We present the design of a nanopower sub-threshold CMOS voltage reference and the measurements performed over a set of more than 70 samples fabricated in 0.18 μm CMOS technology. The circuit provides a temperature-compensated reference voltage of 259 mV with an extremely low line sensitivity of only 0.065% at the price of a less effective temperature compensation. The voltage reference properly works with a supply voltage down to 0.6 V and with a power dissipation of only 22.3 nW. Very similar performance has been obtained with and without the inclusion of the start-up circuit
A sub-1-V CMOS bandgap voltage reference requiring no low threshold voltage device is introduced in ...
A low voltage low power voltage reference for biomedical and embedded applications is proposed. The ...
The development of low power integrated system is expected to lead to the expansion of next-generati...
We present the design of a nanopower sub-threshold CMOS voltage reference and the measurements perfo...
An extreme low power voltage reference generator operating with a supply voltage ranging from 0.9 to...
A sub-1-V CMOS voltage reference, which takes advantage of summing the gate-source voltages of two N...
This paper presents an ultra-low-power voltage reference designed in 180 nm CMOS technology. To achi...
We propose a subthreshold CMOS voltage reference operating with a minimum supply voltage of only 150...
A low-power CMOS current reference circuit was developed using a 0.35-μm standard CMOS process techn...
A 4-transistor (4-T) CMOS voltage reference with two high PSRR output voltages is presented. The out...
Abstract In this paper, a nano-watt resistorless subthreshold voltage reference with high-power supp...
Abstract An ultra‐low power, low temperature coefficient voltage reference generator used for nanowa...
A 192 pA current reference is proposed for ultra-low-power applications. The sub-threshold design ba...
We present an ultra-low-power fractional bandgap-based voltage reference and a unique method of gene...
Abstract-A CMOS voltage reference, which is II. CIRCUIT DESIGN based on the same magnitude of gate-s...
A sub-1-V CMOS bandgap voltage reference requiring no low threshold voltage device is introduced in ...
A low voltage low power voltage reference for biomedical and embedded applications is proposed. The ...
The development of low power integrated system is expected to lead to the expansion of next-generati...
We present the design of a nanopower sub-threshold CMOS voltage reference and the measurements perfo...
An extreme low power voltage reference generator operating with a supply voltage ranging from 0.9 to...
A sub-1-V CMOS voltage reference, which takes advantage of summing the gate-source voltages of two N...
This paper presents an ultra-low-power voltage reference designed in 180 nm CMOS technology. To achi...
We propose a subthreshold CMOS voltage reference operating with a minimum supply voltage of only 150...
A low-power CMOS current reference circuit was developed using a 0.35-μm standard CMOS process techn...
A 4-transistor (4-T) CMOS voltage reference with two high PSRR output voltages is presented. The out...
Abstract In this paper, a nano-watt resistorless subthreshold voltage reference with high-power supp...
Abstract An ultra‐low power, low temperature coefficient voltage reference generator used for nanowa...
A 192 pA current reference is proposed for ultra-low-power applications. The sub-threshold design ba...
We present an ultra-low-power fractional bandgap-based voltage reference and a unique method of gene...
Abstract-A CMOS voltage reference, which is II. CIRCUIT DESIGN based on the same magnitude of gate-s...
A sub-1-V CMOS bandgap voltage reference requiring no low threshold voltage device is introduced in ...
A low voltage low power voltage reference for biomedical and embedded applications is proposed. The ...
The development of low power integrated system is expected to lead to the expansion of next-generati...