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NXTGEN HIGHTECH

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uuid000xu6s

Namestring
NXTGEN HIGHTECH
Legal namestring
Stichting NXTGEN Hightech
Company typeenum
Private
Founded yearint
2020
Descriptiontext

NXTGEN Hightech is a Dutch public-private innovation consortium structured as Stichting (foundation), established in 2020 and headquartered at High Tech Campus 32, Eindhoven. The organization operates as a National Growth Fund (Nationaal Groeifonds) project and coordinates 330 project partners spanning industry, research institutions, and government. Its mission is to develop next-generation high-tech equipment across seven technology domains — Systems Engineering (DASE methodology), Smart Industry/Digital Factories, Optomechatronics, Robotics/Cyber-Physical Systems, Thin Film/Plasma, Semiconductor Devices/Lithography, and Bionanotechnology — and eight application domains including Agrifood, Biomedical, Semiconductors, Energy, Composites, Laser Satcom, Smart Industry, and Systems Engineering.

The consortium's flagship programs include the Handsfree Agrifood ecosystem (17 use cases across Open Field Cultivation, Greenhouse Horticulture, and Food Processing, validated across 9 test sites anchored by WUR Randwijk with 18 hectares of orchards and 200+ mini orchards) and the biomedical program comprising Biomed01 through Biomed05 (One-stop-shop, Lab-on-Chip, Organ-on-Chip, Artificial Organs, and Cell Production Technology). Validated outputs include the Munckhof apple-picking robot (achieved all technical KPIs in 2024, cost/kg above €2.00 target), Aurea Imaging Treescout sensors for precision thinning, integrated bioreactor platforms (Scinus, TNCBio, IamFluidics), and the DASE Systems Engineering curriculum. Industrial anchor partners include Thermo Fisher, VDL ETG, Vanderlande, Thales Netherlands, imec, UMC Utrecht, and ASML.

NXTGEN does not sell products or services commercially. Its revenue comes entirely from the Dutch National Growth Fund, a non-dilutive public funding mechanism, and its GTM motion is community-led: knowledge dissemination through the What's NXT podcast, position papers (e.g., 'Towards an Autonomous Factory'), public evaluation summaries, trade fair participation (GreenTech Amsterdam, AgroTechniek Holland, EUROoCS), open days (~600 visitors at FRC Randwijk August 2025), and trade missions (Brazil July 2026, Libramont Belgium July 2026). There is no disclosed headcount, no commercial pricing, no venture funding, and no M&A activity — distinguishing it from conventional startup investment targets and framing it as a publicly-funded ecosystem orchestrator rather than a commercial revenue-generating entity.

Short descriptiontext

NXTGEN Hightech is a Dutch National Growth Fund innovation consortium (Stichting) coordinating 330 partners across eight high-tech domains — agrifood, biomedical, semiconductors, energy, composites, laser satcom, smart industry, and systems engineering — to develop next-generation equipment through publicly funded collaborative R&D rather than commercial sales.

Operating statusenum
Operating
Ownership categoryenum
Headcount rangeband
51–100
akta.pro rankint
HeadquartersEindhoven, Netherlands
HQ citystring
Eindhoven
HQ countrystring
Netherlands
HQ regionstring
Europe
Markets served

Serves global market

Offices1 record

Each record includes

City, Country, Type, Description, Source

Keyword5 values
high-tech innovation consortium, precision agriculture robotics, biomedical manufacturing platforms, semiconductor lithography research, systems engineering methodology
Industry3 codes
1Technical Universities with Strong Industry Partnerships
CodeEDAHAEAGPrimaryYes
2Additive Manufacturing Research & Innovation Labs
CodeIMAAAJAAPrimaryNo
3Compute & Acceleration ICs (CPU/GPU/AI/FPGA/ASIC)
CodeHDAHABACPrimaryNo
NAICS code3 codes
  • Research and Development in Biotechnology (except Nanobiotechnology)541714
  • Aerospace Product and Parts Manufacturing33641
  • Computer and Peripheral Equipment Manufacturing3341
SIC code3 codes
  • Special Industry Machinery, Nec3559
  • Search, Detection, Navagation, Guidance, Aeronautical Sys3812
  • Laboratory Analytical Instruments3826
Product category
Research and Development Services
GTM motion1 record

Each record includes

Type, Description, Source

Revenue model1 record
1National Growth Fund (Nationaal Groeifonds) Grant
TypeManaged Services
Description

NXTGEN Hightech is a National Growth Fund project, meaning its primary funding comes from the Dutch government's National Growth Fund. This is non-dilutive public funding that supports large-scale research and innovation programs. The consortium does not operate on commercial revenue but rather on allocated public funding to drive hightech equipment development in the Netherlands.

nxtgenhightech.nl
Marketing channels7 records

Each record includes

Title, Type, Stage, Description, Source

Distribution channels1 record

Each record includes

Title, Type, Scope, Target buyer, Description, Source

Cost components5 values
Personnel, Technology or R&D, Operations, Infrastructure, Marketing or Sales
GTM typeB2B
B2B
Offering typeServices
Services
Brand1 of 4 records shown
1What's NXT
Description

Podcast series exploring high-tech technologies and their impact on society

nxtgenhightech.nl
+3 more records
Core offering1 text field

NXTGEN Hightech operates as a Dutch National Growth Fund project and open innovation consortium coordinating next-generation high-tech equipment development across seven technology tracks: Systems Engineering, Smart Industry/Digital Factories, Optomechatronics, Robotics/Cyber-Physical Systems, Thin Film/Plasma, Semiconductor Devices/Lithography, and Bionanotechnology. The organization does not sell commercial products; it coordinates collaborative R&D across 330 project partners and channels public funding into multi-domain programs covering agrifood, biomedical, semiconductor, energy, composites, and laser satcom domains.

