What you'll learn:
- Signal Integrity: Ensures clean, accurate signals in designs.
- Time/Frequency Domains signal analysis and simulations.
- S-Parameters for Signal Integrity Applications
- Impedance, Resistance, Capacitance, Inductance: Critical for interconnect design and SPICE modeling.
- Ideal and Lossy Transmission Lines: Analyzes reflections, return paths, rise-time degradation and loss mechanisms
- Cross Talk: Studies NEXT, FEXT, and mitigation techniques.
- RF and Microwave Network Analysis - Scattering Matrix, Transmission (ABCD) Matrix, and Modal Analysis
- Impedance Matching and Tuning: Stub Tuning, Transformer tuning, Tapered Lines and their Simulations.
- RF Components Theory and Simulations: Resonators, Combiners , Filters, and Mixers etc.
- LNA (Low noise amplifiers): Design and Simulations
This Course is a Live !!! Course of unlimited hours where I am going to put at least 1 video every Sunday in any of the section (You will get notification on your mail id as soon as the video is live), I have Divided this Course into 2 Different Sections Under Each Section You will find Multiple Lessons:
Section 1: Signal Integrity Basics and Simulations
High Speed Signals - What is Signal Integrity?
What is a PCB Transmission Line?
What is Impedance?
Return Current - What is Return Current in a PCB?
Return Current Path - Can Power Planes be used as Return Path?
What is Single Ended Impedance?
What is Differential Impedance and Differential Signals ?
What is LVDS Signaling Scheme? Working of LVDS and IBIS Simulations
LVDS Simulation and Measurements
What is Eye Diagram in Digital Communication?
What is an EYE Mask? Create an Eye Mask Using Datasheets
What Is Crosstalk? Near End and Far End Crosstalk (NEXT & FEXT)
What is Reflection in a Transmission Line? Simulation of Reflection in DDR2
What are Even and Odd modes? Estimate the Even and Odd Mode Impedances
Section 2: RF and Microwave Designs and Simulations
Single Diode Mixer Design - 4 Videos Series followed by Creating diode model and Mixer Model using AWR.