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NT Invest AS
Oslo, Norway
A
1-10 Employees
2008
Key takeaway
Nano Tech Elements, Inc. specializes in sourcing electronic components and provides personalized, high-quality services tailored to customer needs.
Reference
Product
RCI-0805-2940F - Nano Tech Elements Inc.
INTERNATIONAL MANUFACTURING SERVICES INC
Odd Tvedt & Co A/s
Bergen, Norway
A
1-10 Employees
1952
Key takeaway
The company has a long history of supplying semiconductor components such as transistors and integrated circuits for various production series, as well as a range of microwave filters and diplexers.
Reference
Core business
Odd Tvedt & Co. AS
Texi Electronics AS
Horten, Norway
A
11-50 Employees
1986
Key takeaway
Texi Electronics AS specializes in the production of circuit boards and offers a range of electronic components, including terminals, connectors, and electric terminal blocks, ensuring high-quality and cost-effective solutions for clients' needs.
Reference
Core business
Agencies -
At any time, we can deliver terminals, connectors, tools, clamps, electric terminal blocks etc. to very competitive prices.
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TECO Electronics
Skien, Norway
A
1-10 Employees
1994
Key takeaway
TECO Electronics AS is a Norwegian company specializing in maritime electronics and automation, offering a wide range of integrated solutions and services, including PCB service. Their expertise in system integration highlights their capability to provide comprehensive electronic solutions for commercial ships and offshore rigs.
Reference
Service
Consulting | TECO Electronics
TECO Electronics AS 25 year’s On board service and PCB service. Our competence is not specific to one maker. We see the system integration as one solution.
EC Partner
Oslo, Norway
A
1-10 Employees
2002
Key takeaway
EC Partner specializes in providing customized technical solutions and has over 25 years of experience in supplying high-quality and cost-effective passive and thermal components to the Norwegian electrical industry.
Reference
Core business
Velkommen til EC Partner AS | EC Partners AS
Vi har levert høykvalitets- og prisgunstige passive og termiske komponenter til norsk elektroindustri i mer enn 25 år, og kan gi deg kvalifisert kompetanse.
Cubic
Oslo, Norway
A
1-10 Employees
1973
Key takeaway
CUBIC, a prominent player in electromechanics since 1973, specializes in a diverse range of electrical components, emphasizing quality and reliability. Their products are designed to enhance safety and competitiveness, making them a valuable partner for those in need of electrical solutions.
Reference
Product
Electrical components - CUBIC
Electrical components One of our key focuses is adding value to our Partners’ businesses. With our range of electrical components, we provide added value through safety, increased competitiveness and easy mounting. As with everything we do, our range of electrical components is thoroughly tested in the Modular System. CUBIC offers five types of electrical components: […]
Elmatica as
Oslo, Norway
A
101-250 Employees
1971
Key takeaway
NCAB Group is a leading producer of printed circuit boards (PCBs), emphasizing their commitment to developing reliable PCB solutions through close collaboration with customers. They cater to demanding clients across various industries, offering services from design to volume production.
Reference
Core business
Printed circuit boards - PCB producer | NCAB Group
A leading PCB producer, printed circuit boards, we produce PCBs for demanding customers in several industries - contact us!
NXTech AS
Fredrikstad, Norway
A
11-50 Employees
2008
Key takeaway
NxTech specializes in developing advanced embedded solutions, covering the entire design process from concept to production, highlighting their expertise in electronics development.
Reference
Service
Electronics development - NxTech
We design advanced embedded solutions for many purposes. Our experienced designers take care of the whole design process from initial concept to product release
T&G Elektro AS
Namsos, Norway
A
51-100 Employees
1955
Key takeaway
T&G specializes in custom connection solutions, offering a diverse range of electronic components including micro connectors, PCB connectors, high-speed connectors, and high-power connectors for various applications. Their expertise extends to developing advanced technologies for sectors like Defence, Aerospace, Telecom, and Energy.
