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Sami Robotics, located in Varennes, Québec, has successfully transitioned its broccoli harvesting application from prototype to operational status, utilizing a scalable, multi-arm design. The platform employs 12 to 18 robotic arms that work in parallel to identify and harvest mature vegetables, although specific throughput figures are not disclosed due to varying field conditions. The significance of this advancement lies in Sami Robotics' commitment to automating labor-intensive agricultural tasks through advanced robotics, AI, and data analytics. CEO Pascal Labrecque emphasizes the platform's adaptability for multiple crops and agricultural operations, aiming to enhance efficiency and reduce labor dependency for growers. Looking ahead, Sami Robotics plans to scale commercial deployments while refining its technology. Romaine lettuce is next in line for development, with iceberg lettuce and cauliflower also generating interest. The company envisions a multifunctional platform that could eventually support various agricultural tasks beyond harvesting, although no additional capabilities are currently in development.
FutureFarming By René Groeneveld Aug 18, 2026 Crop solutions Harvest & storage harvest Harvest robot
Fieldwork Robotics has secured a £2.5 million investment from SEED Innovations to enhance its selective and modular berry harvesting robots. This funding is part of a Seed+ fundraising initiative announced in April 2026, aimed at addressing labor shortages and rising costs in berry production. The investment will facilitate the transition from technology validation to commercial trials, with production robots already deployed in a two-year program in Norfolk and Stafford. The significance of this investment lies in its potential to alleviate pressing challenges faced by berry growers, including labor shortages and increased harvesting costs. By utilizing autonomous harvesting robots, Fieldwork aims to boost productivity and reduce reliance on seasonal labor, thereby minimizing food waste and stabilizing consumer prices. Jim Mellon, chairman of SEED Innovations, emphasizes the opportunity for robotics and AI to tackle real-world agricultural issues, aligning with Fieldwork's mission to enhance farm efficiency. Looking ahead, Fieldwork Robotics anticipates operating multi-robot fleets on farms by 2027, contingent on the success of ongoing trials. Additionally, the company plans to expand its operations internationally, with trials set to take place in Australia as part of its global growth strategy. No further timeline was disclosed at the time of publication.
RoboticsAndAutomationNews.com By Sam Francis Jul 10, 2026 Agriculture Financials & Investments agri robotics agricultural robotics agriculture automation
A novel gripping mechanism and dual manipulator robotic system designed for apple harvesting using a tractor has been developed. This innovative system aims to enhance the efficiency of apple picking, addressing the labor shortages faced in agriculture. The significance of this development lies in its potential to revolutionize apple harvesting processes, making them more efficient and less reliant on manual labor. By integrating advanced gripping technology with a dual manipulator system, the project seeks to improve productivity in the agricultural sector. Looking ahead, the focus will be on testing the system in real-world conditions to evaluate its performance and effectiveness in apple harvesting. No further timeline was disclosed at the time of publication.
JournalofFieldRobotics By R. M. Rasika D. Abeyrathna, Victor Massaki Nakaguchi, Zifu Liu, Tofael Ahamed Aug 20, 2026 RESEARCH ARTICLE
Israeli ag robotics startup Nanovel is tackling the complexities of robotic citrus harvesting. Their patented autonomous harvester features robotic arms that can reach deep into citrus trees, using a vacuum gripper to collect fruit while minimizing damage. The system employs computer vision and AI to navigate the canopy and manage a fleet of robots. This innovation is significant as manual labor constitutes about 50% of production costs in citrus farming, particularly in regions sensitive to labor availability. Nanovel's technology aims to reduce these costs, with harvesting expenses estimated at $25-30 per 900-lb field bin compared to $42-43 for manual labor. The ability to schedule harvests reliably without dependence on seasonal workers enhances operational efficiency. Looking ahead, Nanovel plans to conduct trials with leading growers in southern Europe in 2027, followed by pilot deployments in 2028 and commercial rollout in 2029. The company has secured a €2.5 million grant from the European Innovation Council to support its development efforts.
