This paper investigates a nonlinear phenomenon related to multisampling control of power converters. The nonlinearity, manifested as increased gain regions in static modulator transcharacteristic, is caused by the discontinuity of the modulating waveform, and can result in increased jittering of the duty-cycle. The paper proposes a statistical model for predicting the jittering impact on the duty cycle variance, analytic derivations for the jittering conditions, and an anti-jittering algorithm. A numerically obtained static modulator transcharacteristic is given to illustrate the increased gain regions. Verifications, performed on a multisampled digitally controlled buck converter, show a good match between the theoretical analysis, simulat...
This paper presents a detailed study of the clock jitter error in multibit continuous-time ΣΔ modula...
This article derives models for stationary noise propagation in multi-sampled control systems, takin...
In this paper, we explain the mechanism that causes "intermittent" instability and chaos in a curren...
This article analyzes the propagation of feedback noise in multisampled dc-dc power converters. The ...
Multi-sampled pulsewidth modulator (MS-PWM) digital control is important for reduction of control an...
This paper discusses the mechanism behind dynamic jitter accumulation in clock repeaters, considerin...
This paper provides an overview of the effects of timing jitter in audio sampling analog-to-digital ...
One of the main advantages of digital control is the ability to design more sophisticated control st...
In this paper, a method is presented to estimate the effect of transmission media on power supply in...
In the process of designing and constructing switching power converters, chaotic operations are ofte...
This paper investigates multisampled digitally controlled switched-mode power supplies with switchin...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
We analyzed the performance of a 64QAM 64-Gbaud coherent transmission with respect to the random and...
In the process of designing and constructing switching power converters, chaotic operations are ofte...
Digital-to-analog converters (DACs) whose time base is affected by deterministic jitter are dealt wi...
This paper presents a detailed study of the clock jitter error in multibit continuous-time ΣΔ modula...
This article derives models for stationary noise propagation in multi-sampled control systems, takin...
In this paper, we explain the mechanism that causes "intermittent" instability and chaos in a curren...
This article analyzes the propagation of feedback noise in multisampled dc-dc power converters. The ...
Multi-sampled pulsewidth modulator (MS-PWM) digital control is important for reduction of control an...
This paper discusses the mechanism behind dynamic jitter accumulation in clock repeaters, considerin...
This paper provides an overview of the effects of timing jitter in audio sampling analog-to-digital ...
One of the main advantages of digital control is the ability to design more sophisticated control st...
In this paper, a method is presented to estimate the effect of transmission media on power supply in...
In the process of designing and constructing switching power converters, chaotic operations are ofte...
This paper investigates multisampled digitally controlled switched-mode power supplies with switchin...
An efficient methodology for estimation of power supply induced jitter (PSIJ) in high-speed designs ...
We analyzed the performance of a 64QAM 64-Gbaud coherent transmission with respect to the random and...
In the process of designing and constructing switching power converters, chaotic operations are ofte...
Digital-to-analog converters (DACs) whose time base is affected by deterministic jitter are dealt wi...
This paper presents a detailed study of the clock jitter error in multibit continuous-time ΣΔ modula...
This article derives models for stationary noise propagation in multi-sampled control systems, takin...
In this paper, we explain the mechanism that causes "intermittent" instability and chaos in a curren...