Differentiator
Functional benefit
Problem solved
Quantifiable outcome1 of 2 values shown
  • Treescout sensors provide a reliable indication of blossom and growth vigor for precision thinning, improving fruit set balance and yield quality
+1 more record
Product overview1 text field

NXTGEN Hightech is a National Growth Fund Project operating as a multi-domain innovation ecosystem with 330 project partners, developing next-generation high-tech equipment across eight focus areas: Agrifood (with the Handsfree Agrifood ecosystem comprising 17 use cases), Biomedical Technologies (5 projects covering Organ-on-Chip, Lab-on-Chip, Artificial Organs, and Cell Production), Energy, Composites, Laser Satcom, Semiconductors, Smart Industry, and Systems Engineering. The ecosystem is structured around seven technology domains: Systems Engineering, Smart Industry, Optomechatronics, Robotics/CPS, Thin Film/Plasma, Semicon Devices, and Bionanotechnology. The portfolio includes various use case technologies such as autonomous agricultural robots (apple picking, Bin Shuttle logistics), sensor-driven optimization systems, and advanced biomedical platforms like Organ-on-Chip and next-generation bioreactors. The company also produces content through its 'What's NXT' podcast series.

Product and service7 records
1Handsfree Agrifood Ecosystem
CategoryInnovation Ecosystem / Agrifood R&D Program
Description

An open innovation ecosystem comprising 17 use cases across three innovation packages (Open Field Cultivation, Greenhouse Horticulture, Food Processing) covering autonomous tractors, apple-picking robots, orchard robotics, digital twins, dark fruit factory, and precision thinning, validated at 9 test locations including WUR Randwijk (18 ha orchard, 200+ mini orchards). Designed for industry partners, growers, and technology developers in the Dutch agrifood sector.

2Biomed05 Cell Production Technology
CategoryBiomedical R&D Program
Description

A biomedical R&D program developing next-generation bioreactor technology combining flexible bioreactor systems (Scinus), animal-component-free media (TNCBio), dissolvable microcarriers/microcapsules (IamFluidics), Biosensing By Particle Motion sensors (Helia Biomonitoring), photonic sensors (ChiralVision/Surfix), and microfluidic integration (Bronkhorst/Demcon). Enables far-reaching automation and precise control over cell cultivation for therapies, vaccines, and cultivated meat. Targets cell therapy developers, vaccine manufacturers, and cultivated meat producers.

3Biomed03 Organ-on-Chip Production Technology Chain
CategoryBiomedical R&D Program
Description

An integrated production technology chain for standardized Organ-on-Chip platforms, including three demonstration platforms of increasing functionality, modularity, and autonomy: a single-organ platform with integrated opto-mechanical sensing, a modular multi-organ microfluidic platform with integrated sensors, and a fluidically-autonomous high-content platform. Targets organ-on-chip adopters, pharmaceutical companies, and academic researchers.

4Biomed04 Artificial Organs Building Blocks
CategoryBiomedical R&D Program
Description

A biomedical R&D program developing next-generation artificial kidney and blood vessel components, including MEMS for sensing/actuation/wireless communication/powering (with imec, UMC Utrecht, Micronit, Nexperia), advanced sorbents and catalysts for portable artificial kidneys (with Chiral Vision, Nextkidney), polymer and silicon nanoporous membranes (with UTwente, Biochem Oss), and 3D electrospun biodegradable vascular grafts (with Vivolta, Xeltis, SupraPolix, Stentit, Corbion). Targets medical device developers, clinical research institutions, and patient care organizations.

5DASE Systems Engineering Program
CategoryEducation and Methodology Program
Description

A standardized Systems Engineering methodology framework organized across five work packages: SE Framework design, continuous development line for Dutch higher education, substantive modules, DASE integration within colleges and universities, and dissemination to other domains and society. Designed to address the shortage of systems engineers in the Dutch high-tech equipment industry. Targets engineering educational institutions, high-tech equipment manufacturers, and systems engineering professionals.

6Smart Industry / Autonomous Factory Program
CategorySmart Manufacturing R&D Program
Description

An R&D program focused on developing smart factories and autonomous manufacturing, including digital twins, digitalization, predictive maintenance, and advanced automation technologies. Includes Smart Industry Capability Booster Learning Modules offered free to companies for digitalization strategy, data sharing, predictive maintenance, and Industry 4.0 adoption. Targets Dutch high-tech equipment manufacturers and industrial automation companies.

7What's NXT Podcast
CategoryContent/Media
Description

A Dutch-language podcast series (with English version) exploring high-tech technologies including artificial organs, quantum computers, ultrafast chips, and smart machines. Features interviews with researchers, entrepreneurs, and experts. Available on Apple Podcasts, Spotify, and YouTube.

Scale indicator4 records

Each record includes

Type, Value, Description, Source

Partnership29 partners
Strategic tierCoreTypeStrategic or Co-development Partner
Description

WUR serves as a key research partner, hosting test and validation locations including WUR Open Teelten Randwijk (~18 ha orchards, 200+ mini orchards) for the Handsfree Agrifood ecosystem. WUR researchers collaborate on precision fruit cultivation, autonomous systems, and digital twins across innovation packages.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Scinus Cell Expansion developed a unique flexible bioreactor system for controlled cell cultivation supporting high-fold expansion of adherent and suspension cell types to clinically relevant numbers. Partner in Biomed05 Cell Production Technology, responsible for bioreactor technology development.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

TNCBio develops new medium formulations that are well-defined and animal-component-free to increase the robustness of cell cultivation and decrease batch-to-batch variation. Partner in Biomed05 Cell Production Technology.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

IamFluidics develops next-generation biomaterials including dissolvable microcarriers and microcapsules for scalable 2D and 3D cell cultivation in suspension bioreactors. Partner in Biomed05 Cell Production Technology.

