Explore our network
Step into The Market Square, the beating heart of climate innovation. Here visionaries, changemakers, and entrepreneurs meet, connect, and learn from each other. The goal? To build a stronger ecosystem and forge a path towards a sustainable future. So, whether you're a startup looking to network, an investor looking for the next big idea, or a corporation looking for specific technology, this is the database for you.
Timna Elements is developing a sustainable hydrometallurgical platform for recovering critical metals from mining and urban waste. Our technology transforms low-value waste streams—including mine tailings, industrial residues, and electronic waste—into valuable sources of critical raw materials essential for clean energy, electrification, and advanced manufacturing.
Our proprietary process combines selective leaching, advanced separation, and metal recovery to efficiently extract target metals while minimizing chemical consumption, energy use, and secondary waste generation. Unlike conventional mining, which relies on energy-intensive extraction of virgin ores, our approach recovers existing resources already present in waste, reducing environmental impact and supporting a circular economy.
The platform is designed to be flexible and scalable, enabling recovery of multiple critical metals from diverse feedstocks. By converting waste liabilities into valuable resources, Timna Elements helps reduce dependence on primary mining, improves resource security, and lowers the carbon footprint of critical metal production.
Our mission is to make critical metals more sustainable, accessible, and resilient, accelerating the transition to a low-carbon economy while creating economic value from materials that would otherwise remain unused
The technology is powered by Physics-Informed Neural Networks (PINNs) that fuse machine learning with the laws of thermodynamics and chemical kinetics. While traditional “black box” AI requires years of historical data and fails during unpredictable operational anomalies, Kineticore embeds physical reality into the neural network’s core architecture.
This physics-first approach eliminates “pilot purgatory,” shortening deployment from years to under four weeks. Out of the box, the modules deliver 85–95% fault prediction accuracy and real-time process guidance. By monitoring critical equipment (like ESPs) and optimizing energy-intensive thermal assets (like EAFs or chemical reactors), Kineticore provides operators with immediate, actionable recommendations.
Ultimately, the technology shifts the industrial paradigm from defensive cost-cutting to aggressive margin expansion—turning complex physical processes into predictable, highly resilient, and insurable operations on Earth and in space
Generative AI models are limited because they predict text. We are building the first model designed to predict physical events.
At Psistar, we are pioneering methods that treat physics as a language and operational knowledge as grounded truth. By decoding the underlying patterns of pressure, flow, and causality, we are building the world’s first Physics-Informed Foundation Model and Operational Ontology Model.
Our goal is to move AI beyond statistical guessing to mathematical certainty.
While the applications are limitless, we are already transforming legacy infrastructure into perfect, autonomous experts in Energy, Aerospace, and Data Centers. Our vision is building the brain for the entire physical world
Immedia Power is an energy infrastructure company addressing one of the biggest bottlenecks in electrification: slow and constrained grid expansion.
Electrification is accelerating, but new high-voltage grid connections can take 5–10 years, preventing EV fleets, edge data centers, ports, and industrial sites from scaling operations and generating revenue. As a result, these sites are forced to rely on inefficient and carbon-intensive alternatives, delaying progress toward net-zero goals.
Immedia Power provides permanent, utility-grade on-site capacity delivered in weeks instead of years, with a small physical footprint. Our flagship product, GX230, is a modular 230 kW multi-fuel power system that synchronizes directly with existing electrical infrastructure and operates as additional native grid capacity rather than backup power. The system supports LPG, CNG, biofuels, synthetic fuels, and hydrogen blends, enabling a clear pathway away from diesel while remaining deployable today.
Multiple units are orchestrated by proprietary software that intelligently manages load, peak demand, preventative maintenance, and output across single or multi-site deployments. The system combines high power density, ~42% utility-scale efficiency, universal grid integration, and structurally lower CAPEX per kW than incumbent solutions.
Immedia Power has completed a proof of concept, signed pilot LOIs, and is working with an experienced European development partner. Our solution enables faster electrification, reduces reliance on diesel generators, improves energy efficiency, and unlocks immediate revenue growth for energy-constrained sites
Nugen turns power from a bottleneck into a strategic advantage: clean, modular, on-site energy wherever growth demands it. We deliver swappable solid-state energy cartridges that can be shipped as cargo, stored on-site, and converted into clean electricity whenever needed.
