In this paper, an investigation of the efficiency of fully on-chip DC-DC step-up converter realized in a standard 130 nm CMOS technology is presented. The converter has been designed for regulated output voltage of 1.2 V with an on-chip inductor and an output capacitor. The obtained results show that the proposed on-chip converter can achieve the efficiency up to 98% and the output power up to 6 mW. Converter features proposed inductor and its ideal equivalent with series resistance. The performed analysis investigates possibilities for the farther improvement focused on the maximum efficiency and output power
A monolithic DC-AC converter is realized in a 130 nm 1.2V CMOS technology using a Class-D half-bridg...
The increasing number of efficient voltage conversions realized in small volumes in many application...
Monolithic integration of electronic systems is one of the major techniques to reduce cost, size and...
This paper presents the efficiency investigation of a fully on-chip DC-DC step-up converter realized...
In this paper, an investigation of the effi-ciency of fully on-chip DC-DC step-up converter r...
This thesis presents the design of a step-up DC-DC converter with on-chip cou-pled inductors. Circui...
Rapidly increasing input current of microprocessors resulted in rising cost and motherboard real est...
A fully integrated capacitive DC-DC converter reporting an output power of 1.65W in a standard 90nm ...
This dissertation pertains to the design of on-chip inductors for high-frequency fullyintegrated DC...
International audienceThe full integration of DC-DC converters offers great promise for dramatic red...
In this paper we report the design, characterization and verification of a novel on-die ultra-low vo...
A design methodology for monolithic integration of inductor based DC-DC converters is proposed in th...
This paper presents a study on resonant converter topologies targeted for CMOS integration. Design m...
A fully-integrated series resonant class DE inverter is realized in a 130 nm 1.2 V CMOS technology w...
This paper presents a fully integrated, reconfigurable switched-capacitor based step-up DC-DC conver...
A monolithic DC-AC converter is realized in a 130 nm 1.2V CMOS technology using a Class-D half-bridg...
The increasing number of efficient voltage conversions realized in small volumes in many application...
Monolithic integration of electronic systems is one of the major techniques to reduce cost, size and...
This paper presents the efficiency investigation of a fully on-chip DC-DC step-up converter realized...
In this paper, an investigation of the effi-ciency of fully on-chip DC-DC step-up converter r...
This thesis presents the design of a step-up DC-DC converter with on-chip cou-pled inductors. Circui...
Rapidly increasing input current of microprocessors resulted in rising cost and motherboard real est...
A fully integrated capacitive DC-DC converter reporting an output power of 1.65W in a standard 90nm ...
This dissertation pertains to the design of on-chip inductors for high-frequency fullyintegrated DC...
International audienceThe full integration of DC-DC converters offers great promise for dramatic red...
In this paper we report the design, characterization and verification of a novel on-die ultra-low vo...
A design methodology for monolithic integration of inductor based DC-DC converters is proposed in th...
This paper presents a study on resonant converter topologies targeted for CMOS integration. Design m...
A fully-integrated series resonant class DE inverter is realized in a 130 nm 1.2 V CMOS technology w...
This paper presents a fully integrated, reconfigurable switched-capacitor based step-up DC-DC conver...
A monolithic DC-AC converter is realized in a 130 nm 1.2V CMOS technology using a Class-D half-bridg...
The increasing number of efficient voltage conversions realized in small volumes in many application...
Monolithic integration of electronic systems is one of the major techniques to reduce cost, size and...