Sneha Shah
Sneha Shah
Apprenant.e.s
(2)
33
Curriculum vitae
CV.pdf
Portails

Compétences

Chronic diseases 2 Cost reduction 2 Electrical networks 2 Electrical systems 2 Electronic design automation 2 Electronic hardware 2 Market trend 2 Mechanical assembly 2 Printed circuit board design 2 Project management 2 Regulatory compliance 2 Sensors 2 User preferences 2 3d modeling 1 Aesthetic design 1 Aesthetics 1 Biomedical engineering 1 Design software 1 Graphic design 1 Healthcare analytics 1 Image resolution 1 Medical research 1 Product design 1 Research 1

Réalisations

Dernières rétroactions

Jia Xi Chen
Jia Xi Chen
Employeur.euse
mars 29, 2025
Approbation individuelle
Market trend Project management User preferences Research Medical research Biomedical engineering Healthcare analytics

Sneha has brought incredible value to our project!

Rétroaction de l'apprenant.e.s
Sneha was incredibly proactive and curious, consistently delivering high-quality work. She conducted thorough literature research and drafted well-grounded content based on peer-reviewed papers. Her ability to understand both biomedical engineering concepts and device-related context made her contributions especially impactful.
Aesthetic design Product design Aesthetics Market trend Graphic design 3d modeling Image resolution Design software Project management User preferences
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Level UP: February 2025
Riipen Level UP 🚀
Morphace Skincare Wearables
Product Design & Prototype
Morphace Skincare Wearables
Amir Omidvar
Amir Omidvar
President
mai 30, 2025
Approbation individuelle
Printed circuit board design Electrical networks Chronic diseases Electrical systems Cost reduction Sensors Regulatory compliance Electronic design automation Mechanical assembly Electronic hardware

I am pleased to endorse Sneha Shah for her excellent work in electrical circuit design, specifically within the context of medical device development. Sneha brings a thoughtful and detail-oriented approach to engineering challenges, consistently delivering reliable and well-organized designs. Her ability to apply theoretical knowledge to practical, real-world constraints—such as safety, efficiency, and regulatory compliance—sets her apart. Sneha’s professionalism, problem-solving mindset, and commitment to quality make her a strong asset to any engineering team, whether in a startup or corporate setting.

Rétroaction de l'apprenant.e.s
Sneha demonstrated strong analytical thinking and a methodical approach to circuit design throughout the project. Her ability to integrate theoretical knowledge with practical application was evident in the way she tackled design challenges and ensured compliance with medical device standards. She showed great attention to component selection and power management, and her documentation was clear and well-structured. With continued focus on design optimization and real-world testing, Sneha has the potential to excel in both research and product development environments.
Printed circuit board design Electrical networks Chronic diseases Electrical systems Cost reduction Sensors Regulatory compliance Electronic design automation Mechanical assembly Electronic hardware
Advance Ontario
Advance Ontario: April 2025 Cohort
Advance Ontario
Pocket Clinic Corp.
Electrical Circuit Design for a Medical Device
Pocket Clinic Corp.

Projets récents

Morphace Skincare Wearables
Morphace Skincare Wearables
Toronto, Ontario, Canada

Product Design & Prototype

Morphace is a startup that produces data driven mask devices that treats wrinkles and tracks skin condition on a paired app. Morphace aims to refine the aesthetic design of our skincare mask devices to better align with customer preferences and branding. This project will focus on enhancing the mask's visual appeal and ergonomics to increase market competitiveness and customer satisfaction.

Jumelages 4
Catégorie Stylisme + 3
Ouvert
Pocket Clinic Corp.
Pocket Clinic Corp.
Toronto, Ontario, Canada

Electrical Circuit Design for a Medical Device

Main Goal for the Project: The main goal of this project is to develop and refine the hardware and software components of the Pocket Clinic smart injector, ensuring it meets all functional and regulatory requirements. Problem Learners Will Be Solving: Learners will address the challenge of designing and coding the electronic boards for the smart injector. This involves creating schematics, selecting appropriate components, designing the PCB, and developing the firmware to ensure seamless operation of the device. Expected Outcome by the End of the Project: By the end of the project, learners are expected to achieve the following outcomes: Hardware Development: Design electronic boards that meet the specific requirements of the Pocket Clinic smart injector. Create detailed schematics and select the appropriate components for optimal performance. Successfully design and fabricate the printed circuit boards (PCBs). Software Development: Develop and debug firmware to ensure the smart injector operates efficiently and accurately. Implement coding solutions that enhance the functionality and reliability of the device. Ensure seamless integration between the hardware and software components for optimal performance. Overall, learners will gain comprehensive experience in both hardware and software aspects of medical device development, contributing to the successful creation of the Pocket Clinic smart injector.

Jumelages 4
Catégorie Développement de logiciels + 3
Fermé