Sustainable Manufacturing

Concentrates on adopting production practices that minimize environmental harm, reduce resource consumption, and promote sustainability throughout the production lifecycle of vehicles, components, and infrastructure such as low carbon manufacturing solutions or sustainable battery production through green mining and material sourcing.

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Deep Learning Robotics (DLRob) develops advanced robotic automation solutions that combine AI, computer vision, and robotics to simplify complex industrial tasks. Its flagship technology enables robots to learn directly from human demonstrations, eliminating the need for traditional programming or extensive teach routines. This “teach-by-demonstration” approach allows rapid deployment and adaptability across various environments, from precise kitting and assembly to quality inspection and material handling.

DLRob’s systems leverage deep learning and real-time 3D perception to detect, grasp, and manipulate objects with high accuracy, even in unstructured settings. Its proprietary software integrates with robotic arms and sensors, creating fully autonomous cells capable of adjusting to variations in objects, positions, or process conditions. The technology supports zero-teach workflows, meaning operators can deploy robots without prior programming expertise.

DLRob also holds patents in AI-driven robotic learning and adaptive automation, ensuring its solutions remain at the forefront of industrial innovation. By reducing setup times, improving operational consistency, and enabling scalable automation, DLRob empowers manufacturers to increase productivity, reduce human error, and respond faster to changing production needs—all while minimizing the barrier to robotic adoption.

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Our focus is on providing cost-effective structural solutions for automotive applications from microcars to trucks and buses. We can save significant weight from a vehicle body-in-white, as much as 200kg from a mid-size SUV, improving efficiency and dynamics, reducing battery size while maintaining range and performance, and giving vehicle manufacturers a competitive edge over their rivals.
Our technology is based on advanced simulation to optimize solutions for minimal cost per kilo saved, while using materials and production processes that are mature and globally available to OEMs.

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DevRob is a Physical AI software company transforming how factories program and operate robots. Our platform enables fast and simple creation, updating, and optimization of robotic cells through a reliable digital twin. By transforming plain English into fully programmed industrial automation, DevRob’s AI converts production requirements into orchestrated robot movements, PLC logic, and sensor integration, making automation accessible, flexible, and efficient across all robot brands.

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Theta Motoren – Powering the Future with Hydrogen Innovation

Theta Motoren develops next-generation hydrogen engines and generators that redefine clean energy generation for off-grid and mobile applications. Our patented, ultra-compact design minimizes moving parts, maximizes efficiency, and drastically reduces production and maintenance costs. Unlike conventional fuel cells or combustion systems, Theta generators can flexibly operate on hydrogen and other clean fuels, ensuring reliability even in the harshest environments.

We focus on industries where stable, zero-emission power is critical—such as telecommunications, cooling logistics, UAVs, defense, and off-grid infrastructure. By replacing diesel generators and other carbon-intensive systems, our technology delivers immediate environmental and economic benefits: lower CO₂ footprint, reduced fuel consumption, and superior lifetime performance.

Founded by a team of engineers and innovators from the energy, mobility, and aerospace sectors, Theta Motoren merges advanced thermodynamics with precision German engineering to create scalable, sustainable power solutions. Our mission is clear: to enable clean, independent energy anywhere on Earth—driving the global shift toward a hydrogen-powered future.

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We are developing technology to monitor pavement condition index (PCI) using hyperspectral satellite imagery and advanced ML algorithms. By identifying critical intervention points, our scalable solution can reduce maintenance costs by 90%, providing real-time, accurate PCI assessments that are far more efficient than traditional methods.

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aiOla is a deep tech Voice AI platform dedicated to making work as easy as talking. We’re pioneering the Speech-to-Workflow platform, which transforms unstructured spoken data – from natural conversation to complex industry jargon – into structured, actionable information in real time.

Our mission is to enable the Voice-First Enterprise, where frontline teams can complete any workflow, log tasks, and trigger actions using just their voice. This eliminates the need for manual data entry, boosts productivity, and provides real-time data visibility across all operations.

What sets us apart is our enterprise-grade core: our AI is purpose-built to understand noisy environments, complex jargon, and multiple languages with unmatched accuracy. aiOla turns a fundamental human action – speaking – into a powerful tool for automation, ensuring businesses can capture every piece of valuable data, wherever work happens.

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AnyMaint, an AI-powered enterprise maintenance.
We bridge machines, workers, and software by leveraging Artificial Intelligence, Machine Learning, and Large Language Models. AnyMaint’s SaaS solution reduces machine downtime in production plants and equipment-intensive enterprises by up to 70%.
Our platform is trusted by leading companies across industries – helping them tackle their unique maintenance challenges.

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Where there are people, there is waste. With so many of us, the amount of waste generated has reached 2 billion tons a year and continues to grow at an alarming rate. What if there was a way to put all this waste to good use? This is exactly the question that sparked the foundation of UBQ Materials. We set out on a mission to rethink the very notion of waste and turn it into something good, useful, even celebrated. For thousands of years, consumption was a straight line, and at the end of it was a pile of garbage. With UBQ, waste is not the end, it is only the beginning. The beginning of a new material and the building block of a world without waste.

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Addionics enhances the performance of multiple battery chemistry types by integration of its proprietary 3D architecture. Energy density, power, and cycle life are all improved, thus facilitating and accelerating the electric vehicle transition. Based on current estimations, implementation of Addionics’ structure can reduce embodied emissions of one battery pack, across many chemistries, by 8.3 – 14.6 tons CO2eq, and emissions resulting from charging by an additional 2.5-3.7 tons CO2e.

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Helios is an Israeli innovator in green iron production, tackling one of the world’s most carbon-intensive industries. Our breakthrough technology, the Helios Cycle, replaces carbon and hydrogen with sodium as the reducing agent in ironmaking. This two-step closed-loop process operates at only 250–350 °C, consuming less energy while producing 99%+ pure iron with oxygen as the sole byproduct.

Unlike conventional steelmaking, which depends on scarce high-grade ores and emits vast amounts of CO₂, the Helios Cycle can process abundant low-grade ores and even mining tailings. This reduces both raw material costs and industrial waste, while eliminating direct carbon emissions when powered by renewable electricity.

Our modular, mobile furnaces enable localized production near mining sites, cutting transportation costs and emissions. With lower operating expenses, faster deployment, and strong unit economics, Helios offers steelmakers a practical path toward profitability and decarbonization.

Beyond iron, our technology extends to other critical materials such as nickel, copper, cobalt, and lithium—supporting cleaner, more sustainable resource extraction across industries

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