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This project simulates a basic CMOS inverter comparator using LTspice. It demonstrates the switching behavior of a PMOS-NMOS pair when driven by a square wave input. This type of circuit is ...
Some people can’t be bothered to read the analog face of a traditional clock. Some people cannot stand the low frequency “hum ...
A new technical paper titled “Volatile and non-volatile nano-electromechanical switches fabricated in a CMOS-compatible silicon-on-insulator foundry process” was published by researchers at KTH Royal ...
Scientists found a way to control magnetism in ultra-thin materials using CrPS₄, opening the door to more compact and ...
In an era where artificial intelligence, autonomous vehicles, and high-performance computing push the boundaries of ...
Low power design has become a cornerstone of modern integrated circuit development, driven by energy efficiency demands and the challenges of scaling in nanometre technologies. Innovations in ...
Reconfigurable Flexible CMOS allows transistor-level adaptation, enabling versatile circuit functions for future-ready embedded systems.
Memory circuit techniques which combine radiation hardness with high density, high speed, and low power dissipation have been developed. CMOS/SOS circuits featuring self-compensation, self-biasing, ...
Cryogenic CMOS circuits operate at temperatures close to absolute zero and are essential in many applications such as controllers for quantum computing but also medical engineering, space technology, ...
As electronic devices become more advanced, integrating complex logic into a single component becomes essential. Enter AND6, ...
“Simulating a CMOS inverter-based comparator with LTspice - Mr-Jaymac/CMOS-Inverter-LTspice ...