AgFunderNews By Elaine Watson Aug 14, 2026 Agtech Artificial intelligence Deeptech EMEA Precision agriculture Startups & funding
Impossible Metals, a US mining technology company, has announced plans to establish an Advanced Marine Robotics Hub in Pittsburgh, Pennsylvania. This facility will focus on developing autonomous marine systems for the deep-sea collection of critical minerals, creating over a dozen high-paying engineering and science jobs. The hub aims to enhance US capabilities in marine robotics and critical mineral technologies through collaboration with local universities and researchers. The significance of this initiative lies in its potential to redefine deep-sea mining practices. According to Mike Regan, Chief Growth Officer at Impossible Metals, the hub will enable swarms of autonomous robots to harvest critical minerals like nickel, cobalt, copper, and manganese with minimal environmental impact. This approach not only promises to produce the lowest-cost critical metals on Earth but also aims to strengthen the US supply chain and reduce reliance on foreign sources of essential materials. Looking ahead, the Advanced Marine Robotics Hub will serve as the primary research center for advancing the Eureka autonomous underwater platform and Smart Launch and Recovery Systems. The company plans to continue developing dual-use technologies that cater to both commercial and naval applications. No further timeline was disclosed at the time of publication.
InterestingEngineering.com By Jijo Malayil Jul 15, 2026 AI and Robotics
UK-based Dogtooth Technologies has successfully raised over £14 million in funding to enhance its AI-driven strawberry picking robots. The financing, provided by 24 Haymarket, EMV Capital, and ACF Investors, along with a grant from Innovate UK, aims to accelerate the deployment of these robots in both the UK and international markets. The company has already established a fleet of approximately 70 robots operating on commercial farms in the UK and Australia, harvesting tens of tons of fruit each season. The significance of this funding lies in addressing the ongoing labor shortages in agriculture, which have made robotic harvesting a necessity rather than a luxury. Dogtooth's robots utilize advanced computer vision and precision mechanical arms to autonomously navigate complex growing environments, identify ripe fruit, and perform harvesting without damage. This technology allows for continuous operation, even in cooler night conditions, thereby extending the shelf life of harvested produce. Looking ahead, Dogtooth Technologies is poised to expand its market presence, having recently delivered systems to Dyson Farming, a UK indoor berry producer. As the global horticultural industry grapples with seasonal labor shortages and rising costs, the successful deployment of these agricultural robots could signal a shift towards more widespread adoption of embodied intelligence in farming. No further timeline was disclosed at the time of publication.
leaderobot.com By Leaderobot Jul 10, 2026 Agricultural Robotics AI Technology Fruit Harvesting Embodied Intelligence
Cambridge-based AI robotics company Dogtooth has successfully raised £14 million in funding to enhance its agricultural technology solutions. This investment aims to accelerate the development of advanced robotics designed for precision farming, addressing the growing demand for automation in the agtech sector. The funding round highlights the increasing interest in AI-driven solutions within the agricultural industry, particularly in the UK market. The significance of this funding lies in its potential to transform agricultural practices through the integration of AI and robotics. As the global agricultural sector faces challenges such as labor shortages and the need for sustainable practices, innovations like those from Dogtooth are crucial. The investment reflects a broader trend of increasing capital flow into agtech, with investors recognizing the importance of technology in enhancing productivity and sustainability. Looking ahead, Dogtooth's next steps will likely focus on scaling its technology and expanding its market presence. No further timeline was disclosed at the time of publication, but the company’s advancements in AI robotics could set new benchmarks in the agricultural sector, paving the way for future innovations and partnerships in agtech.
AgFunderNews By Jennifer Marston Jul 09, 2026 Agtech FoodTech
Fieldwork Robotics, a UK-based company, has received a significant investment from SEED Innovations, led by entrepreneur Jim Mellon. This funding aims to expedite the commercial rollout of the company's innovative autonomous robot designed for raspberry harvesting. The investment comes at a crucial time as the agricultural sector increasingly seeks automation solutions to enhance efficiency and address labor shortages. By leveraging this financial support, Fieldwork Robotics plans to advance the development and deployment of its technology, positioning itself as a leader in agricultural robotics.
FutureFarming By Geert Hekkert Jun 25, 2026 Smart farming autonomous technology harvesting technology investment roboticsRSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.
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