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Photonics engineer jobs in Finland

Photonics engineers are concerned with the generation, transmission, transformation, and detection of light. They conduct research, design, assemble, test and deploy photonic components or systems in multiple application fields, from optical communications to medical instrumentation, material processing or sensing technology.

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Photonics engineer - Which skills are essential?

The national and international quality and safety standards and regulations with regards to the use and manufacture of optical equipment, including optical materials, optical components, optical systems, ophthalmic equipment, optomechanical equipment, optical measuring equipment, photographic equipment, and optoelectronic equipment.

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

The characteristics of optical glass such as refractive index, dispersion, and chemical properties.

The science and technology of generating, controlling and detecting particles of light. It explores phenomena and applications in which light is used to transfer or process information, or to physically alter materials.

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.

Test optical systems, products, and components with appropriate optical testing methods, such as axial ray testing and oblique ray testing.

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 science that studies the elements and reaction of light.

Possess information on the types of optical instruments and lenses, such as microscopes and telescopes, as well as on their mechanics, components, and characteristics.

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

Conduct inspections and tests of services, processes, or products to evaluate quality.

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.

Refractive power or optical power is the degree to which an optical system, such as a lens, converges or diverges light. Diverging lenses possess negative refractive power, while converging lenses possess positive refractive power.

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

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

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.

Subdiscipline of engineering that deals with the development of optical instruments and applications, such as telescopes, microscopes, lenses, lasers, fibre optic communication, and imaging systems.

The components and materials necessary for building optical instruments, such as lenses and frames.

The process and different stages of manufacturing an optical product, from design and prototyping to the preparation of optical components and lenses, the assembly of optical equipment, and the intermediate and final testing of the optical products and its components.

Read the technical drawings of a product made by the engineer in order to suggest improvements, make models of the product or operate it.

Design and develop optical and imaging systems, products, and components, such as lasers, microscopes, optical fibre, cameras, and magnetic resonance imaging (MRI) machines.

Model and simulate optical systems, products, and components using technical design software. Assess the viability of the product and examine the physical parameters to ensure a successful production process.

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

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.

Operate devices, machinery, and equipment designed for scientific measurement. Scientific equipment consists of specialised measuring instruments refined to facilitate the acquisition of data.

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

Design and develop prototypes of optical products and components using technical drawing software.

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

Devices that are able to produce light through the optical amplification of the stimulated emission of electromagnetic radiation, such as gas lasers, solid-state lasers, fiber lasers, photonic lasers and semiconductor lasers. The spatial and temporal coherence of lasers allows for the concentration of light in one place, such as laser pointers, as well as the concentration of light in time, so that light can be produced in a much shorter time than other light and can also emit as single colour of light.

Photonics 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.

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.

Optical devices, systems, and components that possess electrical or electronic features, such as lasers or electrooptic modulators.

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.

Mount optical components, such as lenses, and precision mechanical components, such as frames, into assemblies and adjust. Lenses are mechanically set into place using threaded retaining rings and the use of adhesive cement on the outer cylindrical edge to hold individual lenses in place.

Identify, report and repair equipment damage and malfunctions; communicate with field representatives and manufacturers to obtain repair and replacement components.

Components that possess mechanical and optical features, such as optical mirrors, optical mounts, and optical fibre.

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.

Set of technologies used to creating visual representations of the body interior for the purposes of clinical analysis.

Types of sensors used in digital cameras, such as charged coupled devices (CCD) and complementary metal oxide semiconductor sensors (CMOS).

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

Micro-opto-electro-mechanics (MOEM) combines microelectronics, microoptics and micromechanics in the development of MEM devices with optical features, such as optical switches, optical cross-connects, and microbolometers.

The field of physics combining quantum field theory and physical optics.

The study and appliance of electrical fields to generate and control optical radiation.

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.

Subset of mechanical engineering specialised in optical systems and products, such as binoculars, microscopes, telescopes, and spectrometers, as well as optomechanical components, such as optical mounts and optical mirrors.

The national and international requirements, specifications and guidelines to ensure that products, services and processes are of good quality and fit for purpose.

Use electronic, mechanical, electric, or optical precision tools for precision work.

Optical devices with a size of 1 millimeter or smaller, such as microlenses and micromirrors.

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.

Electronic devices, systems, and components that possess optical features. These devices or components may include electrically driven light sources, such as LEDs and laser diodes, components that can convert light into electricity, such as solar or photovoltaic cells, or devices that can electronically manipulate and control light.

The different electromagnetic wavelenghts or frequencies that are situated on the electromagnetic spectrum. Wavelenghts are divided in several categories according to their wavelength and energy level, starting from radio wavelenghts with a long wavelength and a low energy level, to microwaves, infrared, visible light, ultraviolet, X-rays, and finally Gamma-rays with a short wavelength and a high energy level.

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.

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.

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.

Branch of electronics and optics dedicated to the study and use of electronic devices that detect and control light.

Set up and operate optical processing or assembly equipment, such as optical spectrum analysers, power saws, lasers, die bonders, soldering irons, and wire bonders.

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.

The technology which utilises optical fibre, such as plastic or glass threads, to transmit data. Optical fibres are able to transmit light between the two ends of the fibre and may transfer images and messages modulated onto light waves. Fibre optic cables have increased in popularity because of their possibility to transfer data over long distances at higher bandwidths and with lesser amounts of interference than metal cables.

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Sources

This service uses the ESCO classification of the European Commission.

How we calculated these figures