Research on Radiation-Hardened RCC Isolated Power Supply for High-Radiation-Field Applications

Исследование радиационно-стойкого изолированного источника питания на основе RCC для применения в условиях высокого радиационного поля
Gang Dong, Xiaojin Lu, Hong Yin, Yifei Wu, Li Zhu, Ke Hong, Qing He, Ziyu Zhou, Lihong Zhu
2025-09-30

VDMOS degradation under neutron irradiationdynamic parameter compensationpower transistor selection criterionradiation-hardened RCC (Ring Choke Converter)transformer isolation
A radiation-hardened RCC (Ring Choke Converter) isolated power supply design is proposed, which provides an innovative solution to the challenge of providing stable power to the PWM controller in DC-DC converters under nuclear radiation environments. By optimizing circuit architecture and component selection, and incorporating transformer isolation and dynamic parameter compensation technology, the RCC maintains an 8.9 V output voltage after exposure to neutron irradiation of 3 × 1013 n/cm2, significantly outperforming conventional designs with a failure threshold of 1 × 1013 n/cm2. For the first time, the degradation mechanisms of VDMOS devices under neutron irradiation during switching operations are systematically revealed: a 32–36% reduction in threshold voltage (with the main power transistor dropping from 5 V to 3.4 V) and an increase in on-resistance. Based on these findings, a selection criterion for power transistors is established, enabling the power supply to achieve a 2 W output in extreme environments such as nuclear power plant monitoring and satellite systems. The results provide a comprehensive solution for radiation-hardened power electronics systems, covering device characteristic analysis to circuit optimization, with significant engineering application value.
1
Design maintains an 8.9 V output after neutron irradiation of 3 × 10^13 n/cm^2, outperforming conventional designs that fail at 1 × 10^13 n/cm^2.
2
Observed neutron-induced degradation also increases VDMOS on-resistance, informing transistor selection criteria for radiation environments.
3
Proposed a radiation-hardened RCC isolated power supply design that supplies stable power to PWM controllers in nuclear radiation environments.
4
Systematically revealed VDMOS degradation during switching under neutron irradiation: threshold voltage reduced by 32–36% and main power transistor Vth dropped from 5 V to 3.4 V.
5
Using the derived transistor selection criteria and circuit optimizations, the power supply achieves a 2 W output suitable for extreme environments (nuclear plant monitoring, satellites).

Radiation-hardened RCC (Ring Choke Converter) isolated power supply for high-radiation-field applications

Design performance and radiation-induced degradation mechanisms affecting the RCC isolated power supply and its components (VDMOS/power transistors), including output stability after neutron irradiation, threshold-voltage reduction, on-resistance increase, component selection criteria, transformer isolation and dynamic parameter compensation enabling 2 W output in extreme nuclear/satellite environments

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2025-09-30
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Gang Dong
Xiaojin Lu
Hong Yin
Yifei Wu
Li Zhu
Ke Hong
Qing He
Ziyu Zhou
Lihong Zhu
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