Duration3 years after a preparatory cycle or Bachelor degree
DegreeNational Engineering Degree
AdmissionScientific high school diploma, preparatory cycle, Bachelor or Master degree depending on entry level
CampusBoukhzar, Sousse
Overview
A structured programme designed to build practical skills.
Biomedical engineers connect medicine and technology. They design, develop and maintain medical equipment, contribute to patient safety and support innovation in hospitals, clinics and healthcare companies.
Programme objectives
01
Understand medical-device operation and clinical use
02
Design and maintain safe biomedical equipment
03
Apply AI, image processing and data to healthcare
04
Master quality and medical regulatory requirements
Useful information
What you need to know before applying.
A clear view of the programme, application process and support offered by ESPITA.
Application review
Your application is reviewed according to your academic level, qualifications and study project.
Applied learning
Lectures, tutorials, practical work, projects and case studies structure your progress.
Internships and final project
Professional experience supports skills development and employability.
International support
Students can receive support for mobility, international internships and further study.
Monthly payment available
Payment terms and schedules are confirmed with the administration office.
French / English learning
Technical and professional English is progressively integrated into the programme.
Detailed curriculum
Structured progress, year by year.
Each stage combines courses, practice, projects and professional skills development.
01
Engineering Year 1
Engineering science and biomedical foundations
Electronics and sensors
Signal processing
Physiology and anatomy
Biomechanics
Scientific programming
Project
Project: acquire and analyse a physiological signal.
02
Engineering Year 2
Medical technologies and intelligent systems
Biomedical instrumentation
Medical imaging
Medical AI
Medical-device maintenance
Quality systems
Project
Project: prototype or intelligent monitoring solution for healthcare.
03
Engineering Year 3
Clinical innovation and professional expertise
Medical robotics
E-health and telemedicine
Regulation and risk management
Connected health
Biomedical project management
Project
Industry or hospital final project addressing a real healthcare need.
Detailed content may evolve during curriculum updates. The admissions office confirms the version applicable to each intake.
Skills developed
Technical, methodological and interpersonal skills.
Biomedical instrumentationMedical-device maintenanceMedical imagingAI and medical computingQuality and regulationHealthcare project management
Learn by creating real projects.
Connected patient-monitoring system
Medical image analysis
Preventive maintenance solution for hospital equipment
Programme technologies and certifications.
ISO 13485Six Sigma Green BeltCBET preparationDICOM/PACSFDA & CE fundamentalsPMI/PMP fundamentalsAI for HealthcarePython for Biomedical Data Science