Motivated by the demands of the integrated power system in the modern wearable electronics, this paper presents a new method of inductor-less switched-capacitor (SC) based DC-DC converter designed to produce two simultaneous boost and buck outputs by using a 4-phases logic switch mode regulation. While the existing SC converters missing their reconfigurability during needed spontaneous multi-outputs at the load ends, this work overcomes this limitation by being able to reconfigure higher gain mode at dual outputs. From an input voltage of 2.5 V, the proposed converter achieves step-up and step-down voltage conversions of 3.74 V and 1.233 V for Normal mode, and 4.872 V and 2.48 V for High mode, with the ripple variation of 20–60 mV. The prop...
This paper presents a multiple-input multiple-output (MIMO) switched-capacitor (SC) dc–dc converter ...
The traditional inductor-based buck converter has been the default design for switched-mode voltage ...
Modern electronics continues to push past boundaries of integration and functional density toward el...
This paper presents a novel inductor-less switched capacitor (SC) DC-DC converter, which generates ...
This paper presents and describes switched-capacitor DC-DC combination converters with a single inpu...
The highly efficient ultra-low-power management unit is essential in powering low-power wearable ele...
This paper demonstrates a two-stage approach for power conversion that combines the strengths of var...
Today's portable electronic devices are becoming more feature-rich and yet power hungry. Designing t...
A high efficiency all-CMOS switched-capacitor DC-DC converter (SC DC-DC) with frequency, switch size...
International audienceThe capacitive-based switching converter suffers from low efficiency, except f...
Mobile, wearable, and internet of things (IOT) electronic systems are typically powered by a single ...
As parallelism increases the number of cores integrated onto a chip, there is a clear need for fully...
Recent portable electronic technologies require the power management circuit be efficient, small and...
DC-DC converters, also known as switching voltage regulators, are one of the main components of a po...
In this paper, we introduce a merged two-stage dc-dc power converter for low-voltage power delivery....
This paper presents a multiple-input multiple-output (MIMO) switched-capacitor (SC) dc–dc converter ...
The traditional inductor-based buck converter has been the default design for switched-mode voltage ...
Modern electronics continues to push past boundaries of integration and functional density toward el...
This paper presents a novel inductor-less switched capacitor (SC) DC-DC converter, which generates ...
This paper presents and describes switched-capacitor DC-DC combination converters with a single inpu...
The highly efficient ultra-low-power management unit is essential in powering low-power wearable ele...
This paper demonstrates a two-stage approach for power conversion that combines the strengths of var...
Today's portable electronic devices are becoming more feature-rich and yet power hungry. Designing t...
A high efficiency all-CMOS switched-capacitor DC-DC converter (SC DC-DC) with frequency, switch size...
International audienceThe capacitive-based switching converter suffers from low efficiency, except f...
Mobile, wearable, and internet of things (IOT) electronic systems are typically powered by a single ...
As parallelism increases the number of cores integrated onto a chip, there is a clear need for fully...
Recent portable electronic technologies require the power management circuit be efficient, small and...
DC-DC converters, also known as switching voltage regulators, are one of the main components of a po...
In this paper, we introduce a merged two-stage dc-dc power converter for low-voltage power delivery....
This paper presents a multiple-input multiple-output (MIMO) switched-capacitor (SC) dc–dc converter ...
The traditional inductor-based buck converter has been the default design for switched-mode voltage ...
Modern electronics continues to push past boundaries of integration and functional density toward el...