Full-Time

Robotics Service/Maintenance Technician

Neura Robotics

Neura Robotics

501-1,000 employees

Robotic assistants enabling human-robot collaboration

No salary listed

Munich, Germany

In Person

Occasional travel to customer sites or trade fairs is required.

Category
Mechanical Engineering (1)
Required Skills
CAD
Mechatronics
Robotics

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Requirements
  • Completed vocational training as an industrial mechanic, precision mechanic, mechatronics technician, or similar.
  • Experience in prototype construction or assembly of complex mechanical systems.
  • Strong understanding of mechanical assemblies and machine components.
  • Ability to read technical drawings confidently.
  • Skilled craftsmanship with a precise and clean working style.
  • Ability to work independently and in a solution-oriented manner.
  • Strong team spirit and good communication skills in German or English.
  • Willingness to occasionally travel to customer sites or trade fairs to support installations and commissioning.
  • Basic knowledge of electrical and electronic topics, such as wiring.
Responsibilities
  • Perform mechanical assembly, integration, and setup of humanoid robot prototypes.
  • Assemble modules, joints, actuators, and gear systems.
  • Read and implement technical drawings and computer-aided design derivations.
  • Adjust, rework, and optimize parts during the prototype phase.
  • Support commissioning, testing, and system modifications.
  • Identify assembly issues and provide feedback to mechanical design.
  • Use measurement tools for functional and quality inspections.
  • Document assembly processes and prototype changes.
  • Maintain tools, fixtures, and workstations.
Desired Qualifications
  • Experience in robotics, automation, or special-machine construction.
  • Experience with actuators, gear systems, or mechatronic assemblies.

Neura Robotics builds robotic assistants named MAiRA, MAV, LARA, and MiPA to help humans in work settings. The robots are designed to interact with people naturally and to understand their surroundings through sensors and artificial intelligence. They use environmental perception, drive systems, control methods, and advanced materials to move and operate with precision while thinking and acting in coordination with humans. The company differentiates itself by focusing on cognitive-like abilities and human-robot collaboration across industries such as manufacturing, logistics, healthcare, and customer service. Their business model centers on selling the robots and providing ongoing support and updates, aiming to extend human capabilities and enable smoother teamwork between people and machines.

Company Size

501-1,000

Company Stage

Series C

Total Funding

$1.7B

Headquarters

Metzingen, Germany

Founded

2019

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Simplify Jobs

Simplify's Take

What believers are saying

  • June 10, 2026 funding from Amazon, NVIDIA, Qualcomm, Bosch, and Tether validates demand.
  • RWTH Aachen announced NEURA Gym on July 22, 2026, accelerating industrial adoption.
  • Headcount reached about 1,471 by March 2026, signaling aggressive hiring and expansion.

What critics are saying

  • The $1.4 billion Series C includes milestones, forcing delivery before cash fully arrives.
  • Humanoid robotics commercialization still depends on factory safety, uptime, and unit economics.
  • Tesla, Figure, and Chinese OEMs can compress margins before NEURA scales globally.

What makes Neura Robotics unique

  • NEURA Robotics integrates sensors, control software, mechanics, and AI in-house.
  • Its Neuraverse platform turns deployed robots into shared learning infrastructure.
  • NEURA Gyms with RWTH Aachen and TUM create proprietary real-world training data.

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Benefits

Flexible Work Hours

Paid Vacation

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

-3%

2 year growth

-3%
WTWH Media LLC
Jul 24th, 2026
NEURA Robotics establishes NEURA Gym RWTH Aachen to train physical AI.

