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researcher

P. Balasubramanian

9 papers hereh-index 201.2k citations103 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • sole author6
  • first author3

Across the 9 of 9 papers where every author was matched, so the position is known.

fields
  • cs.AR8
  • cs.ET1
same name
  • P. Balasubramanian — 12 papers, h 6
  • P. Balasubramanian — 4 papers, h 12
  • P. Balasubramanian — 2 papers, h 10
  • P. Balasubramanian — 1 paper, h 14
  • P. Balasubramanian — 1 paper

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

activity
20172021
most citedLatency Optimized Asynchronous Early Output Ripple Carry Adder based on Delay-Insensitive Dual-Rail Data Encoding

4 citations · 9 across the 4 of their papers we have counts for

collaborators
Showing 2018Show all

4 papers · 1 filter

cs.AR2018

Performance Comparison of some Synchronous Adders

P Balasubramanian

This technical note compares the performance of some synchronous adders which correspond to the following architectures: i) ripple carry adder (RCA), ii) recursive carry lookahead…

cs.AR2018

Asynchronous Ripple Carry Adder based on Area Optimized Early Output Dual-Bit Full Adder

P Balasubramanian

This technical note presents the design of a new area optimized asynchronous early output dual-bit full adder (DBFA). An asynchronous ripple carry adder (RCA) is constructed based…

cs.ET2018

Comments on "Dual-rail asynchronous logic multi-level implementation"

P Balasubramanian

In this research communication, we comment on "Dual-rail asynchronous logic multi-level implementation" [Integration, the VLSI Journal 47 (2014) 148-159] by expounding the problema…

cs.AR2018★ 2 cited

Approximate Early Output Asynchronous Adders Based on Dual-Rail Data Encoding and 4-Phase Return-to-Zero and Return-to-One Handshaking

P Balasubramanian

Approximate computing is emerging as an alternative to accurate computing due to its potential for realizing digital circuits and systems with low power dissipation, less critical…

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Not affiliated with arXiv. Researcher data from Semantic Scholar (ODC-BY) and OpenAlex.