We introduce a fully integrated step-down self-oscillating switched-capacitor DC-DC converter that delivers near-threshold (NT) output voltages. The converter is built in 28 nm UTBB FD-SOI and occupies 0.0104 mm2. Back-gate biasing is utilized to increase the load power range. Measurements show a peak efficiency of 87%, self start-up capability, and a minimum efficiency of 75% for 79 nW to 200 μW (ideal) loads. Measurements with an off-chip NT processor load also show high efficiency. The converter's large load power range and high efficiency are a good fit for energy-constrained NT processors
There is an emerging class of energy-constrained adaptive processors that operate primarily at near-...
In recent years, significant progress has been made on switched-capacitor DC-DC converters as they e...
The integration of DC-DC converter in standard CMOS process faces challenges from the low transistor...
We introduce a fully integrated step-down self-oscillating switched-capacitor DC-DC converter that d...
The importance of energy-constrained processors continues to grow especially for ultra-portable sens...
The importance of energy-constrained processors continues to grow especially for ultra-portable sens...
Two techniques, called Stage Outphasing and Multiphase Soft-Charging, that significantly increase th...
This paper outlines an integrated switched-capacitor (SC)-based cold-start circuit for dc-dc energy ...
Wireless Sensor Nodes will be the driving force to push the IoT into new applicable domains. Efficie...
This paper presents a fully integrated step-up switched-capacitor DC-DC converter for energy harvest...
In this paper, we propose a new scheme to directly power a 4.9-5.6GHz LC oscillator from a recursive...
This paper presents a fully integrated, reconfigurable switched-capacitor based step-up DC-DC conver...
This thesis presents a fully integrated switched capacitor DC/DC converter for System on Chip applic...
As parallelism increases the number of cores integrated onto a chip, there is a clear need for fully...
Recent advances in low-power circuits have enabled mm-scale wireless systems [1] for wireless sensor...
There is an emerging class of energy-constrained adaptive processors that operate primarily at near-...
In recent years, significant progress has been made on switched-capacitor DC-DC converters as they e...
The integration of DC-DC converter in standard CMOS process faces challenges from the low transistor...
We introduce a fully integrated step-down self-oscillating switched-capacitor DC-DC converter that d...
The importance of energy-constrained processors continues to grow especially for ultra-portable sens...
The importance of energy-constrained processors continues to grow especially for ultra-portable sens...
Two techniques, called Stage Outphasing and Multiphase Soft-Charging, that significantly increase th...
This paper outlines an integrated switched-capacitor (SC)-based cold-start circuit for dc-dc energy ...
Wireless Sensor Nodes will be the driving force to push the IoT into new applicable domains. Efficie...
This paper presents a fully integrated step-up switched-capacitor DC-DC converter for energy harvest...
In this paper, we propose a new scheme to directly power a 4.9-5.6GHz LC oscillator from a recursive...
This paper presents a fully integrated, reconfigurable switched-capacitor based step-up DC-DC conver...
This thesis presents a fully integrated switched capacitor DC/DC converter for System on Chip applic...
As parallelism increases the number of cores integrated onto a chip, there is a clear need for fully...
Recent advances in low-power circuits have enabled mm-scale wireless systems [1] for wireless sensor...
There is an emerging class of energy-constrained adaptive processors that operate primarily at near-...
In recent years, significant progress has been made on switched-capacitor DC-DC converters as they e...
The integration of DC-DC converter in standard CMOS process faces challenges from the low transistor...