6B06107
Cyber-Physical Systems
DEGREE
BACHELOR'S DEGREE
DEPARTMENT
COMPUTER
ENGINEERING
FACULTY
COMPUTER
TECHNOLOGIES
AND CYBERSECURITY


ABOUT THE PROGRAM

SPECIALIZED SUBJECTS (UNT)
Mathematics + Computer Science
DURATION OF STUDY
4 YEARS
MODE OF STUDY
FULL-TIME
LANGUAGE OF INSTRUCTION
ENGLISH , RUSSIAN

MORE DETAILS

The goal of the academic program Cyber-Physical Systems to train qualified specialists in robotics and infocommunication systems who possess the necessary knowledge for developing and maintaining software products, and practical skills in hardware engineering.

— Machine Learning -1

— 3D-Modeling (Altium Designer)

— Introduction to Artificial Intelligence

— 3D-Printing (SolidWorks)

— Smart Technologies

— IT-Project Implementation

— Fundamentals of Information Security

— Network Programming

— Electronic Systems.

— Smart device engineering and automation (Robotics & Control)

— Ability to create algorithms that enable physical objects to move, respond, and make decisions

— Robotics and autonomous systems: Programming drones, industrial robotic manipulators, and autonomous driving systems (Autonomous Vehicles)

— Sensor networks and edge computing: Working with sensors, actuators, and microcontrollers; writing code that processes sensor data directly on devices (at the “network edge”) for real-time response of the system without cloud delays

— Programmable logic controllers (PLC): Designing automated industrial control systems used at modern factories

— Development of IoT architectures for complex industrial and urban systems (Smart City, Smart Grid, Smart Farming)

— Predictive Analytics: Using machine learning to analyze sensor data and predict equipment failures before they occur

— Industry versatility: Opportunities in high-tech sectors such as aerospace, modern mechanical engineering, energy, agrotech, and logistics

— Innovation creation mindset not only its service: Graduates not only maintain servers, they create cutting-edge products such as smart traffic lights, climate control for smart greenhouses, and wearable medical devices.

— Practice-oriented training

— Interdisciplinary approach of training

— Mastery of modern engineering tools

— Alignment with labor market needs in Kazakhstan

— Opportunities for professional and academic growth.

— IoT Software Engineer

— Cloud IoT Engineer

— Automation and Digitalization Engineer

— Cyber-Physical/Embedded Systems Engineer

— AI and Smart Systems Developer (Junior/Middle).


DOCUMENTS


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