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Trace Length | L | ||
Trace Thickness | T | ||
Temperature | Temp |
R = (ρ * L / (T * W)) * (1 + α * (TAMB – 25 °C))
Where:
R is the trace resistance [Ω] ρ is the resistivity parameter, whose value for copper is 1.7E-6 [Ω · cm] L is the trace length [cm] T is the trace thickness [cm] W is the trace width [cm] α is the resistivity temperature coefficient, whose value for copper is 3.9E-3 [1/°C] TTEMP is the trace temperature [°C]
Inputs L = 5 inch W = 4 mil T = 3 oz/ft2 TAMB = 38 °C
Output R = 0.213 Ω
Inputs L = 10.5 inch W = 4.6 mil T = 5.8 oz/ft2 TAMB = 37.5 °C
Output R = 0.200 Ω
[1] IPC-2221A “Generic Standard on Printed Board Design”