Strategic tierCoreTypeTechnology or Integration
Description

Helia Biomonitoring, in collaboration with TU Eindhoven, develops sensors based on Biosensing By Particle Motion (BPM) technique for continuous biomolecular monitoring. In Biomed05, BPM technology is optimized to continuously monitor cell stress and health.

Strategic tierCoreTypeTechnology or Integration
Description

ChiralVision collaborates on photonic sensors using interferometry for biomarker detection. Also partners on Biomed04 Artificial Organs, developing advanced sorbents and catalysts for portable artificial kidneys. Contributes sensor technology for medium component monitoring in Biomed05.

Strategic tierCoreTypeTechnology or Integration
Description

Bronkhorst contributes to the integration and development of microfluidic components in next-generation bioreactors within Biomed05. Their expertise in flow measurement and control supports automated sampling and sample preparation.

Strategic tierCoreTypeTechnology or Integration
Description

Demcon participates in integrating and developing necessary components in bioreactors within Biomed05. Also involved in developing micro-electromechanical systems for artificial organs in Biomed04.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Ncardia serves as an end-user evaluator in Biomed05, testing next-generation bioreactor technologies and using them to optimize cell production processes, specifically for iPSC cultivation and differentiation.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Batavia BioSciences serves as an end-user evaluator in Biomed05, testing bioreactor technologies and prototypes for viral vector production optimization.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

UMC Utrecht serves as both project management lead for Biomed04 (Artificial Organs) and end-user evaluator for Biomed05 (viral vector production). They are responsible for the overall project management of the artificial kidney and vascular grafts programs.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

imec contributes to the MEMS (Micro-Electromechanical Systems) building blocks for artificial organs in Biomed04, providing expertise in sensing, actuation, wireless communication, and energy harvesting for implantable artificial organs.

Strategic tierCoreTypeTechnology or Integration
Description

Micronit partners on Biomed04 Artificial Organs, contributing to micro-electromechanical systems and microfluidics for artificial organ components.

Strategic tierCoreTypeTechnology or Integration
Description

Nexperia contributes to the MEMS building blocks for implantable artificial organs within Biomed04, providing expertise in semiconductor and microelectronic components.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Nextkidney partners on the portable artificial kidney development within Biomed04, contributing to sorbent and catalyst technologies that enable a small dialysate volume to be continuously reused.

16Dutch Kidney Foundation (Nierstichting)
Strategic tierCoreTypeStrategic or Co-development Partner
Description

The Dutch Kidney Foundation supports the Biomed04 Artificial Organs project with project management oversight alongside UMC Utrecht, contributing to the development of portable and implantable artificial kidneys.

nxtgenhightech.nl
Strategic tierCoreTypeTechnology or Integration
Description

Vivolta develops biodegradable vascular grafts and stents using 3D electrospinning techniques within Biomed04, creating scaffolds that promote tissue restoration after implantation.

Strategic tierCoreTypeTechnology or Integration
Description

Xeltis partners on the 3D electrospun biodegradable materials for vascular prostheses in Biomed04, contributing to vascular access solutions for hemodialysis and vascular disease treatment.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

University of Twente develops ultrathin silicon-based nanoporous membranes for fully implantable artificial kidneys (Biomed04) and photonic sensors for medium component monitoring (Biomed05). Also a key academic partner in Systems Engineering education development.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Munckhof Fruit Tech Innovators developed and tested an apple-picking robot (Use Case 5) within the Handsfree Agrifood ecosystem. The evaluation report (February 2025) assessed picking efficiency and economic feasibility of autonomous harvesting.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Aurea Imaging investigated sensor-driven precision thinning technologies (Use Case 7) using Treescout cameras on tractors to collect blossom and growth vigor data in orchards. The evaluation validated sensor accuracy and impact on fruit quality and yield.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

TNO ESI leads applied research on systems engineering, networking activities, and education within the DASE program. They lead the Multi-Company Systems & Leadership Program and contribute to standardization of systems engineering methods across the Dutch high-tech industry.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

TU Delft is a key academic partner in the DASE Systems Engineering program, involved in integrating the methodology within higher education. Hosted the Systems Workforce Summit 2024 (October 2024) organized together with NXTGEN Hightech.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Thermo Fisher Scientific, a market leader in electron microscopes headquartered in Eindhoven, uses systems engineering as an integral part of product development. Contributes to the DASE ecosystem through expertise sharing and collaboration with suppliers including VDL ETG.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

VDL ETG specializes in designing and producing complex functional modules for organizations such as ASML and Thermo Fisher. With ~600 engineers, they integrate systems engineering across the organization and contribute to the DASE ecosystem.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Vanderlande, a leading automation company with 9,000+ employees, is undergoing a transition from project-based to platform/product-based organization. They contribute expertise on scalable systems engineering training, Model-Based Systems Engineering, and smart factory adoption.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Thales Netherlands, specializing in defense and security systems including naval radar systems, uses Model-Based Systems Engineering and the Arcadia method. Contributes expertise on systems engineering practices within the DASE ecosystem.

Strategic tierCoreTypeStrategic or Co-development Partner
Description

Prodrive applies systems engineering with system architects acting as the interface between clients and project teams. Contributes expertise on translating customer requirements into technical specifications and managing expectations.

