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B.Tech in Biomedical Engineering

B.Tech in Biomedical Engineering

   Department of Biotechnology & Bioengineering

Programme Level

Under Graduate

Duration

4 Years

About the Programme

The B.Tech. Biomedical Engineering program at the School of Biomedical Sciences, Galgotias University, offers a robust and interdisciplinary curriculum designed to equip students with the knowledge and skills needed to excel in the biomedical engineering field. This four-year program spans eight semesters, blending engineering principles with medical sciences to innovate and improve healthcare solutions.

Students will begin with foundational subjects such as Human Physiology, Engineering Mathematics, and Analog and Digital Electronics. They will delve into specialized courses like Biomedical Circuits and Networks, Medical Instrumentation, and Biomaterials and Artificial Organs, gaining insights into the design and functionality of medical devices. Advanced topics include Biomedical Control Systems, Medical Signal & Image Processing, and Advanced Biomedical Instrumentation, preparing students to handle complex biomedical systems and technologies.

Ethics and Professional Competency, Bioethics and Biosafety, and Hospital and Healthcare Administration courses ensure that graduates are well-versed in the ethical and managerial aspects of the profession. The curriculum also covers cutting-edge areas like Artificial Intelligence & Pattern Recognition, BioMEMS and Biosensors, and Molecular Diagnostics & Therapeutics, fostering innovation and research.

Practical skills are honed through subjects like Virtual Instrumentation Design for Medical Systems, Microprocessors and MicroControllers, and VLSI Design, while research-focused courses such as Research Methodology and Biostatistics prepare students for scientific inquiry and data analysis. Elective options and interdisciplinary subjects like Introduction to Biotechnology and Biomechanics allow students to tailor their education to their interests.

Eligibility

Minimum 50% marks in Physics, Chemistry & Mathematics/Biology/Biotechnology in Class XIIth.

Students with a JEE-Mains / JEE-Advance/CUET / SAT (DI Code - 71057 ) score will be given preference in the merit list

For Lateral Entry:
Passed Diploma examination with at least 50% marks in relevant discipline of Engineering and Technology.
Or
Passed B.Sc. Degree from a recognized University with at least 50% marks and passed 10+2 examination with Mathematics / Biology / Biotechnology as a subject. Or
Passed B.Voc/3-year D.Voc. Stream in the same or allied sector.

For Migration from Other Universities:
1) B.E./B.Tech In Biomedical Engineering Ist year minimum 50% marks or equivalent
2) 50% PCM/PCB or above at XII level

Fee Structure

Duration
4 Years
Tuition Fee (per annum)
1,10,000
Exam Fee (per annum)
20,000
Medical Insurance (Per Annum)
650
Caution Money (One Time Payment )
2000
Student ID Card
1000

Program Structure

Program Structure

Career Pathways

Graduates in Biomedical Engineering have diverse career opportunities across various sectors. They can work in healthcare facilities, medical device manufacturing companies, pharmaceuticals, research and development organizations, and academia. Roles may include designing and maintaining medical equipment, developing new medical technologies, conducting research for innovative treatments, and ensuring the safety and effectiveness of biomedical devices. The demand for biomedical engineers is expected to grow, driven by advancements in healthcare technology and an increasing focus on improving patient care.

Programme Objectives

01

Interdisciplinary Engineering Competence: To develop strong foundations in engineering, biological sciences, and medical technology, enabling graduates to analyze and solve complex problems related to healthcare systems, medical devices, and biomedical instrumentation.


02

Innovation and Application in Healthcare Technology: To train students to design, develop, and implement modern biomedical solutions—including medical devices, biosensors, imaging systems, and AI-enabled healthcare technologies—for diagnostics, therapy, monitoring, and rehabilitation.


03

Professional Growth, Ethics, and Lifelong Learning: To prepare graduates for successful careers, higher studies, and research through ethical practice, teamwork, regulatory awareness, and continuous learning in the rapidly evolving biomedical and healthcare technology sectors.


Programme Outcomes

01

Engineering Knowledge: Apply knowledge of mathematics, natural sciences, computing, engineering fundamentals, and biomedical engineering principles to develop solutions for complex biomedical engineering problems. (WK1, WK2, WK3, WK4)


02

Problem Analysis: Identify, formulate, review research literature, and analyze complex biomedical engineering problems by integrating concepts of physiology, biomechanics, medical instrumentation, and biomaterials, considering sustainable development. (WK1 to WK4)


03

Design/Development of Solutions: Design and develop innovative biomedical devices, prosthetics, and healthcare systems that address public health, safety, whole-life cost, and sustainability while meeting medical, regulatory, and environmental requirements. (WK5)


04

Conduct Investigations of Complex Problems: Conduct research-based investigations, including design of experiments, biomedical modeling, data interpretation, and signal/image processing, to provide valid and evidence-based conclusions in the field of biomedical engineering. (WK8)


05

Engineering Tool Usage: Develop and apply modern computational tools, medical imaging software, biosignal analysis, AI-based healthcare systems, and bioinformatics tools while recognizing their limitations and impact on biomedical research and clinical applications. (WK2 and WK6)


06

The Engineer and The World: Analyze and evaluate the societal, economic, and environmental impact of biomedical technologies, ensuring patient safety, regulatory compliance, accessibility, and ethical considerations in medical device development. (WK1, WK5, and WK7)


07

Ethics: Uphold professional ethics, human values, diversity, and inclusion while adhering to national and international regulatory frameworks such as FDA, ISO, IEC, and medical ethics guidelines. (WK9)


08

Individual and Collaborative Teamwork: Work effectively as an individual, as a team member, and as a leader in multidisciplinary teams, collaborating with engineers, medical professionals, researchers, and industry experts.


