DocumentCode
1094664
Title
ESD protection design to overcome internal damage on interface circuits of a CMOS IC with multiple separated power pins
Author
Ker, Ming-Dou ; Chang, Chyh-Yih ; Chang, Yi-Shu
Author_Institution
Nanoelectronics & Gigascale Syst. Lab., Nat. Chiao-Tung Univ., Taiwan, Taiwan
Volume
27
Issue
3
fYear
2004
Firstpage
445
Lastpage
451
Abstract
This paper reports a real case of electrostatic discharge (ESD) improvement on a complementary metal oxide semiconductor integrated circuit (IC) product with multiple separated power pins. After ESD stresses, the internal damage have been found to locate at the interface circuit connecting between different circuit blocks with different power supplies. Some ESD designs have been implemented to rescue this IC product to meet the required ESD specification. By adding only an extra ESD clamp N-channel metal oxide semiconductor with a channel width of 10 μm between the interface node and the ground line, the human-body-model (HBM) ESD level of this IC product can be improved from the original 0.5 to 3 kV. By connecting the separated vertical sync signal (VSS) power lines through the ESD conduction circuit to a common VSS ESD bus realized by the seal ring, the HBM ESD level of the enhanced version IC product with 12 separated power supplies pairs can be significantly improved from original 1 kV up to > 5 kV, without the noise coupling issue.
Keywords
CMOS integrated circuits; electrostatic discharge; integrated circuit design; integrated circuit noise; integrated circuit reliability; power supply circuits; 0.5 to 3 KV; 1 to 5 kV; 10 micron; ESD level; ESD protection circuit; ESD specification; ESD stresses; IC product; N-channel metal oxide semiconductor; VSS ESD bus; circuit blocks; complementary metal oxide semiconductor integrated circuit; conduction circuit; electrostatic discharge improvement; ground line; human body model; interface circuits; interface node; internal damage; multiple separated power pins; noise coupling; power supplies; seal ring; vertical sync signal; CMOS integrated circuits; Clamps; Electrostatic discharge; Integrated circuit noise; Internal stresses; Joining processes; Pins; Power supplies; Protection; Variable structure systems; ESD; ESD bus; ESD protection circuit; Electrostatic discharge; internal damage;
fLanguage
English
Journal_Title
Components and Packaging Technologies, IEEE Transactions on
Publisher
ieee
ISSN
1521-3331
Type
jour
DOI
10.1109/TCAPT.2004.831762
Filename
1331538
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