1987IEEE Transactions on Computer-Aided Design of Integrated Circuits and SystemsRequires access

Switch-Level Logic Simulation of Digital Bipolar Circuits

I.N. Hajj, Imad N. Saab

Open publisher page 15 citations

Abstract

This paper describes a new approach for logic simulation of bipolar digital circuits. The approach is based on the development of a switch-level model of the transistor and on representing the circuit by a switch-graph. The method automatically partitions the circuit into subcircuits, and symbolic logic expressions are then generated which represent the logic states of the nodes in terms of subcircuit inputs and initial conditions. The method thus extracts a gate-level functional description of the circuit from transistor netlist or layout. Logic and fault simulation can then be performed using either extracted logic expressions or the switch-graph model. The approach has been implemented in a computer program for logic simulation of common-mode logic (CML) bipolar circuit designs.

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What this paper is about

This paper describes a new approach for logic simulation of bipolar digital circuits. The approach is based on the development of a switch-level model of the transistor and on representing the circuit by a switch-graph. The method automatically partitions the circuit into subcircuits, and symbolic logic expressions are then generated which represent the logic states of the nodes in terms of subcircuit inputs and initial conditions. The method thus extracts a gate-level functional description of the circuit from transistor netlist or layout. Logic and fault simulation can then be performed using either extracted logic expressions or the switch-graph model. The approach has been implemented in a computer program for logic simulation of common-mode logic (CML) bipolar circuit designs.

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Available abstract

This paper describes a new approach for logic simulation of bipolar digital circuits. The approach is based on the development of a switch-level model of the transistor and on representing the circuit by a switch-graph. The method automatically partitions the circuit into subcircuits, and symbolic logic expressions are then generated which represent the logic states of the nodes in terms of subcircuit inputs and initial conditions. The method thus extracts a gate-level functional description of the circuit from transistor netlist or layout. Logic and fault simulation can then be performed using either extracted logic expressions or the switch-graph model. The approach has been implemented in a computer program for logic simulation of common-mode logic (CML) bipolar circuit designs.

Key concepts: Netlist, Resistor–transistor logic, Logic family, Digital electronics, Pass transistor logic, Computer science, Logic gate, Register-transfer level

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