Robosuits SRL

Robosuits SRL

"The new exoskeleton company"

Genova exoskeleton startup (Sept 2017); develops EBW lower-limb exoskeleton for industrial use and rehabilitation.

Visit Website

Company Overview

Robosuits SRL is an Italian engineering and technology company created in September 2017 and headquartered at Via Fieschi 3/15, 16121 Genova, Italy (VAT/CF: 02494500990). The company was founded by Gianni Sini (CEO & Founder) with the strategic backing of Danieli Telerobot Labs, a partner organization with extensive global exoskeleton market experience and a stable, highly skilled engineering team. Robosuits positions itself as "the new exoskeleton company" and is focused exclusively on developing and commercializing high-performance wearable robotic exoskeletons.

Its two core products are: (1) EBW (Exoskeleton Body Weight) — a fully active lower-limb load-carrying exoskeleton designed for industrial workers and elderly users, which transfers carried weight to the ground to relieve stress on hips and knees; (2) FEX (Finger Enhancement eXoskeleton) — one of the most advanced finger exoskeletons on the market, targeting hand rehabilitation in the medical sector. The EBW and FEX devices can be constructed from rigid materials (metal, carbon fiber) or soft elastic components, equipped with sensors and actuators, and are enhanced by Liquidweb Brain Technologies for human-machine cooperation. Robosuits maintains active relationships with research centers and universities, participating in international projects to stay at the forefront of exoskeleton technology.

Target markets include industrial operators requiring load assistance, elderly individuals seeking improved mobility and reduced joint pain, and clinical rehabilitation facilities. The company aims to become one of the top global exoskeleton companies within five years of its founding. Email contact: [email protected].

Capabilities & Activities

Primary type & automation activities this supplier delivers:

Applications & Industries

Product Categories

Products & Solutions

EBW Exoskeleton

Active lower-limb load-bearing exoskeleton that transfers carried weight to the ground for workers and elderly users.

FEX Finger Enhancement Exoskeleton

Advanced finger exoskeleton for hand rehabilitation and enhancement, among the most advanced in its category.

Partnership & Notable clients

Associating Events

Contact Robosuits SRL

WEBSITE

https://www.robosuits.it

EMAIL

[email protected]

HEADQUARTERS

Via Fieschi 3/15
Genova , Liguria  16121

Italy

Company Facts

Founded

2017

Primary Role

Manufacturer

Company Size

-

Primary Region

Europe

Annual Sales

-

Funding Stage

-

Funding Total

-

Listed in RobotToday Supplier Discovery. Verified Profile

Related Coverage

FAULHABER Drives the IX BACK VOLTON Exoskeleton for Enhanced Worker Support

FAULHABER Drives the IX BACK VOLTON Exoskeleton for Enhanced Worker Support

The IX BACK VOLTON exoskeleton, developed by SUITX, utilizes FAULHABER drive solutions to provide significant support for manual laborers. This innovative system is designed to alleviate back strain during physically demanding tasks in logistics and production environments. The importance of the IX BACK VOLTON lies in its ability to enhance worker efficiency and reduce injury risks. By integrating advanced robotics and adaptive intelligence, the exoskeleton dynamically adjusts support based on the user's movements, ensuring comfort and effectiveness during repetitive tasks. Looking ahead, the demand for ergonomic solutions like the IX BACK VOLTON is expected to grow, particularly in fast-paced logistics settings. As industries continue to prioritize worker safety and efficiency, the successful deployment of this exoskeleton could set a new standard for wearable robotic support in the workplace.

The Missing Price: What Non-Disclosure Reveals About the Humanoid Market

The Missing Price: What Non-Disclosure Reveals About the Humanoid Market

Of 131 announced robot models, 33 publish no price. US makers withhold at twice the rate of Chinese ones — and the reason is stage, not strategy.

