Universitas
Airlangga

Fakultas
Sains dan Teknologi

Universitas
Airlangga

Fakultas
Sains dan Teknologi

Masters Programme

Biomedical Engineering

Master of Engineering (M.T.)

Profile

The Master of Biomedical Engineering is a fundamental science that is essential for the development of applied science in the field of medicine. This program produces graduates who can solve problems of science, technology, materials, engineering, and design in the field of biomedical engineering through interdisciplinary and multidisciplinary approaches. Therefore, the curriculum of this program is prepared according to the latest developments in science and technology as well as the application of technology in the field of clinical medicine. In its implementation, the Master of Biomedical Engineering is divided into 2 (two) areas of interest, namely Medical Instrumentation and Biomaterials.

Admission Period:

2 Times/Year

National Accreditation

BAIK SEKALI

An accreditation body charged with carrying out the accreditation process in the field of education.

Vision, Mission, and Goals

Vision

To become a national and international center of excellence in biomedical engineering education and research, based on religious morality, to support the development of the health and medical industries in 2028.

Mission

  1. To organize education, research, and development that is beneficial to society and science in the field of biomedical engineering and to gain national and international recognition based on national values and religious morals.
  2. To produce high-quality biomedical engineering graduates who are oriented towards mastering designs, devices, systems, and materials in the health and medical industry.
  3. To develop knowledge and research in biomedical engineering through research to produce innovative and tested works.
  4. To contribute to the solution of scientific and technological problems in biomedical engineering through inter- or multidisciplinary approaches.

Objectives

  1. Able to solve biomedical engineering problems by undertaking engineering design of medical instrumentation systems and biomedical signal processing systems through a multidisciplinary approach.
  2. Able to develop knowledge and technology in the scientific field or professional practice of biomedical engineering through innovative and tested research.
  3. Ability to design and manage biomedical engineering research and development for the benefit of society and science, and to gain national and international recognition.
  4. Able to carry out biomaterial engineering design for the production of artificial tissues and organs.
  5. Able to formulate safety and security according to medical equipment standards and regulations based on the spirit of excellence with morality.
  6. Able to design operation planning and management in the health and medical industry.

Study Period

2 Years (4 semesters)

Program Implementation

Full Time

Lecture Implementation

On Campus

Download Curriculum