We use a patented solid-state energy-carrier architecture to generate clean electricity on demand without any conventional fuel infrastructure. Energy is shipped as stable solid-state cartridges and converted into power by a proprietary catalytic reactor technology and a Physical AI control layer.
The result is a compact system that delivers up to 30% more usable electricity per unit volume than diesel.
No pipelines. No complex storage or fuel infrastructure.
For data centers, that means clean, long-duration power that can be deployed quickly, expanded modularly as demand grows, and used for backup, grid support, or expansion without waiting years for new grid infrastructure
NeoLogic is an Israeli semiconductor company developing next-generation AI server CPUs purpose-built for the data center era. Founded in 2021 and currently post-Series A, the company delivers a proprietary processor architecture designed to dramatically improve performance-per-watt compared to conventional CPU and GPU solutions.
NeoLogic’s processors reduce total data center power consumption by up to 30% while cutting AI inference costs by more than 100X versus GPU-based architectures. This enables cloud providers and data center operators to lower both OPEX and CAPEX, while addressing one of the most critical challenges of AI growth: energy efficiency at scale.
The company works closely with leading global industry players and targets large-scale deployment through server manufacturers and enterprise customers. By rethinking server compute from the silicon level up, NeoLogic plays a key role in decarbonizing digital infrastructure and enabling sustainable growth of AI, cloud, and data-intensive services
Kryora is an AI-powered software platform that optimizes cooling systems in real time for data centers and other mission-critical industrial environments, reducing energy consumption, operating costs, and carbon emissions without requiring hardware changes.
Cooling represents 40–60% of total electricity usage in data centers and large industrial facilities, especially in AI-driven environments where heat loads are extreme and highly dynamic. Most cooling systems today rely on static rules and conservative safety margins, leading to significant energy waste.
Kryora ingests real-time data from sensors, BMS, and operational systems, including temperature, airflow, power usage, and workload behavior, and applies machine-learning models to continuously optimize cooling performance. Unlike rule-based control, Kryora dynamically adapts to changing conditions, including high-density AI racks, while operating safely within thermal and reliability constraints.
The platform integrates with existing cooling infrastructure (CRAC/CRAH, chillers, air and liquid cooling systems), deploys quickly, and requires no physical retrofits. Kryora can reduce cooling energy consumption by up to 30%, directly lowering electricity demand, peak grid load, and CO₂ emissions.
By improving cooling efficiency at scale, Kryora enables more sustainable, resilient, and cost-effective growth of AI data centers and industrial facilities
Fast Sense measures what’s in your gas precisely. Using nano-scale solid-state sensors and IoT-enabled data consolidation, we accurately quantify hydrogen levels within combustible gas streams such as methane and natural gas.
Unlike traditional gas analyzers, our technology eliminates cross-sensitivity and delivers up to 10× savings in CAPEX and maintenance.
Applications
• Mixing & Process Control
• Flow Meter Coupling
• Redelivery & Energy Content Quantification
• Energy Storage Monitoring
Our solid-state chemiresistive sensor nodes also function as networkable leak detection units for pipelines, transformers, and power-grid mobility assets, providing a unified monitoring platform.
ATEX Class I, Zone 1 certified, the Fast Sense device is engineered for hydrogen detection in flammable environments (hydrogen, methane, and more).
The sensing element combines catalytic nanoparticle-decorated semiconductors with a selective polymeric coating, achieving unparalleled sensitivity, selectivity, and stability
Theta Motoren is a technology company developing ultra-reliable, multi-fuel power systems engineered for battery charging, backup, and resilient operation in the most remote regions of the world. Our compact generator architecture uses minimal components, achieves high efficiency, and can operate on a wide range of fuels — including hydrogen, methanol, ammonia blends, e-fuels, and other future-ready energy carriers. This broad fuel compatibility ensures energy security even where infrastructure is limited or supply chains are unreliable.
Designed for extremely low maintenance, and stable performance under harsh environmental conditions, our systems provide dependable charging and backup power for telecom towers, remote industrial sites, disaster-response zones, and off-grid communities. Operators can deploy our units anywhere and rely on consistent performance regardless of climate, altitude, or fuel availability.
By combining rugged engineering, compact design, and multi-fuel capability, Theta Motoren delivers a future-proof battery-charging and power solution that works where conventional generators fail. Our mission is to ensure that critical infrastructure can operate anytime, anywhere — from dense urban networks to the most isolated corners of the planet.
