Strategic Objectives
• Master the hardware architecture behind cutting-edge magnetic diagnostics.
• Identify the ideal sensor types for specific flux and current measurements.
• Implement robust signal processing techniques to eliminate environmental noise.
• Navigate the mechanical integration of sensors within vacuum and radiation zones.
The Core Challenge
In the high-stakes world of plasma physics, standard sensors fail, noise corrupts data, and precision is often lost in extreme electromagnetic environments.
01
Foundations of Magnetic Sensing
02
Inductive Probes and Pickup Coils
03
Rogowski Coils for Current Measurement
04
The Hall Effect in Extreme Environments
05
Flux Loops and Saddle Coils
06
Magnetoresistance and Thin-Film Sensors
07
Fiber-Optic Current Sensing
08
Diamagnetic Loops
09
Analog Integration Techniques
10
The Digital Diagnostic Chain
11
Noise Mitigation and Shielding
12
Precision and Traceability in Measurements
13
Vessel Eddy Currents
14
Mechanical Integration and Vacuum Compatibility
15
Radiation Hardening of Sensors
16
Magnetic Pick-up Interference
17
Real-Time Signal Processing
18
Thermal Management of Diagnostics
19
Advanced Flux Gate Magnetometry
20
Fault Detection and Sensor Health
21