NEURA Robotics establishes NEURA Gym RWTH Aachen to train physical AI. People are not the only ones who can benefit from going to the gym. Physical AI developers are increasingly turning to specialized facilities to train models enabling robots to perceive, decide, and act in the real world. NEURA Robotics GmbH this week said it has partnered with RWTH Aachen University to address the scarcity of real-world data for training its "cognitive" robotics. "Unlike large language models, which train on trillions of data points, robots have access to a fraction of that volume," explained NEURA Robotics. "Simulations alone cannot reproduce the friction, variability, and unpredictability of the real-world environment robots will operate in." The NEURA Gyms will combine physical training and high-fidelity simulation to create high-quality datasets that directly feed the Neuravese open, cloud-based development platform. "Partners can train and validate robots for their specific use cases before committing to full industrial deployment, reducing adoption risk and accelerating time to deployment," the company explained. Germany to lead NEURA Gym development. NEURA Robotics is building 10 facilities across Europe, the U.S., and China. The company said it expects half of them to be operational by the end of 2026. The two centers in Germany will be at RWTH Aachen's Hightech Campus Melaten and at Munich Airport in collaboration with the Technical University of Munich (TUM) and its Munich Institute of Robotics and Machine Intelligence (MIRMI). "The collaboration with NEURA Robotics and the NEURA Gym RWTH Aachen at the heart of our university takes our transfer strategy to a new level," stated Prof. Dr. Ulrich Rüdiger, rector of RWTH Aachen University. "RWTH looks back on decades of technological excellence in mechanical engineering, electrical engineering, and computer science," he added. "By combining this scientific leadership with a leading high-tech pioneer, we are creating a unique infrastructure for the skilled professionals of tomorrow and securing Germany's leading position in the global AI competition." Save the date for RoboBusiness 2026 NEURA plans for robot training facilities. Metzingen, Germany-based NEURA Robotics said its recent Series C financing of up to $1.4 billion is backing its global gym network. The Aachen Gym at Campus Melaten will be about 3,000 sq. m (32,291.7 sq. ft.). TUM RoboGym in Munich will be more than 2,300 sq. m (24,756.9 sq. ft.) and will test fleets of cognitive and humanoid robots. While the gyms will share an open physical AI infrastructure through the Neuraverse, they will differ depending on the specialties of each region and set of partners, said NEURA. While the company will provide the technology infrastructure, academic researchers and corporate partners will bring domain-specific knowledge. The NEURA Gyms will produce multimodal data from real-world interactions, to be scaled with high-fidelity simulation. Technologies from Neuraverse ecosystem partners will also be available. Sectors including manufacturing, automotive, healthcare, and industrial automation have expressed interest in using the facilities.

NovumPR
Jul 22nd, 2026
New NEURA Gym with RWTH Aachen: NEURA Robotics expands its global training network for Physical AI.

