Physical Address
Lahore, Punjab, Pakistan
Physical Address
Lahore, Punjab, Pakistan

An elite, hyper-rigorous 48-course curriculum structured to exclude general humanities fillers, replacing them entirely with advanced power mechanics, open-source silicon layouts, quantum hardware, and embedded computing.
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Vector Calculus & Real Analysis | Limits, partial derivatives, multiple integrals, Stokes’ & Divergence Theorems. | Calculus: Early Transcendentals (Stewart) | MATLAB |
| Classical Mechanics & Thermal Physics | Newtonian systems, Lagrangian formulation, laws of thermodynamics. | Feynman Lectures on Physics (Sears) | Physics Lab |
| Linear Circuit Theory (DC) | KVL/KCL equations, nodal & mesh analysis, transient RLC circuits. | Engineering Circuit Analysis (Hayt) | LTspice |
| Computational Thinking & OOP | Memory management, pointers, and object-oriented paradigms for systems. | C++ How to Program (Deitel) | C++23 |
| CAD Drafting & Spatial Design | Conduit routing, isometric layouts, and spatial wiring designs. | Technical Drawing with Engineering Graphics (Giesecke) | AutoCAD Elec |
| Basic Workshop & Fabrication | SMD/PCB soldering, safety parameters, manual cabinetry wiring. | Manual of Electrical Workshop Practice | NFPA 70E |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Linear Algebra & ODEs | Vector spaces, inner products, eigenvalues, systems of linear differential equations. | Advanced Engineering Mathematics (Kreyszig) | MATLAB |
| Maxwellian Electromagnetism | Gauss’s, Ampere’s, Faraday’s laws, Maxwell’s formulation, displacement current. | Electricity & Magnetism (Purcell) | COMSOL |
| AC Network Analysis | Phasors, complex power, three-phase systems, magnetic coupling, resonance. | Fundamentals of Electric Circuits (Sadiku) | NI Multisim |
| Numerical Methods for Engineers | Root-finding, matrix solvers, curve fitting, Runge-Kutta integration algorithms. | Numerical Methods for Engineers (Chapra) | Python SciPy |
| Electrical Materials & Chemistry | Semiconducting and dielectric properties, electrochemical battery cell chemistry. | Principles of Electronic Materials (Kasap) | Lithium Lab |
| Data Structures for Hardware | Pointers, lists, trees, hash maps and state search algorithms in microcontrollers. | Introduction to Algorithms (CLRS) | C++ STL |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| PDEs & Complex Variables | Fourier Series, Dirichlet conditions, boundary-value problems, residues. | Complex Variables & Applications (Churchill) | PDE Solvers |
| Quantum Hardware Foundations | Silicon qubits, superposition, superconducting Josephson junctions, cryogenics. | Quantum Computation and Information (Nielsen) | Qiskit |
| Digital Logic Design (DLD) | Boolean algebra, combinational & sequential logic, finite state machines (FSM). | Digital Design & Computer Arch. (Harris) | Verilog FPGA |
| Electronic Devices & Theory | Energy bands, semiconductor transport, p-n junctions, MOSFET and BJT mechanics. | Solid State Electronic Devices (Streetman) | TCAD Silvaco |
| Sensors & Transducers | Instrumentation amplifiers, bridge circuits, active filtering, RTDs, thermocouples. | Modern Electronic Instrumentation (Helfrick) | NI DAQ |
| Computer Arch. & Assembly | CPU datapath, pipelining, memory hierarchies, assembly instructions. | Computer Organization & Design (Patterson) | RISC-V |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Analog Microelectronics | Multi-stage BJT/MOSFET active load amplifiers, frequency response, feedback topologies. | Microelectronic Circuits (Sedra & Smith) | Cadence Virt |
| Signals & Systems | LTI continuous/discrete system properties, Fourier, Laplace, z-transforms. | Signals and Systems (Oppenheim) | MATLAB |
| EM Wave Dynamics | Plane wave propagation, skin depth, transmission lines, reflection, Smith charts. | Field & Wave Electromagnetics (David Cheng) | ANSYS HFSS |
| Embedded Microcontroller Systems | Bare-metal registers, interrupts, DMA, UART, SPI, I2C, ADC hardware. | ARM Cortex-M Architecture (Yiu) | STM32 Nucleo |
| Probability & Random Processes | PDF/CDF parameters, stationary random processes, power spectral density. | Probability and Stochastic Processes (Yates) | Stochastic Sim |
