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Programmes

Eleven series, one method

Each series is a track you can follow end to end. They are designed to be taken in any order, but the numbering is the order in which the ideas compound.

01
Beginner

Electronics 101

Electronics from first principles to working intuition. Every result is derived on screen rather than asserted, so the formulas end up meaning something.

10 topics

02
Intermediate

RF 101

Why 50 ohms, what a Smith chart is actually for, and how to read S-parameters without guessing. The RF groundwork every other track leans on.

14 topics

03
Intermediate

Antenna 101

From why a changing current radiates at all, through the half-wave dipole and 73 ohms, to arrays and the array factor. Patterns are computed, never drawn freehand.

14 topics

04
Intermediate

HFSS 101

Hands-on Ansys HFSS, including the parts tutorials skip: what a boundary really does, why your mesh is lying, and how to tell a converged result from a pretty one.

15 topics

05
Advanced

ADS / RF Simulation 101

Keysight ADS for RF circuit work — matching networks, amplifiers, mixers, and the nonlinear simulations that separate a working design from a hopeful one.

12 topics

06
Intermediate

PCB 101

Practical PCB engineering with the numbers attached — stack-ups, controlled impedance, return paths, and which of the rules you were taught are actually true.

11 topics

07
Advanced

EMI/EMC 101

Electromagnetic compatibility as an engineering problem rather than a checklist — where the emissions come from, what shielding really buys, and how to debug a failed scan.

11 topics

08
Intermediate

Semiconductor 101

Semiconductor and IC technology end to end — the physics of the junction, the MOSFET, and the fabrication steps that turn a wafer into a working die.

12 topics

09
Advanced

RFIC / MMIC 101

Integrated RF — LNAs, power amplifiers, mixers, VCOs and PLLs — and the process choices (GaAs, GaN, SiGe, CMOS) that decide what is even possible.

15 topics

10
Intermediate

Embedded Hardware 101

Embedded from the hardware side — buses on a scope, ADC front-ends that actually settle, RF interfaces, and debugging a board that will not enumerate.

11 topics

11
Advanced

AI for Electronics

Where machine learning genuinely helps an electronics engineer — surrogate models for EM simulation, optimisation loops, and the Python to run them.

8 topics