09

Communication: Communicate effectively with the engineering and medical community, regulatory authorities, and society at large, including preparing technical reports, medical device documentation, and research publications, and delivering presentations with cultural and professional sensitivity.


10

Project Management and Finance: Apply engineering management principles, financial planning, and economic decision-making to lead and execute biomedical engineering projects in healthcare, medical technology startups, and hospital infrastructure development.


11

Life-Long Learning: Recognize the need for and develop skills for independent, lifelong learning, adaptability to emerging biomedical technologies, and critical thinking in the rapidly evolving healthcare and medical technology landscape. (WK8)


Programme Educational Objectives

01

Graduates will establish successful careers in biomedical industries, healthcare technology, medical device manufacturing, and hospitals.


02

Graduates will pursue higher education and research in biomedical engineering, biotechnology, bioinformatics, tissue engineering, AI-driven healthcare, and regulatory affairs.


03

Graduates will develop innovative healthcare solutions by leveraging expertise in biosensors, medical imaging, wearable devices, and AI-based diagnostics, fostering entrepreneurial ventures and startups in the biomedical sector.


04

Graduates will serve in research and development (R&D) in academia and Biomedical industries


Programme Specific Outcomes (PSOs)

01

Biomedical System Design & Development: Apply biomedical engineering principles, electronics, and computational techniques to design, develop, and optimize medical devices, prosthetics, biosensors, and imaging systems.


02

AI & Data-driven Healthcare Solutions: Utilize AI, machine learning, bioinformatics, and computational modeling to enhance clinical diagnostics, disease prediction, medical image analysis, and personalized medicine.


03

Healthcare Technology & Sustainability: Implement sustainable, energy-efficient, and regulatory-compliant biomedical technologies, addressing global healthcare challenges and ensuring patient safety and well-being.


Apply Now

Minimum 50% marks in Physics, Chemistry & Mathematics/Biology/Biotechnology in Class XIIth.

Students with a JEE-Mains / JEE-Advance/CUET / SAT (DI Code - 71057 ) score will be given preference in the merit list

For Lateral Entry:
Passed Diploma examination with at least 50% marks in relevant discipline of Engineering and Technology.
Or
Passed B.Sc. Degree from a recognized University with at least 50% marks and passed 10+2 examination with Mathematics / Biology / Biotechnology as a subject. Or
Passed B.Voc/3-year D.Voc. Stream in the same or allied sector.

For Migration from Other Universities:
1) B.E./B.Tech In Biomedical Engineering Ist year minimum 50% marks or equivalent
2) 50% PCM/PCB or above at XII level

Frequently Asked Questions

Biomedical Engineering connects engineering with healthcare. It helps students learn how medical devices, biosensors, imaging systems, prosthetics, hospital equipment, and AI-based healthcare tools are designed and used for patient care.

B Tech in Biomedical Engineering at Galgotias University is a 4-year undergraduate program that blends engineering principles with medical sciences. The program covers healthcare technology, medical instrumentation, biomaterials, artificial organs, biomedical circuits, imaging systems, biosensors, and AI-enabled healthcare technologies.

Yes. Students with Physics, Chemistry, and Biology in Class 12 are eligible for B.Tech Biomedical Engineering at Galgotias University, if they meet the minimum marks requirement. Students with Mathematics or Biotechnology are also eligible as per the official criteria.

Students need at least 50% marks in Class 12 with Physics, Chemistry, and Mathematics or Biology or Biotechnology. Students with JEE Main, JEE Advanced, CUET, or SAT scores get preference in the merit list.

Students learn about medical instrumentation, biomedical circuits and networks, biomaterials and artificial organs, medical signal and image processing, biomedical control systems, BioMEMS, biosensors, molecular diagnostics, therapeutics, and AI and pattern recognition.
Yes. The program includes AI and data-driven healthcare learning through areas such as AI, machine learning, bioinformatics, computational modelling, clinical diagnostics, disease prediction, medical image analysis, and personalized medicine.

The tuition fee for B.Tech Biomedical Engineering is ₹1,10,000 per annum. The official page also lists ₹20,000 exam fee per annum, ₹650 medical insurance per annum, ₹2,000 caution money, and ₹1,000 student ID card fee.

After B.Tech Biomedical Engineering, students can explore opportunities in healthcare facilities, medical device manufacturing companies, pharmaceutical companies, research and development organizations, hospitals, and academia. Roles may include biomedical engineer, medical device engineer, biomedical instrumentation engineer, clinical equipment specialist, and healthcare technology associate.

Yes. Lateral entry is available for eligible students with a diploma with at least 50% marks in any branch of Engineering and Technology, or a B.Sc degree with at least 50% marks and Mathematics, Biology, or Biotechnology at 10+2 level, or a B.Voc or 3-year D.Voc qualification in the same or allied sector.

Students can apply through the Galgotias University admission portal. They need to fill out the application form, submit academic details, upload required documents, and complete the admission process as per university guidelines.