Improved series resistance model for CMOS ESD diodes

Compact diode models normally available in commercial simulators like Spectre or HSPICE do not scale the series resistance with P-N distance. The standard diode models scale with drawn area, assuming the current is vertical. However the diodes used for ESD protection in CMOS are operating as lateral...

Full description

Saved in:
Bibliographic Details
Main Authors: Kamal N.B., Kordesch A.V., Ahmad I.B.
Other Authors: 26633062900
Format: Conference paper
Published: 2023
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.uniten.dspace-30997
record_format dspace
spelling my.uniten.dspace-309972023-12-29T15:57:34Z Improved series resistance model for CMOS ESD diodes Kamal N.B. Kordesch A.V. Ahmad I.B. 26633062900 22934876900 12792216600 Electrostatic devices Electrostatic discharge Parameter extraction Semiconductor diodes Simulators Circuit designers Commercial simulators Data measurements Different slopes ESD protection ESD protection circuit I - V curve Linear relationships Model extraction P-n Diode Series resistances Diodes Compact diode models normally available in commercial simulators like Spectre or HSPICE do not scale the series resistance with P-N distance. The standard diode models scale with drawn area, assuming the current is vertical. However the diodes used for ESD protection in CMOS are operating as lateral diodes, so the resistance should scale with width, not area. This is a serious problem for circuit designers. Accurate series resistance in the diode forward region is critical especially for designing ESD protection circuits. This paper analyzes the effect of diode width and P to N (P active to N-tap active) distance on the extracted model Rs value in the standard level 3 SPICE diode model. Diodes of various widths and P-N distance were designed and fabricated in a CMOS 130 nm technology to get actual data measurements. Parameter extraction was done using the commercial BSIMProPlus model extraction software. Different diode widths and P-N distances produce forward IV curves with different slope, due to the changing series resistance. The slope represents the incremental series resistance. This study has been done with two types of diode, PN diode (P active in Nwell diode) and NP diode (N active in Pwell diode). The extracted Rs value shows a linear relationship to P-N distance and is proportional to inverse drawn width. � 2008 IEEE. Final 2023-12-29T07:57:33Z 2023-12-29T07:57:33Z 2008 Conference paper 10.1109/SMELEC.2008.4770369 2-s2.0-65949111077 https://www.scopus.com/inward/record.uri?eid=2-s2.0-65949111077&doi=10.1109%2fSMELEC.2008.4770369&partnerID=40&md5=50b5a7c1884b595a29637ce3e6ac5249 https://irepository.uniten.edu.my/handle/123456789/30997 4770369 484 486 Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic Electrostatic devices
Electrostatic discharge
Parameter extraction
Semiconductor diodes
Simulators
Circuit designers
Commercial simulators
Data measurements
Different slopes
ESD protection
ESD protection circuit
I - V curve
Linear relationships
Model extraction
P-n Diode
Series resistances
Diodes
spellingShingle Electrostatic devices
Electrostatic discharge
Parameter extraction
Semiconductor diodes
Simulators
Circuit designers
Commercial simulators
Data measurements
Different slopes
ESD protection
ESD protection circuit
I - V curve
Linear relationships
Model extraction
P-n Diode
Series resistances
Diodes
Kamal N.B.
Kordesch A.V.
Ahmad I.B.
Improved series resistance model for CMOS ESD diodes
description Compact diode models normally available in commercial simulators like Spectre or HSPICE do not scale the series resistance with P-N distance. The standard diode models scale with drawn area, assuming the current is vertical. However the diodes used for ESD protection in CMOS are operating as lateral diodes, so the resistance should scale with width, not area. This is a serious problem for circuit designers. Accurate series resistance in the diode forward region is critical especially for designing ESD protection circuits. This paper analyzes the effect of diode width and P to N (P active to N-tap active) distance on the extracted model Rs value in the standard level 3 SPICE diode model. Diodes of various widths and P-N distance were designed and fabricated in a CMOS 130 nm technology to get actual data measurements. Parameter extraction was done using the commercial BSIMProPlus model extraction software. Different diode widths and P-N distances produce forward IV curves with different slope, due to the changing series resistance. The slope represents the incremental series resistance. This study has been done with two types of diode, PN diode (P active in Nwell diode) and NP diode (N active in Pwell diode). The extracted Rs value shows a linear relationship to P-N distance and is proportional to inverse drawn width. � 2008 IEEE.
author2 26633062900
author_facet 26633062900
Kamal N.B.
Kordesch A.V.
Ahmad I.B.
format Conference paper
author Kamal N.B.
Kordesch A.V.
Ahmad I.B.
author_sort Kamal N.B.
title Improved series resistance model for CMOS ESD diodes
title_short Improved series resistance model for CMOS ESD diodes
title_full Improved series resistance model for CMOS ESD diodes
title_fullStr Improved series resistance model for CMOS ESD diodes
title_full_unstemmed Improved series resistance model for CMOS ESD diodes
title_sort improved series resistance model for cmos esd diodes
publishDate 2023
_version_ 1806426471990820864
score 13.226497