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
Abstract
Shih‐Lun Chen, Ming‐Dou Ker
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.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
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)