2004•Unpublished venueRequires access

A new Schmitt trigger circuit in a 0.13 μm 1/2.5 V CMOS process to receive 3.3 V input signals

Shih‐Lun Chen, Ming‐Dou Ker

Open publisher page 4 citations

Abstract

A new Schmitt trigger circuit, which consists of low-voltage devices, can receive the high-voltage signal without gate-oxide reliability problem, is proposed. The new proposed circuit, which can operate in a 3.3 V signal environment without suffering high-voltage gate-oxide stress, has been fabricated in a 0.13 /spl mu/m 1/2.5 V CMOS process. The experimental results show that the measured transition threshold voltages of the new proposed Schmitt trigger circuit are about 1 V and 2.5 V, respectively. The proposed Schmitt trigger circuit is suitable for mixed-voltage I/O interfaces circuit to receive the input signals and reject the input noise.

About this research paper

What this paper is about

A new Schmitt trigger circuit, which consists of low-voltage devices, can receive the high-voltage signal without gate-oxide reliability problem, is proposed. The new proposed circuit, which can operate in a 3.3 V signal environment without suffering high-voltage gate-oxide stress, has been fabricated in a 0.13 /spl mu/m 1/2.5 V CMOS process. The experimental results show that the measured transition threshold voltages of the new proposed Schmitt trigger circuit are about 1 V and 2.5 V, respectively. The proposed Schmitt trigger circuit is suitable for mixed-voltage I/O interfaces circuit to receive the input signals and reject the input noise.

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Available abstract

A new Schmitt trigger circuit, which consists of low-voltage devices, can receive the high-voltage signal without gate-oxide reliability problem, is proposed. The new proposed circuit, which can operate in a 3.3 V signal environment without suffering high-voltage gate-oxide stress, has been fabricated in a 0.13 /spl mu/m 1/2.5 V CMOS process. The experimental results show that the measured transition threshold voltages of the new proposed Schmitt trigger circuit are about 1 V and 2.5 V, respectively. The proposed Schmitt trigger circuit is suitable for mixed-voltage I/O interfaces circuit to receive the input signals and reject the input noise.

Key concepts: Schmitt trigger, Voltage, CMOS, SIGNAL (programming language), Electrical engineering, Noise (video), Electronic circuit, Process (computing)

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