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About

With 7 years of hands-on experience in mechanical product design, I (Aditya Gupta) am ready to elevate your projects to new heights. My journey began in the realm of industrial automation, where I honed my craft in optimizing processes and enhancing efficiency to perfection.

Transitioning seamlessly into consumer-centric innovations, I've demonstrated an intuitive grasp of user needs, consistently delivering products that seamlessly blend form and function. My track record speaks volumes, showcasing a knack for turning ideas into reality with precision and finesse.

One of my achievements lies in revolutionizing the logistics industry with cutting-edge Autonomous Guided Vehicle (AGV), prioritizing autonomy and efficiency like never before. This is just one part of my portfolio.

I've delved into smart storage solutions, integrating IoT technologies to craft intelligent storage racks that redefine space utilization and accessibility. Also the small omni-directional robotic car I've engineered, pushing the boundaries of mobility in constrained environments.

My approach to product development is nothing short of holistic. From inception to delivery, innovation remains at the forefront, ensuring your vision is not just realized but elevated beyond expectations.

Whether you're nurturing a new idea or seeking to enhance an existing product, my suite of design services is finely tailored to your needs. Let's collaborate and transform your vision into reality, one ingenious design at a time.

Reach out today, and let's embark on this journey together. Your project deserves nothing less than the best, and I'm here to deliver precisely that.

Experience

  • Design Engineer Dosepack India LLP · Full-time Jan 2018 – Jun 2023 5 yrs 5 mos Ahmedabad, GJ, India 1. Led the conception, planning and design of mechatronics systems, participated in design reviews and provided appropriate recommendations.
    2. Collaboration with Manufacturing, Supply Chain, Electrical, Software, QA teams to meet project requirements and address limitations.
    3. Support throughout the Product Development Lifecycle, from requirements gathering to deployment and support.
    4. Project 1 - Designed, assembled, tested and deployed a modular machine (pharmaceutical automation) for filling pills in customized blister packs and medicinal vials (belt drive, rack and pinion mechanisms, ball screw mechanisms, structural design and analysis).
    5. Project 2 – Designed and developed a multi-directional car (166mm diameter) for transfer of vials to be filled within an automation system (Vial gripper and 3-omni wheel drive)
    6. Project 3 – Developed an IoT based pill counting and auditing device.
    7. Project 4 - Design and structural improvements for the smart storage rack (weight reduction and design for manufacturing and ease of assembly)
    8. Project 5 – Designed a prototype AGV capable of lifting and carrying 300 Kgs.
    9. Project 6 – Designed a consumer-centric pill dispensing device (it dispensed pills as per the patient’s prescription)
    10. Applied engineering and production principles by maintaining corporate standards in design using SolidWorks.
    11. Professional efficiency in designing sheet metal, CNC, laser-cut, welding and 3D printed parts.
    12. Performed static and dynamic mechanical system analysis using ANSYS.
    13. Skilled in 3D modelling, assembly, 2D manufacturing drawings, GD&T and Bill of Materials creation.

Education

  • National Institute of Technology Rourkela MTech, Industrial Design, 9.34/10 2015 – 2017 Activities and Societies: During my time as a student, I was actively involved in several engineering-robotics clubs and worked on designing two significant projects. Summer Project: modelling of a Scoop Stretcher Objective: To design a scoop stretcher that could assist in transferring a patient from the floor to the stretcher without manual lifting, thus reducing the risk of injury during the process. Impact: This project aimed to improve patient handling by minimizing the physical strain on healthcare providers and preventing mishandling injuries. Thesis Project: Continuous Passive Motion Device for Leg Rehabilitation Objective: To develop a prototype of a continuous passive motion (CPM) device aimed at aiding patients in regaining mobility in their legs. Outcome: This project not only contributed to the field of rehabilitation but also earned me the Best Product Oriented Award, highlighting its practical applicability and innovation.
  • Amity University BTech, Mechanical and Automation Engineering, 8.87/10 2011 – 2015 Activities and Societies: During my time as a student, I was actively involved in several engineering-robotics clubs and worked on designing two significant projects. Summer Project: Demonstration of Working Hydraulic Bridge Objective: To demonstrate the principles of hydraulics and their application in hydraulic bridges. Impact: Using tap water as the hydraulic fluid, I developed a small-scale prototype. Colored water and transparent pipes were used to visually illustrate the hydraulic mechanisms, effectively showcasing the concept and its practical usability. Thesis Project: Thermoacoustic Refrigerator Objective: To study the effects of sound waves on a stack (heat exchangers) and explore their potential in refrigeration. Outcome: The project harnessed the compression and rarefaction of sound waves using a stack, resulting in a measurable temperature difference. This study provided valuable insights into the potential of thermoacoustic technology for refrigeration purposes.

Licenses & Certifications

  • Certified SOLIDWORKS Professional Advanced Sheet Metal (CSWPA-SM) Dassault Systemes Jan 2019 – Present
  • Certified SOLIDWORKS Professional Advanced Weldments (CSWPA-WD) Dassault Systemes Dec 2018 – Present
  • Certified SolidWorks Professional (CSWP) Dassault Systemes Nov 2018 – Present