29Industrial Clusters North, East, West, and Common
Strategic tierCoreTypeStrategic or Co-development Partner
Description

Multiple industrial clusters across the Netherlands (North, East, West, Common) participate in the Smart Industry Autonomous Factory projects, collaborating on smart factory development, digital twins, and digitalization of production processes.

nxtgenhightech.nl
Recent move6 records

Each record includes

Date, Type, Title, Description, Source

Expansion highlight6 records

Each record includes

Type, Description

Peers10 records
TypeDirect peer
Description

imec is a Belgian semiconductor R&D center and a NXTGEN partner. Both organizations operate as multi-partner R&D ecosystems advancing semiconductor and adjacent technologies, with industry partnership models and public-private funding structures.

TypeBroad incumbent
Description

CSIRO is Australia's national science agency operating as a publicly-funded R&D organization across multiple domains. Both CSIRO and NXTGEN function as government-backed applied research ecosystems that translate research into industry applications.

3MESA+ Institute for Nanotechnology
TypeEmerging player
Description

MESA+ is a University of Twente research institute specializing in nanotechnology and adjacent fields. It is comparable to NXTGEN's technology tracks (particularly semiconductor devices and bionanotechnology) as a Dutch academic R&D consortium with industry partnerships.

TypeDirect peer
Description

SINTEF is Scandinavia's largest independent research organization, operating across multiple technology domains with industry partnership and public funding models similar to NXTGEN. Both function as multi-domain applied research consortia.

TypeBroad incumbent
Description

The UK's Catapult Network comprises nine technology and innovation centers with public-private partnership models similar to NXTGEN. Both organizations distribute innovation funding across technology centers with industry partnership mandates.

TypeBroad incumbent
Description

CEA is France's major public research organization spanning energy, defense, and information technology. While focused on atomic and alternative energies, CEA shares NXTGEN's model of large-scale public R&D with industry partnerships across multiple technology domains.

TypeDirect peer
Description

Fraunhofer is Germany's largest applied research organization and operates a similar consortium model with 76 institutes covering multiple technology domains. Both Fraunhofer and NXTGEN coordinate industry-academia-government partnerships for hightech equipment development with public funding backing.

TypeDirect peer
Description

TNO is the Netherlands' primary applied research organization and is directly comparable to NXTGEN as a public-private R&D consortium. TNO ESI is actually a NXTGEN partner leading systems engineering research, and both organizations operate as Dutch public-backed applied research entities with industry partnership models.

TypeBroad incumbent
Description

ITRI is Taiwan's national applied research organization with a much larger scale than NXTGEN. Both operate as publicly-funded R&D ecosystems bridging research and commercialization, though ITRI has broader sector coverage and stronger semiconductor industry integration.

TypeDirect peer
Description

VTT is Finland's national applied research organization, comparable to NXTGEN as a publicly-funded multi-domain research consortium. Both organizations bridge academic research and industrial application across sectors including biotech, energy, and digital systems.

Market position
Strengths4 records

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Headline, Details, Source

Weaknesses4 records

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Competitive moat5 records

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Type, Details

Key risks6 records

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Key highlights6 records

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Customer concentration

Classification, Details

Segment6 records

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Title, Type, Primary, Description, Pain point addressed, Use case, Source

Ideal customer profile6 records

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Profile, Firmographic size, Sales motion, Sales cycle length, Buying structure, Purchase trigger, Buyer persona, Geography, Industry vertical, Primary use case, Description, Pain points, Evidence proof points, Target buyer

Technology focused
Yes
API detail
Has APIbool
No

Docs URL, Description

AI maturity
App detail

Has app

Feature9 records

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Title, Differentiator, Description, Source

Core technology
Revenue estimate
Valuation estimate
Number of profiles
Profiles6 records

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Name, Designation, Designation category, Overview, Profile commentary, Source

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Funding overview

Funding stage, Last funding date, Total funding USD

Funding rounds

Each record includes

Round, Amount USD, Date, Pre money valuation, Total investors, Investors, News

Investors

Each record includes

Name, Type, Date of entry, Rounds participated, Website

Funding detail is available on the Subscription and Enterprise plan.Contact sales →

M&A

Each record includes

Name, Acquisition type, Announced date, Completed date, Status, Website, News

Investment2 records

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Name, Round, Announced date, Lead investor, Website, News

M&A and investment is available on the Subscription and Enterprise plan.Contact sales →

NXTGEN HIGHTECH

Research and Development Servicesnxtgenhightech.nl

NXTGEN Hightech is a Dutch National Growth Fund innovation consortium (Stichting) coordinating 330 partners across eight high-tech domains — agrifood, biomedical, semiconductors, energy, composites, laser satcom, smart industry, and systems engineering — to develop next-generation equipment through publicly funded collaborative R&D rather than commercial sales.

What NXTGEN HIGHTECH does

NXTGEN Hightech is a Dutch public-private innovation consortium structured as Stichting (foundation), established in 2020 and headquartered at High Tech Campus 32, Eindhoven. The organization operates as a National Growth Fund (Nationaal Groeifonds) project and coordinates 330 project partners spanning industry, research institutions, and government. Its mission is to develop next-generation high-tech equipment across seven technology domains — Systems Engineering (DASE methodology), Smart Industry/Digital Factories, Optomechatronics, Robotics/Cyber-Physical Systems, Thin Film/Plasma, Semiconductor Devices/Lithography, and Bionanotechnology — and eight application domains including Agrifood, Biomedical, Semiconductors, Energy, Composites, Laser Satcom, Smart Industry, and Systems Engineering.