We make sustainability simple, fast, and affordable for every business. LCAs (Life Cycle Assessments) typically take months to complete and require specialized expertise from environmental consultants. The LCAi platform is powered by our novel AI agent architecture and large language models, designed to conduct LCAs efficiently and effortlessly for any existing product. Our goal is to deliver a simple, personalized experience for every user, with built-in support for LCAs that comply with every standard or purpose (CBAM, ESPR, DPP, EPD, and more), allowing companies to make data-driven, sustainable decisions across their entire supply chain
NanoTherma revolutionizes energy efficiency in data centers by converting low-grade waste heat into clean electricity using innovative thermoelectric nanomaterials. Each year, data centres globally lose billions of kilowatt-hours as unused heat, creating substantial financial and environmental burdens. NanoTherma’s solid-state panels, easily integrated into existing data center racks, passively generate electricity without fluids, plumbing, or moving parts. This groundbreaking technology reduces operational costs and emissions, enabling data centers to transform wasted energy directly into usable power. With significant market potential and strong industry engagement, NanoTherma is reshaping the future of sustainable energy
Salion Energy is developing a breakthrough battery technology designed to deliver safe, fast, and scalable energy storage for high-power applications. Unlike traditional batteries optimized for energy capacity, our aqueous sodium-ion platform is engineered to provide sustained bursts of power, ideal for critical operations where speed, safety, and reliability are essential.
Our water-based battery chemistry is inherently non-flammable, offering a major safety advantage over conventional lithium-ion and non-aqueous sodium-ion systems that rely on flammable organic electrolytes. It also leverages abundant, widely available materials, making the technology not only more sustainable but also highly scalable and potentially cost-effective at commercial scale.
With a high discharge rate and a cycle life exceeding 30,000 cycles, Salion’s batteries are built for demanding use cases such as peak shaving and backup power. The technology is ideally suited for data centers, commercial buildings, industrial environments, and EV charging, where fast, resilient power is required.
We are currently in early development, with initial pilot projects planned for 2026. Salion is supported by the Israel Innovation Authority and the Racah Nanotech Fund at the Hebrew University, and is currently engaging design partners and preparing for a seed round to advance product development and scale commercialization
Optimal Sense is an innovative EnergyTech startup focused on an AI-driven, personalized energy management platform aimed at optimizing energy use in residential, commercial, and microgrid settings. Our platform empowers users to optimize energy consumption, reduce costs, and increase revenues in the energy market.
How we do it:
Our advanced platform leverages AI to deliver user-friendly interfaces that simplify complex energy management tasks. By integrating data from a wide variety of sources, our system provides real-time insights tailored to the unique needs and preferences of each user.
Innovation & collaboration:
We enhance our customers’ energy efficiency by integrating Deep Tech, advanced green materials, and products. We achieve this through strategic collaboration with academic research groups and by partnering with breakthrough companies to embed cutting-edge solutions directly into our offerings.
We help our customers:
– Save energy and reduce costs
– Earn through participation in the energy market
– Improve home and grid resilience
– Maximize renewable energy usage
– Lower their carbon footprint
BH Grid Solutions is redefining carbon efficiency from power sources in the data center (DC) industry with a real-time monitoring and AI-driven prediction & optimization platform. Unlike traditional carbon accounting methods that rely on retrospect static annual emission factor, BH Grids dynamically tracks carbon emission factor on an hourly basis, taking into account grid fluctuations, Power Purchase Agreements (PPAs) and other sources. This enables both data center operators and tenants to make immediate, real time data-driven decisions that Actually reduce emissions, lower costs, and improve overall sustainability.
For data center operators, the platform provides real-time carbon monitoring, cost savings, regulatory compliance, and improved operational efficiency, making sustainability a competitive advantage rather than just an obligation.
Tenants benefit from granular carbon tracking, real-time alerts, ESG-compliant reporting, and tools to optimize their carbon footprint by moving tasks between time and zone, ensuring their digital infrastructure aligns with sustainability goals.
With patent-protected AI algorithms, predictive analytics, and seamless integration with diverse energy sources, BH Grid Solutions empowers the entire data center ecosystem to proactively manage its carbon footprint, enhance efficiency, and stay ahead of tightening ESG regulation
With a developed product and undergoing pilot in cooperation with a major DC operator and a multinational tenant, BH Grid Solutions intends to go to 945TWh market size (in 2030) in Q4 2025 and decrease Operators and Tenants carbon emissions by 10-30%!