New NEURA Gym with RWTH Aachen: NEURA Robotics expands its global training network for Physical AI. * NEURA Gym RWTH Aachen to open by end of 2026 * Ten NEURA Gyms under development, five operational by end of 2026 across Europe, the United States and China * Industry partners gain access to the world's first open infrastructure for training and deploying Physical AI METZINGEN, Germany-(BUSINESS WIRE)- NEURA Robotics ("NEURA"), the pioneer in cognitive robotics and creator of the Neuraverse, today announces a new partnership with RWTH Aachen University for the establishment of NEURA Gym RWTH Aachen. This continues the global rollout of NEURA Gyms, a worldwide network of purpose-built Physical AI training facilities that address the most significant barrier to intelligent robotics: the scarcity of real-world training data. The global rollout is backed by NEURA's Series C financing of up to $1.4 billion, the largest ever raised by a full-stack robotics company. While ten NEURA Gyms are currently under development, five locations across Europe, the United States and China will be operational by end of 2026. The network is anchored by the two European flagship Universities, based in Germany: - The NEURA Gym RWTH Aachen, to be established in partnership with RWTH Aachen University at the Hightech Campus Melaten - And the TUM RoboGym (powered by NEURA), opening at Munich Airport in the fourth quarter of 2026 in collaboration with the Technical University of Munich (TUM) and its Munich Institute of Robotics and Machine Intelligence (MIRMI). Together, these two centers of excellence position Germany as the backbone of Europe's Physical AI infrastructure. Closing the Data Gap Holding Back Physical AI Unlike large language models, which train on trillions of data points, robots have access to a fraction of that volume. Simulations alone cannot reproduce the friction, variability, and unpredictability of the real-world environment robots will operate in. NEURA Gyms are purpose-built facilities where all cognitive robot forms can train at scale and under real-world conditions, combining physical training with high-fidelity simulation. This generates high-quality datasets that feed directly into the Neuraverse, NEURA's open, cloud-based platform connecting robots, developers, and industry partners worldwide. Partners can train and validate robots for their specific use cases before committing to full industrial deployment, reducing adoption risk and accelerating time to deployment. An Ecosystem Built on Partnership Industrial companies and developers gain early access to train robots for their specific use cases before committing to full deployment. NEURA provides the infrastructure; partners bring the domain knowledge no single company could accumulate alone. That exchange continuously enriches the Neuraverse, creating compounding value across the ecosystem. "The biggest bottleneck in Physical AI is no longer intelligence, it's experience," said David Reger, Founder and CEO of NEURA Robotics. "Robots learn by interacting with the real world and that's exactly why we are building NEURA Gyms. Every company possesses expertise that no AI model has today. Our Gyms transform this knowledge into deployable robot skills while every partner remains fully in control of its own data. Together with RWTH Aachen, we are building the infrastructure that Physical AI needs to scale." "The collaboration with NEURA Robotics and the NEURA Gym RWTH Aachen at the heart of our university takes our transfer strategy to a new level," said Prof. Dr. Ulrich Rüdiger, Rector of RWTH Aachen University. "RWTH looks back on decades of technological excellence in mechanical engineering, electrical engineering, and computer science. By combining this scientific leadership with a leading high-tech pioneer, we are creating a unique infrastructure for the skilled professionals of tomorrow and securing Germany's leading position in the global AI competition." Two German Flagships, One Global Network Located at the Hightech Campus Melaten and covering approximately 3,000 square meters, the NEURA Gym RWTH Aachen is industry-open and purpose-built for research, AI-based training, and the industrial deployment of next-generation Physical AI models in intelligent and humanoid robotics. Around 20 RWTH institutes will be integrated into the facility, giving large enterprises and mid-sized companies alike access to an infrastructure where they can validate high-end robotics for their production workflows, particularly in manufacturing, automotive, the circular economy and medical technology. The partnership combines NEURA's commercial robotics platform with RWTH Aachen's deep expertise in robotics and machine intelligence. Two leading RWTH chairs will shape the research agenda of the site. Prof. Dr. Volkmar Schulz, Chair of Imaging and Computer Vision develops physics-based foundation models as the cognitive core of future robots. Prof. Dr. Burkhard Corves, Head of the Institute of Mechanism Theory, Machine Dynamics and Robotics (IGMR), focuses on safe, intuitive human-robot interaction enabled by integrated motion and manipulation intelligence methods. The TUM RoboGym deepens that foundation. At 2,300 square meters and housing a large fleet of humanoid and cognitive robots, it represents a new category of research and industrial infrastructure: one that combines European academic excellence in AI and machine intelligence with NEURA's commercial robotics platform and the €17 million commitment behind it. It will serve as the first anchor of NEURA's global Gym network. Together, these facilities form the foundation of NEURA's global Gym infrastructure. Ten locations are currently under development, five of them operational before year-end. Each new Gym accelerates learning across the entire ecosystem. About NEURA Robotics NEURA was founded on the belief that the next major technology revolution will not happen on screens, but in the physical world. As aging populations, labor shortages and growing demand for skilled work reshape economies worldwide, Physical AI will become essential to sustaining productivity, prosperity and quality of life. Founded in 2019 and headquartered in Metzingen, Germany, NEURA Robotics is a global Physical AI company building the technologies that enable intelligent machines to learn, adapt and work alongside humans in the real world. The company develops cognitive robots that can see, hear, feel and learn, as well as the software, AI and data infrastructure required to deploy them at scale. Today, a large share of global GDP is generated through physical work. NEURA's mission is to make physical skills scalable by dramatically reducing the time required to teach machines new capabilities and deploy them globally. Through its cognitive robots, NEURA Gyms and the Neuraverse, an open ecosystem where robots continuously learn and share skills, the company is building the foundation for a future in which intelligent machines help solve some of humanity's biggest challenges. NEURA Robotics is building Physical AI from Europe, together for the world. For further information, images, and interview requests, please contact [email protected]

Capria Ventures
Jul 16th, 2026
India already tried this once.

