Component engineer jobs in Finland
Component engineers design and envision the engineering development of different small parts composing a bigger project, machine, or process. They ensure that parts are not conflicting from an engineering perspective.
Component engineer - Which skills are essential?
Materials and techniques required in the production and distribution processes.
The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.
Apply mathematical methods and make use of calculation technologies in order to perform analyses and devise solutions to specific problems.
The steps required through which a material is transformed into a product, its development and full-scale manufacturing.
Mathematics is the study of topics such as quantity, structure, space, and change. It involves the identification of patterns and formulating new conjectures based on them. Mathematicians strive to prove the truth or falsity of these conjectures. There are many fields of mathematics, some of which are widely used for practical applications.
Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.
Create technical designs and technical drawings using specialised software.
Drawing software and the various symbols, perspectives, units of measurement, notation systems, visual styles and page layouts used in technical drawings.
Manage engineering project resources, budget, deadlines, and human resources, and plan schedules as well as any technical activities pertinent to the project.
Understand project management and the activities which comprise this area. Know the variables implied in project management such as time, resources, requirements, deadlines, and responding to unexpected events.
The systematic approach to the development and maintenance of engineering systems.
Analyse, understand and apply the information provided regarding technical conditions.
Perform the evaluation and assessment of the potential of a project, plan, proposition or new idea. Realise a standardised study which is based on extensive investigation and research to support the process of decision making.
Specify technical properties of goods, materials, methods, processes, services, systems, software and functionalities by identifying and responding to the particular needs that are to be satisfied according to customer requirements.
Revise and analyse financial information and requirements of projects such as their budget appraisal, expected turnover, and risk assessment for determining the benefits and costs of the project. Assess if the agreement or project will redeem its investment, and whether the potential profit is worth the financial risk.
Component engineer - Which skills are useful but not essential?
Read and comprehend circuit diagrams showing the connections between the devices, such as power and signal connections.
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.
Record data which has been identified specifically during preceding tests in order to verify that outputs of the test produce specific results or to review the reaction of the subject under exceptional or unusual input.
Understand electrical engineering, a field of engineering that deals with the study and application of electricity, electronics, and electromagnetism.
Conduct inspections and tests of services, processes, or products to evaluate quality.
The elements used in design such as unity, scale, proportion, balance, symmetry, space, form, texture, colour, light, shade and congruence and their application into practice.
Improve production rates, efficiencies, yields, costs, and changeovers of products and processes by using relevant advanced, innovative, and cutting edge technology.
Regularly inspect and perform all required activities to maintain the equipment in functional order prior or after its use.
Ensure that the necessary equipment is provided, ready and available for use before start of procedures.
Use equipment to test performance and operation of machinery.
The components that can be found in robotic systems, such as microprocessors, electronics, sensors, circuit boards, encoders, servomotors, controllers, pneumatics or hydraulics.
The scientific and practical study that deals with the foundations of information and computation, namely algorithms, data structures, programming, and data architecture. It deals with the practicability, structure and mechanisation of the methodical procedures that manage the acquisition, processing, and access to information.
Interpret and analyse data collected during testing in order to formulate conclusions, new insights or solutions.
Offer help and advice to service technicians in case of machine malfunctions and other repair tasks.
The national and international requirements, specifications and guidelines to ensure that products, services and processes are of good quality and fit for purpose.
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.
Discipline that applies principles of physics, engineering and materials science to design, analyse, manufacture and maintain mechanical systems.
List the design specifications such as materials and parts to be used and a cost estimate.
Build the pre-assembled components of a machine on site, adjust it according to specifications and put it into operation.
Use computer-aided design (CAD) systems to assist in the creation, modification, analysis, or optimisation of a design.
Oversee the testing procedures to ensure that the end-product complies with the quality and safety requirements.
Draft sketches and design electromechanical systems, products, and components using Computer Aided Design (CAD) software and equipment.
The use of software to track all information concerning a product such as technical specifications, drawings, design specifications, and production costs.
Analyse production processes leading toward improvement. Analyse in order to reduce production losses and overall manufacturing costs.