We are introducing a breakthrough semiconductor technology that transforms traditional electronic designs into photonic (light-based) designs. Our technology requires minimal changes to existing industry practices, allowing current design and fabrication processes to remain the same—while improving speed and power consumption by up to 100×.
We have received funding from the Israeli Innovation Authority, filed a patent, produced a POC are in the process of establishing a collaboration with MAFAT. We are now looking for partners and investors to join us in this journey.
2nd-Light is a cross-sector innovative startup promoting circular economy for end-of-life lithium-ion EV batteries by actively acting as brokers in global market transactions through an accurate pricing mechanism, backed by an advanced algorithm and a unique business model.
As data centers grow to meet increasing digital demands, so does their energy consumption—posing a significant environmental challenge. LOCI (Line of Code Intelligence) offers a groundbreaking solution by reducing energy waste at the source: inefficient software execution. By leveraging AI-driven analysis, LOCI optimizes software behavior, reduces resource consumption, and enables sustainable computing practices, helping data centers cut emissions and operate more efficiently.
Aurora Labs is a domain expert in ML, NLP, and model tuning, pioneering data-driven innovation since 2017, developing a proprietary vertical large language model (LLM) known as Large Code Language Model (LCLM). This LCLM specializes in comprehensive system workload analysis focusing on power and performance for observability and reliability, accelerating the development of embedded systems, AI, and Data Center infrastructures.
Founded in 2016, Aurora Labs has raised $97m and has been granted 100+ patents. Aurora Labs is headquartered in Tel Aviv, Israel, with offices in the US, Germany, North Macedonia, and Japan.
Acquired by Molex in May 2026
Silicon-photonics, which realizes speed of light data transfer at low power consumption, is the most promising technology enabler for the next generation of high-speed data transfer in data centers, cloud computing, HPC and other datacom applications. One of the main challenges of next-generation data center co-packaged switches is scalability of fiber-to-chip connectivity – the ability to reliably connect hundreds of fibers to a single switch chip at high yield and low cost.
Teramount Photonic-plug’s technology demonstrated 100X improved tolerance in assembling fiber to silicon chip compared to existing technologies, enabling successful integration of optics with silicon and scalable deployment of silicon photonics. With this, Teramount is solving a major obstacle of next-generation data center co-packaged switches thus, enabling a reliable and dense-fiber connectivity at high yield and low cost.
SolidT Technologies is a deep-tech company developing thin-film thermoelectric cooling (TF-TEC) — an advanced solid-state heat-pump technology that provides precise, localized temperature control for chips, LEDs, batteries, and other high-power electronic components. Unlike conventional bulky coolers, SolidT’s ultra-thin modules integrate directly into the device package, offering high efficiency, silent operation, and instant thermal response.
The company’s innovation lies in its proprietary thin-film thermoelectric architecture, which achieves high heat-flux and efficiency in micrometer-scale devices. This enables improved reliability and performance in semiconductors, lighting, and EV battery systems, while significantly reducing the overall energy required for cooling.
By optimizing cooling exactly where it’s needed — rather than over-cooling entire systems — SolidT’s technology can cut data-center power consumption, extend component lifetime, and reduce global energy waste associated with heat management. In essence, SolidT bridges advanced micro-cooling with meaningful climate impact, transforming how industries handle heat.
Ceal, founded in 2024, is a carbon dioxide removal (CDR) company paving the way for a Net-Zero environment. We claim to be the fastest, cheapest and most energy-efficient technology ready to scale. We use circular economy best practices to co-locate with seawater-cooled, thermal power plants, utilizing their existing infrastructure and enabling seamless integration of our proprietary electrochemical catalysis technology with their facilities. Our process is additive- and emission-free, and non-reliant upon the carbon market.
In a highly efficient single-step, Ceal captures and sequesters atmospheric CO2 dissolved in seawater into industry-essential, solid minerals, while providing soft water for various uses. Thus, enabling substantial new revenues, major cost savings and increased energy efficiency for its customers, all while reducing their environmental impact. Ceal’s solution reduces the carbon footprint of the host facility, its marine pollution of hazardous chemicals, and simplifies its operation.
Ceal – more than just carbon dioxide removal. We are healing the world.
Avenas is a climate-tech innovator developing cutting-edge nanoparticle-based coatings that address critical global challenges in energy efficiency and thermal management. Our dual-purpose technology is designed for both civilian and industrial applications, providing sustainable solutions across construction, automotive, and high-performance computing industries.
