A MATLAB-based tool to accelerate amplifier design, now support 22nm/40nm/65nm/180nm.
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Updated
Apr 13, 2026 - MATLAB
A MATLAB-based tool to accelerate amplifier design, now support 22nm/40nm/65nm/180nm.
Learn to design and build an 4 channel LM35 temperature sensor chip Signal conditioner amplifier circuit based on the popular opamp LM324 using Kicad 6.0.The board can be used to monitor temperature from 4 different sources at the same time and can be used for building your own data acquisition system.
This repository contains the files (schematic, test bench, simulation results) from the course Mixed-Signal Design(undergrad)
Design of a common source amplifier using Skywater sky130 technology
Design of Differential Input Single Ended Output Single Stage Amplifier
Design of a two-stage microwave balanced amplifier implemented with microstrip technology
LTSpice simulations of basic Operational Amplifier circuits including Inverting, Non-Inverting, Summing, Difference, Integrator, and Differentiator amplifiers with waveform analysis.
Optimization of CMOS-based amplifier circuit that converges to the optimal solution in very less time. Differential evolution is used in this optimization.
Hey! This code provides a set of tools to characterize Amplifiers in emisor or base common configuration, this is done by providing it a set of parameters (VCC, R, HF). And it's able to use 1, 2 or 3 resistors in the voltage divisor.
Analog audio preamp featuring a JFET saturation stage, active Baxandall tone control, and op-amp signal conditioning. Documented at the schematic and LTspice simulation level, with design intent, gain staging, and distortion behavior analysis.
Hardware design and documentation for a Tri-Mode Capable Audio Power Amplifier (Stereo, Mono, Bridge). Developed for the EN2111 module at the University of Moratuwa.
BJT lab data analysis & common-emitter amplifier design toolkit (β, gm, r_be, Early voltage, E24 component sizing) — AGH WFiIS analog electronics lab (A-8/P-4)
Class AB (headphone) amplifier for FlexRadio project.
Designed an ultra-low-power Miller OTA in 90-nm GPDK using 500 mV supply. Used bulk-driven input pair and level shifters for rail-to-rail operation. Achieved 40 dB gain, 127.4 kHz UGF, 70.47° phase margin, 0.04–0.486 V swing, and 2.31 µW power.
Electronics I course project at SUT -- Multi-stage BJT amplifier designed a simulated.
Analog Electronics Project for Advanced Instrumentation at Imperial College London
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