Title :
Derivation of a closed-form approximate expression for the self-capacitance of a printed circuit board trace
Author :
Shim, Hwan W. ; Hubing, Todd H.
Abstract :
The electric fields that couple traces on printed circuit boards to attached cables can generate common-mode currents that result in significant radiated emissions. Previous work has shown that these radiated emissions can be estimated based on the self-capacitances of the microstrip structures on a board . In general, the determination of these self-capacitances must be done numerically using three-dimensional static modeling software. In this paper, an approximate closed-form expression for the self-capacitance of microstrip traces is derived. This expression can be used to estimate the voltage-driven common-mode emissions from boards with various microstrip trace geometries. The expression also provides insight relative to the microstrip parameters that have the greatest effect on radiated emissions.
Keywords :
electric fields; printed circuits; approximate closed-form expression; common-mode current; microstrip traces; printed circuit board trace; radiated emissions; voltage-driven common-mode emissions; Cables; Capacitance; Dielectrics; Electrostatics; Geometry; Magnetic fields; Microstrip; Printed circuits; Voltage; Wire; Absolute capacitance; radiated emissions; self-capacitance; voltage-driven radiation; wire antenna;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2005.859059