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  4. Abrupt NMOS Inverter Based on Punch-Through Impact Ionization With Hysteresis in the Voltage Transfer Characteristics
 
research article

Abrupt NMOS Inverter Based on Punch-Through Impact Ionization With Hysteresis in the Voltage Transfer Characteristics

Moselund, K. E.  
•
Bouvet, D.  
•
Ionescu, A. M.  
2008
IEEE Electron Device Letters

In this letter, an abrupt NMOS inverter based on punch-through impact ionization is demonstrated for the first time. The slopes for both the rising and the falling edge of the ID(V GS) device characteristics are less than 10 mV/decade steep which translates into a gain of -80 for the inverter. In addition, the voltage transfer characteristic shows a hysteresis whose width depends on the biasing. The output swing is approximately twice the input voltage swing, which assures proper cascadability of logic gates.

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Type
research article
DOI
10.1109/LED.2008.2001632
Web of Science ID

WOS:000259573400028

Author(s)
Moselund, K. E.  
Bouvet, D.  
Ionescu, A. M.  
Date Issued

2008

Publisher

Institute of Electrical and Electronics Engineers

Published in
IEEE Electron Device Letters
Volume

29

Issue

9

Start page

1059

End page

1061

Subjects

MOS integrated circuits

•

impact ionisation

•

invertors

•

switching convertors

•

NMOS inverter

•

biasing

•

cascadability

•

hysteresis

•

input voltage

•

logic gates

•

punch-through impact ionization

•

voltage transfer characteristic

•

Avalanche breakdown

•

impact ionization

•

inverters

URL

URL

internal-pdf://Abrupt NMOS Inverter Based on Punch-Through Im-1186289408/Abrupt NMOS Inverter Based on Punch-Through Impact Ionization With Hysteresis in the Voltage Transfer Characteristics.PDF
Editorial or Peer reviewed

REVIEWED

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Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/45154
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