Nonlinear System Analysis in Bipolar Integrated Circuits.

Abstract

Since analog bipolar integrated circuits (IC's) have become important components in modern communication systems, the study of the Radio Frequency Interference (RFI) effects in bipolar IC amplifiers is an important subject for electromagnetic compatibility (EMC) engineering. The investigation has focused on using the nonlinear circuit analysis program (NCAP) to predict RF demodulation effects in broadband bipolar IC amplifiers. The audio frequency (AF) voltage at the IC amplifier output terminal caused by an amplitude modulated (AM) RF signal at the IC amplifier input terminal was calculated and compared to measured values. Two broadband IC amplifiers were investigated: (1) a cascode circuit using a CA3026 dual differential pair; (2) a unity gain voltage follower circuit using a micro A741 operational amplifier (op amp). Before using NCAP for RFI analysis, the model parameters for each bipolar junction transistor (BJT) in the integrated circuit were determined. Probe measurement techniques, manufacturer's data, and other researcher's data were used to obtain the required NCAP BJT model parameter values. An important contribution included in this effort is a complete set of NCAP BJT model parameters for most of the transistor types used in linear IC's.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 1980
Accession Number
ADA082527

Entities

People

  • James J. Whalen
  • Ta-fang Fang

Organizations

  • Syracuse University

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Bipolar Junction Transistors
  • Circuit Analysis
  • Communication Systems
  • Computer Programs
  • Electronic Circuits
  • Electronics Industry
  • Electronics Laboratories
  • Field Effect Transistors
  • Integrated Circuits
  • Measurement
  • Modules (Electronics)
  • Nonlinear Systems
  • Pnp Transistors
  • Radio Frequency
  • Semiconductors
  • Systems Engineering
  • Transistor Amplifiers

Fields of Study

  • Physics

Readers

  • Integrated Circuit Design and Technology.
  • Radio communications and signal processing.