This course empowers learners to analyze, design, and evaluate RF and microwave systems using S-parameter techniques with some focus to 5G radio and microwave equipment. Through structured theory, interactive visualization, and practical tool-based sessions, participants will interpret the behavior of S-parameters, design impedance matching networks, and simulate wideband performance using professional-grade tools such as Smith Chart Online, Qorvo Match Calc, and CST Studio Suite. The course progressively develops competence from essential principles to advanced wideband considerations, ensuring a clear understanding of how reflection, transmission, stability, and gain metrics define real-world RF performance.

RF/Microwave Design - S-parameter Analysis


位教师:Gleb Marchenko
访问权限由 New York State Department of Labor 提供
您将学到什么
Interpret S-parameters to evaluate reflection, transmission, and impedance behavior in RF systems.
Design and optimize impedance matching networks using analytical and software-based tools.
Simulate and assess wideband S-parameter performance for 5G/Microwave equipment.
您将获得的技能
- Electronic Systems
- Wireless Networks
- Electrical Engineering
- Data Management
- Technical Design
- Design
- Telecommunications
- Performance Testing
- Engineering, Scientific, and Technical Instruments
- Network Analysis
- Electronics Engineering
- Simulation and Simulation Software
- Design and Product
- Electronic Components
- Grant Applications
- Engineering Analysis
要了解的详细信息

添加到您的领英档案
1 项作业
December 2025
了解顶级公司的员工如何掌握热门技能

该课程共有3个模块
This module enables learners to analyze the fundamental concepts behind S-parameters and their physical interpretation in RF/microwave systems. Participants will differentiate between various network representations and interpret how S-parameters describe signal reflection and transmission.
涵盖的内容
4个视频2篇阅读材料1次同伴评审
This module bridges theoretical understanding with practical RF design workflows using S-parameters. Learners will design and evaluate impedance matching networks and assess system stability and gain using key performance metrics. By the end, they will integrate analytical and design perspectives in a unified RF workflow.
涵盖的内容
3个视频1篇阅读材料1次同伴评审
This module integrates advanced concepts such as wideband frequency dependence, simulation workflows, and system-level optimization. Learners will analyze dispersion effects and synthesize insights from simulation and measurement. By the end, they will evaluate real-world 5G design trade-offs using both theoretical and simulated data.
涵盖的内容
4个视频1篇阅读材料1个作业2次同伴评审
提供方
人们为什么选择 Coursera 来帮助自己实现职业发展

Felipe M.

Jennifer J.

Larry W.

Chaitanya A.
从 Physical Science and Engineering 浏览更多内容

Eindhoven University of Technology


