MANOHAR GANGADEVI
Mechanical Engineer @ Dausinger + Giesen GmbH
About
I am a Mechanical Engineer, with a master's degree in Scientific Instrumentation from Fachhochschule Jena. I have a diploma in Project Management from IBMI and a bachelor's degree in Mechanical Engineering from JNTUH College of Engineering Hyderabad. My core competencies include Medical Device Regulation (MDR), Design for Manufacturing and Assembly (DFMA), and Siemens NX. In my current role, I apply advanced engineering techniques to optimize the design and manufacture of load-carrying members in radiography systems. I use DFMA and Finite Element Method (FEM) analysis and life-span evaluation to determine the most efficient and effective techniques for designing load-carrying members that meet precise requirements, optimize costs, and provide additional functions with high reliability. I also create and maintain documentation, 3D models, and drawings of plastic and metal parts, using Teamcenter, SAP PLM, and Siemens NX. I work with colleagues from other departments, such as electrical design, to make design changes and create prototypes. I am motivated by the challenge of developing innovative solutions that improve the quality and functionality of medical devices. I value collaboration, learning, and excellence, and I bring diverse perspectives and experiences to the team.
Germany
Stuttgart
Medical Device
Risk Analysis, Project Planning, Active Listening, Risk Assessment, Team Management, Project Management, Medical Device Regulation (MDR), ISO 13485, Product Development, Medical Technology, Optimization, Design Engineering, Product Design, Finite Element Analysis (FEA), Specifications, Product Life Cycle, Composites, Precision Design, DFMA, Cost Reduction
Experience

Mechanical Engineer
Germany
As a highly skilled mechanical engineer, my work is focused on the use of advanced engineering techniques to optimize the design and manufacture of load-carrying members in radiography systems. Specifically, I utilized DFMA and FEM analysis and life-span evaluation to determine the most efficient and effective techniques for designing load-carrying members that meet precise requirements, optimize costs, and provide additional functions with high reliability. Throughout my research, I utilized state-of-the-art techniques and tools to analyze load-carrying members, identify potential areas for cost savings, and optimize the design of these components. By utilizing a combination of DFMA and FEM analysis, from analyzing complex data sets and using advanced mathematical models to designing and testing load-carrying members in real-world conditions. I was able to identify the most efficient and effective techniques for manufacturing load-carrying members, ensuring that they met all required specifications while also being cost-effective and durable. In addition to my expertise in DFMA and FEM analysis, I also possess experience in lifespan evaluation. This is a critical area of research, as it allows us to identify potential issues with components before they become problematic, ensuring that radiography systems remain safe, effective, and reliable throughout their lifespan. As a graduate with a master's degree in mechanical engineering and expertise in cost optimization techniques for load-carrying members, I am well-positioned to take on new challenges in the field of radiography systems development. Whether it's optimizing existing systems, collaborating with colleagues on new projects, or using my expertise to drive innovation and efficiency, I am committed to using my skills and knowledge to drive success.

Mechanical Development Engineer
Germany
With a background in development engineering and imaging systems, I bring a wealth of experience in a range of areas. In particular, I have specialized in the systematic development of concepts for components that meet precise requirements, optimize costs, and provide additional functions with high reliability. I am proficient in a range of tasks, from creating 3D models and deriving drawings of plastic and metal parts, to supporting the creation and maintenance of documentation accompanying development. I am comfortable uploading drawings into SAP PLM and working with colleagues in other departments, such as electrical design, to make design changes and create drawings and prototypes. One of my strengths is my ability to create assembly instructions for production. I understand the importance of clear and accurate instructions, and I work diligently to ensure that these instructions are easy to follow and facilitate efficient production. In addition, I have experience in designing assembly supporting equipment for serial production. This involves identifying the most efficient and effective tools and equipment needed to support production and ensure that all components are manufactured to the highest standards. I am also skilled at identifying parts on the device where we can reduce the cost and work on it. This is an essential task in optimizing costs and ensuring that all components are manufactured with the most efficient and effective techniques and materials. Overall, I am a dedicated and committed development engineer with a passion for innovation and a strong track record of success. Whether I am collaborating with colleagues on cutting-edge projects or working independently to optimize components and systems, I am committed to using my expertise and skills to drive success in the field of imaging systems development.