Reference
Product
Connectors - T&G Elektro
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Sparc Technologies AS
Sandnes, Norway
A
1-10 Employees
2015
Key takeaway
Viking Two specializes in designing and manufacturing testing equipment for Electric Vehicle charging stations, highlighting their expertise in developing innovative solutions to enhance efficiency in this sector. Their commitment to quality and affordability positions them as a key player in the EVSE market.
Reference
Core business
Sparc Technologies
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A selection of suitable products and services provided by verified companies according to your search.
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Custom Electronics
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A selection of suitable use cases for products or services provided by verified companies according to your search.
Use case
Custom Electronic Design
automotive, E-mobility, automation, industrial automation, machinery, industrial machinery, smart industry, industry 4.0
Electronic design frameworks Electronic design starts from the component layout specification. Also, it consists in the definition of interconnections and PCB technology. Finally, component selection is formalized (BOM, Bill of Material), such as the circuit schematics and the layout of PCB traces (gerber file). If the Electronc Systems is composed of multiple circuit boards, electronic design includes the description of the interconnection schemes, and the instructions for the wiring manufacturing. Adgenera develops electronic circuits tailored and suitable for any application. It selects the most valuable technology for the peculiar field of application, in order to ensure the maximum reliability. Electronic design frameworks Custom-designed electronic solutions can be found in many sectors, covering various fields of application and meeting Client needs. The most frequent requests are: design “from the scratch” miniaturization of an existing circuit board cost Reduction electronic board update, when components are no longer available engineering a prototypal board, either partially or completely working functional improvement (for example, adding a wireless interface) performance improvement (for example, power consumption reduction) Other elements increase the complexity of the electronic design: legacy firmware for the previous version of board need for a custom / legacy interface to other electronic existing systems availability of the components on the market within a certain amount of time project constraints due to standards or certifications The steps of the Electronic Design Electronic design aims to respond to the request of designing and producing electronic circuit boards. First, the customer is interviewed on the characteristics of the electronic system to be designed.. The customer is actively involved to identify the best design choices. This preliminary phase leads to the correct identification of development times and costs, allowing the customer to verify the compliance with his needs and to create a preliminary project planning. Now the electronic scheme can be designed. Specific skills of our designers are applied to correctly select and size the components. Once the scheme has been designed, the electronic components available on the market are selected. Then, they will be soldered to the electronic board during its production phase. We select the most suitable package of components depending on the layout, the space available and the type of application. This design phase leads a draft of the BOM (Bills of Materials) necessary to supply and solder the right components. The electronic components chosen are placed on the board surface. Their positions strictly match design constraints principles to guarantee the correct functioning of the electronic system. Usually several alternative arrangements are evaluated. Finally, the chosen one is the one that leads to the best result once the electronic card is produced. Once the components are finally placed in the board, it is necessary to draw the connections (tracks) that appropriately connect the pins of the components themselves. The tracks design needs to follow many rules and best practices: although there are infinite ways to connect the chosen components, only a few solutions guarantee a good quality card. The preliminary electronic design project is ready: the first board samples are created to check the functionality and performance of the designed electronic system in the laboratory. During the tests, the laboratory instrumentation verifies that each quantity measurable on the card corresponds to the value theoretically calculated during the electronic scheme design.
