Title :
Reduction in Reflections and Ground Bounce for Signal Line Over Slotted Power Plane Using Differential Coupled Microstrip Lines
Author :
Shiue, Guang-Hwa ; Wu, Ruey-Beei
Author_Institution :
Dept. of Electron. Eng., Chung Yuan Christian Univ., Taoyuan, Taiwan
Abstract :
This paper investigates the noise reduction in the slot-induced ground bounce noise by using differential signaling. An efficient 2-D finite-difference time-domain method together with equivalent circuits for both the differential line and the slot is established and simulations are performed for a three-layer structure to characterize the ground bounce coupling. A simple model is then proposed to understand how the differential coupled microstrip lines can help reduce ground bounce. Different factors which affect noise reduction are investigated, such as the coupling coefficient, rising time, skew of differential signaling, and structure asymmetry in slotline. An experimental setup is devised to demonstrate the noise coupling between signal lines due to the slot-induced ground bounce and significant noise reduction by employing differential signaling. A favorable comparison between the simulation and measured results validates the proposed equivalent circuit model and analysis approach.
Keywords :
equivalent circuits; finite difference time-domain analysis; microstrip lines; printed circuits; slot lines; 2D finite-difference time-domain method; coupling coefficient; differential coupled microstrip lines; differential signaling skew; equivalent circuit model; ground bounce coupling characterization; multilayer printed circuit board; noise reduction; reflections reduction; signal propagation; slot-induced ground bounce noise; slotline structure asymmetry; slotted power plane; three-layer structure; Coupling coefficient; delay skew; differential signaling; finite-difference time-domain (FDTD); ground bounce; signal integrity; slew rate skew; slot;
Journal_Title :
Advanced Packaging, IEEE Transactions on
DOI :
10.1109/TADVP.2009.2018830