
MICRO DEGREE
Satellite Development Engineer
Satellite Development Engineer
100% LIVE Interactive Classes
Satellite Development Engineer

100% LIVE Interactive Classes
Reserve your spot today!
Basic Info
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Application closes on:10 Jun 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
100% Moneyback Guarantee
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Reserve your spot today!
Basic Info
Select Offers
Application closes on:10 Jun 2026
Get instant access of pre-course material!
Talk to Us
We’re here to help! Reach us at:
Learn from Top 1%
Sr. Managers, VPs, CXOs, Directors & Founders from companies shaping the future.

Combo Offers
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Available in 4 monthly installments at $180/month
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Curriculum
Duration: 8 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
- History and Evolution of Satellites
- Types of Satellites and Their Applications
- Overview of Satellite Subsystems
- Satellite vs Spacecraft vs Probe
- Satellite Mission Lifecycle
- Course Roadmap and Learning Outcomes
Mentors

10+ Years, Drone Startup Founder, Ex-Skydio
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
Basic understanding of physics, including classical mechanics and electromagnetism
Familiarity with programming in Python or MATLAB
Foundational knowledge of electrical or mechanical engineering principles
Introductory-level understanding of orbital mechanics or astrodynamics
Outcomes
Design satellite subsystems including power, communication, attitude determination and control, and thermal management
Analyse orbital mechanics and develop satellite mission planning strategies
Implement satellite communication architectures and ground station operations
Build onboard software for telemetry, tracking, command, and autonomous satellite operations
Apply space environment analysis techniques including radiation hardening and debris mitigation for satellite components
Integrate and test satellite payloads following industry-standard verification and validation procedures
Develop satellite power budgets, link budgets, and mass budgets for mission feasibility analysis
Manage the satellite development lifecycle from concept design through assembly, integration, testing, and launch readiness
Projects You Will Build
Practical, enterprise-grade projects that reflect real industry challenges
CubeSat Mission Design and Simulation
Design a complete 3U CubeSat mission for Earth observation, including subsystem sizing for power, attitude control, communication, and thermal management. Develop orbital simulations in STK and MATLAB to validate mission feasibility, and produce a comprehensive mission design review document.
Satellite Communication Link Design and Ground Station Architecture
Design a satellite-based communication system to provide connectivity to underserved regions, including uplink/downlink budgets, frequency selection, and modulation schemes. Architect the ground segment and demonstrate simulated end-to-end data transfer using Python-based models.
Satellite Integration, Test, and Launch Planning
Plan the full assembly, integration, and testing (AIT) campaign for a small satellite, including environmental test sequences, deployment mechanism design, and launch vehicle selection. Execute a simulated commissioning and in-orbit verification procedure with telemetry data analysis using FreeRTOS-based onboard software concepts.

for successfully completing the 'Satellite Development Engineer' course conducted from 14 Apr 2026 to 09 Jun 2026
Add a Industry Recognized
Certificate To Your Resume
Industry Recognized
Certificate
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Career Advancements
Elevate your career with a respected certificate

Industry Respect
Gain credibility in the field

Networking
Connect with experts and peers

Opportunities
Attract exciting job prospects and promotions


for successfully completing the 'Satellite Development Engineer' course conducted from 14 Apr 2026 to 09 Jun 2026

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Frequently Asked Questions
Everything you need to know about the course
You should have a foundational understanding of physics (especially mechanics and electromagnetism), basic programming skills in Python or MATLAB, and introductory knowledge of electrical or mechanical engineering. Prior exposure to orbital mechanics concepts is helpful but not mandatory.
The curriculum covers orbital mechanics, satellite subsystem design (power, thermal, attitude control, communication), payload integration, onboard software development, space environment analysis and radiation hardening, satellite communication systems, ground station operations, link and power budgets, and the full satellite development lifecycle including assembly, integration, and testing.
The program spans 8 weeks and is designed for working professionals. You should plan to dedicate approximately 10-15 hours per week for lectures, hands-on projects, assignments, and self-study to get the most out of the curriculum.
Yes, the course includes three industry-relevant projects: designing and simulating a CubeSat mission, building a satellite communication link and ground station architecture, and planning a satellite integration, test, and launch campaign. These projects use real tools like MATLAB, STK, and Python to mirror professional workflows.
Graduates will be prepared for roles such as Satellite Systems Engineer, Spacecraft Integration and Test Engineer, or Satellite Operations Specialist. The practical skills gained—subsystem design, mission planning, AIT procedures, and hands-on simulation experience—are directly applicable to satellite companies, space agencies, and defense organizations.
You will work with Python for data analysis and scripting, MATLAB and Simulink for modeling and simulation, STK (Systems Tool Kit) for orbit analysis and mission planning, and gain exposure to FreeRTOS concepts for satellite onboard software development. All tools are introduced within the course context.
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 Satellite Development Engineer.
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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