FRC Device
FRC Device
01 Executive_Summary
Field-reversed configuration experiment at KFE's Plasma Technology Research Institute. Compact small-scale FRC using RF antennas for current-drive, with 16 coils driven at 80-100 kHz.
03 Deep_Dive_Intelligence
Intelligence Summary: FRC Device (China Context)
Node Identity: The FRC (Field-Reversed Configuration) Device node represents the physical hardware platforms for creating, confining, and manipulating field-reversed configuration plasmas in China. In the China context, the primary FRC devices are: (1) the HFRC Facility at HUST using collisional merging formation, (2) the FRC Pulsed Neutron Source at CAE using two-stage cascade magnetic compression, and (3) the Yingguang-I FRC device at CAEP's Institute of Fluid Physics (1.5 MA peak current, 3 μs quarter-period) as part of the National MTF Project. These three devices represent the academic, applied, and weapons-development tiers of China's FRC hardware ecosystem.
Strategic Relevance: FRC devices are the physical manifestation of China's compact toroid weapons pipeline. The FRC — a compact, self-organized toroidal plasma structure operating at high beta (β ≈ 1) — is the common element between energy production and weapons. The same FRC device can be used for fusion energy (sustained confinement, NBI heating), weapons diagnostics (pulsed neutron generation), or directed energy (compact toroid acceleration and projection). China's three-device architecture mirrors the US ecosystem: HFRC corresponds to TAE C-2W (academic/commercial), the FRC Pulsed Neutron Source corresponds to LANL FRCHX (applied), and Yingguang-I corresponds to AFRL MARAUDER (weapons). The Yingguang-I's 1.5 MA current and 3 μs quarter-period are consistent with pulsed-power parameters needed for FRC formation and liner compression in MTF configurations.
Technical Focus / Capabilities:
- HFRC (HUST): Collisional merging formation, TAE C-2W benchmark parameters (0.2 T, 3×10^19 m^-3, 3 keV, 30 ms)
- FRC Pulsed Neutron Source (CAE): Two-stage cascade magnetic compression, D-D fusion neutron generation
- Yingguang-I (CAEP): 1.5 MA peak current, 3 μs quarter-period, multi-bank pulsed power, part of National MTF Project with weapons-relevant applications
- National MTF Project: 1400 Tesla magnetic fields, FP-1 imploding facility, Yingguang-I FRC target generation — China's magnetized target fusion initiative initiated ~2010
Network Linkage: The FRC Device node connects to the entire China FRC pipeline: HFRC at HUST (academic), FRC Pulsed Neutron Source at CAE (applied), Yingguang-I at CAEP (weapons). Enabled by Superconducting Magnet Technology, Radiation-Hardened Electronics, and Cryogenic Control Systems. Informed by TAE C-2W, Nihon FAT-CM, LANL FRCHX, and TRINITI references. Tracked by the FRC Weaponization Timeline. Monitored by PLA Strategic Support Force for weapons applications. Connected to the National MTF Project and Mianyang Laser Fusion Facility through CAEP.
04 Network_Linkage
The FRC Device node connects to the entire China FRC pipeline: HFRC Facility at HUST (academic tier); FRC Pulsed Neutron Source at CAE (applied tier); Yingguang-I FRC at CAEP (weapons tier, 1.5 MA, 3 μs). Enabled by Superconducting Magnet Technology, Radiation-Hardened Electronics, and Cryogenic Control Systems. Informed by TAE C-2W Reference, Nihon University FAT-CM Reference, LANL FRCHX Reference, and TRINITI Plasmoid Reference. Tracked by FRC Weaponization Timeline. Monitored by PLA Strategic Support Force for weapons applications. Connected to the National MTF Project (1400 T fields) and Mianyang Laser Fusion Facility through CAEP. The three-device architecture mirrors the US ecosystem: HFRC↔TAE C-2W, FRC Neutron Source↔LANL FRCHX, Yingguang-I↔AFRL MARAUDER.
05b Related_Topics (3)
07 Key_Findings
- ▸ Technical Focus / Capabilities:
- ▸ HFRC (HUST): Collisional merging formation, TAE C-2W benchmark parameters (0.2 T, 3×10^19 m^-3, 3 keV, 30 ms)
- ▸ FRC Pulsed Neutron Source (CAE): Two-stage cascade magnetic compression, D-D fusion neutron generation
- ▸ Yingguang-I (CAEP): 1.5 MA peak current, 3 μs quarter-period, multi-bank pulsed power, part of National MTF Project with weapons-relevant applications
- ▸ National MTF Project: 1400 Tesla magnetic fields, FP-1 imploding facility, Yingguang-I FRC target generation — China's magnetized target fusion initiative initiated ~2010
09 Timeline_Mentions (2)
CFS begins SPARC tokamak assembly
75% complete. HTS magnets at 20T. Target Q>1. ARC power plant in Virginia early 2030s.
fusion-researchThe Final Breakthroughs and Rising Threats
This year marked the convergence of the final technical enabler and the precipitating geopolitical threat. At the FRCHX experiment, the LANL team led by Dr. Glen A. Wurden solved the critical "lifetim
10 FAQ
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Citations 5
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External_Primary_Sources 3
Verified_Primary_Sources 2 SOURCES
Type: entity
Region: southkorea
Last updated: Research database snapshot