India already tried this once. July 16, 2026 India's robotics ecosystem is advancing rapidly, but its biggest bottleneck remains the precision manufacturing layer beneath the AI. In 2000, a Bengaluru company built a robotic arm where every joint was independently intelligent and networked. It was a feature that would not become a standard in collaborative robots globally for another decade. Yet, the arm never found its market. This did not happen because someone built something better. It happened because every single component that made it actually work had to come from Japanese and European suppliers, and once you added those costs up, the economics simply did not hold. That story tends to get told as one company's isolated misfortune. In reality, it is much more useful as a structural pattern, one that has repeated itself quietly across every wave of Indian robotics since. When large Indian manufacturers did eventually begin automating at scale, they bypassed domestic options and reached for proven foreign hardware every single time. By the mid-2010s, Maruti Suzuki's plants in Manesar and Gurgaon were running roughly 5,000 imported robots across their lines, sourcing from Fanuc, ABB, Kawasaki, Yaskawa, and KUKA. Around 2011, Bajaj Auto became one of the first in the country to adopt collaborative robots, choosing Universal Robots from Denmark. Royal Enfield's plant near Chennai bought from ABB, while Mahindra's Nashik factory built its welding lines around imported systems. The domestic robotics companies that existed through this period were largely locked out of the boom happening right next to them, simply because buyers prioritized global reliability over domestic experimentation. The underlying constraint that stopped that first wave has not gone away. The precision components that actually determine what a robot can do - servo motors, harmonic drive reducers, encoders, and motion controllers - are still almost entirely imported in India today, primarily from Japanese and European suppliers, with China increasingly undercutting both on the lower end. These are not peripheral parts; they are what makes a joint move precisely, what gives an arm its dexterity, and what lets a mobile robot navigate reliably. To put the scale of this problem in perspective, India's entire national robot installation in 2024 was roughly 9,100 units. China installed 295,000 in the same year. Assembled in India is not the same thing as built in India. That distinction is where the first wave got stuck, and it is the same distinction that matters most in this one. So, the question worth asking about any Indian physical AI company right now is not whether the product is good or whether the team is brilliant. It's how far down "in India" actually goes, and whether that answer holds together when you're building your hundredth unit instead of your first prototype. Fortunately, that question is finally starting to attract interesting answers from an unexpected direction. Sona BLW Precision Forgings, a company that built its reputation making precision gears for the automotive industry, approved a significant capital commitment in June 2026 to manufacture components for the robotics industry. They have also confirmed a strategic partnership with Germany's Neura Robotics to jointly develop robots, humanoids, components, and sub-assemblies for India and other markets. The logic is direct: the high-torque, precision-engineered parts that go into an EV powertrain are the very same parts a robot joint needs. Similarly, Bharat Forge signed an MoU with Munich-based Agile Robots in January 2026 to co-develop AI-driven robotics and intelligent industrial automation solutions, combining Bharat Forge's manufacturing scale with Agile's robotics and software capabilities. Even startups are shifting vertically; Ethereal Machines, which traced its origins to a Bengaluru college dorm in 2010, spent years failing to build a robotic arm because precision CNC machining was not available locally at a reasonable cost. Instead of giving up, they built the CNC machines themselves. Today, they manufacture aerospace components from a massive facility in Bengaluru, backed by Peak XV, Blume, and Avataar, and are actively working toward their own proprietary CNC controller. The government is pushing on this broader component-manufacturing layer too. The Electronics Component Manufacturing Scheme (ECMS), aimed at deepening India's domestic electronics component ecosystem, saw its budget nearly doubled to ₹40,000 crore in the 2026-27 union budget. None of this means the constraint is entirely resolved - these are early commitments and MoUs, not components shipping at global volume. The domestic precision manufacturing layer remains thin. Meanwhile, what has genuinely changed is the layer above. GreyOrange, India-founded and now Atlanta-based, has deployed thousands of robotic agents for Walmart, IKEA, and Apple, with early backers at Blume calling it India's proudest deep-tech export and a potential billion-dollar revenue company. Addverb, built in Noida with backing from Reliance, has expanded from warehouse automation into humanoid systems deployed globally. Simultaneously, Mowito is teaching factory robot arms new tasks from a handful of human demonstrations rather than months of custom programming. The software, the AI, the deployment - that part of the tech stack has genuinely caught up. But the precision manufacturing layer below has not. That boring middle of the physical stack is still exactly where the ultimate outcome gets decided. Sathvika G is an Investment Fellow at Capria Ventures. This article was originally published on LinkedIn> Be the first to hear the latest investment updates, AI tech trends, and partner insights from Capria Ventures by subscribing to our monthly newsletter.

