Avionics inspector jobs in Finland
Avionics inspectors inspect instruments, electrical, mechanical and electronic systems of aircrafts to ensure their compliance with the performance and safety standards. They also examine maintenance, repair and overhaul work and review any modification to check its conformity to standards and procedures. They provide detailed inspection, certification and repair records.
Avionics inspector - Which skills are essential?
Solve problems which arise in planning, prioritising, organising, directing/facilitating action and evaluating performance. Use systematic processes of collecting, analysing, and synthesising information to evaluate current practice and generate new understandings about practice.
The procedures to inspect a product or system to ensure that it is according to specifications and requirements.
Use various techniques to ensure the product quality is respecting the quality standards and specifications. Oversee defects, packaging and sendbacks of products to different production departments.
Know the setting, features and operation of aircraft flight control systems. Manage flight control surfaces, cockpit controls, connections, and operating mechanisms required to control the flight direction of an aircraft. Operate aircraft engine controls in order to change aircraft speed.
The engineering processes that combine electrical and mechanical engineering in the application of electromechanics in devices that need electricity to create mechanical movement or devices that create electricity by mechanical movement.
Understand electrical engineering, a field of engineering that deals with the study and application of electricity, electronics, and electromagnetism.
Oversee all personnel and processes to comply with health, safety and hygiene standards. Communicate and support alignment of these requirements with the company's health and safety programmes.
Technicalities over mechanics in aircrafts and related topics in order to perform a wide range of repais in aircrafts.
Read and comprehend standard blueprints, machine, and process drawings.
The systematic approach to the development and maintenance of engineering systems.
Use equipment to test performance and operation of machinery.
The functioning of electronic circuit boards, processors, chips, and computer hardware and software, including programming and applications. Apply this knowledge to ensure electronic equipment runs smoothly.
Tend a wide variety of devices for measuring electronic characteristics of system components, such as optical power meter, fibre power meter, digital power meter and multimeter.
Read the technical drawings of a product made by the engineer in order to suggest improvements, make models of the product or operate it.
Test electronic units using appropriate equipment. Gather and analyse data. Monitor and evaluate system performance and take action if needed.
Conduct experimental, environmental and operational tests on models, prototypes or on the systems and equipment itself in order to test their strength and capabilities under normal and extreme conditions.
Understand the principles of electricity and electrical power circuits, as well as the associated risks.
Write the results and conclusions of the inspection in a clear and intelligible way. Log the inspection's processes such as contact, outcome, and steps taken.
Understand and use technical documentation in the overall technical process.
The body of legislation and regulations that apply to the field of civil aviation at regional, national, European and International levels. Understand that regulations aimed at protecting citizens at all times in civil aviation; ensure that operators, citizens, and organisations comply with these rules.
Theoretical and practical applications of the science studying the action of displacements and forces on physical bodies to the development of machinery and mechanical devices.
Read and comprehend blueprints and electrical diagrams; understand technical instructions and engineering manuals for assembling electrical equipment; understand electricity theory and electronic components.
Avionics inspector - Which skills are useful but not essential?
Act as the person to be contacted when an equipment incident occurs. Participate in the investigation by providing insights.
Prepare an audit plan including both pre-audits and certification audits. Communicate with the different processes in order to implement the improvement actions that lead to certification.
The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.
Inspect aircraft, aircraft components, and aviation equipment to ensure they conform to design specifications and to airworthiness standards following major repairs or alterations. Approve or deny issuance of airworthiness certificates.
Issue official documentation which grants licence holders with official permission to perform certain activities, after having investigated the application and processed the necessary documentation.
Perform tests putting a system, machine, tool or other equipment through a series of actions under actual operating conditions in order to assess its reliability and suitability to realise its tasks, and adjust settings accordingly.
Correct and adjust the reliability of an electronic instrument by measuring output and comparing results with the data of a reference device or a set of standardised results. This is done in regular intervals which are set by the manufacturer and using calibration devices.
Oversee the selection, training, performance and motivation of staff.
Maintain equipment used for testing the quality of systems and products.
Direct and supervise the day-to-day activities of subordinate personnel.
Oversee maintenance activities, making sure that staff is following procedures and ensuring routine and periodic refurbishment and maintenance activities.
Collaborate with engineers to ensure common understanding and discuss product design, development and improvement.
Send equipment that didn't pass inspection back to the assembly line for re-assembly.
Lead inspections and the protocol involved, such as introducing the inspection team, explaining the purpose of the inspection, performing the inspection, requesting documents, asking appropriate questions, and maintaining a high level of professionalism when investigating subjects.