The consortium's flagship programs include the Handsfree Agrifood ecosystem (17 use cases across Open Field Cultivation, Greenhouse Horticulture, and Food Processing, validated across 9 test sites anchored by WUR Randwijk with 18 hectares of orchards and 200+ mini orchards) and the biomedical program comprising Biomed01 through Biomed05 (One-stop-shop, Lab-on-Chip, Organ-on-Chip, Artificial Organs, and Cell Production Technology). Validated outputs include the Munckhof apple-picking robot (achieved all technical KPIs in 2024, cost/kg above €2.00 target), Aurea Imaging Treescout sensors for precision thinning, integrated bioreactor platforms (Scinus, TNCBio, IamFluidics), and the DASE Systems Engineering curriculum. Industrial anchor partners include Thermo Fisher, VDL ETG, Vanderlande, Thales Netherlands, imec, UMC Utrecht, and ASML.

NXTGEN does not sell products or services commercially. Its revenue comes entirely from the Dutch National Growth Fund, a non-dilutive public funding mechanism, and its GTM motion is community-led: knowledge dissemination through the What's NXT podcast, position papers (e.g., 'Towards an Autonomous Factory'), public evaluation summaries, trade fair participation (GreenTech Amsterdam, AgroTechniek Holland, EUROoCS), open days (~600 visitors at FRC Randwijk August 2025), and trade missions (Brazil July 2026, Libramont Belgium July 2026). There is no disclosed headcount, no commercial pricing, no venture funding, and no M&A activity — distinguishing it from conventional startup investment targets and framing it as a publicly-funded ecosystem orchestrator rather than a commercial revenue-generating entity.

NXTGEN HIGHTECH firmographics

Firmographics
Name
NXTGEN HIGHTECH
Legal name
Stichting NXTGEN Hightech
Website
https://nxtgenhightech.nl
Company type
Private
Founded year
2020
Operating status
Operating
Headcount range
51–100 employees
Short description
NXTGEN Hightech is a Dutch National Growth Fund innovation consortium (Stichting) coordinating 330 partners across eight high-tech domains — agrifood, biomedical, semiconductors, energy, composites, laser satcom, smart industry, and systems engineering — to develop next-generation equipment through publicly funded collaborative R&D rather than commercial sales.
Ownership category
akta.pro rank

NXTGEN HIGHTECH industry classification

Industry
Product category
Research and Development Services
NAICS
Research and Development in Biotechnology (except Nanobiotechnology) (541714), Aerospace Product and Parts Manufacturing (33641), Computer and Peripheral Equipment Manufacturing (3341)
SIC
Special Industry Machinery, Nec (3559), Search, Detection, Navagation, Guidance, Aeronautical Sys (3812), Laboratory Analytical Instruments (3826)
akta.pro primary industry
Technical Universities with Strong Industry Partnerships (EDAHAEAG)
akta.pro secondary industries
Additive Manufacturing Research & Innovation Labs (IMAAAJAA), Compute & Acceleration ICs (CPU/GPU/AI/FPGA/ASIC) (HDAHABAC)

Keywords

  • High-tech innovation consortium
  • Precision agriculture robotics
  • Biomedical manufacturing platforms
  • Semiconductor lithography research
  • Systems engineering methodology

Where NXTGEN HIGHTECH is headquartered

Location

Headquarters

HQ city
Eindhoven
HQ country
Netherlands
HQ region
Europe

Offices1 record

Markets served

NXTGEN HIGHTECH business model

Business model
GTM type
B2B
Offering type
Services
Cost components
Personnel, Technology or R&D, Operations, Infrastructure, Marketing or Sales

Revenue model

  1. National Growth Fund (Nationaal Groeifonds) Grant: NXTGEN Hightech is a National Growth Fund project, meaning its primary funding comes from the Dutch government's National Growth Fund. This is non-dilutive public funding that supports large-scale research and innovation programs. The consortium does not operate on commercial revenue but rather on allocated public funding to drive hightech equipment development in the Netherlands.

Go-to-market motion1 record

Distribution channels1 record

Marketing channels7 records

NXTGEN HIGHTECH product offering

Product offering

Core offering

NXTGEN Hightech operates as a Dutch National Growth Fund project and open innovation consortium coordinating next-generation high-tech equipment development across seven technology tracks: Systems Engineering, Smart Industry/Digital Factories, Optomechatronics, Robotics/Cyber-Physical Systems, Thin Film/Plasma, Semiconductor Devices/Lithography, and Bionanotechnology. The organization does not sell commercial products; it coordinates collaborative R&D across 330 project partners and channels public funding into multi-domain programs covering agrifood, biomedical, semiconductor, energy, composites, and laser satcom domains.

Product overview

NXTGEN Hightech is a National Growth Fund Project operating as a multi-domain innovation ecosystem with 330 project partners, developing next-generation high-tech equipment across eight focus areas: Agrifood (with the Handsfree Agrifood ecosystem comprising 17 use cases), Biomedical Technologies (5 projects covering Organ-on-Chip, Lab-on-Chip, Artificial Organs, and Cell Production), Energy, Composites, Laser Satcom, Semiconductors, Smart Industry, and Systems Engineering. The ecosystem is structured around seven technology domains: Systems Engineering, Smart Industry, Optomechatronics, Robotics/CPS, Thin Film/Plasma, Semicon Devices, and Bionanotechnology. The portfolio includes various use case technologies such as autonomous agricultural robots (apple picking, Bin Shuttle logistics), sensor-driven optimization systems, and advanced biomedical platforms like Organ-on-Chip and next-generation bioreactors. The company also produces content through its 'What's NXT' podcast series.

