peer-reviewedThis paper proposes a hardware modification to a standard Digital Signal Processor (DSP) that enables it to digitally control multiple DC-DC converters with non-integer switching frequency ratios. The modified DSP overcomes the drawbacks of conventional DSPs, which are attributable to large variations in the delay from when the Analog to Digital Converter (ADC) samples the output voltage to when the duty cycle is updated. By incorporating modified interrupt control logic in the DSP, the effects of a variable delay are minimized by significantly reducing the worst case sampling to duty-cycle-updating delay. Applying this DSP to a multi-rail power supply system provides the designer with the flexibility to choose arbitrary switch...
The demand for adaptive and smart power distributing is becoming very popular in the commercial powe...
In many different applications, where battery operated devices are involved, dc-dc converters with h...
This paper describes an innovative digital control architecture for low-voltage, high-current dc-dc ...
Abstract—This paper examines the use of non-integer switching frequency ratios in digitally controll...
peer-reviewedThe widespread adoption of digital control has resulted in many improvements in low po...
peer-reviewedConventional digital signal processor (DSP) based digital controllers are not specifica...
This paper describes a Digital Signal Processor (DSP) whose architecture has been purposely develope...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Switched-mode power supplies (SMPS) convert an input DC-voltage into a higher or lower output voltag...
Digital control has become ubiquitous in the field of power electronics due to the ease of implement...
The continuing trend in switched-mode power supplies clearly leads to the delivery of more output po...
This paper represents a design and implementation of a digital control of variable frequency interle...
The trend of pushing signal processing into the digital domain has penetrated into the analog-domina...
96 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.This dissertation spans severa...
In this paper, a digitally controlled multi-module DC-DC converter with fast transient response, bas...
The demand for adaptive and smart power distributing is becoming very popular in the commercial powe...
In many different applications, where battery operated devices are involved, dc-dc converters with h...
This paper describes an innovative digital control architecture for low-voltage, high-current dc-dc ...
Abstract—This paper examines the use of non-integer switching frequency ratios in digitally controll...
peer-reviewedThe widespread adoption of digital control has resulted in many improvements in low po...
peer-reviewedConventional digital signal processor (DSP) based digital controllers are not specifica...
This paper describes a Digital Signal Processor (DSP) whose architecture has been purposely develope...
Power electronics for consumer applications represents a typical example of engineering tradeoff bet...
Switched-mode power supplies (SMPS) convert an input DC-voltage into a higher or lower output voltag...
Digital control has become ubiquitous in the field of power electronics due to the ease of implement...
The continuing trend in switched-mode power supplies clearly leads to the delivery of more output po...
This paper represents a design and implementation of a digital control of variable frequency interle...
The trend of pushing signal processing into the digital domain has penetrated into the analog-domina...
96 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.This dissertation spans severa...
In this paper, a digitally controlled multi-module DC-DC converter with fast transient response, bas...
The demand for adaptive and smart power distributing is becoming very popular in the commercial powe...
In many different applications, where battery operated devices are involved, dc-dc converters with h...
This paper describes an innovative digital control architecture for low-voltage, high-current dc-dc ...