Robotics and System Designer

“Ideas often weave their way into our minds at the oddest of times in the most eccentric corners of life.”

Ronit Jain, Your Design Engineer

Available for work

Hello! I am Ronit Jain.

Robotics and System Design Engineer Based in Pennsylvania.

I'm Ronit Jain, with a Bachelors in Technology in Robotics and Automation from MIT World Peace University, Pune, India, and currently pursuing a Master’s in Engineering Design at The Pennsylvania State University. Engaging with innovative technology and building ingenious projects deeply interests me. I relish tackling complex challenges and using technology for impactful solutions.

CAD Designing

Manufacturing Processes

Coding

Circuit Designing

Soldering

Additive Manufacturing

Robotic System Design

Product Designing

Research

Project Intern

CSER MIT-WPU

2024

Project Intern

CSER MIT-WPU

2024

Project Intern

CSER MIT-WPU

2024

Research Intern

R&DE (Engineers)

2023

Research Intern

R&DE (Engineers)

2023

Research Intern

R&DE (Engineers)

2023

Electronics Head

Innovation Hub

2022

Electronics Head

Innovation Hub

2022

Electronics Head

Innovation Hub

2022

Robotics & System Design Engineer

Ronit Jain

Ronit Jain

Ronit Jain

Feel free to explore my projects, and don’t hesitate to reach out for collaboration or to connect over innovative ideas!

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How it works

Process Is Everything

Simple, streamlined process is what get's you results

1

Collaborate & Define

Engage in discussions to understand project goals, technical requirements, and constraints, ensuring alignment with industry needs.

Step 1

2

System Design & Prototyping

Develop system architecture, integrating hardware and software components, followed by iterative prototyping and validation.

Step 2

3

Development & Testing

Implement, refine, and rigorously test the system to ensure performance, scalability, and reliability under real-world conditions.

Step 3

4

Deployment & Optimization

Support final integration, deployment, and continuous improvements to enhance efficiency and adaptability.

Step 4

1

Collaborate & Define

Engage in discussions to understand project goals, technical requirements, and constraints, ensuring alignment with industry needs.

Step 1

2

System Design & Prototyping

Develop system architecture, integrating hardware and software components, followed by iterative prototyping and validation.

Step 2

3

Development & Testing

Implement, refine, and rigorously test the system to ensure performance, scalability, and reliability under real-world conditions.

Step 3

4

Deployment & Optimization

Support final integration, deployment, and continuous improvements to enhance efficiency and adaptability.

Step 4

1

Collaborate & Define

Engage in discussions to understand project goals, technical requirements, and constraints, ensuring alignment with industry needs.

Step 1

2

System Design & Prototyping

Develop system architecture, integrating hardware and software components, followed by iterative prototyping and validation.

Step 2

3

Development & Testing

Implement, refine, and rigorously test the system to ensure performance, scalability, and reliability under real-world conditions.

Step 3

4

Deployment & Optimization

Support final integration, deployment, and continuous improvements to enhance efficiency and adaptability.

Step 4

Expertise

Expertise

Digital Fabrication & Manufacturing

Expert in CAD, manufacturing processes, and additive manufacturing for precision engineering.

Digital Fabrication & Manufacturing

Expert in CAD, manufacturing processes, and additive manufacturing for precision engineering.

Digital Fabrication & Manufacturing

Expert in CAD, manufacturing processes, and additive manufacturing for precision engineering.

Product Innovation & Design Strategy

Creating innovative products through design thinking, research, and strategic planning.

Product Innovation & Design Strategy

Creating innovative products through design thinking, research, and strategic planning.

Product Innovation & Design Strategy

Creating innovative products through design thinking, research, and strategic planning.

Robotic Systems and Automation

Designing and programming robotic systems for automation and advanced control.

Robotic Systems and Automation

Designing and programming robotic systems for automation and advanced control.

Robotic Systems and Automation

Designing and programming robotic systems for automation and advanced control.

Embedded Systems & Electronics

Skilled in IoT, microcontrollers, PCB design, and sensor technology for smart systems.

Embedded Systems & Electronics

Skilled in IoT, microcontrollers, PCB design, and sensor technology for smart systems.

Embedded Systems & Electronics

Skilled in IoT, microcontrollers, PCB design, and sensor technology for smart systems.

  • Prototyping

  • Fusion

  • Product Innovation

  • C/C++

  • Robotics

  • Research

  • 3D Printing

  • PCB Design

  • Manufacturing

  • IOT

Recent Projects

Recent Projects

Showcase of some of my recent projects

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Certifications

Robotics

IIT Kharagpur

Innovation By Design

IIT Bombay

Robotics

IIT Kharagpur

Innovation By Design

IIT Bombay

Fundamentals of Machine Learning and AI

Lydnow Robotics

ECAD & PCB Designing

Lydnow Robotics

Fundamentals of Machine Learning and AI

Lydnow Robotics

ECAD & PCB Designing

Lydnow Robotics

Experience

25+

Completed Projects

25+

Completed Projects

25+

Completed Projects

15+

Funded Projects

15+

Funded Projects

15+

Funded Projects

100+

Students Mentored

100+

Students Mentored

100+

Students Mentored

CSER

Project Intern

Developed the vision system for an underwater robot to detect cracks in subsea oil rig infrastructure, defined the system design and control framework of the robot.

CSER

Project Intern

Developed the vision system for an underwater robot to detect cracks in subsea oil rig infrastructure, defined the system design and control framework of the robot.

CSER

Project Intern

Developed the vision system for an underwater robot to detect cracks in subsea oil rig infrastructure, defined the system design and control framework of the robot.

R &DE (Engineers)

Research Intern

Integrated Wearable Lumbopelvic Exoskeleton Implemented gait kinematics, GRF analytics, and machine learning into an Integrated wearable lumbopelvic exoskeleton system in accordance with human biomechanics consideration.

R &DE (Engineers)

Research Intern

Integrated Wearable Lumbopelvic Exoskeleton Implemented gait kinematics, GRF analytics, and machine learning into an Integrated wearable lumbopelvic exoskeleton system in accordance with human biomechanics consideration.

R &DE (Engineers)

Research Intern

Integrated Wearable Lumbopelvic Exoskeleton Implemented gait kinematics, GRF analytics, and machine learning into an Integrated wearable lumbopelvic exoskeleton system in accordance with human biomechanics consideration.