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Electromechanical engineer jobs in Finland

Electromechanical engineers design and develop equipment and machinery that use both electrical and mechanical technology. They make draughts and prepare documents detailing the material requisitions, the assembly process and other technical specifications. Electromechanical engineers also test and evaluate the prototypes. They oversee the manufacturing process.

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Electromechanical engineer - Which skills are essential?

Apply systematic research methods and communicate with relevant parties in order to find specific information and evaluate research results to assess the information's relevance, relating technical systems and developments.

Conduct a comprehensive and systematic research of information and publications on a specific topic. Present a comparative evaluative literature summary.

Electricity is created when electric current flows along a conductor. It entails the movement of free electrons between atoms. The more free electrons are present in a material, the better this material conducts. The three main parameters of electricity are the voltage, current (ampère), and resistance (ohm).

The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.

Collect data and statistics to test and evaluate in order to generate assertions and pattern predictions, with the aim of discovering useful information in a decision-making process.

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.

Motors which are able to convert electrical energy into mechanical energy.

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 design drawings detailing the design of products, tools, and engineering systems.

Understand electrical engineering, a field of engineering that deals with the study and application of electricity, electronics, and electromagnetism.

Monitor quality standards in manufacturing and finishing process.

Adjust designs of products or parts of products so that they meet requirements.

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.

Test electromechanical systems, machines, and components using appropriate equipment. Gather and analyse data. Monitor and evaluate system performance and take action if needed.

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.

The natural science involving the study of matter, motion, energy, force and related notions.

The environmental policies and legislation applicable in a certain domain.

Model and simulate an electromechanical system, product, or component so that an assessment can be made of the viability of the product and so the physical parameters can be examined before the actual building of the product.

Interpret and analyse data collected during testing in order to formulate conclusions, new insights or solutions.

The threats for the environment which are related to biological, chemical, nuclear, radiological, and physical hazards.

Discipline that applies principles of physics, engineering and materials science to design, analyse, manufacture and maintain mechanical systems.

Electromechanical systems that utilise electric motors to control the movement and processes of electrical machinery.

Design prototypes of products or components of products by applying design and engineering principles.

Comply with regulations banning heavy metals in solder, flame retardants in plastics, and phthalate plasticisers in plastics and wiring harness insulations, under EU RoHS/WEEE Directives and China RoHS legislation.

Draft sketches and design electromechanical systems, products, and components using Computer Aided Design (CAD) software and equipment.

Produce research documents or give presentations to report the results of a conducted research and analysis project, indicating the analysis procedures and methods which led to the results, as well as potential interpretations of the results.

Understand the principles of electricity and electrical power circuits, as well as the associated risks.

The principles and operations of devices that can convert mechanical energy into electrical energy, such as dynamos and alternators, rotors, stators, armatures, and fields.

Prepare early models or prototypes in order to test concepts and replicability possibilities. Create prototypes to assess for pre-production tests.

The visual schematic representation of an electrical circuit, its components, and the connections between these components.

Electrical apparatus that are able to convert mechanical energy to electrical energy (generators), electrical energy to mechanical energy (motors), and change the voltage level of an AC or alternating current (transformers).

Give consent to the finished engineering design to go over to the actual manufacturing and assembly of the product.

Electromechanical engineer - Which skills are useful but not essential?

Prepare documentation for existing and upcoming products or services, describing their functionality and composition in such a way that it is understandable for a wide audience without technical background and compliant with defined requirements and standards. Keep documentation up to date.

Respond to and communicate with customers in the most efficient and appropriate manner to enable them to access the desired products or services, or any other help they may require.

Design the appropriate firmware to a specific electronic system.

Observe machine operations and evaluate product quality thereby ensuring conformity to standards.

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.

Define and describe the criteria by which data quality is measured for manufacturing purposes, such as international standards and manufacturing regulations.

Firmware is a software program with a read-only memory (ROM) and a set of instructions that is permanently inscribed on a hardware device. Firmware is commonly used in electronic systems such as computers, mobile phones, and digital cameras.

Create detailed technical plans of machinery, equipment, tools and other products.

Put together electromechanical equipment and machinery according to specifications.

Compose routine reports; identify appropriate forms or documents to record data from manual inspections and/or electronic systems. Write clear observations as required. A written report is usually a summary of readings from the routine performance of the reticulation system.

Use computer-aided manufacturing (CAM) programmes to control machinery and machine tools in the creation, modification, analysis, or optimisation as part of the manufacturing processes of workpieces.

Plan, coordinate and supervise engineering activities together with engineers and engineering technicians. Ensure clear and effective channels of communication across all departments. Make sure the team is aware of the standards and objectives of the research and development.

The software to perform computer-aided engineering (CAE) analysis tasks such as Finite Element Analysis and Computional Fluid Dynamics.

The functioning, design, and usage of electronics that control and convert electric power. Power conversion systems are usually categorised as AC-DC or rectifiers, DC-AC or inverters, DC-DC converters, and AC-AC converters.

Analyse the principles that need to be considered for engineering designs and projects such as functionality, replicability, costs and other principles.

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.

Set up a list of materials, components, and assemblies as well as the quantities needed to manufacture a certain product.

Use computer-aided design (CAD) systems to assist in the creation, modification, analysis, or optimisation of a design.

Microelectromechanical systems (MEMS) are miniaturised electromechanical systems made using processes of microfabrication. MEMS consist of microsensors, microactuators, microstructures, and microelectronics. MEMS can be used in a range of appliances, such as ink jet printer heads, digital light processors, gyroscopes in smart phones, accelerometers for airbags, and miniature microphones.

Explain technical details to non-technical customers, stakeholders, or any other interested parties in a clear and concise manner.

Manage and plan various resources, such as human resources, budget, deadline, results, and quality necessary for a specific project, and monitor the project's progress in order to achieve a specific goal within a set time and budget.

Program permanent software with a read-only memory (ROM) on a hardware device, such as an integrated circuit.

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.

Establish a positive, long-term relationship between organisations and interested third parties such as suppliers, distributors, shareholders and other stakeholders in order to inform them of the organisation and its objectives.

Observe principles in keeping an engineering watch. Take over, accept and hand over a watch. Perform routine duties undertaken during a watch. Maintain the machinery space logs and the significance of the readings taken. Observe safety and emergency procedures. Observe safety precautions during a watch and take immediate actions in the event of fire or accident, with particular reference to oil systems.

Subdiscipline of energy and electrical engineering which specialises in the generation, transmission, distribution, and usage of electrical power through the connection of electrical devices to motors, generators, and transformers, such as an AC-DC power adapter.

Lead and guide employees through a process in which they are taught the necessary skills for the perspective job. Organise activities aimed at introducing the work and systems or improving the performance of individuals and groups in organisational settings.

Create the drawings that identify the different components and materials, and that provide instructions as to how they should be assembled.

Estimate the expected input in terms of time, human and financial resources necessary to achieve the project objectives.

Convert market requirements into product design and development.

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Sources

This service uses the ESCO classification of the European Commission.

How we calculated these figures