1 Years On Campus Bachelors Program
The Bachelor of Engineering (Honours) in Electronic Engineering / Engineering Software at Technological University Dublin is a one-year intensive honours add-on programme designed for students who already hold a relevant engineering qualification and want to upgrade to a Level 8 honours degree. This programme sharpens advanced technical, analytical, and design skills in electronics and software systems, preparing graduates for professional engineering roles, postgraduate study, and international career opportunities.
Curriculum Structure
Single Honours Year — Advanced Engineering & Professional Practice
This one-year programme is academically demanding and focused on advanced engineering application rather than introductory theory. Students study high-level modules in areas such as advanced electronic systems, embedded and real-time software, communications and digital systems, and engineering system integration, building on prior undergraduate knowledge.
A major component of the year is the individual honours engineering project, where students independently plan, design, implement, and evaluate a substantial electronic or software-based system. This project demonstrates professional competence, research capability, and readiness for engineering practice or postgraduate progression.
Focus areas:
Advanced electronic engineering • Engineering software development • Embedded and real-time systems • Digital and communication systems • Hardware–software integration • Engineering research and design • Professional engineering practice
Learning outcomes:
Graduates will be able to design and evaluate complex electronic and software systems, integrate hardware and software solutions at an advanced level, apply modern engineering tools and methodologies, manage independent engineering projects, analyse technical data critically, and communicate professional engineering solutions effectively and ethically.
Professional alignment (accreditation):
This one-year honours add-on degree aligns with recognised engineering education standards and supports progression toward professional engineering registration, enhanced employability, and eligibility for postgraduate engineering study.
Reputation (employability & standing):
Technological University Dublin is well regarded for its applied, industry-focused engineering education. Graduates of this honours add-on programme are attractive to employers in sectors such as electronics design, embedded systems, automation, software-driven engineering, telecommunications, and intelligent systems, as they graduate with a recognised Level 8 honours qualification and strong project experience.
At Technological University Dublin, the Bachelor of Engineering in Electronic Engineering with Engineering Software is designed for students who want to combine deep electronic engineering know‑how with practical software‑centric skills. This degree goes beyond traditional electronics by embedding modern software practice — giving you experience in programming, embedded systems, digital design, and real hardware integration. From your first weeks on campus you’ll be working in sophisticated labs, building circuits, writing code, testing systems, and creating prototypes that reflect how real engineers and developers solve problems in industry. Practical learning underpins the programme, with hands‑on experimentation, multi‑disciplinary projects, and opportunities to apply computing skills to embedded hardware, automation systems, signal processing, and digital communication.
Here’s how experiential learning shapes your degree:
Electronic Engineering & Digital Labs
You’ll work regularly in engineering labs where you build and test analogue and digital electronic circuits, work with microcontrollers and sensor systems, integrate hardware and software, and use real measurement and diagnostic tools to analyse system behaviour.
Embedded Systems & Firmware Development
Practical sessions focus on programming microcontrollers and embedded platforms, where you write software that directly interacts with hardware — learning how to control devices, read sensors, and manage real‑time systems.
Engineering Software Development Practice
Coursework includes substantial software development components where you learn and apply industry‑relevant programming languages and environments. You’ll work on software that supports engineering tasks such as automation, data handling, control and communication.
Team Projects & Applied Assignments
Throughout the degree, you’ll take part in project work that mirrors real workplace challenges — from designing an intelligent sensing device to developing software tools that automate analysis — helping you build teamwork, documentation, and project planning skills.
Digital Tools & Simulation Environments
Students gain experience with professional software for circuit design, system simulation, embedded‑software development, data analysis, and modelling. These tools help you prototype and refine engineering and software solutions.
Industry Exposure & Professional Practice
The programme includes industry engagement through guest lectures, demonstration workshops and employer interactions that connect what you’re learning to how practising engineers and software developers work.
Final‑Year Capstone Integration Project
In your final year, you complete a substantial project that brings electronics and software together. This capstone challenge lets you showcase an integrated system — such as a robotics controller, smart sensor network, or automated test platform — demonstrating your readiness for professional engineering roles.
Research‑Informed Teaching & Contemporary Topics
Teaching draws on current developments in electronics, embedded computing and software engineering so that your learning remains relevant to real technological trends and industry expectations.
Optional Study Abroad & Global Perspective
You have opportunities to broaden your academic experience with study exchanges or industry‑aligned placements overseas, giving you international context and exposure to global engineering practices.
Facilities & Practical Resources (Official):
Dedicated electronics and embedded systems laboratories, software development and simulation suites, diagnostic and measurement tools, prototyping and testing workspaces, design collaboration zones, and access to TU Dublin’s engineering library and computing infrastructures — all structured to give you real hands‑on experience in both electronics and engineering software.
The Bachelor of Engineering in Electronic Engineering / Engineering Software at Technological University Dublin (TU Dublin) prepares you for careers where hardware and software intersect — designing, developing and maintaining electronic systems, embedded devices, and intelligent applications across industries such as automation, telecommunications, consumer electronics, robotics, smart systems and IT. Graduates typically enter professional roles such as Embedded Systems Engineer, Software/Hardware Integration Engineer, Electronic Systems Developer and Controls/Automation Engineer, with strong prospects in technology‑driven sectors:
• University Services to Support Your Career: TU Dublin’s Careers Service provides personalised career guidance, professional skills workshops (CVs, interview practice, networking), internship and placement support, employer engagement events, and access to targeted graduate opportunities — all designed to help you step confidently into the workforce.
• Employment Outcomes & Salary Prospects: Graduates from this programme benefit from strong industry demand for engineers who can work across both electronic hardware and software platforms. These multidisciplinary skills support competitive starting salaries and strong employability in sectors like embedded systems, automation, telecommunications, digital design and software development.
• University–Industry Engagement: The programme engages with employers and industry partners in electronic design, software development, automation, robotics and technology sectors, giving you exposure to real‑world challenges, project experience and professional networks that enhance your readiness for employment.
• Long‑Term Accreditation Value: The degree provides a solid engineering education foundation that supports further professional development and progression toward recognised engineering qualifications, including pathways that help build toward Chartered Engineer status internationally.
• Graduation Outcomes: Graduates are prepared to contribute to hardware and software design, embedded application development, system optimisation and control technologies. You’ll be ready to work in environments that require both electronic engineering knowledge and software engineering skills.
Typical roles graduates move into include:
• Embedded Systems Engineer – building and testing integrated hardware/ software systems.
• Software/Hardware Integration Engineer – connecting software logic with electronic platforms.
• Electronic Systems Developer – designing and optimising electronic circuits and systems.
• Controls & Automation Engineer – developing control systems for industrial and intelligent platforms.
Further Academic Progression:
After completing the BEng in Electronic Engineering / Engineering Software, you can enhance your expertise and broaden your career opportunities through postgraduate study. Many graduates pursue Master’s degrees in specialised areas such as embedded systems engineering, software engineering for electronic systems, digital systems design, intelligent control systems or telecommunications engineering to deepen technical knowledge and specialist skills. Others choose PhD research in fields like embedded platforms, machine‑machine communication, cyber‑physical systems or advanced electronics, positioning themselves for careers in research, innovation or academic leadership. Advanced study also supports professional accreditation goals and long‑term career advancement in engineering and technology.



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