Sichuan's Investment in Exoskeleton Robots Enhances Healthcare and Tourism Sectors

Sichuan's Investment in Exoskeleton Robots Enhances Healthcare and Tourism Sectors

Sichuan's Buffalo Robotics has developed a lower limb exoskeleton that improves mobility for individuals with spinal injuries, achieving a 50% sales increase last year. The device, weighing 2.2 kg and made of carbon fiber, incorporates AI and brain-machine interface technology to enhance rehabilitation training. The significance of this development lies in its potential to transform rehabilitation practices, allowing therapists to assist multiple patients simultaneously while maintaining consistent training intensity. The exoskeleton's applications extend beyond healthcare, with partnerships established for tourism assistance in scenic areas like Emei Mountain. Looking ahead, industry experts predict a surge in consumer-grade exoskeletons by 2025, with expectations for prices to decrease significantly as technology advances. Sichuan is actively fostering market growth, having established numerous smart rehabilitation centers to support this initiative.

Exoskeleton Robots Rehabilitation Technology AI in Healthcare Tourism Assistance
VIATRIX X Set to Launch as a Game-Changer for Outdoor Consumer Exoskeletons

VIATRIX X Set to Launch as a Game-Changer for Outdoor Consumer Exoskeletons

VIATRIX, a brand under Aoshark Intelligent, is set to launch its next-generation exoskeleton, VIATRIX X, on September 22, 2026. This product is designed specifically for outdoor exploration and features revolutionary advancements in AI algorithms, power systems, and hardware architecture, establishing a new benchmark for outdoor consumer exoskeletons in 2026. The significance of VIATRIX X lies in its comprehensive upgrades in materials, safety systems, and protection levels, positioning Aoshark as a leading player in the outdoor consumer exoskeleton market. With a strong foundation in industrial-grade exoskeletons, Aoshark aims to democratize exoskeleton technology, making it accessible to everyday users. Looking ahead, Aoshark's commitment to redefining the application scenarios for exoskeletons is noteworthy. The company is focused on creating a dynamic collaboration system that responds in real-time to human movements, addressing the needs of a growing outdoor consumer base. No further timeline was disclosed at the time of publication.

Outdoor Exoskeletons AI Technology Consumer Robotics Wearable Technology
Soft Exosuit Increases Arm Mobility by 80-180% for Patients with Brachial Plexus Injuries

Soft Exosuit Increases Arm Mobility by 80-180% for Patients with Brachial Plexus Injuries

A team from the BioRobotics Institute of Scuola Superiore Sant'Anna, University of Turin, and CTO Hospital in Turin has developed a soft exosuit that significantly enhances arm mobility for patients with chronic brachial plexus injuries (BPI). The exosuit, weighing approximately 0.6 kg, was tested on 14 patients, resulting in an 80% to 180% increase in active range of motion and a 160% improvement in static endurance. This advancement is crucial as BPI often leads to severe loss of sensation and motor control in the upper limb, primarily affecting young males under 30, with motorcycle accidents being the leading cause. The exosuit employs soft pneumatic actuators to assist shoulder and elbow movements, providing a novel solution that addresses the critical joint often overlooked in previous wearable robotics. Future developments in this technology could further enhance rehabilitation for BPI patients. The study's findings indicate that the exosuit not only improves mobility but also reduces the effort required for movement, as evidenced by a significant decrease in muscle activity during use. No further timeline was disclosed at the time of publication.