Differentiator

Problem solved

Functional benefit

Brands

  • What's NXT: Podcast series exploring high-tech technologies and their impact on society
  • Handsfree Agrifood
  • NXTGEN Biomed
  • NXTGEN Smart Industry

Products and services

  • Handsfree Agrifood Ecosystem An open innovation ecosystem comprising 17 use cases across three innovation packages (Open Field Cultivation, Greenhouse Horticulture, Food Processing) covering autonomous tractors, apple-picking robots, orchard robotics, digital twins, dark fruit factory, and precision thinning, validated at 9 test locations including WUR Randwijk (18 ha orchard, 200+ mini orchards). Designed for industry partners, growers, and technology developers in the Dutch agrifood sector.
  • Biomed05 Cell Production Technology A biomedical R&D program developing next-generation bioreactor technology combining flexible bioreactor systems (Scinus), animal-component-free media (TNCBio), dissolvable microcarriers/microcapsules (IamFluidics), Biosensing By Particle Motion sensors (Helia Biomonitoring), photonic sensors (ChiralVision/Surfix), and microfluidic integration (Bronkhorst/Demcon). Enables far-reaching automation and precise control over cell cultivation for therapies, vaccines, and cultivated meat. Targets cell therapy developers, vaccine manufacturers, and cultivated meat producers.
  • Biomed03 Organ-on-Chip Production Technology Chain An integrated production technology chain for standardized Organ-on-Chip platforms, including three demonstration platforms of increasing functionality, modularity, and autonomy: a single-organ platform with integrated opto-mechanical sensing, a modular multi-organ microfluidic platform with integrated sensors, and a fluidically-autonomous high-content platform. Targets organ-on-chip adopters, pharmaceutical companies, and academic researchers.
  • Biomed04 Artificial Organs Building Blocks A biomedical R&D program developing next-generation artificial kidney and blood vessel components, including MEMS for sensing/actuation/wireless communication/powering (with imec, UMC Utrecht, Micronit, Nexperia), advanced sorbents and catalysts for portable artificial kidneys (with Chiral Vision, Nextkidney), polymer and silicon nanoporous membranes (with UTwente, Biochem Oss), and 3D electrospun biodegradable vascular grafts (with Vivolta, Xeltis, SupraPolix, Stentit, Corbion). Targets medical device developers, clinical research institutions, and patient care organizations.
  • DASE Systems Engineering Program A standardized Systems Engineering methodology framework organized across five work packages: SE Framework design, continuous development line for Dutch higher education, substantive modules, DASE integration within colleges and universities, and dissemination to other domains and society. Designed to address the shortage of systems engineers in the Dutch high-tech equipment industry. Targets engineering educational institutions, high-tech equipment manufacturers, and systems engineering professionals.
  • Smart Industry / Autonomous Factory Program An R&D program focused on developing smart factories and autonomous manufacturing, including digital twins, digitalization, predictive maintenance, and advanced automation technologies. Includes Smart Industry Capability Booster Learning Modules offered free to companies for digitalization strategy, data sharing, predictive maintenance, and Industry 4.0 adoption. Targets Dutch high-tech equipment manufacturers and industrial automation companies.
  • What's NXT Podcast A Dutch-language podcast series (with English version) exploring high-tech technologies including artificial organs, quantum computers, ultrafast chips, and smart machines. Features interviews with researchers, entrepreneurs, and experts. Available on Apple Podcasts, Spotify, and YouTube.

Quantifiable outcome

  • Treescout sensors provide a reliable indication of blossom and growth vigor for precision thinning, improving fruit set balance and yield quality
  • +1 more outcomes

Companies that use NXTGEN HIGHTECH

Customer profile

Segments6 records

Ideal customer profiles6 records

NXTGEN HIGHTECH technology and API

Technology

Technology focussed Yes

API detail

Has API
No
API docs
API detail

Core technology

AI maturity

App detail

Feature9 records

NXTGEN HIGHTECH partnerships and signals

Strategic signal

Partnerships

29 partnerships are on record, tiered core.

