Supply fluctuation is one of the most significant factors that cause jitter in high-speed I/O links. The traditional SPICE simulation or measuring method for power supply induced jitter is quite time-consuming and draining on resources. The I/O buffer information specification (IBIS) model is a popular standard for electronic behavioral specifications of digital integrated circuit I/O characteristics. Analytic jitter transfer functions for supply fluctuations are derived by solving two-order differential equations based on IBIS current versus voltage characteristics and pin package parameters. Then, the total time interval error induced by power and ground noise is obtained in both frequency domain and time domain. The method is validated b...
This paper presents the development and evaluation of a large-signal equivalent circuit model that a...
This paper presents an efficient method for the estimation of jitter due to power supply noise in a ...
Switching of logic gates is often responsible for significant power supply noise. Predicting the jit...
This work presents a new algorithm for improving the simulation accuracy of power supply induced jit...
This paper presents the study of power/ground (P/G) supply-induced jitter (PGSIJ) on a cascaded inve...
The transfer functions relating supply voltage fluctuations to jitter are analytically derived in cl...
Precise analytical models of power supply noise induced jitter (PSIJ) at inverter chains are propose...
An analytical model of power supply noise induced jitter (PSIJ) at inverter chains is proposed. Base...
The jitter probability density function (PDF) at multistage output buffers due to supply voltage flu...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
This paper presents an efficient and generic method for analysis of power supply induced jitter (PSI...
In today's high-speed and high IC density digital system, many new problems have appeared. One signi...
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...
This paper demonstrates a very simple and highly accurate expression of power supply-induced jitter ...
This paper presents the development and evaluation of a large-signal equivalent circuit model that a...
This paper presents an efficient method for the estimation of jitter due to power supply noise in a ...
Switching of logic gates is often responsible for significant power supply noise. Predicting the jit...
This work presents a new algorithm for improving the simulation accuracy of power supply induced jit...
This paper presents the study of power/ground (P/G) supply-induced jitter (PGSIJ) on a cascaded inve...
The transfer functions relating supply voltage fluctuations to jitter are analytically derived in cl...
Precise analytical models of power supply noise induced jitter (PSIJ) at inverter chains are propose...
An analytical model of power supply noise induced jitter (PSIJ) at inverter chains is proposed. Base...
The jitter probability density function (PDF) at multistage output buffers due to supply voltage flu...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
This paper presents an efficient and generic method for analysis of power supply induced jitter (PSI...
In today's high-speed and high IC density digital system, many new problems have appeared. One signi...
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...
This paper demonstrates a very simple and highly accurate expression of power supply-induced jitter ...
This paper presents the development and evaluation of a large-signal equivalent circuit model that a...
This paper presents an efficient method for the estimation of jitter due to power supply noise in a ...
Switching of logic gates is often responsible for significant power supply noise. Predicting the jit...