load resonant high frequency soft switching inverter with constant frequency power regulation function is presented, which supplies high frequency power to load by push pull operation which is provided by series load resonance and two ZCS switching cells as main switches.
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Derivation and Analysis of a Secondary-Side LLC Resonant Converter for the High Step-Up Applications

TL;DR: In this paper, an isolated high step-up converter, derived from the reverse structure of a regular LLC resonant converter, is proposed, which consists of an inverter stage, a secondary-side resonant tank, and an active voltage-doubler rectifier.
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Design of Ion Pump Power Supply Based on LCC Resonant Converter

TL;DR: In this article, an ion pump power supply was designed based on an LCC resonant topology with high switching frequency to take advantage of a smaller transformer for isolation, which can be used effectively in highvoltage and low-current applications.
References
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Book

Power Electronics: Converters, Applications and Design

TL;DR: In this paper, the authors present a simulation of power switch-mode converters for zero-voltage and/or zero-current switchings in power electronic converters and systems.
Book

Power Electronics

Rashid
Proceedings ArticleDOI

Design considerations for high-voltage high-power full-bridge zero-voltage-switched PWM converter

TL;DR: In this article, a steady-state analysis is presented with complete characterization of the converter operation and the design procedures based on the analysis are presented and the various losses in the circuit assessed.
Journal ArticleDOI

Comparison of resonant topologies in high-voltage DC applications

TL;DR: In this paper, the series and parallel resonant topologies, as well as a newly discovered hybrid resonance topology are compared for high-voltage applications and it is found that the parallel topology leads to the lowest peak switch current and the most ideal behavior.
Journal ArticleDOI

Theoretical performance of voltage multiplier circuits

TL;DR: In this paper, an expression for the equivalent source resistance of the capacitor diode voltage multiplier circuit is derived, and the distribution of capacitors that minimizes source resistance is presented.
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