To model additional conductor loss due to foil surface roughness various empirical or physical models have been brought up to provide surface roughness correction factors for the per-unit-length (PUL) resistance assuming certain roughness of foil conductors. However for striplines on typical printed circuit board, different sides of the traces and references planes may have different surface roughness levels due to the fabrication process. Traditionally engineers may calculate surface roughness correction factors using averaged roughness level of the upper and lower sides of the trace. However this empirical estimation may lead to inaccurate modeling results especially when the stripline is not vertically symmetrical or the differences amon...
Specification and control of surface roughness of copper conductors within printed circuit boards (P...
Accurate frequency-dependent dielectric properties are important for accurate modeling of signal and...
Predictability of transmission line parameters is very important for microelectronics packaging. Sur...
A model to substitute conductor surface roughness in printed circuit boards by a layer with an effec...
The surface roughness of copper foils has a considerable impact on the signal integrity performance ...
A methodology is introduced for modeling resistive losses in planar transmission lines that support ...
Dielectric substrate and foil surface roughness properties of fabricated printed circuit boards (PCB...
Conductors with a roughened surface have significant effects on high-speed signal propagation on bac...
Conductor loss due to the roughened metal foil surface has significant effects on high-speed signals...
Conductor surface roughness effect refers to the influence of surface roughness on the current flow ...
Abstract — Knowledge on dielectric constant and loss tangent of printed circuit boards (PCB) in a wi...
A new improved traveling-wave technique to characterize material properties of printed circuit board...
New technologies have resulted in transmission lines that deviate significantly from the intended re...
Conductor (copper) foil surface roughness in printed circuit boards (PCBs) is inevitable due to adhe...
As the data rate of high-speed digital systems is getting higher, the conductor loss can no more be ...
Specification and control of surface roughness of copper conductors within printed circuit boards (P...
Accurate frequency-dependent dielectric properties are important for accurate modeling of signal and...
Predictability of transmission line parameters is very important for microelectronics packaging. Sur...
A model to substitute conductor surface roughness in printed circuit boards by a layer with an effec...
The surface roughness of copper foils has a considerable impact on the signal integrity performance ...
A methodology is introduced for modeling resistive losses in planar transmission lines that support ...
Dielectric substrate and foil surface roughness properties of fabricated printed circuit boards (PCB...
Conductors with a roughened surface have significant effects on high-speed signal propagation on bac...
Conductor loss due to the roughened metal foil surface has significant effects on high-speed signals...
Conductor surface roughness effect refers to the influence of surface roughness on the current flow ...
Abstract — Knowledge on dielectric constant and loss tangent of printed circuit boards (PCB) in a wi...
A new improved traveling-wave technique to characterize material properties of printed circuit board...
New technologies have resulted in transmission lines that deviate significantly from the intended re...
Conductor (copper) foil surface roughness in printed circuit boards (PCBs) is inevitable due to adhe...
As the data rate of high-speed digital systems is getting higher, the conductor loss can no more be ...
Specification and control of surface roughness of copper conductors within printed circuit boards (P...
Accurate frequency-dependent dielectric properties are important for accurate modeling of signal and...
Predictability of transmission line parameters is very important for microelectronics packaging. Sur...