I am a creative and technically skilled Product Designer with 5+ years of experience in CAD modeling, finite element simulations, and prototyping of medical devices and biomechanical systems. I am proficient in SolidWorks, AutoCAD, SketchUp, and ABAQUS, and I have a track record of turning concepts into functional 2D/3D designs from concept through validation, with a focus on design for manufacturability and materials selection. I enjoy collaborating across disciplines, preparing technical drawings, and delivering user-centered designs that meet industry standards. I aim to optimize performance, cost, and usability while advancing innovative solutions in healthcare and biomechanical applications, and I am fluent in English and French with experience working in multinational environments.

Royan Jafari

I am a creative and technically skilled Product Designer with 5+ years of experience in CAD modeling, finite element simulations, and prototyping of medical devices and biomechanical systems. I am proficient in SolidWorks, AutoCAD, SketchUp, and ABAQUS, and I have a track record of turning concepts into functional 2D/3D designs from concept through validation, with a focus on design for manufacturability and materials selection. I enjoy collaborating across disciplines, preparing technical drawings, and delivering user-centered designs that meet industry standards. I aim to optimize performance, cost, and usability while advancing innovative solutions in healthcare and biomechanical applications, and I am fluent in English and French with experience working in multinational environments.

Available to hire

I am a creative and technically skilled Product Designer with 5+ years of experience in CAD modeling, finite element simulations, and prototyping of medical devices and biomechanical systems. I am proficient in SolidWorks, AutoCAD, SketchUp, and ABAQUS, and I have a track record of turning concepts into functional 2D/3D designs from concept through validation, with a focus on design for manufacturability and materials selection.

I enjoy collaborating across disciplines, preparing technical drawings, and delivering user-centered designs that meet industry standards. I aim to optimize performance, cost, and usability while advancing innovative solutions in healthcare and biomechanical applications, and I am fluent in English and French with experience working in multinational environments.

