A comprehensive internship focused on Robot Design, Control Systems, and Physical Computing with hands-on hardware integration.
An actionable, industry-aligned roadmap engineered for career transformation.
Compressed learning cycle for maximum retention and skill acquisition.
Go beyond theory with live coding sessions and real-world datasets.
Build a professional portfolio that stands out to top-tier recruiters.
Industry-recognized credentials to validate your Core expertise.
Introduction to Robotics & Embedded Systems
Understanding Microcontrollers (Arduino / ESP32)
Digital vs Analog Signals & Pin Configuration
Writing Basic Embedded Programs (LED Control, Delay, Input/Output)
Circuit Connections & Breadboard Prototyping
Timeline
Phase 24A: Robotics & Embedded Basics - robotics introduction, microcontrollers, digital vs analog signals, basic embedded programming, and breadboard prototyping.
Introduction to Sensors & Signal Reading
Interfacing Ultrasonic Sensor (Distance Measurement)
Interfacing IR Sensor (Line Detection)
Reading Sensor Data and Calibration
Implementing Sensor-Based Logic (Threshold Detection)
Combining Multiple Sensors for Input Processing
Hands-on Lab - Sensor-Based Alert System (Distance Detection + Buzzer/LED Response)
Timeline
Phase 24B: Robotics Sensor Interfacing - sensor basics, ultrasonic & IR integration, calibration, threshold logic, multi-sensor processing, and hands-on alert system lab.
Introduction to Actuators & Motor Types
DC Motor Control using Motor Driver Modules
Speed Control using PWM Techniques
Servo Motor Control for Angle-Based Movement
Combining Sensors with Motor Control
Mini Project - Line Following Robot (Sensor-Based Movement Control)
Timeline
Phase 24C: Robotics Actuator Control - actuator introduction, DC motor drivers, PWM speed control, servo angle control, sensor-motor integration & line-following robot project.
Robot Chassis Setup & Hardware Assembly
Integrating Sensors, Motors, and Controller
Writing Control Logic for Navigation
Real-Time Decision Making using Sensor Inputs
Debugging & Performance Optimization
Final Project Planning - Robot Behavior & Movement Design
Timeline
Phase 24D: Robotics Assembly & Navigation - chassis setup, sensor/motor/controller integration, navigation logic, real-time decision making, debugging, and final project planning for robot behavior design.
Final Project Kickoff - Obstacle Avoidance Robot
Sensor Integration for Real-Time Detection
Motor Control & Movement Implementation
Testing, Debugging & Behavior Refinement
Version Control using Git & GitHub
Final Demonstration, Certification & Career Guidance
Timeline
Capstone project journey from sensor integration to motor control, debugging, version control, and final demonstration.
Gain hands-on experience with the industry-standard hardware and software used in modern robotics.
Real challenges. Real solutions. Your portfolio will feature these production-grade applications.
Develop a system that detects distance using sensors and triggers alerts using LED or buzzer.
Learn More arrow_forwardBuild a robot that follows a predefined path using IR sensors and motor control logic.
Learn More arrow_forwardDesign a robot that detects obstacles using sensors and autonomously navigates around them.
Learn More arrow_forwardA comprehensive capstone project involving Bluetooth integration to control a multi-terrain robot via a custom mobile application.
Learn More arrow_forwardTransforming learners into industry-ready AI professionals.
| Skill Category | Before Pantech | After Internship |
|---|---|---|
| Skill Category | Before Pantech | After Internship |
| Hardware Skills | Limited understanding of microcontrollers and circuits. |
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Proficient in Arduino/ESP32 and complex sensor-actuator interfacing.
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| Programming | Standard C knowledge without hardware application. |
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Specialized in Embedded C for real-time robotic control systems.
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| Portfolio | Empty GitHub profile with no hardware projects. |
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A portfolio featuring autonomous robots and automation systems.
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A step-by-step journey from hardware fundamentals to autonomous system development.
Understand microcontrollers, signals, and digital/analog I/O.
1Learn to interface inputs and outputs for environmental interaction.
2Build complete systems by integrating sensing and processing.
3Project demonstration, certification, and portfolio building for career success.
4A structured approach to mastering physical computing through repeated hands-on challenges.
Master circuit connections and hardware debugging without soldering.
Program robots to make autonomous decisions based on threshold detection.
Manage your firmware code efficiently using Git and GitHub.
Validate your skills with a certificate that carries weight. Our credentials are recognized by leading tech firms across the country.
Unique QR code for instant digital verification
LinkedIn-ready digital credential
Increases visibility in recruiter searches
Official seal from Pantech Solutions
Status
Verified Intern
The certificate acknowledges the learner’s participation in structured training, industry‑oriented project development, and practical implementation under professional guidance.
This is to certify that the learner has successfully completed the Certification Program with Pantech. This professional certification formally recognizes the learner’s achievement, confirming their participation in structured training, guided project work, and practical implementation during the program.
A prestigious joint certification from SVNIT and Pantech. Note: Need to pay extra Rs.500 for service charges.
Select the program that matches your career goals and current expertise level.
1 Month - Rs. 999 + GST
Perfect for beginners. Master the core fundamentals and build your first industry-standard projects.
2 Month - Rs. 1899 + GST
For those with basic knowledge. Deep dive into advanced architectures and professional workflows.
3 Month - Rs. 2499 + GST
Designed for final year students and professionals. Focus on deployment, scaling, and leadership.
Our alumni are driving innovation at the world's most prestigious technology and consulting firms.
"The Edge AI Jetson Masterclass was an inspiring and educational experience. Guided by Ms. Indira, the sessions enhanced my knowledge of AI development and provided practical skills for future projects. The program offered valuable insights into cutting-edge AI, combining theory with hands-on learning. I highly recommend this masterclass to anyone interested in AI development on the Jetson platform—it’s an excellent opportunity to learn, grow, and gain confidence in advanced AI technologies."
Edge AI Masterclass Participant
"The Embedded Systems with IoT Solutions course was an excellent experience. I learned a great deal about integrating embedded systems with IoT, thanks to the clear and structured teaching. Mr. Sathish and Mr. Karthik were knowledgeable and passionate, breaking down complex topics into easy-to-understand modules. The sessions were fun, effective, and highly practical, making the learning process both engaging and impactful."
Embedded Systems & IoT Learner
"This course was extremely useful for my studies and future project work. The sessions were engaging, and the trainer explained the concepts very clearly, making the class both interesting and practical. The hands-on activities with electronic components and real-world applications gave me valuable experience that will support my upcoming semester projects. Overall, it was a highly beneficial and motivating learning experience."
Electronics Course Participant
Everything you need to know about the AI Internship program.
No, the program starts from basics and moves to advanced robotics concepts.
Yes, we offer both offline sessions and live online/recorded options to suit your schedule.
You will have lifetime access to 30+ records of instructor-led sessions to catch up anytime.