For Students · PCB Thermal
PCB Thermal for a sensor amplifier
Built for students learning it for a class or exam. See the concept move instead of memorizing formulas — and check your homework intuition. Simulate a sensor amplifier live below — adjust the inputs and watch it respond, right in your browser.
Composite Wall Heat TransferLive
R-value & U-value
Controls
Presets
Heat flows through a wall like current through resistors in series. Each layer's thermal resistance is its thickness over its conductivity; adding them gives the total R-value, and the heat flux is the temperature difference divided by it. Insulation, with very low conductivity, dominates the R-value — the steep temperature drop shows where it does its work.
Data Inspector
Total R-value2.71 m²K/W
U-value0.37 W/m²K
Heat flux9.6 W/m²
Governing equation
Reading this result: The insulation layer carries the most thermal resistance, so the temperature falls most steeply across it. A total R-value of 2.71 m²K/W lets 9.6 W/m² flow for this 26°C difference.
Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.
Also for:ResearchersEducatorsEngineersHobbyists & MakersK-12 StudentsFirst RespondersGeneral version →
More with PCB Thermal
Frequently asked questions
- Is this good for students?
- Yes — this version of "PCB Thermal for a sensor amplifier" is framed for students learning it for a class or exam. See the concept move instead of memorizing formulas — and check your homework intuition.
- Do I need to install anything?
- No. It runs in any modern browser, free, with no account required.