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Language

English
Fluent
French
Advanced
Persian
Fluent

Work Experience

Research Assistant – Finite Element Modeling (FEM) and Stress Analysis of middle ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment. Conducted stress analysis using FEBio software to calculate finite element and mechanical control parameters for future validation. Developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant – Finite Element Modeling (FEM) and Stress Analysis of middle ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment; conducted stress analysis using FEBio to compute finite element and mechanical control parameters for future validation; developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant (FEM and Stress Analysis of the Middle Ear) at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve hearing loss detection equipment; conducted stress analysis using FEBio to calculate finite element and mechanical control parameters for future validation; developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant - Finite Element Modeling (FEM) and Stress Analysis of Middle Ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment. Conducted stress analysis using FEBio to calculate finite element and mechanical control parameters for future validation. Created a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant – Finite Element Modeling (FEM) and Stress Analysis of middle ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment. Conducted stress analysis using FEBio to calculate finite element and mechanical control parameters for future validation. Developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant – Finite Element Modeling (FEM) and Stress Analysis of middle ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment. Conducted stress analyses using FEBio to calculate finite element and mechanical control parameters for future validation. Developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Research Assistant – Finite Element Modeling (FEM) and Stress Analysis of middle ear at McGill University
December 1, 2023 - Present
Developed 3D biomechanical ear models to improve the design and accuracy of hearing loss detection equipment. Conducted stress analysis using FEBio to calculate finite element and mechanical control parameters for future validation. Developed a 3D ear canal model using custom-designed CAD software and studied middle ear vibrations in the frequency domain.
Graduate Research Assistant – Mechanics and Finite Element Modeling of Middle Ear at McGill University
March 31, 2023 - September 26, 2025
Developed static and dynamic finite element models of the middle ear under acoustic stimulation using FEBio to improve hearing diagnosis. Created a 3D 1-day-old ear model with viscoelastic material properties using custom CAD software. Implemented MATLAB algorithms to calculate local thickness distribution and optimize mesh patterns. Performed simulations, parameter sensitivity analyses, and data analysis on HPC resources to validate model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of middle-ear at McGill University
March 31, 2023 - September 26, 2025
Developed static and dynamic finite element models of the middle ear under acoustic stimuli using FEBio to improve hearing diagnosis. Pioneered a 3D 1-day-old ear model geometry with viscoelastic material properties using custom-designed CAD software. Implemented MATLAB algorithms to calculate local thickness distribution and optimize mesh patterns. Performed simulations, parameter sensitivity analyses, and data analysis using high-performance computing to validate model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of middle-ear at McGill University
March 1, 2023 - September 26, 2025
Developed static and dynamic finite element model of a middle ear under acoustic stimuli by FEBio to improve hearing diagnosis. Pioneered a 3D 1-day-old ear model geometry with viscoelastic material properties using custom-designed CAD software. Implemented algorithms in MATLAB to calculate local thickness distribution and optimize mesh patterns. Performed simulations, parameter sensitivity and data analysis by high-performance computing to test and validate model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of middle-ear at McGill University
March 1, 2023 - September 26, 2025
Developed static and dynamic finite element models of the middle ear under acoustic stimulation using FEBio to support improved hearing diagnosis; pioneered a 3D 1-day-old ear model geometry with viscoelastic material properties using custom-designed CAD software; implemented MATLAB algorithms to calculate local thickness distributions and optimize mesh patterns; performed simulations, parameter sensitivity analyses, and data processing on high-performance computing resources to validate model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of Middle Ear at McGill University
March 1, 2023 - September 26, 2025
Developed static and dynamic finite element models of the middle ear under acoustic stimuli by FEBio; created a 3D 1-day-old ear model with viscoelastic material properties using CAD; implemented MATLAB algorithms to calculate local thickness distribution and optimize mesh patterns; performed simulations and high-performance computing analysis to test model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of middle-ear at McGill University
March 1, 2023 - September 26, 2025
Developed static and dynamic finite element models of a middle ear under acoustic stimuli by FEBio to improve hearing diagnosis. Pioneered a 3D 1-day-old ear model geometry with viscoelastic material properties using custom-designed CAD software. Implemented algorithms in MATLAB to calculate local thickness distribution and optimize mesh patterns. Performed simulations, parameter sensitivity and data analysis by high-performance computing to test and validate model reliability.
Graduate Research Assistant – Mechanics and Finite Element Modeling of middle-ear at McGill University
March 1, 2023 - September 26, 2025
Developed static and dynamic finite element model of a middle ear under acoustic stimuli by FEBio to improve hearing diagnosis. Pioneered a 3D 1-day-old ear model geometry with viscoelastic material properties using custom-designed CAD software. Implemented algorithms in MATLAB to calculate local thickness distribution and optimize mesh patterns. Performed simulations, parameter sensitivity and data analysis by high-performance computing to test and validate model reliability.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center
January 31, 2019 - September 26, 2025
Used AutoCAD & SketchUp to design and conceptualize spaces, translating concepts into 3D models. Rendered designs with V-Ray and Lumion to communicate concepts.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Islamic Azad University
January 31, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess a medical device prototype's impact on end-users through motion analysis. Optimized device design using biomechanics, ergonomics and quality standards. Collaborated with TSF CARE in a cross-functional team to verify device functionality via feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center, Tehran, Iran
January 31, 2019 - September 26, 2025
Used AutoCAD and SketchUp to design and conceptualize spaces, translating concepts into 3D models. Rendered designs using V-ray and Lumion, delivering visualizations that supported design decisions.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Science and Research University, Tehran, Iran
January 31, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess the medical device prototype's impact on end-users via motion analysis. Optimized medical device design using biomechanics, ergonomics, and quality standards compliance. Collaborated with TSF CARE company in a cross-functional team to verify device functionality through feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center, Tehran, Iran
January 1, 2019 - September 26, 2025
Used CAD software (AutoCAD & SketchUp) to design and conceptualize spaces, translating these concepts and drawings into 3D models. Designed a 3D director’s office with AutoCAD and SketchUp after determining design requirements, rendered using V-ray and Lumion.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Science and Research Islamic Azad University, Tehran, Iran
January 1, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess the medical device prototype's impact on end-users by conducting motion analysis. Optimized medical device design using biomechanics analysis, ergonomics and quality standards compliance in product development. Collaborated with TSF CARE company in a cross-functional team to verify the medical device functionality through feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center, Tehran, Iran
January 1, 2019 - September 26, 2025