Use case
Custom Electronic Design
automotive, E-mobility, automation, industrial automation, machinery, industrial machinery, smart industry, industry 4.0
Electronic design frameworks Electronic design starts from the component layout specification. Also, it consists in the definition of interconnections and PCB technology. Finally, component selection is formalized (BOM, Bill of Material), such as the circuit schematics and the layout of PCB traces (gerber file). If the Electronc Systems is composed of multiple circuit boards, electronic design includes the description of the interconnection schemes, and the instructions for the wiring manufacturing. Adgenera develops electronic circuits tailored and suitable for any application. It selects the most valuable technology for the peculiar field of application, in order to ensure the maximum reliability. Electronic design frameworks Custom-designed electronic solutions can be found in many sectors, covering various fields of application and meeting Client needs. The most frequent requests are: design “from the scratch” miniaturization of an existing circuit board cost Reduction electronic board update, when components are no longer available engineering a prototypal board, either partially or completely working functional improvement (for example, adding a wireless interface) performance improvement (for example, power consumption reduction) Other elements increase the complexity of the electronic design: legacy firmware for the previous version of board need for a custom / legacy interface to other electronic existing systems availability of the components on the market within a certain amount of time project constraints due to standards or certifications The steps of the Electronic Design Electronic design aims to respond to the request of designing and producing electronic circuit boards. First, the customer is interviewed on the characteristics of the electronic system to be designed.. The customer is actively involved to identify the best design choices. This preliminary phase leads to the correct identification of development times and costs, allowing the customer to verify the compliance with his needs and to create a preliminary project planning. Now the electronic scheme can be designed. Specific skills of our designers are applied to correctly select and size the components. Once the scheme has been designed, the electronic components available on the market are selected. Then, they will be soldered to the electronic board during its production phase. We select the most suitable package of components depending on the layout, the space available and the type of application. This design phase leads a draft of the BOM (Bills of Materials) necessary to supply and solder the right components. The electronic components chosen are placed on the board surface. Their positions strictly match design constraints principles to guarantee the correct functioning of the electronic system. Usually several alternative arrangements are evaluated. Finally, the chosen one is the one that leads to the best result once the electronic card is produced. Once the components are finally placed in the board, it is necessary to draw the connections (tracks) that appropriately connect the pins of the components themselves. The tracks design needs to follow many rules and best practices: although there are infinite ways to connect the chosen components, only a few solutions guarantee a good quality card. The preliminary electronic design project is ready: the first board samples are created to check the functionality and performance of the designed electronic system in the laboratory. During the tests, the laboratory instrumentation verifies that each quantity measurable on the card corresponds to the value theoretically calculated during the electronic scheme design.
When exploring the electronic component industry in Norway, several key considerations emerge. The region has a strong focus on sustainability, with companies increasingly adhering to strict environmental regulations, reflecting Norway's commitment to reducing carbon footprints and promoting green technology. Understanding local regulations is crucial, as compliance with both domestic and EU standards can impact operations and market entry. The competitive landscape features a mix of established players and innovative startups, driven by Norway's emphasis on research and development. This creates opportunities in niche markets such as renewable energy components and advanced electronics for various applications. However, challenges such as high labor costs and limited domestic raw material sources can affect pricing and supply chain dynamics. Norway's strategic location also positions it favorably for export, particularly to other European markets. As global demand for electronics continues to grow, companies in Norway can leverage advances in technology and sustainability to enhance their market relevance. Networking within industry associations and participating in trade fairs can further provide insights and opportunities to build partnerships. Overall, a thorough understanding of these factors can significantly benefit those interested in navigating the electronic component industry in Norway.
Some interesting numbers and facts about your company results for Electronic Component
Country with most fitting companies | Norway |
Amount of fitting manufacturers | 15 |
Amount of suitable service providers | 8 |
Average amount of employees | 1-10 |
Oldest suiting company | 1952 |
Youngest suiting company | 2015 |
Some interesting questions that has been asked about the results you have just received for Electronic Component
What are related technologies to Electronic Component?
Based on our calculations related technologies to Electronic Component are Water/Ocean Cleaning Technologies, Waste Management, Renewable Energy, Sustainable Fashion, Smart Grid
Which industries are mostly working on Electronic Component?
The most represented industries which are working in Electronic Component are Electronics and Electrical engineering, Other, Construction, Automation, Automotive
How does ensun find these Electronic Component Suppliers?
ensun uses an advanced search and ranking system capable of sifting through millions of companies and hundreds of millions of products and services to identify suitable matches. This is achieved by leveraging cutting-edge technologies, including Artificial Intelligence.