DocumentCode :
601054
Title :
A current-starved inverter-based differential amplifier design for ultra-low power applications
Author :
Wilson, William ; Chen, T. ; Selby, R.
Author_Institution :
Dept. of Electr. & Comput. Eng., Colorado State Univ., Fort Collins, CO, USA
fYear :
2013
fDate :
Feb. 27 2013-March 1 2013
Firstpage :
1
Lastpage :
4
Abstract :
As silicon feature sizes decrease, more complex circui try arrays can now be contrived on a single die. This increase in the number of on-chip devices per unit area results in increased power dissipation per unit area. In order to meet certain power and operating temperature specifications, circuit design necessitates a focus on power efficiency, which is especially important in systems employing hundreds or thousands of instances of the same device. In large arrays, a slight increase in the power efficiency of a single component is heightened by the number of instances of the device in the system. This paper proposes a fully differential, low-power current-starving inverter-based amplifier topology designed in a commercial 0.18μm process. This design achieves 46dB DC gain and a 464 kHz uni ty gain frequency with a power consumption of only 145.32nW at 700mV power supply vol tage for ultra-low power, low bandwidth applications. Higher bandwidth designs are also proposed, including a 48dB DC gain, 2.4 MHz unity-gain frequency amplifier operating at 900mV wi th only 3.74μW power consumption.
Keywords :
differential amplifiers; elemental semiconductors; invertors; low-power electronics; silicon; DC gain; circuit design necessitates; complex circuitry arrays; current-starved inverter-based differential amplifier design; frequency 2.4 MHz; frequency 464 kHz; gain 46 dB; low-power current-starving inverter-based amplifier topology; on-chip devices; operating temperature specifications; power 145.32 mW; power 3.74 muW; power consumption; power dissipation; power efficiency; silicon feature sizes; size 0.18 mum; ultralow power applications; unity-gain frequency amplifier; voltage 700 mV; voltage 900 mV; Bandwidth; Impedance; Inverters; Operational amplifiers; Power demand; Topology; Transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems (LASCAS), 2013 IEEE Fourth Latin American Symposium on
Conference_Location :
Cusco
Print_ISBN :
978-1-4673-4897-3
Type :
conf
DOI :
10.1109/LASCAS.2013.6519040
Filename :
6519040
Link To Document :
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