Our flagship product, HYPERION, is a coating that reduces surface temperatures by up to 10°C without compromising visibility or functionality. By lowering the thermal load on buildings, vehicles, and electronic systems, HYPERION minimizes reliance on energy-intensive cooling methods such as air conditioning, reducing energy consumption, operational costs, and environmental impact.
In data centers and high-performance computing systems, our coatings enhance thermal management for CPUs, GPUs, and servers, improving energy efficiency and extending hardware lifespans. Meanwhile, in the automotive and construction sectors, HYPERION offers unparalleled energy savings and improved comfort in hot climates, making it a versatile and scalable solution.
With increasing global emphasis on sustainable technologies, Avenas stands at the forefront of innovation, driving the transition to greener, more efficient infrastructure. Through partnerships with industry leaders, we aim to bring our groundbreaking technology to markets worldwide, contributing to a more sustainable future for the planet.
Since 2015 hiSky develops, manufactures, and delivers satellite-based communication networks. hiSky’s unique approach leverages existing Ka/Ku band GEO satellites to cater for the growing communication needs of IoT and M2M systems in areas without terrestrial communication coverage. hiSky developed a full ecosystem including terminals, HUBs and network management system, optimized for the common needs of IoT/M2M systems. This approach allows hiSky to offer disruptive, flexible, competitively priced services, to cater for any user needs, big or small.
enSights is your centralized vision into the status and needs of your renewable energy assets.
Collect, store, and learn from your digital assets in a single, centralized place, using the latest real-time monitoring and machine learning algorithms, to optimize your performance and reduce consumption, at scale.
ZutaCore has developed a two-phase direct on chip, dielectric liquid cooling technology for servers, which is the most efficient and safe cooling solution for servers and data center. Our solution provides better energy efficiency while posing no risk to computing equipment, as opposed to water-based solutions.
The thermal energy is efficiently removed through the boiling process and the generation of vapor, which is then transported to the condenser, where the thermal energy is removed from the vapor and the rack via a flow of air or facility water.
Our solution enables a cost-effective implementation of heat reuse for application such as district heating, heating swimming pools and providing hot water for showers.
SQream provides an analytics platform that minimizes Total Time to Insight (TTTI) for time-sensitive data, on-prem and on-the-cloud. Designed for tera-to-peta-scale data, the GPU-powered platform enables enterprises to rapidly ingest and analyze their growing data – providing full-picture visibility for improved customer experience, operational efficiency, and previously unobtainable business insights.
ZOOZ Power is a power-electronics and energy-storage company that enables high-power electrification in locations where grid capacity is constrained. The company developed and commercialized a flywheel-based energy buffering system that delivers instantaneous, ultra-high power while drawing a significantly lower average load from the grid. This technology was successfully deployed in the EV fast-charging market, validating its performance, reliability, and economic value in real-world conditions. Building on this foundation, ZOOZ Power has developed deep expertise in high-power inverters, grid interconnection, fast-response energy systems, and site-level energy management. Today, the company is expanding its focus to new high-growth markets where grid limitations are becoming a critical bottleneck, including electrified construction sites and AI data centers. In these applications, ZOOZ Power’s non-degrading, high-cycle energy buffering provides a unique advantage by enabling rapid deployment, reducing grid upgrade requirements, and supporting the transition to large-scale electrification
Sphere is a deep-tech company revolutionizing thermal management for high-density AI infrastructure and heavy industry. Led by a multidisciplinary team of thermodynamic scientists and defense industry veterans, Sphere has developed a proprietary hybrid cooling system based on Micro-Layer Evaporation technology.
The company addresses the critical “heat and energy crisis” facing modern data centers, where traditional chillers struggle to cool powerful AI processors (like NVIDIA H100) efficiently. Sphere’s solution bridges this gap, delivering a near-perfect PUE of 1.02 while reducing energy consumption by ~90% and water usage by ~50% compared to legacy solutions.
Uniquely, Sphere utilizes chemical-free, Reverse Osmosis (RO) treated water with UV sterilization. This approach eliminates scaling, corrosion, and biological risks, offering the industry’s first “Zero-Maintenance” wet cooling solution.
Validated by successful pilots in extreme industrial environments (such as ICL Dead Sea Works), Sphere offers a scalable, capital-efficient infrastructure solution designed specifically for the high-thermal demands of the AI era