Department Overview

The Department of Biomedical was established in the year 2018 with an ambition to design concepts to medicine and biology for future healthcare purposes. Biomedical Engineers dream up creative, practical solutions and work with other smart, inspiring people to invent, design, and create things that matter. They turn ideas into reality in order to make our lives safer, more enjoyable, and more productive. They can work with cutting-edge technologies to tackle grand challenges that define the human experience. They advance human health, engineer better medicines, create the tools of innovation and scientific discovery, and harness the power of biological processes to aid our planet.

Mission

To advance knowledge and expertise in biomedical engineering through rigorous education, interdisciplinary research, and industry collaboration. We are committed to developing innovative medical technologies and solutions that address healthcare challenges and improve patient care globally.

Vision

To establish the department as a center of excellence recognized internationally for pioneering research, high-quality education, and impactful contributions to biomedical engineering and healthcare technology development.

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Programs Offered

B.E – Biomedical Engineering

The Bachelor of Engineering in Biomedical Engineering integrates principles of engineering, biology, and medicine to develop innovative healthcare solutions. This program prepares students to design and maintain medical devices, diagnostic equipment, and therapeutic technologies that improve patient care. With a curriculum combining theoretical knowledge and hands-on training, students gain expertise in areas such as medical imaging, biomaterials, bioinstrumentation, and clinical engineering. Graduates are equipped to pursue careers in hospitals, research labs, medical device companies, and regulatory bodies, contributing to advancements in healthcare technology.
Program Educational Objectives (PEO)

Our Biomedical Engineering program is dedicated to producing graduates who excel in the application of engineering principles to healthcare challenges. Graduates will demonstrate strong technical expertise, ethical responsibility, and innovative thinking, enabling them to contribute effectively in medical technology development, research, and clinical environments. We prepare students for lifelong learning and leadership roles in academia, industry, and healthcare sectors.

Program Specific Outcomes (PSO)

Graduates will be proficient in designing and developing biomedical devices and systems, utilizing knowledge in biomaterials, medical imaging, and bioinstrumentation. They will be equipped to solve real-world problems through interdisciplinary approaches and advanced technologies.

Programme Outcomes (POs)

Students will develop critical thinking and analytical skills to address biomedical engineering challenges, collaborate within multidisciplinary teams, and communicate effectively. They will uphold professional ethics and demonstrate awareness of societal, environmental, and global health issues.

Faculty

Our distinguished faculty comprises experts with profound academic credentials and industry experience, committed to fostering a rigorous learning environment and advancing cutting-edge research.

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Our Esteemed Recruiters

We proudly collaborate with top companies that value talent and innovation,
offering our students exceptional career opportunities.
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From SSIET to the World’s Leading Companies

Graduates from SSIET are well-prepared to enter the world’s best companies. With strong technical expertise, innovative thinking, and problem-solving abilities, our alumni make a difference in shaping industries worldwide.
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How to apply

Step-by-step guide to submitting your application and joining our university community.

Scholarships

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Fee Structure

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Eligibility Criteria

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Admission Requirements

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Campus Life

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Frequently asked Questions

Find answers to common questions about our Biomedical Engineering programs, admissions, and student resources.
What is Biomedical Engineering?

Biomedical Engineering combines engineering principles with medical and biological sciences to develop technologies and devices that improve healthcare and patient outcomes.

What are the eligibility criteria for the Biomedical Engineering program?

Candidates must have completed 10+2 education with Physics, Chemistry, and Mathematics, meeting the minimum percentage criteria and qualifying through entrance exams like JEE Main or state-level tests.

What subjects are included in the Biomedical Engineering curriculum?

Core subjects include Biomaterials, Medical Instrumentation, Bioinformatics, Biomechanics, Medical Imaging, and Clinical Engineering.

What career opportunities are available for Biomedical Engineering graduates?

Graduates can work as Biomedical Engineers, Clinical Engineers, Research Scientists, Rehabilitation Engineers, and in medical device manufacturing or healthcare consulting.

Are internships required in the Biomedical Engineering program?

Yes, internships and practical training are integral to the curriculum, providing students with hands-on experience and industry exposure.

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