The jitter probability density function (PDF) at multistage output buffers due to supply voltage fluctuations is analytically derived. For experimental validation, an integrated circuit (IC) is designed, fabricated, and assembled in a printed circuit board (PCB). The on-chip supply voltage fluctuations are extracted from the simultaneous measurements at the pads on IC and PCB and used to calculate the jitter PDF of the multistage buffers. Also, characteristics of the output channels are measured and modeled with the separately designed channel pattern. Finally, the jitter PDFs for multistage buffers are calculated and compared with the measured jitter histogramsclose0
Although decreasing IC feature size and increasing I/O speed enable better system capability and per...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
Precise analytical models of power supply noise induced jitter (PSIJ) at inverter chains are propose...
An analytical methodology to calculate the probability density functions (PDFs) for the step pulse r...
In this paper, the transfer function of a supply voltage fluctuation to jitter is analytically solve...
In this paper, the transfer function of a supply voltage fluctuation to jitter is analytically solve...
The transfer functions relating supply voltage fluctuations to jitter are analytically derived in cl...
A statistical BER analysis due to arbitrary supply voltage fluctuations at a single ended buffer is ...
Supply fluctuation is one of the most significant factors that cause jitter in high-speed I/O links....
This paper presents the study of power/ground (P/G) supply-induced jitter (PGSIJ) on a cascaded inve...
Switching of logic gates is often responsible for significant power supply noise. Predicting the jit...
The step response of a single ended output driver with silicon interposer channel is derived includi...
Switching currents of simultaneous switching output (SSO) buffers can cause significant power-supply...
Causal transient step responses at a silicon interposer channel and at a wire-bond channel are calcu...
This paper presents an efficient and generic method for analysis of power supply induced jitter (PSI...
Although decreasing IC feature size and increasing I/O speed enable better system capability and per...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
Precise analytical models of power supply noise induced jitter (PSIJ) at inverter chains are propose...
An analytical methodology to calculate the probability density functions (PDFs) for the step pulse r...
In this paper, the transfer function of a supply voltage fluctuation to jitter is analytically solve...
In this paper, the transfer function of a supply voltage fluctuation to jitter is analytically solve...
The transfer functions relating supply voltage fluctuations to jitter are analytically derived in cl...
A statistical BER analysis due to arbitrary supply voltage fluctuations at a single ended buffer is ...
Supply fluctuation is one of the most significant factors that cause jitter in high-speed I/O links....
This paper presents the study of power/ground (P/G) supply-induced jitter (PGSIJ) on a cascaded inve...
Switching of logic gates is often responsible for significant power supply noise. Predicting the jit...
The step response of a single ended output driver with silicon interposer channel is derived includi...
Switching currents of simultaneous switching output (SSO) buffers can cause significant power-supply...
Causal transient step responses at a silicon interposer channel and at a wire-bond channel are calcu...
This paper presents an efficient and generic method for analysis of power supply induced jitter (PSI...
Although decreasing IC feature size and increasing I/O speed enable better system capability and per...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
Precise analytical models of power supply noise induced jitter (PSIJ) at inverter chains are propose...