Bosch
Jun 30th, 2026
BCW 2026: Bosch pushes ahead with technologies for automation and robotics.

BCW 2026: Bosch pushes ahead with technologies for automation and robotics. From sensors to systems: comprehensive expertise and added value from a single source * Stefan Hartung: "With the advent of humanoid robotics, the demand for Bosch components and solutions is increasing." * Tanja Rueckert: "We're already making automation and robotics accessible and quick to integrate for our customers." * Business target: Bosch is well positioned to participate in the growth of robotics and to develop business worth billions. * Cross-domain expertise offers a fundamental advantage: Bosch has expertise in automating everything from cars to factories to homes. * Strong ecosystem: Bosch is driving innovation in automation and robotics through strategic partnerships and a specialized unit. Stuttgart and Berlin, Germany - Advanced robotics and, in particular, the very dynamic growth of humanoid systems are heralding the next stage of automation. Bosch is already playing a major role in shaping this development and is actively pushing ahead with key technologies for automation and robotics. "Sophisticated sensor technology, software, and the efficient conversion of electrical energy into motion aren't just technologically related to automated mobility - they're the cornerstones of modern robotics," said Stefan Hartung, chairman of the board of management of Robert Bosch GmbH, at the Bosch Connected World (BCW) industry event in Berlin. Bosch was quick to respond to the growing demand for automation and robotics technologies and is already a sought-after and attractive commercialization partner and component supplier worldwide. "With the advent of humanoid robotics, the demand for Bosch components and solutions is increasing," Hartung added. With its comprehensive expertise, the company is well positioned to participate in the growth of the robotics market. Bosch sees the potential to develop a business worth billions in this field. The company is putting its faith in synergy effects to achieve this. "We're combining proven technologies from various business sectors with visionary innovations to drive forward the industrial scaling of robotics - all the way to humanoids," Hartung said. "We also hope that committing to this course will strengthen Europe as a technology location." Moreover, Bosch is making targeted use of automation to increase the competitiveness of its German plants compared to the rest of the world as well as to counteract the ever more acute shortage of skilled workers. Robotics needs a delicate touch "Bosch is moving the future - on wheels and with arms," says Tanja Rueckert, member of the board of management of Robert Bosch GmbH. The company is deploying its cross-domain automation expertise - from the car to the factory to the home - as its decisive advantage in shaping this growth market. Bosch is positioning itself not as a manufacturer of humanoid robots, but as a leading supplier and partner for the "brain and nervous system" of modern automation and robotics. At the heart of these flexible solutions is Bosch's open ctrlX AUTOMATION platform. "This makes robotics accessible, modular, and quick to integrate. We're already enabling our customers to combine driverless transport systems with high-precision robot arms, for example, which can then take over tasks in existing processes in a stable and flexible manner," Rueckert says. The Bosch Rexroth division is currently implementing several customer projects in this area. Robots need a keen sense of touch so that they can interact safely and precisely with their environment, whether in the factory or in the home. A tiny but indispensable technology gives robots precisely this tactile sense: microelectromechanical systems, known as MEMS sensors. They are the key to enabling robots to handle objects with the necessary finesse and react sensitively to physical contact. For example, it's these sensors that give a robot the ability to precisely adjust its grip to a robust water glass or a delicate stemmed glass. Bosch is the global market leader in this key technology field of MEMS sensors, which is central to the company's Reutlingen semiconductor location. "Humans have 4 million touch sensors. If we were to build robots with just as many