Publication detail

Bulk-driven floating-gate and bulk-driven quasi-floating-gate techniques for low-voltage low-power analog circuits design

KHATEB, F.

Original Title

Bulk-driven floating-gate and bulk-driven quasi-floating-gate techniques for low-voltage low-power analog circuits design

Type

journal article in Web of Science

Language

English

Original Abstract

In this paper, novel non-conventional techniques, named by the author of this paper "bulk-driven floating-gate (BD-FG)" MOS transistor (MOST) and "bulk-driven quasi-floating-gate (BD-QFG) MOST" for low-voltage (LV) low-power (LP) analog circuit design are presented. These novel techniques appear as a good solution to merge the advantages of floating-gate (FG) and quasi-floating-gate (QFG) with the advantages of bulk-driven (BD) technique and suppress their disadvantages. Consequently, the transconductance and transient frequency of BD-FG and BD-QFG MOSTs approach the conventional gate driven (GD) MOST values. Furthermore, a novel LV LP class AB second generation current conveyor based on BD-FG MOST is presented in this paper as an example. The supply voltage is only +-0.4 V with a rail-to-rail voltage swing capability and total power consumption of mere 10 uW. PSpice simulation results using the 0.18 um P-well CMOS technology are included to confirm the attractive properties of these new techniques.

Keywords

Floating-gate MOST; Quasi-floating-gate MOST, Bulk-driven MOST; Low-voltage low-power MOST; CCII.

Authors

KHATEB, F.

RIV year

2014

Released

3. 1. 2014

Publisher

Urban and Fischer

Location

Germany

ISBN

1434-8411

Periodical

AEU - International Journal of Electronics and Communications

Year of study

2014 (68)

Number

1, IF: 0.696

State

Federal Republic of Germany

Pages from

64

Pages to

72

Pages count

9

URL

BibTex

@article{BUT101032,
  author="Fabian {Khateb}",
  title="Bulk-driven floating-gate and bulk-driven quasi-floating-gate techniques for low-voltage low-power analog circuits design",
  journal="AEU - International Journal of Electronics and Communications",
  year="2014",
  volume="2014 (68)",
  number="1, IF: 0.696",
  pages="64--72",
  doi="10.1016/j.aeue.2013.08.019",
  issn="1434-8411",
  url="http://dx.doi.org/10.1016/j.aeue.2013.08.019"
}