5. Sensor technology and non-destructive testing for use in fusion reactors
The extreme operating conditions inside a fusion reactor place special demands on electrical and microelectronic components, for example in measurement, control, and regulation technology. Ceramic packaging technologies offer a promising solution for components exposed to ionizing radiation, extreme temperature fluctuations, or superheated steam. IKTS has many years of experience in the development and pilot production of sensor and microelectronic components based on HTCC and LTCC technology platforms. These components are already demonstrating their material-specific advantages in harsh environments such as nuclear reactors, gas turbines, and aerospace applications. The use of ceramic microsystems holds great potential in research reactors as well as future commercial systems, such as magnetic field sensors, fusion detectors, or high-frequency applications in diagnostics.
The IKTS is also working on robust electrically functional materials such as titanium oxides and spinels. These can be used in nuclear fusion technology for electrical control and energy transfer, for example as varistors to protect switching operations and for process control.
Modern non-destructive testing (NDT) methods ensure the quality and reliability of components for the overall fusion reactor system. Fraunhofer IKTS has more than 30 years of experience in the non-destructive testing of nuclear systems and facilities using ultrasound and acoustic emission. NDT systems contribute to ensuring overall safety, particularly in the commercialization of next-generation fusion power plants.