sensors, then 4 years' worth of worldwide sensor production would barely be enough for 12,500 robots," Hartung says. This figure illustrates the immense potential in the future of automation and robotics - and Bosch's key role in that future. According to the Yole Group[1)], a market research and strategy consultancy, the market for MEMS sensors - a market Bosch leads - is expected to grow to over 19.2 billion U.S. dollars by 2030 and achieve an average annual growth rate of 4 percent. Bosch is working to further develop cognitive robots To accelerate development in automation and robotics, Bosch is relying on a combination of targeted in-house innovation and an open ecosystem approach. To this end, the company founded Robert Bosch Robotics GmbH, a specialized unit that focuses on the development and commercialization of new robotics solutions. At the same time, Bosch is continuing to drive forward industrial scaling through strategic partnerships. For example, the company is working together with the German Start-up Neura Robotics to further develop cognitive robots. Thanks to its deep manufacturing expertise, Bosch also acts as a key partner for leading robotics startups from around the world including Humanoid from the U.K., and other U.S. and Chinese partners, and is bringing their prototypes to production scale. Bosch has pooled its activities in China in particular in the Bosch Robotics Center China (BROC), which was established at the beginning of the year and is driving forward the development of physical AI and the commercialization of robotics solutions. In addition to the robots' "intelligence," Bosch's strength lies in the crucial components that give robots their physical performance. Bosch Rexroth has a comprehensive portfolio of key components for modern robotics and factory automation. These include high-precision electric motors and powerful servo drives that ensure dynamic and precise movements, as well as CtrlX AUTOMATION for smart, flexible control of robots for a range of environments and requirements. Bosch also offers complex assemblies and subsystems that give robots the power, speed, and precision they need, meaning these components serve as the technological backbone for various automation tasks. Moreover, Bosch can provide support with factory equipment for robotics manufacturing, for example with Rexroth conveyor systems. Unique treasure trove of data from over 230 plants worldwide Artificial intelligence (AI) is the engine that gives automation and robotics new capabilities. "The combination of cutting-edge electronics and mechanics with AI puts significant technological breakthroughs in automation and robotics within reach," Rueckert says. "For example, it enables robots to perceive their environment, understand processes, and learn from experience." Bosch has embedded this key technology firmly in its strategy and uses it on two levels. First, the company is bringing AI models from the cloud directly into its physical products to enable automated operation. Second, Bosch already makes extensive use of AI in its own manufacturing, for example in the optimization of production processes, in predictive maintenance, and in optical fault detection. The foundation for these learning AI systems is a treasure trove of data from over 230 Bosch plants worldwide that is unique in the industry. "Our decisive competitive advantage is not the machinery alone, but the data from our global manufacturing network," Rueckert says. "This treasure trove of data is the raw material from which we're developing the intelligent automation solutions of the future." In addition, to translate human expertise into machine-readable data, Bosch uses special data suits that record complex movement sequences as a basis for training. The company is specifically contributing this expertise to its partnership with Neura Robotics in order to accelerate the development of cognitive robots. On the topic of AI, the Bosch Tech Compass, a survey of more than 11,000 people in 7 countries worldwide, shows that the majority of people see AI as the most influential and most positive technology in the years ahead. A key finding is that enthusiasm for AI is growing worldwide, with 70 percent of respondents seeing it as crucial for the future. [1) Source: Status of the MEMS Industry 2025 report, Yole Group.]

