Title :
Comparisons between serpentine and flat spiral delay lines on transient reflection/transmission waveforms and eye diagrams
Author :
Guo, Wei-Da ; Shiue, Guang-Hwa ; Lin, Chien-Min ; Wu, Ruey-Beei
Author_Institution :
Graduate Inst. of Commun. Eng, Nat. Taiwan Univ., Taipei, Taiwan
fDate :
6/1/2006 12:00:00 AM
Abstract :
In contrast to the commonly employed single-ended delay lines, the employment of differential signaling may alleviate the occurrence of crosstalk and improve the signal integrity. This paper qualitatively investigates the time-domain reflection (TDR) and time-domain transmission (TDT) waveforms for the single-ended and differential delay lines with the serpentine and flat spiral routing schemes. A numerical formula is then proposed to quantitatively predict the voltage levels of the saturated near-end and far-end propagating crosstalk noises among the sections of differential delay lines. Signal waveforms and eye diagrams of the four basic routing schemes are obtained by HSPICE simulations, demonstrating that the combination of differential signaling and flat spiral layouts can exhibit the best delay-line performance. Furthermore, both the TDR and TDT measurements for differential delay lines are performed to validate the exactitude of proposed analyses.
Keywords :
crosstalk; delay lines; network routing; printed circuit layout; time-domain analysis; TDR; differential delay lines; differential signaling; eye diagrams; far-end crosstalk; flat spiral delay lines; flat spiral routing; near-end crosstalk; serpentine delay line; serpentine routing; signal integrity; signal waveforms; single-ended delay line; time-domain reflection; time-domain transmission; transient reflection waveform; transmission waveforms; Acoustic reflection; Crosstalk; Delay lines; Employment; Performance evaluation; Propagation delay; Routing; Spirals; Time domain analysis; Voltage; Crosstalk; differential delay line; eye diagram; flat spiral; laddering wave; serpentine; signal integrity; time-domain reflection (TDR); time-domain transmission (TDT);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2002.871913