Nanoinductor Response & Field Map (2D)
Interactive 2D nanoinductor simulator: a schematic spiral/solenoid cross-section, a Biot-Savart on-axis field sweep and a live Q/R Bode-style response curve, all driven by the same modified-Wheeler inductance, skin-effect and self-resonance formulas used in RF chip design.
Squeezing an inductor onto a chip means fighting a hard trade-off: a spiral small enough to fit next to a transistor also has too little loop area to store much magnetic energy, and its copper trace loses more of that energy to resistance at gigahertz frequencies. This 2D view reads the same on-chip nanoinductor the way an RF datasheet does: a plan-view or cross-section diagram of the coil with a Biot-Savart field sweep, next to a live Q/resistance-versus-frequency curve built from the same modified-Wheeler inductance, skin-effect resistance and self-resonance formulas used in real chip design.
A 2D schematic view of the same on-chip nanoinductor: a top-down plan or textbook cross-section diagram with current-flow dots and a Biot-Savart field sweep, next to a live Q-factor and AC-resistance-versus-frequency curve built from the modified-Wheeler inductance and skin-depth formulas used in real RF chip design.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install