Welcome to the Emploi beta! The service is open to job seekers first, and features for companies open during autumn 2026.

Emploi
Log in
  1. Home
  2. Professions
  3. Instrumentation engineer

Instrumentation engineer jobs in Finland

Instrumentation engineers envision and design equipment used in manufacturing processes for controlling and monitoring various engineering processes remotely. They design equipment for the monitoring of production sites such as manufacturing systems, machinery uses and production processes.

Look for instrumentation engineer jobs in Finland anonymously!
Make an anonymous profile. Companies can find you by your skills, without seeing your name or photo.
Create a free profile

Instrumentation engineer - Which skills are essential?

The equipment and instruments used for the monitoring and controlling of processes, such as valves, regulators, circuit breakers, and relays.

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.

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

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.

Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.

Devices or a set of devices that command and manage the performance and behaviour of other equipment and systems. This includes Industrial control systems (ICS) which are used for industrial production and manufacturing.

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

The environmental policies and legislation applicable in a certain domain.

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

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.

The science and engineering discipline that attempts to control process variables of production and manufacturing. It also focuses on the design of systems with desired behaviours. These systems use sensors to measure the output performance of the device that is being controlled.

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.

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

Develop devices that command and manage the behaviour of other devices and systems, using engineering and electronics principles.

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.

Develop control equipment, such as valves, relays, and regulators, which can be used to monitor and control processes. Test the developed equipment.

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

Instrumentation engineer - Which skills are useful but not essential?

Implement safety programmes to comply with national laws and legislation. Ensure that equipment and processes are compliant with safety regulations.

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.

The steps required through which a material is transformed into a product, its development and full-scale manufacturing.

Transpose a series of requirements into a clear and organised software design.

The interdisciplinary branch of engineering that deals with the behaviour of dynamical systems with inputs and how their behaviour is modified by feedback.

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.

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.

Create technical designs and technical drawings using specialised software.

Set up, adjust, operate and maintain instrumentation systems. Process and analyse data, and present research results.

Define, in collaboration with managers and quality experts, a set of quality standards to ensure compliance with regulations and help achieve customers' requirements.

Ensure that the necessary equipment is provided, ready and available for use before start of procedures.

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 equipment and instruments used for the monitoring and controlling processes in power plants. This requires proper operation, calibration, and regular maintenance.

The generation of electrical energy through the use of nuclear reactors, by converting the energy released from nuclei of atoms in reactors which generate heat. This heat subsequently generates steam which can power a steam turbine to generate electricity.

Compose work-related reports that support effective relationship management and a high standard of documentation and record keeping. Write and present results and conclusions in a clear and intelligible way so they are comprehensible to a non-expert audience.

Oversee the selection, training, performance and motivation of staff.

The computer-aided design (CAD) software for creating, modifying, analysing or optimising a design.

Build systems and instruments which measure, control, and monitor processes. Fit the instrument parts such as power supplies, control units, lenses, springs, circuit boards, sensors, transmitters, and controllers.

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

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

Design and develop microelectromechanical systems (MEMS), such as microsensing devices. Make a model and a simulation using technical design software to assess the viability of the product and examine the physical parameters to ensure a successful production process.

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.

Select, perform and track testings on software or hardware to detect system defects both within the integrated system units, the inter-assemblages and the system as a whole. Organise testings such as installation testing, security testing and graphical user interface testing.

Adhere to standards of hygiene and safety established by respective authorities.

The use of software to track all information concerning a product such as technical specifications, drawings, design specifications, and production costs.

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.

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.

Develop testing protocols to enable a variety of analyses of products, systems, and components.

Analyse production processes leading toward improvement. Analyse in order to reduce production losses and overall manufacturing costs.

Look for instrumentation engineer jobs in Finland anonymously!
Make an anonymous profile. Companies can find you by your skills, without seeing your name or photo.
Create a free profile

Sources

This service uses the ESCO classification of the European Commission.

How we calculated these figures