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A-FAB

We offer specialized microfabrication services, bridging the gap between nano-scale precision and industry needs.

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⸺ Our Technology
LabFab Services

Precision Microfabrication Tailored for Advanced Applications

A-FAB delivers a sophisticated and precise approach to the manufacturing of micro-devices, combining scientific accuracy with practical application to meet the specific requirements of industries focused on microscale and nanoscale fabrication. Leveraging the advanced DALP™ (Direct Atomic Layer Processing) technology, A-FAB offers a comprehensive array of microfabrication services that align with the demands of modern technological advancements.

As a crucial component of A-HUB, it stands out by providing the first on-demand atomic layer advanced manufacturing service. It employs our innovative technology, enabling clients and partners to explore, test, and develop new engineering and scientific solutions with unmatched precision and adaptability, catering to a broad spectrum of fabrication needs.

Comprehensive Microfabrication Services

A-FAB’s microfabrication services, leveraging DALP™ technology, offer precision engineering for a wide range of industry needs. We specialize in precise layer deposition and complex structure engineering, ensuring high-quality micro- and nano-device fabrication.

A-FAB brings new dimensions to microfabrication, with endless design and materials possibilities. We are passionate about providing services to academic, SMEs and corporates that are looking for innovation at an atomic scale. We combine our unique technology with state-of-the-art existing microfabrication processes and provide you unique solutions with highly creative but also scalable approach. We give you the solution to scale you research or innovation from lab to fab.

Rapid Prototyping

A-FAB ensures a quick transition from conceptual design to prototype, significantly accelerating the development process.

Material Testing and Analysis

Our comprehensive testing and analysis protocols guarantee the quality and performance of fabricated devices.

Precision Layer Deposition

We specialize in the precise deposition of materials at the atomic level, allowing for the creation of detailed and intricate microstructures.

Advanced Material Development

Our use of advanced DALP™ technology is pivotal in creating new materials with unique properties, essential for innovative microfabrication.

Complex Structure Engineering

Our services include the design and fabrication of complex nanostructures, meeting the needs of various technological applications.

Process Optimization Services

We provide expert consulting to optimize microfabrication processes, enhancing both efficiency and the quality.

Custom Device Fabrication

We offer bespoke design and production services for microdevices, catering to specific requirements of diverse industries.

Scalable Production Capabilities

A-FAB is equipped to scale production as per client needs, from small specialized batches to manufacturing requirements.

Expanding Horizons

Applications and Industries Served by A-FAB Services

A-FAB’s microfabrication services cater to a diverse range of industries, including semiconductors for chip design, biomedical for diagnostics and drug delivery systems, renewable energy for efficient solar cells, and aerospace and defense for advanced navigation systems and sensors. We also support consumer electronics with the development of miniaturized components. Our broad spectrum of services positions us as a pivotal partner in driving innovation across these critical sectors.

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Industry

Semiconductors

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BENEFITS OF DALP™ TECHNOLOGY IN MICROFABRICATION SERVICES

DALP™ technology stands out for its high precision and accuracy in material deposition, a critical aspect for micro-scale fabrication. This technology not only offers the flexibility to customize materials and structures as per specific industry requirements but also enhances the overall properties of these materials, including strength, conductivity, and thermal stability. The rapid prototyping and production capabilities of DALP™ significantly reduce development time, facilitating quicker market entry for new products. Moreover, a strong emphasis on eco-friendly manufacturing processes ensures reduced waste and efficient resource use, highlighting DALP™ technology’s commitment to sustainability in fabrication.

Redefining Microfabrication
Precision, Customization, and Sustainability in Micro-Device Manufacturing

Benefits of DALP™ technology in microfabrication services encompass a comprehensive array of advantages, from enhancing the precision and quality of micro-devices to fostering a more sustainable manufacturing environment.

Our technology

DALP™ technology excels in material deposition with unparalleled precision, an essential factor for micro-scale fabrication. This high level of accuracy enables the creation of intricate and detailed microstructures, which are pivotal in modern device manufacturing, ensuring components meet exact specifications and performance requirements.

A key advantage of DALP™ technology is its adaptability to various industry needs. This flexibility allows for the customization of materials and structures, providing clients with tailored solutions that fit their unique design and functional requirements. Such versatility is especially beneficial in industries where innovative and specialized device designs are constantly evolving.

DALP™ technology contributes to the development of materials with superior properties, enhancing aspects like strength, conductivity, and thermal stability. This leads to more robust, efficient, and reliable micro-devices, crucial in sectors like electronics, aerospace, and biomedical, where material performance can significantly impact overall device functionality.

DALP™ technology is designed with sustainability in mind. Its processes emphasize minimal waste generation and efficient use of resources. This environmentally conscious approach not only reduces the ecological footprint of the manufacturing process but also aligns with the growing global emphasis on sustainable practices in industrial production.

The technology’s rapid prototyping and efficient production processes significantly shorten the time from concept to product realization. This acceleration in the development cycle is vital in today’s fast-paced industry landscape, enabling quicker market entry for new products and technologies, giving companies a competitive edge.

PUBLIC FUNDED PROJECTS

COLLABORATING ON ADVANCED NANOTECHNOLOGY

We believe collaboration is one of the core elements of accelerating innovation, which is why we are proud to be working on projects with some of the world’s most exciting and leading entities. Our portfolio features groundbreaking work in advanced manufacturing of microelectronics, supported by EU Commission, EU Chip Act, European Space Agency ESA, and others.

Advanced Packaging

ESA BIC & ESA Idea​

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Sustainability

Setting New Benchmarks in Sustainable Manufacturing

At ATLANT 3D, we are not just changing how things are made; we are redefining the principles of manufacturing. Our commitment to sustainability is a testament to our belief that responsible innovation and business practices can create a positive impact on the world, paving the way for a more sustainable future in manufacturing and beyond.

Sustainability is integral to our mission. We believe that the future of manufacturing must not only be innovative and efficient but also environmentally conscious. Our technologies are designed to reduce waste, lower energy consumption, and minimize the environmental footprint of manufacturing processes. By prioritizing sustainable practices, we aim to lead by example, showing that technological advancement and environmental stewardship can coexist harmoniously.

Microelectronics are essential components in a wide range of products, from consumer electronics to medical devices. However, traditional manufacturing methods for microelectronics are often energy-intensive and produce significant waste. ATLANT 3D offers a new approach to microelectronics manufacturing that is more sustainable and environmentally friendly.

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