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David G. Haigh

Publication record assembled from the DBLP archive of ranked conferences.

Papers indexed

15

Venues

1

Active years

1993–2006

Best venue rank

C

Where they publish

Papers

15 indexed papers, newest first.

YearVenueTitleAuthors
2006ISCASAnalytic approach to or transformations for FET circuit synthesis. Part I. Nullator-norator tree transformations.David G. Haigh
2006ISCASAnalytic approach to or transformations for FET circuit synthesis. Part II. Nullator-norator re-pairing and cloning.David G. Haigh
2006ISCASA mathematical framework for active circuits based on port equivalence using limit variables.David G. Haigh, Thomas J. W. Clarke, Paul M. Radmore
2005ISCASRules for systematic synthesis of all-transistor analogue circuits by admittance matrix expansion.Phil Corbishley, David G. Haigh
2005ISCASSymbolic active-RC circuit synthesis by admittance matrix expansion.David G. Haigh
2005ISCASSymbolic passive-RC circuit synthesis by admittance matrix expansion.David G. Haigh, Paul M. Radmore
2004ISCASSystematic synthesis method for analogue circuits. Part I. Notation and synthesis toolbox.David G. Haigh, Paul M. Radmore
1995ISCASOn the Design of Active GaAs Multipliers.T. L. Lim, David G. Haigh, D. R. Webster
1995ISCASNovel Circuit Synthesis Technique Using Short Channel GaAs Fets Giving Reduced Intermodulation Distortion.D. R. Webster, David G. Haigh, Anthony E. Parker
1994ISCASOn Design of Analogue Multipliers using Gallium Arsenide MESFETs.R. Lecouls, David G. Haigh, Paul M. Radmore, D. R. Webster
1994ISCASOn non-Linear Multi-FET Analysis.Carlos A. Losada, David G. Haigh
1994ISCASDistortion Compensation of Multi-Mesfet Circuits.D. R. Webster, David G. Haigh, Anthony E. Parker
1994ISCASDevice Circuit Interaction in the Common Source Amplifier.D. R. Webster, Anthony E. Parker, David G. Haigh, Paul M. Radmore
1993ISCASA Systematic Method for Nonlinear Analysis of a Class of FET Circuits.Carlos A. Losada, David G. Haigh, Paul M. Radmore
1993ISCASCompensation of 2nd Harmonic Distortion in a 4-FET Linearised Transconductor Circuit.Anthony E. Parker, David G. Haigh