  • Wageningen University & Research (WUR)coreStrategic or Co-development PartnerWUR serves as a key research partner, hosting test and validation locations including WUR Open Teelten Randwijk (~18 ha orchards, 200+ mini orchards) for the Handsfree Agrifood ecosystem. WUR researchers collaborate on precision fruit cultivation, autonomous systems, and digital twins across innovation packages.
  • Scinus Cell ExpansioncoreStrategic or Co-development PartnerScinus Cell Expansion developed a unique flexible bioreactor system for controlled cell cultivation supporting high-fold expansion of adherent and suspension cell types to clinically relevant numbers. Partner in Biomed05 Cell Production Technology, responsible for bioreactor technology development.
  • TNCBiocoreStrategic or Co-development PartnerTNCBio develops new medium formulations that are well-defined and animal-component-free to increase the robustness of cell cultivation and decrease batch-to-batch variation. Partner in Biomed05 Cell Production Technology.
  • IamFluidicscoreStrategic or Co-development PartnerIamFluidics develops next-generation biomaterials including dissolvable microcarriers and microcapsules for scalable 2D and 3D cell cultivation in suspension bioreactors. Partner in Biomed05 Cell Production Technology.
  • Helia BiomonitoringcoreTechnology or IntegrationHelia Biomonitoring, in collaboration with TU Eindhoven, develops sensors based on Biosensing By Particle Motion (BPM) technique for continuous biomolecular monitoring. In Biomed05, BPM technology is optimized to continuously monitor cell stress and health.
  • ChiralVisioncoreTechnology or IntegrationChiralVision collaborates on photonic sensors using interferometry for biomarker detection. Also partners on Biomed04 Artificial Organs, developing advanced sorbents and catalysts for portable artificial kidneys. Contributes sensor technology for medium component monitoring in Biomed05.
  • BronkhorstcoreTechnology or IntegrationBronkhorst contributes to the integration and development of microfluidic components in next-generation bioreactors within Biomed05. Their expertise in flow measurement and control supports automated sampling and sample preparation.
  • DemconcoreTechnology or IntegrationDemcon participates in integrating and developing necessary components in bioreactors within Biomed05. Also involved in developing micro-electromechanical systems for artificial organs in Biomed04.
  • NcardiacoreStrategic or Co-development PartnerNcardia serves as an end-user evaluator in Biomed05, testing next-generation bioreactor technologies and using them to optimize cell production processes, specifically for iPSC cultivation and differentiation.
  • Batavia BioSciencescoreStrategic or Co-development PartnerBatavia BioSciences serves as an end-user evaluator in Biomed05, testing bioreactor technologies and prototypes for viral vector production optimization.
  • UMC UtrechtcoreStrategic or Co-development PartnerUMC Utrecht serves as both project management lead for Biomed04 (Artificial Organs) and end-user evaluator for Biomed05 (viral vector production). They are responsible for the overall project management of the artificial kidney and vascular grafts programs.
  • imeccoreStrategic or Co-development Partnerimec contributes to the MEMS (Micro-Electromechanical Systems) building blocks for artificial organs in Biomed04, providing expertise in sensing, actuation, wireless communication, and energy harvesting for implantable artificial organs.
  • MicronitcoreTechnology or IntegrationMicronit partners on Biomed04 Artificial Organs, contributing to micro-electromechanical systems and microfluidics for artificial organ components.
  • NexperiacoreTechnology or IntegrationNexperia contributes to the MEMS building blocks for implantable artificial organs within Biomed04, providing expertise in semiconductor and microelectronic components.
  • NextkidneycoreStrategic or Co-development PartnerNextkidney partners on the portable artificial kidney development within Biomed04, contributing to sorbent and catalyst technologies that enable a small dialysate volume to be continuously reused.
  • Dutch Kidney Foundation (Nierstichting)coreStrategic or Co-development PartnerThe Dutch Kidney Foundation supports the Biomed04 Artificial Organs project with project management oversight alongside UMC Utrecht, contributing to the development of portable and implantable artificial kidneys.
  • VivoltacoreTechnology or IntegrationVivolta develops biodegradable vascular grafts and stents using 3D electrospinning techniques within Biomed04, creating scaffolds that promote tissue restoration after implantation.
  • XeltiscoreTechnology or IntegrationXeltis partners on the 3D electrospun biodegradable materials for vascular prostheses in Biomed04, contributing to vascular access solutions for hemodialysis and vascular disease treatment.
  • University of TwentecoreStrategic or Co-development PartnerUniversity of Twente develops ultrathin silicon-based nanoporous membranes for fully implantable artificial kidneys (Biomed04) and photonic sensors for medium component monitoring (Biomed05). Also a key academic partner in Systems Engineering education development.
  • Munckhof Fruit Tech InnovatorscoreStrategic or Co-development PartnerMunckhof Fruit Tech Innovators developed and tested an apple-picking robot (Use Case 5) within the Handsfree Agrifood ecosystem. The evaluation report (February 2025) assessed picking efficiency and economic feasibility of autonomous harvesting.
  • Aurea ImagingcoreStrategic or Co-development PartnerAurea Imaging investigated sensor-driven precision thinning technologies (Use Case 7) using Treescout cameras on tractors to collect blossom and growth vigor data in orchards. The evaluation validated sensor accuracy and impact on fruit quality and yield.
  • TNO ESIcoreStrategic or Co-development PartnerTNO ESI leads applied research on systems engineering, networking activities, and education within the DASE program. They lead the Multi-Company Systems & Leadership Program and contribute to standardization of systems engineering methods across the Dutch high-tech industry.
  • TU DelftcoreStrategic or Co-development PartnerTU Delft is a key academic partner in the DASE Systems Engineering program, involved in integrating the methodology within higher education. Hosted the Systems Workforce Summit 2024 (October 2024) organized together with NXTGEN Hightech.
  • Thermo Fisher ScientificcoreStrategic or Co-development PartnerThermo Fisher Scientific, a market leader in electron microscopes headquartered in Eindhoven, uses systems engineering as an integral part of product development. Contributes to the DASE ecosystem through expertise sharing and collaboration with suppliers including VDL ETG.
  • VDL ETGcoreStrategic or Co-development PartnerVDL ETG specializes in designing and producing complex functional modules for organizations such as ASML and Thermo Fisher. With ~600 engineers, they integrate systems engineering across the organization and contribute to the DASE ecosystem.
  • VanderlandecoreStrategic or Co-development PartnerVanderlande, a leading automation company with 9,000+ employees, is undergoing a transition from project-based to platform/product-based organization. They contribute expertise on scalable systems engineering training, Model-Based Systems Engineering, and smart factory adoption.
  • Thales NetherlandscoreStrategic or Co-development PartnerThales Netherlands, specializing in defense and security systems including naval radar systems, uses Model-Based Systems Engineering and the Arcadia method. Contributes expertise on systems engineering practices within the DASE ecosystem.
  • ProdrivecoreStrategic or Co-development PartnerProdrive applies systems engineering with system architects acting as the interface between clients and project teams. Contributes expertise on translating customer requirements into technical specifications and managing expectations.
  • Industrial Clusters North, East, West, and CommoncoreStrategic or Co-development PartnerMultiple industrial clusters across the Netherlands (North, East, West, Common) participate in the Smart Industry Autonomous Factory projects, collaborating on smart factory development, digital twins, and digitalization of production processes.

