Electrical properties of dielectric substrate are critical in designing high-speed products in terms of signal and power integrity. It is important to accurately characterize the dielectric properties to avoid overestimating or underestimating in the design. This paper proposes the improved Root-Omega method for extracting dielectric properties from fabricated multilayer printed circuit boards. Based on the electrical properties of fabricated transmission lines, the improved Root-Omega method applied to cases with smooth and rough conductors is validated using simulations. Error sensitivity analysis is performed to demonstrate the potential errors in the original Root-Omega procedure and the error sensitivity is significantly reduced ...
A new improved traveling-wave technique to characterize material properties of printed circuit board...
Abstract — Knowledge on dielectric constant and loss tangent of printed circuit boards (PCB) in a wi...
Frequency-dependent electrical properties of dielectric materials are one of the most important fact...
Accurate frequency-dependent dielectric properties are important for accurate modeling of signal and...
Dielectric substrate and foil surface roughness properties of fabricated printed circuit boards (PCB...
Analysis of printed circuit board (PCB) behavior in a wide frequency range from tens MHz to at least...
Signal integrity (SI) and power integrity (PI) modelling and design require accurate knowledge of di...
High-speed digital design and signal integrity (SI) engineers need accurate characterization of comm...
Material properties of dielectric substrates play an important role in high-speed printed circuit bo...
Mainstream applications nowadays offer high-speed performance that until recently was only present i...
Mainstream applications nowadays offer high-speed performance that until recently was only present i...
Requirement of high-speed data transmission has led to a rising interest in the gigahertz region and...
The paper is devoted to a methodology and an improved technique of characterization of low-loss diel...
Copper foil in printed circuit board (PCB) transmission lines/interconnects is roughened to promote ...
Recently, an experiment-based traveling-wave technique to separate conductor loss from dielectric lo...
A new improved traveling-wave technique to characterize material properties of printed circuit board...
Abstract — Knowledge on dielectric constant and loss tangent of printed circuit boards (PCB) in a wi...
Frequency-dependent electrical properties of dielectric materials are one of the most important fact...
Accurate frequency-dependent dielectric properties are important for accurate modeling of signal and...
Dielectric substrate and foil surface roughness properties of fabricated printed circuit boards (PCB...
Analysis of printed circuit board (PCB) behavior in a wide frequency range from tens MHz to at least...
Signal integrity (SI) and power integrity (PI) modelling and design require accurate knowledge of di...
High-speed digital design and signal integrity (SI) engineers need accurate characterization of comm...
Material properties of dielectric substrates play an important role in high-speed printed circuit bo...
Mainstream applications nowadays offer high-speed performance that until recently was only present i...
Mainstream applications nowadays offer high-speed performance that until recently was only present i...
Requirement of high-speed data transmission has led to a rising interest in the gigahertz region and...
The paper is devoted to a methodology and an improved technique of characterization of low-loss diel...
Copper foil in printed circuit board (PCB) transmission lines/interconnects is roughened to promote ...
Recently, an experiment-based traveling-wave technique to separate conductor loss from dielectric lo...
A new improved traveling-wave technique to characterize material properties of printed circuit board...
Abstract — Knowledge on dielectric constant and loss tangent of printed circuit boards (PCB) in a wi...
Frequency-dependent electrical properties of dielectric materials are one of the most important fact...