
MICRO DEGREE
Mastering RF Engineering
Radio Frequency Engineer
100% LIVE Interactive Classes
Radio Frequency Engineer

100% LIVE Interactive Classes
Reserve your spot today!
Basic Info
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Application closes on:27 May 2026
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What is in it for you?
100% Live Classes
Instructor-led Live Sessions
Attend 4 weeks of instructor led live classes from the top 1% industry experts
Projects & Case Studies
Projects & Case Studies
Gain hands-on experience with projects and real-world case studies for impactful learning.
Verified Certificate
Verified Certificate
Earn a industry recognized certificate and kick start your career
Session Recordings
Session Recordings
Revisit older chapters anytime with recorded sessions
Flexible Schedule
Flexible Schedule
Choose live classes from different cohorts that fit your availability.
Hands-on Classes
Hands-on Classes
Hands-on classes to enhance your learning experience
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Basic Info
Select Offers
Application closes on:27 May 2026
Get instant access of pre-course material!
Talk to Us
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Learn from Top 1%
Sr. Managers, VPs, CXOs, Directors & Founders from companies shaping the future.

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Available in 4 monthly installments at $156/month
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Curriculum
Duration: 6 weeks
Max Batch Size: 15 persons
Live Sessions Schedule
Sat - Sun (Weekends Only)
Timing 7:00 AM - 9:00 AM / 8:30 AM - 10:30 AM / 11:00 AM - 1:00 PM / 5:00 PM - 7:00 PM / 7:30 PM - 9:30 PM EST
- What is RF? Spectrum overview (kHz to GHz)
- Key applications – telecom, IoT, radar, satellite, medical devices
- RF vs. low-frequency electronics
- Basic terminology – frequency, wavelength, bandwidth, modulation
Mentors

12+ Years, Sr. Tech Lead, Ideaforge

Sr. Robotics R&D Engineer, GreyOrgange Robotics

20+ Years, Sr. R&D Engineer, Ideaforge
Course Includes

LIVE Interactive Sessions

Quizzes, Assignments & Projects

Study Materials & Session Recordings

Certificate
Course Includes

LIVE Interactive Sessions

Quizzes, Assignments & Projects

Study Materials & Session Recordings

Certificate
Course Pre-requisites
Foundational knowledge of electromagnetic theory and Maxwell's equations
Basic understanding of analog electronics and circuit analysis
Familiarity with mathematical concepts including complex numbers, Fourier transforms, and linear algebra
Basic experience with engineering simulation software (e.g., MATLAB or similar)
Outcomes
Analyse electromagnetic wave propagation and transmission line behaviour using Smith Charts and S-parameters
Design RF circuits including low-noise amplifiers, filters, mixers, and oscillators
Implement impedance matching networks for maximum power transfer in RF systems
Evaluate RF system performance using noise figure, linearity metrics, and link budget analysis
Design RF PCB layouts incorporating proper grounding, shielding, and signal routing techniques
Simulate and validate RF circuit and system designs using industry-standard EDA tools such as Keysight ADS and MATLAB
Apply antenna design principles including gain, radiation patterns, and polarisation to wireless systems
Build end-to-end RF system architectures for telecommunications, IoT, and radar applications
Projects You Will Build
Practical, enterprise-grade projects that reflect real industry challenges
Designing a Wireless IoT Sensor Network
Develop a complete RF front-end for an IoT environmental monitoring sensor network. Perform link budget analysis, design impedance matching networks and antenna selection, and simulate the end-to-end communication chain using Keysight ADS and MATLAB to validate coverage and power efficiency.
Radar System Signal Chain Simulation
Build a full radar signal chain simulation including signal generation, RF mixing, filtering, and target detection processing. Model component-level performance using S-parameters, noise figure, and linearity metrics to evaluate system range, resolution, and sensitivity in MATLAB and GNU Radio.
5G RF Front-End Module Design and Optimisation
Design a 5G RF front-end module including a low-noise amplifier, bandpass filter, and mixer stage for a millimetre-wave frequency band. Perform PCB layout design with proper shielding and grounding strategies, simulate the full module in Keysight ADS, and optimise performance for gain flatness and noise figure.

for successfully completing the 'Mastering RF Engineering' course conducted from 14 Apr 2026 to 26 May 2026
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Certificate To Your Resume
Industry Recognized
Certificate
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Career Advancements
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Industry Respect
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Networking
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for successfully completing the 'Mastering RF Engineering' course conducted from 14 Apr 2026 to 26 May 2026

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Frequently Asked Questions
Everything you need to know about the course
You should have foundational knowledge of electromagnetic theory, basic analog electronics, and circuit analysis. Familiarity with mathematical concepts like Fourier transforms and complex numbers, along with basic experience using engineering simulation tools such as MATLAB, will help you get the most from the curriculum.
The course covers electromagnetic wave fundamentals, transmission line theory, Smith Charts, S-parameter analysis, RF component design (amplifiers, filters, mixers, oscillators), impedance matching, antenna principles, RF PCB layout techniques, link budget analysis, noise figure, linearity, and complete RF system design for telecommunications, IoT, and radar applications.
The course runs for 6 weeks and is designed for working professionals. You should plan to spend approximately 8-12 hours per week on lectures, hands-on simulations, project work, and self-study to successfully complete all modules and projects.
You will complete three industry-relevant projects: designing a wireless IoT sensor network with full link budget analysis, building a radar system signal chain simulation, and designing a 5G RF front-end module with PCB layout. Each project involves simulation and validation using professional EDA tools.
This course prepares you for roles such as RF/Microwave Engineer, Wireless Communications Engineer, Telecommunications Specialist, and IoT Systems Architect. The hands-on experience with industry-standard tools and real-world design projects provides a portfolio that demonstrates practical competence to employers in telecommunications, defense, IoT, and semiconductor industries.
You will gain hands-on experience with Keysight ADS for RF circuit simulation, MATLAB for system-level analysis and signal processing, GNU Radio for software-defined radio experimentation, and NI AWR Design Environment for microwave circuit design. These are widely used industry-standard tools in RF engineering.
The Micro Degree course is an online LIVE course, where LIVE sessions will be conducted online on our Classroom platform. Prior to the start of the course, you'll receive preparatory material in the form of recorded content which can be access on the same platform.
In this course instructors will use English language for teaching.
Upon successful registration, you will receive a confirmation email on your registered email ID. In this email you will receive login details for your newly created account on the Edyoda Classroom platform (https://classroom.edyoda.com). Additionally, you will receive a PDF guide containing step-by-step instructions on how to utilize the platform to access live sessions and learning materials.
Our instructors are the industry experts with a minimum working experience of 10 years with a strong technical and teaching background. They bring industry knowledge and practical expertise to the course.
Yes, the course includes online assignments, quizzes, and a final project to reinforce your learning and assess your proficiency in Mastering RF Engineering.
Yes, you can interact with instructors and fellow students through discussion forums, live Q&A sessions. We encourage a supportive learning community.
We offer a 100% money-back guarantee to ensure your complete satisfaction. If you're not satisfied, you can request a full refund within 3 days of purchase or before the second session, whichever comes earlier. Simply contact our support team(support@edyoda.com) with your purchase details, such as the order ID or email address, and share your reason for the refund. Requests made after 3 days or after the second session will not be eligible for a refund. There are no hidden charges, you will receive the full amount paid. Refunds are processed within 7–10 business days and credited back to your original payment method.
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