Caproasia
Jun 12th, 2026
United states $3.3 billion zero-commission trading platform webull with 25 million users to expand in Hong Kong over 3 to 5 years, Founded in...

United states $3.3 billion zero-commission trading platform webull with 25 million users to expand in Hong Kong over 3 to 5 years, Founded in... Home Capital Market Germany High-Tech Robotics Company Neura Robotics Raised $1.4 Billion in Series C... Jun 12, 2026 12th June 2026 | Hong Kong Germany high-tech robotics company Neura Robotics has raised $1.4 billion in Series C funding at $7 billion valuation. In 2026 March, Neura Robotics raised $1.2 billion (€1 billion) at $4.6 billion (€4 billion) valuation. Neura Robotics was founded in 2019 by David Reger. Neura Robotics investors include Tether Holdings, Qualcomm Technologies, Amazon, NVIDIA, imec.xpand, Bosch, Schaeffler, European Investment Bank, Lingotto Investment Management (Exor NV), BlueCrest Capital Management, Volvo Cars Tech Fund, InterAlpen Partners, Vsquared Ventures, HV Capital, Delta Electronics, C4 Ventures & L-Bank. Neura Robotics - Founded in 2019 and headquartered in Metzingen, Germany, NEURA Robotics is a global Physical AI company building the technologies that enable intelligent machines to learn, adapt and work alongside humans in the real world. The company develops cognitive robots that can see, hear, feel and learn, as well as the software, AI and data infrastructure required to deploy them at scale. NEURA was founded on the belief that the next major technology revolution will not happen on screens, but in the physical world. As aging populations, labor shortages and growing demand for skilled work reshape economies worldwide, Physical AI will become essential to sustaining productivity, prosperity and quality of life. Today, a large share of global GDP is generated through physical work. NEURA's mission is to make physical skills scalable by dramatically reducing the time required to teach machines new capabilities and deploy them globally. Through its cognitive robots, NEURA Gyms and the Neuraverse, an open ecosystem where robots continuously learn and share skills, the company is building the foundation for a future in which intelligent machines help solve some of humanity's biggest challenges. NEURA Robotics is building Physical AI from Europe, together for the world. "Germany High-Tech Robotics Company Neura Robotics Raised $1.4 Billion in Series C funding at $7 billion valuation, Founded in 2019 by David Reger, investors include Tether Holdings, Qualcomm Technologies, Amazon, NVIDIA, imec.xpand, Bosch, Schaeffler, European Investment Bank, Lingotto Investment Management (Exor NV), BlueCrest Capital Management, Volvo Cars Tech Fund, InterAlpen Partners, Vsquared Ventures, HV Capital, Delta Electronics, C4 Ventures & L-Bank" Germany High-Tech Robotics Company Neura Robotics Raised $1.2 billion (€1 billion) at $4.6 billion (€4 Billion) valuation, Founded in 2019 by David Reger, investors include Tether Holdings, Lingotto Investment Management (Exor NV), BlueCrest Capital Management, Volvo Cars Tech Fund, InterAlpen Partners, Vsquared Ventures, HV Capital, Delta Electronics, C4 Ventures & L-Bank. 5th March 2026 - Germany high-tech robotics company Neura Robotics has raised $1.2 billion (€1 billion) at $4.6 billion (€4 billion) valuation. Neura Robotics was founded in 2019 by David Reger. Neura Robotics investors include Tether Holdings, Lingotto Investment Management (Exor NV), BlueCrest Capital Management, Volvo Cars Tech Fund, InterAlpen Partners, Vsquared Ventures, HV Capital, Delta Electronics, C4 Ventures & L-Bank. Neura Robotics - NEURA Robotics is a German high-tech company founded by David Reger in 2019 in Metzingen near Stuttgart with the goal to revolutionize the world of robotics. NEURA is the only company worldwide that designs and manufactures intelligent, cognitive robots in-house. At the core of the company lies a strong value-driven philosophy: NEURA's mission is to expand the capabilities of collaborative robots with cognitive skills, enabling an entirely new level of seamless interaction between humans and machines - safe, smart, and effortless. The guiding principle "We serve humanity" captures this vision in a nutshell. The product strategy follows a consistent "one-device" approach. Inspired by the concept of a smartphone with arms and legs, NEURA robots combine all central components and sensors for physical artificial intelligence into a single device. Today, NEURA brings together more than 1200 employees from over 45 nations. All key technologies, such as AI, control software, sensor technology and mechanical components, are developed in-house. With groundbreaking products such as MAiRA, the world's first cognitive robot, and MiPA, an intelligent and versatile robotic assistant for various areas of life, NEURA is paving the way for a new era of robotics. Another milestone is 4NE1 ("For Anyone"), the first humanoid robot designed for series production. In addition, NEURA has created the Neuraverse, the world's first scalable robotics app store: a continuously learning ecosystem that connects users, developers, experts, and companies. It enables robots to gain new skills as easily as smartphones receive updates. Managing $20 million to $3 billion. 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