| Optoelectronics & Photonics | LED and laser diode modulation, photodetectors, fiber optic wave propagation. | Optoelectronics and Photonics (Kasap) | Lumerical |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Transformers & Magnetic Circuits | Hysteresis, core losses, multi-winding transformers, impedance transformations. | Electric Machinery Fundamentals (Chapman) | Simulink |
| Linear Control Systems | Bode, Nyquist stability, state-space representations, PID design, lead-lag. | Modern Control Engineering (Ogata) | MATLAB Control |
| Rotating Electrical Machines | Synchronous machines, induction motors, excitation curves, transient behaviors. | Electric Machinery (Fitzgerald) | Machinery Lab |
| GPU & Tensor Core Architecture | Parallel computation architectures, SIMT datapath, high-bandwidth memory. | Computer Architecture (Hennessy & Patterson) | NVIDIA CUDA |
| High-Speed PCB Design | Signal and power integrity, multilayer stackup, differential shielding, crosstalk. | Right the First Time PCB Design (Ritchey) | Altium Designer |
| Real-Time Operating Systems (RTOS) | Task schedules, semaphores, mutexes, shared memory and priorities. | MicroC/OS-III: Real-Time Kernel (Labrosse) | FreeRTOS |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Power System Analysis | Transmission matrices, per-unit conversion, Newton-Raphson flow, RLC fault parameters. | Power System Analysis & Design (Glover) | ETAP Load Flow |
| Power Electronics & Drives | SiC/GaN switches, DC-DC converters, dynamic inverters, Field-Oriented Control. | Power Electronics: Converters & Apps (Mohan) | PSIM / Simscape |
| Digital Signal Processing (DSP) | Discrete Fourier Transform (DFT), FFT algorithms, FIR/IIR filter topologies. | Digital Signal Processing (Proakis) | TI C2000 DSP |
| Electric Vehicle Powertrain | BMS algorithms, active thermal cell monitoring, traction inverter loops. | Electric and Hybrid Vehicles (Husain) | EV Powertrain |
| Substation & Earthing Design | Touch/step voltage calculations, grounding grid modeling, switchgear safety. | Substation Design & Field Guides | IEEE 80 / IEC |
| Computer Communication Networks | TCP/IP protocols, hardware switching, VLANs, industrial Ethernet parameters. | Computer Networking (Kurose & Ross) | Cisco Packet |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Power Protection & Relay Coord. | Overcurrent (50/51), differential (87), directional (67), sync check (25) parameters. | Power System Relaying (Horowitz) | ETAP Star |
| Power System Dynamics | Swing equation, transient rotor angle stability, voltage collapse, AVR controllers. | Power System Stability & Control (Kundur) | DigSILENT |
| Silicon VLSI Design & Tapout | CMOS physical routing, CTS, DRC/LVS physical verification, GDSII generation. | CMOS VLSI Design (Weste & Harris) | OpenLane / Sky130 |
| Neuromorphic Hardware | Spiking Neural Networks, non-von Neumann computing, active analog synaptic arrays. | Neuromorphic Engineering (Indiveri) | SNN Simulators |
| Applied Machine Learning | Deep architectures, backpropagation, CNNs for predictive power engineering. | Pattern Recognition & ML (Bishop) | PyTorch / Onnx |
| Capstone Project I | Feasibility reports, physical budget structures, system simulation validation. | IEEE Transaction Journals | IEEE Standards |
| Course | Academic & Mathematical Focus | Standard Textbook Reference | Lab & Standards |
|---|---|---|---|
| Smart Grids & Microgrids | Grid-forming inverters, active-reactive droop loops, battery energy storage. | Smart Grid Technology (Ekanayake) | PSCAD / IEEE1547 |
| Embedded AI & TinyML | Deep neural network optimization, quantization (INT8) for edge microcontrollers. | TinyML: ML on Arduino (Warden) | TensorFlow Lite |
| High Voltage Engineering | Dielectric breakdown parameters, impulse tests, Gas Insulated Substations. | High Voltage Engineering (Naidu) | HV Impulse Lab |
| PLC & Industrial Automation | Ladder logic, Structured Text (IEC 61131-3), HMI systems, SCADA protocols. | Programmable Logic Controllers (Petruzella) | Siemens TIA Portal |
| Renewable Energy Systems | Solar cell equivalent models, wind turbine aerodynamic controls, MPPT trackers. | Renewable and Efficient Electric Power (Masters) | PVsyst / Homer Pro |
| Capstone Project II | Final physical hardware deployment, transient tests, load commissionings. | IEEE Project Validation Guides | Hardware Build |
Standard textbooks often lack the depth required for real-world industrial systems. Below is the elite reference library mapped directly to advanced power system modeling, industrial protective relay coordination, and physical silicon design.
