All jobsEngineeringElectrical & Electronic Engineering
15 Electrical & Electronic Engineering Jobs in Hungary
Problems arrive faster than solutions, and days flow around debugging unfamiliar systems under deadline pressure.
Average salary: HUF 10,812,857
Average salary
HUF 10,812,857
across 14 jobs
- Senior Low Voltage System Engineer
- BYD Europe
- Budapest, Hungary
- HUF 14,000,000 – HUF 18,000,000New

- Electrical Maintenance Engineer
- Bosch Group
- Miskolc, Hungary
- HUF 10,800,000 – HUF 14,400,000New

- Project Test Engineer
- Valeo
- Veszprém, Hungary
- HUF 9,600,000 – HUF 14,400,000New

- PLC Engineer
- MAHLE
- Balassagyarmat, Hungary
- HUF 8,000,000 – HUF 12,000,000New

- PLC programozó géptervezési területre
- Bosch Group
- Hatvan, Hungary
- HUF 6,500,000 – HUF 8,500,000New

- Sortervező gyakornok
- Bosch Group
- Hatvan, Hungary
- HUF 26,400,000 – HUF 33,600,000New

- Process Engineer Intern
- Bosch Group
- Hatvan, Hungary
- HUF 4,800,000 – HUF 6,000,000New

- Transducer and Lab Engineer
- HARMAN International
- Székesfehérvár, Hungary
- HUF 8,000,000 – HUF 12,000,000New

- Entry Test Development Engineer
- Emerson
- Debrecen, Hungary
- HUF 6,000,000 – HUF 9,000,000New

- Dual Student - Electrical Engineer
- Schaeffler
- Debrecen, Hungary
- HUF 4,200,000 – HUF 6,000,000New

- Kalibrációs technikus
- Emerson
- Debrecen, Hungary
- HUF 4,800,000 – HUF 7,200,000New

- Calibration and Testing Process Development Engineer
- Bosch Group
- Miskolc, Hungary
- HUF 10,800,000 – HUF 14,400,000New

- Embedded Software Engineer
- Silicon Labs
- Budapest, Hungary
- HUF 12,000,000 – HUF 18,000,000New

- Villamosmérnök
- Kronospan
- Mohács, Hungary
- HUF 1,680,000New

- Folyamatmérnök szenzorgyártás területre
- Bosch Group
- Hatvan, Hungary

Electrical and electronic engineering work involves designing, testing, and maintaining systems that range from power distribution networks to embedded microcontrollers. Employers typically require a degree in electrical or electronic engineering, though some roles accept candidates with related qualifications and demonstrable experience. These positions span manufacturing plants, utilities, telecommunications firms, aerospace companies, and consulting practices, with entry-level roles starting after graduation and senior positions requiring several years of specialized experience.
Electrical & Electronic Engineering jobs by city
- Shanghai28
- Westminster20
- Austin19
- Beijing17
- Santa Clara17
- Xi’an15
- Shenzhen15
- New Taipei City13
- Tel Aviv13
- Singapore12
- Nanjing11
- Singrauli11
- Haifa10
- Bengaluru10
- Chennai10
- Noida9
More in Engineering
- Engineering Managers795
- Mechanical and Related Engineers772
- Manufacturing Technicians657
- Civil and Safety Engineering355
- Chemical Engineering165
- Energy & Sustainability132
- Civil Engineering Technicians114
- Drafters and CAD Designers81
- Agriculture and Food Engineering24
Questions
What qualifications do employers require for entry-level positions?
Most employers require a bachelor's degree in electrical or electronic engineering or a closely related field. Some companies accept higher-level apprenticeships or equivalent professional certifications combined with documented practical experience in electrical systems or component design.
What does a typical day involve?
Days typically include a mix of desk work and hands-on activity: reviewing circuit designs or test results, troubleshooting equipment failures, running simulations, and collaborating with colleagues on specific problems. Time allocation varies widely depending on whether the role is primarily design-focused, maintenance-based, or field-oriented.
How much time is spent in the field versus at a desk?
This depends entirely on the employer and specialization. Power system engineers might spend significant time on-site at installations or substations, while those in semiconductor design rarely leave the office, and most roles split time between both environments.
What core skills matter most in this work?
Problem-solving ability and systematic thinking are essential—most days involve isolating faults or optimizing designs within constraints. Strong technical knowledge of your specific domain, comfort with simulation and diagnostic tools, and the ability to document work clearly are equally important.
How does this work differ from mechanical engineering?
Electrical engineering focuses on systems involving electricity, magnetism, and electromagnetic phenomena, while mechanical engineering deals with physical structures and motion. The two overlap in roles like electromechanical design, but electrical work emphasizes circuit behavior, signal processing, and power management.
What's the difference between electrical and electronic engineering roles?
Electrical engineering typically involves higher power systems like power generation, distribution, and industrial motors. Electronic engineering focuses on lower-power, lower-voltage systems like microcontrollers, sensors, and communication devices, though modern roles increasingly blend both disciplines.
Are these roles typically permanent or contract-based?
Both exist. Large utilities and manufacturers tend to hire permanent staff, while consulting firms and smaller specialist companies often use contract workers. The balance varies by region and employer size.
How does this career progress?
Early roles focus on applying principles under supervision—circuit board design, equipment testing, or junior technician work. Progression leads to independent project ownership, team leadership, and eventually into management or specialized technical expertise roles.
What are the typical working hours?
Most permanent positions follow standard office hours, though on-site maintenance or field service roles may require shift work, on-call availability, or emergency callouts. Emergency response positions are more common in utilities and critical infrastructure than in manufacturing or design.
What technical tools do practitioners use regularly?
Work involves CAD software for design, oscilloscopes and multimeters for testing, simulation platforms for modeling behavior before implementation, and various diagnostic instruments. Specific tools depend on whether work centers on power systems, microelectronics, or communications infrastructure.