Mechanical Design Engineer
Germany
As a Mechanical Design Engineer with expertise in imaging systems, I specialize in the systematic development of concepts for components that meet precise requirements, optimize costs, and provide additional functions with high reliability. I possess extensive experience in the creation of 3D models and the derivation of drawings for both plastic and metal parts. With an eye for detail and precision, I ensure that all parts are designed and manufactured to the highest standards of quality and functionality. In addition to my technical skills, I am also highly proficient in the creation and maintenance of documentation accompanying development. Whether it's creating technical reports, user manuals, or other types of documentation, I ensure that all information is accurate, clear, and easily accessible to all stakeholders. As a team player, I am committed to supporting the construction and testing of prototypes, as well as the execution of development-accompanying tests. I am comfortable working in interdisciplinary teams, providing my technical expertise and collaborating with colleagues to ensure the success of projects. With a passion for innovation and a commitment to quality, I am well-positioned to take on new challenges in the field of imaging systems development. Whether it's designing new components, optimizing existing systems, or collaborating with colleagues on cutting-edge projects, I am dedicated to using my expertise and skills to drive success.
Education

Scientific Instrumentation
Majors: Advanced 3D Design: Designing complex 3-D structures and models for medical devices and equipment using advanced tools and techniques. FEM and Simulation: Finite Element Method (FEM) and simulation methods to analyze and optimize medical devices and equipment for safety, cost, weight & ease of use. Precision Instrumentation: Precision instrumentation techniques and tools for measuring and controlling physical parameters with high accuracy in medical applications. Physical Material Diagnostics: Non-destructive testing (NDT) techniques and physical material diagnostics methods for materials characterization and quality control of medical devices and implants. Solid State Physics: Fundamental principles of solid state physics and their applications in medical technology such as imaging systems, radiation therapy, & diagnostic equipment. Microsystem Engineering: Designing, manufacturing, and testing microsystems & MEMS for various medical applications and diagnostic tools.

Project Management
🎓 Excited to share that I've earned a Program Diploma in Project Management, showcasing expertise in: 🚀 Project Management: Mastering the art of efficient project execution, ensuring goals are met on time and within scope. 🔄 Change Management: Equipped with skills to navigate organizational transitions seamlessly, fostering adaptability and driving positive transformations. 🤝 Leadership and Team Development: Committed to cultivating strong teams and effective leadership, fostering collaboration, and achieving collective success. 🛡️ Risk Management: Adept at identifying, assessing, and mitigating risks, ensuring projects move forward with confidence and resilience. 🌐 Thrilled to leverage these skills in delivering impactful results and contributing to the success of future projects. 🌟 The hands-on experience in this live project solidified my commitment to delivering results through a holistic approach. Excited to bring this expertise to future endeavors!

Mechanical Engineering
As a Bachelor's degree holder in Mechanical Engineering, I possess a strong foundation in engineering physics, mathematics, and materials science. Majors: Mechanics of Materials: Comprehensive understanding of the behavior of materials under various loading conditions, which is crucial for designing and analyzing mechanical systems. Thermodynamics: To develop a fundamental understanding of energy transfer and conversion, which is essential for designing energy-efficient mechanical systems. Manufacturing Processes: The various processes used for manufacturing mechanical components, which is important for producing high-quality products. Control Systems: The principles of control systems and their application in the design and operation of mechanical systems. Overall, my Bachelor's degree in Mechanical Engineering has provided me with a strong foundation in the field and has prepared me for a career in mechanical design, analysis, manufacturing and maintain mechanical systems.
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