Soft Robotics Wearable Technology Rehabilitation Devices Medical Innovation
Wandercraft Aims for €100M Funding at €750M Valuation to Expand Industrial Humanoid Efforts

Wandercraft Aims for €100M Funding at €750M Valuation to Expand Industrial Humanoid Efforts

Wandercraft, a Paris-based robotics company, is seeking approximately €100 million (around $116 million) in new equity funding to enhance the commercialization of its hardware platforms. The firm is collaborating with Goldman Sachs Group Inc. to facilitate this funding round, which is expected to achieve a pre-money valuation of about €750 million. Discussions are ongoing, and neither Wandercraft nor Goldman Sachs has commented on specific terms or timelines. This funding initiative comes as Wandercraft transitions from its specialized rehabilitation hardware to a focus on heavy industrial automation. The company previously raised $75 million in a Series D funding round, which included investments from Renault SA and other notable entities. Wandercraft is known for its dynamic balancing medical exoskeletons, but its recent efforts are centered on the Calvin family of industrial humanoids designed for heavy-payload material handling in automotive manufacturing. Looking ahead, Wandercraft's push for €100 million reflects a larger trend in European robotics financing, where startups are increasingly attracting significant late-stage investments. The involvement of Goldman Sachs indicates a shift towards institutional investors capable of supporting long-term manufacturing cycles, as seen in recent funding successes by other European robotics firms like NEURA Robotics and Humanoid.

Europe Market Wandercraft
X Square Launches TwinDEX to Address Data Challenges in Embodied AI Robotics

X Square Launches TwinDEX to Address Data Challenges in Embodied AI Robotics

X Square Robot, based in Shenzhen, has unveiled TwinDEX, a new manipulation platform designed to bridge the data gap in embodied artificial intelligence. This innovative system connects a wearable exoskeleton to a robotic end effector, ensuring identical geometry and functionality, which enhances data fidelity and collection efficiency. The introduction of TwinDEX is significant as it addresses the limitations of traditional data collection methods, which often struggle with the embodiment gap. By utilizing a three-finger, nine-degree-of-freedom architecture, TwinDEX allows for versatile manipulation capabilities while maintaining mechanical reliability and cost-effectiveness. Looking ahead, X Square's approach could redefine how data is gathered for robotic applications, particularly in complex tasks requiring precision. The company has demonstrated TwinDEX's capabilities through a continuous chemistry experiment, showcasing its potential to operate effectively without relying on conventional teleoperation data. No further timeline was disclosed at the time of publication.

Data Collection China XSquare
Nanyang Technological University Develops MMG-Driven Variable Stiffness Glove for Tremor Control

Nanyang Technological University Develops MMG-Driven Variable Stiffness Glove for Tremor Control

Nanyang Technological University (NTU) has unveiled a variable stiffness glove driven by mechanomyography (MMG) to suppress tremors associated with conditions like Parkinson's disease. This innovative wearable device utilizes a 3D-printed exoskeleton structure that adjusts its stiffness in response to detected muscle vibrations, providing support only when tremors occur. The significance of this development lies in its ability to enhance daily activities for individuals suffering from tremors without compromising joint flexibility. The glove's design incorporates a lightweight, high-strength nylon structure that can quickly transition from soft to rigid, ensuring optimal performance during tremor episodes. The research findings have been accepted for publication in IEEE Robotics and Automation Letters. Looking ahead, the team aims to further validate the glove's effectiveness in real-world applications. The rapid response time of the device, achieving 90% of maximum stiffness in approximately 0.63 seconds, positions it as a promising solution for tremor suppression. No further timeline was disclosed at the time of publication.

Wearable Technology Tremor Suppression Assistive Devices Healthcare Innovation
WRC 2026 Robot Systems: 149 Companies That Build Robots

WRC 2026 Robot Systems: 149 Companies That Build Robots

149 of the 248 classified WRC 2026 exhibitors build finished robots. 93 build humanoid or legged machines. The audited humanoid sales number is one unit.

Five Key Trends Emerging from WRC 2026: Shift to Product Validation in Robotics

Five Key Trends Emerging from WRC 2026: Shift to Product Validation in Robotics

The World Robot Conference 2026 showcased a unique robot 'wedding' on Qixi and highlighted five significant trends in the robotics industry. Notably, robots are transitioning from technology validation to product validation, indicating a maturation in the field. This shift is crucial as it reflects the industry's movement towards practical applications and market readiness, rather than just experimental technologies. Additionally, while world models are still relevant, they did not generate as much excitement as anticipated, suggesting a need for further innovation. Looking ahead, tactile sensing is emerging as a key focus for dexterous robotic hands, while exoskeletons are beginning to show promise. Furthermore, the competition among component suppliers is intensifying, particularly concerning joints. No further timeline was disclosed at the time of publication.

