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Characterisation and modeling of mismatch in MOS transistors for precision analog design

IEEE Journal of Solid-State Circuits · 1986 · Vol. 21(6) · pp. 1057–1066
K.R. LakshmikumarR.A. HadawayM.A. Copeland

Abstract

A characterization methodology is presented that accurately predicts the mismatch in drain current over a wide operating range using a minimum set of measured data. The physical causes of mismatch are discussed in detail for both p- and n-channel devices. Statistical methods are used to develop analytical models that relate the mismatch to the device dimensions. It is shown that these models are valid for small-geometry devices only. Extensive experimental data from a 3-/spl mu/m CMOS process are used to verify the models. The application of the transistor matching studies to the design of a high-performance digital-to-analog converter (DAC) is discussed. A circuit design methodology is presented that highlights the close interaction between the circuit yield and the matching accuracy of devices. It has been possible to achieve a circuit yield of greater than 97% as a result of the knowledge generated regarding the matching behavior of transistors and due to the systematic design approach.

Advancements in Semiconductor Devices and Circuit DesignAnalog and Mixed-Signal Circuit DesignLow-power high-performance VLSI designElectronic engineeringTransistorMatching (statistics)Computer scienceCircuit designCMOSSet (abstract data type)Process (computing)Transistor modelElectrical engineering

Funding

  • Indian Institute of Science
Citations
677
FWCI
8.26
field-weighted impact
References
22
Percentile
98%
vs. same field & year
Citations per year
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References
All-MOS charge-redistribution analog-to-digital conversion techniques. II
IEEE Journal of Solid-State Circuits · 1975 · 656 citations
All-MOS charge redistribution analog-to-digital conversion techniques. I
IEEE Journal of Solid-State Circuits · 1975 · 596 citations
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