| Specialized Subject Area | Advanced Reference Book / Industry Manual | Key Industrial Application |
|---|---|---|
| Industrial Transformer Modeling | Transformers: Analysis, Design, and Measurement (by S.V. Kulkarni & S.A. Khaparde) | Multi-Winding & 12-Pulse Designs |
| Protective Relay Interlocking | Protective Relaying Principles and Applications (by J. Lewis Blackburn) | ANSI 25 / 67 / 46 Integration |
| Industrial Safety & Hazards | NFPA 70E: Standard for Electrical Safety in the Workplace | Arc Flash Mitigation |
| Substation Grounding Design | IEEE Std 80: Guide for Safety in AC Substation Grounding | Touch & Step Voltage Control |
| Physical Silicon Tapout | Digital Integrated Circuits: A Design Perspective (by Jan M. Rabaey) | SkyWater 130nm / OpenLane GDSII |
| Power Quality & Harmonics | Electrical Power Systems Quality (by Roger C. Dugan) | IEEE 519 Compliance in ETAP |
| Industrial Automation & SCADA | Industrial Network Security (by Joel Thomas Lomax) | IEC 61850 Substation Networks |
| High-Speed Digital Layout | High Speed Digital Design: A Handbook of Black Magic (by Howard Johnson) | Altium Signal Integrity |
| Thyristor Heating Systems | Power Electronics Handbook (by Muhammad H. Rashid) | 3-Phase SCR Regulators |
| Microgrid Integration | IEEE Std 1547: Standard for Interconnecting Distributed Resources | Grid-Forming Droop Controls |
Students must select one of the following four hyper-focused tracks in Year 4 to gain deep system-level competence. These tracks are structured to eliminate superficial overviews and build production-ready expertise.
| Specialization Track | Advanced Elective Courses | Practical Systems & Software Mastery | Key Industry Role |
|---|---|---|---|
| Track A: Industrial Power & Substation Systems |
1. Transient Short Circuit Analysis 2. Industrial Arc Flash Hazard Mitigation 3. Static Var & Harmonic Compensation | Sequence impedance modeling, CT/VT saturation curves, transient motor starting, IEEE 1584 calculations. | Lead Power Design Engineer |
| Track B: Advanced VLSI & Silicon Engineering |
1. Mixed-Signal Integrated Circuits 2. Physical Verification & Lithography 3. Low-Power Design Methodologies | SkyWater 130nm PDK custom digital cell design, DRC/LVS physical checks, GDSII layout streaming. | Silicon ASIC Architect |
| Track C: Cyber-Physical Systems & Advanced Automation |
1. Heavy Heating Industrial SCR Topologies 2. Distributed Control Systems (DCS) 3. Industrial OT Cybersecurity | Multi-zone autoclave heating circuits, Modbus/Profinet communication, hardware interlocking, IEC 62443. | Lead Systems & SCADA Engineer |
| Track D: Edge AI Hardware & Embedded Systems |
1. Custom Accelerator Microarchitecture 2. Bare-Metal Driver Development 3. Real-Time Robotics Controller Design | ONNX-to-C++ neural network compiling, DMA register configurations, high-frequency SPI bus optimization. | Lead Embedded AI Developer |