dc.contributor.author |
Nishad, A.K. |
|
dc.contributor.author |
Sharma, R. |
|
dc.date.accessioned |
2016-11-16T09:25:06Z |
|
dc.date.available |
2016-11-16T09:25:06Z |
|
dc.date.issued |
2016-11-16 |
|
dc.identifier.uri |
http://localhost:8080/xmlui/handle/123456789/354 |
|
dc.description.abstract |
In this paper, we report the performance improvement obtained in side-contact multilayer Graphene nanoribbon (SC-MLGNR) interconnects by using intercalated AsF5. We compare it with that of traditional Cu interconnects as well as undoped (or neutral) SC-MLGNRs for both local/intermediate and global interconnect applications, at 6 nm technology node. We present a qualitative analysis of the effect of intercalation doping on the equivalent circuit parameters of SC-MLGNRs using a driver-load interconnect equivalent circuit. For our analysis, we have considered three interconnect performance metrics: delay, energy-delay product (EDP), and bandwidth density (BWD). We observe that for global interconnects of length 1000 μm the EDP of optimized AsF5-intercalated SC-MLGNRs reduces by 50% while its BWD increases by 1.9× when compared to Cu. Similarly, for interconnect lengths of 500 μm (local/intermediate level interconnects), improvement in EDP and BWD has been 60.13% and 2.4×, respectively as compared to Cu. In our analysis, interconnect thickness is optimized to obtain the lowest delay and EDP along with the highest bandwidth density for both local/intermediate and global interconnects. |
en_US |
dc.language.iso |
en_US |
en_US |
dc.subject |
Bandwidth |
en_US |
dc.subject |
Electric network analysis |
en_US |
dc.subject |
Equivalent circuits |
en_US |
dc.subject |
Graphene |
en_US |
dc.subject |
Multilayers |
en_US |
dc.subject |
Nanoribbons |
en_US |
dc.subject |
Network components Energy delay product |
en_US |
dc.subject |
Equivalent circuit parameter |
en_US |
dc.subject |
Graphene nanoribbons |
en_US |
dc.subject |
Interconnect performance |
en_US |
dc.subject |
Interconnect thickness |
en_US |
dc.subject |
On-chip interconnects |
en_US |
dc.subject |
Performance improvement |
en_US |
dc.subject |
Speedup |
en_US |
dc.subject |
Integrated circuit interconnects |
en_US |
dc.title |
Performance improvement in side contact multilayer graphene nanoribbon interconnects using intercalated doping |
en_US |
dc.type |
Article |
en_US |