Scale indicators4 records

Recent moves6 records

Expansion highlights6 records

NXTGEN HIGHTECH competitors and assessment

Company assessment

Direct peers

  • imec: imec is a Belgian semiconductor R&D center and a NXTGEN partner. Both organizations operate as multi-partner R&D ecosystems advancing semiconductor and adjacent technologies, with industry partnership models and public-private funding structures.
  • SINTEF: SINTEF is Scandinavia's largest independent research organization, operating across multiple technology domains with industry partnership and public funding models similar to NXTGEN. Both function as multi-domain applied research consortia.
  • Fraunhofer Society: Fraunhofer is Germany's largest applied research organization and operates a similar consortium model with 76 institutes covering multiple technology domains. Both Fraunhofer and NXTGEN coordinate industry-academia-government partnerships for hightech equipment development with public funding backing.
  • TNO (Nederlandse Organisatie voor Toegepast Natuurwetenschappelijk Onderzoek): TNO is the Netherlands' primary applied research organization and is directly comparable to NXTGEN as a public-private R&D consortium. TNO ESI is actually a NXTGEN partner leading systems engineering research, and both organizations operate as Dutch public-backed applied research entities with industry partnership models.
  • VTT Technical Research Centre of Finland: VTT is Finland's national applied research organization, comparable to NXTGEN as a publicly-funded multi-domain research consortium. Both organizations bridge academic research and industrial application across sectors including biotech, energy, and digital systems.

Broad incumbents

  • CSIRO (Commonwealth Scientific and Industrial Research Organisation): CSIRO is Australia's national science agency operating as a publicly-funded R&D organization across multiple domains. Both CSIRO and NXTGEN function as government-backed applied research ecosystems that translate research into industry applications.
  • Catapult Network: The UK's Catapult Network comprises nine technology and innovation centers with public-private partnership models similar to NXTGEN. Both organizations distribute innovation funding across technology centers with industry partnership mandates.
  • CEA (Commissariat à l'énergie atomique et aux énergies alternatives): CEA is France's major public research organization spanning energy, defense, and information technology. While focused on atomic and alternative energies, CEA shares NXTGEN's model of large-scale public R&D with industry partnerships across multiple technology domains.
  • Industrial Technology Research Institute (ITRI): ITRI is Taiwan's national applied research organization with a much larger scale than NXTGEN. Both operate as publicly-funded R&D ecosystems bridging research and commercialization, though ITRI has broader sector coverage and stronger semiconductor industry integration.

Emerging players

  • MESA+ Institute for Nanotechnology: MESA+ is a University of Twente research institute specializing in nanotechnology and adjacent fields. It is comparable to NXTGEN's technology tracks (particularly semiconductor devices and bionanotechnology) as a Dutch academic R&D consortium with industry partnerships.

Market position

Strengths4 records

Weaknesses4 records

Competitive moat5 records

Key risks6 records

Key highlights6 records

Customer concentration

NXTGEN HIGHTECH social profiles

Digital presence

NXTGEN HIGHTECH financial estimates

Financial estimate

Revenue estimate

Valuation estimate

NXTGEN HIGHTECH leadership team

Management profile

Number of profiles

Profiles6 records

NXTGEN HIGHTECH funding detail

Funding detail

Funding overview

Funding rounds

Investors

Funding detail is available on the Subscription and Enterprise plan.Contact sales →

NXTGEN HIGHTECH M&A and investment

M&A and investment

M&A

Investments2 records

M&A and investment is available on the Subscription and Enterprise plan.Contact sales →

Frequently asked questions about NXTGEN HIGHTECH

What does NXTGEN HIGHTECH do?

NXTGEN Hightech operates as a Dutch National Growth Fund project and open innovation consortium coordinating next-generation high-tech equipment development across seven technology tracks: Systems Engineering, Smart Industry/Digital Factories, Optomechatronics, Robotics/Cyber-Physical Systems, Thin Film/Plasma, Semiconductor Devices/Lithography, and Bionanotechnology. The organization does not sell commercial products; it coordinates collaborative R&D across 330 project partners and channels public funding into multi-domain programs covering agrifood, biomedical, semiconductor, energy, composites, and laser satcom domains.

Is NXTGEN HIGHTECH a public or private company?

NXTGEN HIGHTECH is a private company. It is classified as nonprofit foundation owned and is currently operating.

When was NXTGEN HIGHTECH founded?

NXTGEN HIGHTECH was founded in 2020. It employs 51 to 100 people.

Where is NXTGEN HIGHTECH based?

NXTGEN HIGHTECH is headquartered in Eindhoven, Netherlands, in the Europe region.

How does NXTGEN HIGHTECH make money?

One revenue line is on record: national Growth Fund (Nationaal Groeifonds) Grant.

Who are NXTGEN HIGHTECH's main competitors?

Direct peers on record are imec, SINTEF, Fraunhofer Society, TNO (Nederlandse Organisatie voor Toegepast Natuurwetenschappelijk Onderzoek) and VTT Technical Research Centre of Finland. Broad incumbents are CSIRO (Commonwealth Scientific and Industrial Research Organisation), Catapult Network, CEA (Commissariat à l'énergie atomique et aux énergies alternatives) and Industrial Technology Research Institute (ITRI). MESA+ Institute for Nanotechnology is listed as an emerging player.

Does NXTGEN HIGHTECH have an API?

No public API is recorded for NXTGEN HIGHTECH.

What industry is NXTGEN HIGHTECH in?

NXTGEN HIGHTECH's product category is Research and Development Services. Its primary akta.pro industry code is EDAHAEAG, Technical Universities with Strong Industry Partnerships, with a secondary code of IMAAAJAA, Additive Manufacturing Research & Innovation Labs. Its NAICS code is 541714 and its SIC code is 3559.

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