Used CAD software (AutoCAD & SketchUp) to design and conceptualize spaces, translating these concepts and drawings into 3D models; designed a 3D director’s office with AutoCAD and SketchUp after determining design requirements, rendered using V-ray and Lumion.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Science and Research Islamic Azad University, Tehran, Iran
January 1, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess the medical device prototype's impact on end-users by conducting motion analysis; optimized medical device design using biomechanics, ergonomics, and quality standards; collaborated with TSF CARE company in a cross-functional team to verify device functionality through feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center, Tehran, Iran
January 1, 2019 - September 26, 2025
Used AutoCAD and SketchUp to design and conceptualize spaces, translating concepts into 3D models; designed a 3D director's office, determined design requirements, rendered with V-ray and Lumion.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Science and Research Islamic Azad University, Tehran, Iran
January 1, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess medical device prototype impact on end-users through motion analysis; optimized device design using biomechanics, ergonomics, and quality standards; collaborated with TSF CARE to verify functionality through feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center, Tehran, Iran
January 1, 2019 - September 26, 2025
Used CAD software (AutoCAD & SketchUp) to design and conceptualize spaces, translating these concepts and drawings into 3D models. Designed a 3D director’s office with AutoCAD and SketchUp after determining design requirements, rendered using V-ray and Lumion.
Graduate Researcher - Motion Analysis and Modeling Using Biomechanics Parameters at Science and Research Islamic Azad University, Tehran, Iran
January 1, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess the medical device prototype's impact on end-users by conducting motion analysis. Optimized medical device design using biomechanics analysis, ergonomics and quality standards compliance in product development. Collaborated with TSF CARE company in a cross-functional team to verify the medical device functionality through feasibility studies.
Creative 3D Model Designer with Design Flow Sensibility at Iranian Architecture Center
January 1, 2019 - September 26, 2025
Used CAD software (AutoCAD & SketchUp) to design and conceptualize spaces, translating these concepts and drawings into 3D models. Designed a 3D director’s office with AutoCAD and SketchUp after determining design requirements, rendered using V-ray and Lumion.
Graduate Researcher – Motion Analysis and Modeling Using Biomechanics Parameters at Islamic Azad University
January 1, 2019 - September 26, 2025
Utilized statistical analysis and modeling to assess the medical device prototype's impact on end-users by conducting motion analysis. Optimized medical device design using biomechanics analysis, ergonomics and quality standards compliance in product development. Collaborated with TSF CARE company in a cross-functional team to verify the medical device functionality through feasibility studies.
Biomedical Engineer at Shaheed Rajaie Cardiovascular, Medical & Research Center
March 31, 2017 - September 26, 2025
Troubleshooted and repaired medical devices using hand tools and prepared technical reports. Contributed to installation, provided technical support and trained healthcare professionals in using devices. Documented hospital inventories and calibration processes to ensure regulatory compliance. Conducted verification tests on repaired devices.
Biomedical Engineer at Shaheed Rajaie Cardiovascular, Medical & Research Center, Tehran, Iran
March 31, 2017 - September 26, 2025
Troubleshot and repaired medical devices, prepared technical reports, provided training to healthcare professionals, and supported installation and calibration processes to ensure regulatory compliance. Verified reliability through post-repair verification tests.
Biomedical Engineer at Shaheed Rajaie, Cardiovascular, Medical & Research Center, Tehran, Iran
March 1, 2017 - September 26, 2025
Troubleshoot and repaired medical devices using hand tools such as soldering equipment and prepared technical reports on the process. Contributed to the installation, provided technical support and trained healthcare professionals in the proper use of medical devices. Documented and reviewed hospital inventories and calibration processes to ensure compliance with applicable standards. Conducted verification tests on medical devices after repairs to verify their reliability.
Biomedical Engineer at Shaheed Rajaie, Cardiovascular, Medical & Research Center, Tehran, Iran
March 1, 2017 - September 26, 2025
Troubleshooted and repaired medical devices using hand tools such as soldering equipment and prepared technical reports on the process; contributed to installation, provided technical support and trained healthcare professionals in the proper use of medical devices; documented and reviewed hospital inventories and calibration processes to ensure compliance with applicable standards; conducted verification tests on medical devices after repairs to verify their reliability.
Biomedical Engineer at Shaheed Rajaie Cardiovascular, Medical & Research Center, Tehran, Iran
March 1, 2017 - September 26, 2025
Troubleshot and repaired medical devices; installed devices, provided technical support and trained healthcare professionals; documented inventories and calibration processes to ensure compliance; conducted verification tests after repairs.
Biomedical Engineer at Shaheed Rajaie, Cardiovascular, Medical & Research Center, Tehran, Iran
March 1, 2017 - September 26, 2025
Troubleshooted and repaired medical devices using hand tools such as soldering equipment and prepared technical reports on the process. Contributed to the installation, provided technical support and trained healthcare professionals in the proper use of medical devices. Documented and reviewed hospital inventories and calibration processes to ensure compliance with applicable standards. Conducted verification tests on medical devices after repairs to verify their reliability.
Biomedical Engineer at Shaheed Rajaie Cardiovascular, Medical & Research Center
March 1, 2017 - September 26, 2025
Troubleshooted and repaired medical devices using hand tools; prepared technical reports on the process. Contributed to the installation, provided technical support and trained healthcare professionals in the proper use of medical devices. Documented and reviewed hospital inventories and calibration processes to ensure compliance with standards. Conducted verification tests on medical devices after repairs to verify their reliability.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University
August 31, 2016 - September 26, 2025
Integrated GD&T principles into pelvic implant design using SolidWorks and incorporated manufacturability and molding considerations into model development for potential medical device applications.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University, Tehran, Iran
August 31, 2016 - September 26, 2025
Integrated GD&T principles into pelvic implant design using SolidWorks and incorporated manufacturability and molding considerations into model development for potential medical device applications.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University, Tehran, Iran
August 1, 2016 - September 26, 2025
Integrated geometric tolerancing and dimensioning (GD&T) principles into the pelvic implant design using SolidWorks. Integrated manufacturability and molding considerations into model development for potential medical device application.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University, Tehran, Iran
August 1, 2016 - September 26, 2025
Integrated geometric tolerancing and dimensioning (GD&T) principles into the pelvic implant design using SolidWorks; integrated manufacturability and molding considerations into model development for potential medical device application.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University, Tehran, Iran
August 1, 2016 - September 26, 2025
Integrated geometric tolerancing and dimensioning (GD&T) into pelvic implant design using SolidWorks; integrated manufacturability and molding considerations into model development for medical device applications.
Undergraduate Researcher in Medical Device Design at Science and Research Islamic Azad University, Tehran, Iran
August 1, 2016 - September 26, 2025
Integrated geometric tolerancing and dimensioning (GD&T) principles into the pelvic implant design using SolidWorks. Integrated manufacturability and molding considerations into model development for potential medical device application.
Undergraduate Researcher in Medical Device Design at Science and Research University, Tehran
August 1, 2016 - September 26, 2025
Integrated geometric tolerancing and dimensioning (GD&T) principles into the pelvic implant design using SolidWorks. Integrated manufacturability and molding considerations into model development for potential medical device application.

Education

Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 1, 2023
Master of Science in Biomechanics at Science and Research University, Tehran, Iran
September 1, 2017 - December 1, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University, Tehran, Iran
September 1, 2013 - June 1, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 1, 2023
Master of Science in Biomechanics at Science and Research University, Tehran
September 1, 2017 - December 1, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University, Tehran
September 1, 2013 - June 1, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 31, 2023
Master of Science in Biomechanics at Science and Research University, Tehran, Iran
September 1, 2017 - December 31, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University, Tehran, Iran
September 1, 2013 - June 30, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 31, 2023
Master of Science in Biomechanics at Science and Research University
September 1, 2017 - December 31, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University
September 1, 2013 - June 30, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 1, 2023
Master of Science in Biomechanics at Science and Research University, Tehran, Iran
September 1, 2017 - December 1, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University, Tehran, Iran
September 1, 2013 - June 1, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 1, 2023
Master of Science in Biomechanics at Science and Research University
September 1, 2017 - December 1, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University
September 1, 2013 - June 1, 2017
Master of Engineering in Biological & Biomedical Engineering at McGill University
January 1, 2020 - March 1, 2023
Master of Science in Biomechanics at Science and Research University, Tehran
September 1, 2017 - December 1, 2019
Bachelor of Science in Biomedical Engineering at Science and Research University, Tehran
September 1, 2013 - June 1, 2017

Qualifications

ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices (Udemy)
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 1, 2019
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 1, 2019
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 31, 2019
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 31, 2019
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 1, 2019
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 1, 2019
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Applied ISO14971 Medical Device Risk Management
January 11, 2030 - September 26, 2025
Six Sigma Foundations
April 1, 2024 - September 26, 2025
Agile Foundations
January 1, 2023 - September 26, 2025
Project Management Simplified
December 1, 2023 - September 26, 2025
SOLIDWORKS: Design for Mechatronics and Consumer Electronics
October 1, 2023 - September 26, 2025
Practical Regulatory Affairs – US FDA Medical Devices
February 1, 2023 - September 26, 2025
Problem solving for strategy & innovation
February 1, 2023 - September 26, 2025
Certificate in Design and Interior Design
July 1, 2018 - January 1, 2019

Industry Experience

Healthcare, Life Sciences, Manufacturing, Professional Services, Other, Media & Entertainment, Education, Software & Internet