VUB Leads RESSORT Project to Enhance Soft Robots with Sensing and Adaptation Capabilities

VUB Leads RESSORT Project to Enhance Soft Robots with Sensing and Adaptation Capabilities

Vrije Universiteit Brussel (VUB) is spearheading the RESSORT project, a four-year initiative funded by the European Union's Horizon Europe program. This project aims to advance soft robotics by enabling these robots to sense, repair, and adapt to their environments, with applications in healthcare, food handling, and industrial inspection. The significance of RESSORT lies in its potential to transform soft robots into more sustainable and reliable solutions. By integrating innovative technologies such as self-healing materials and variable-stiffness structures, the project seeks to overcome existing limitations that have kept soft robots primarily in laboratory settings. This advancement could lead to safer interactions with humans and delicate objects. Looking ahead, RESSORT plans to develop three demonstrators to validate its technologies in real-world scenarios. One key application is a personalized soft exosuit for rehabilitation, designed to provide tailored support to patients. The project also aims to create an adaptive robotic system for the food industry, enhancing the ability to handle fragile products effectively.

Features Research Robotics Science adaptive robots brubotics
New Muscle-Sensing Technology Poised to Transform $1.6 Billion Exoskeleton Market

New Muscle-Sensing Technology Poised to Transform $1.6 Billion Exoskeleton Market

The exoskeleton market in China is projected to exceed 1.6 billion yuan by 2025, with approximately 26,000 units expected to be shipped annually. The medical rehabilitation sector remains the primary market driver, while consumer applications account for over 70% of shipments. Industries such as logistics, automotive manufacturing, energy, and emergency rescue are also beginning to adopt exoskeleton technology. Despite the growing sales of exoskeletons, a fundamental challenge persists: these devices can enhance human strength but often lack the ability to accurately gauge the user's exertion levels. Recent research from the University of Queensland introduces a solution by employing ultra-wideband radar (UWB) technology to measure muscle force without invasive procedures. This advancement offers a more direct method of assessing muscle exertion compared to traditional electromyography (EMG) techniques. As the field evolves, the integration of UWB technology could significantly improve the functionality of exoskeletons, making them more responsive to the user's actual physical output. Future developments in this area will be crucial to enhancing the effectiveness of rehabilitation and training applications. No further timeline was disclosed at the time of publication.

Exoskeletons Muscle Sensing Technology Healthcare Robotics Wearable Devices
Springer Handbook of Robotics B. Siciliano & O. Khatib (eds.) — RSF Top 10 Robot Education Textbooks · No. 10

Springer Handbook of Robotics B. Siciliano & O. Khatib (eds.) — RSF Top 10 Robot Education Textbooks · No. 10

Eighty-plus chapters, 2,300 pages, nobody reads it cover to cover. It ranks for one reason: when a fault crosses domains, this is the reference of record.

CONSTRUCTION ROBOTICS | FUTURE HORIZONS: 2025–2030 & BEYOND

CONSTRUCTION ROBOTICS | FUTURE HORIZONS: 2025–2030 & BEYOND

Construction robotics is entering its decisive decade. Autonomous jobsites, swarm coordination, humanoid integration, and a potential $60 billion market reshape every strategic decision in the industry.

ROBOTTODAY WEEKLY May 11 - 15, 2026

ROBOTTODAY WEEKLY May 11 - 15, 2026

This week in robotics: Figure AI's humanoids hit a 24/7 nonstop autonomous work milestone, Mind Robotics raises $400M to top $1B, Waymo recalls 3,800 robotaxis over flooding, Unitree debuts the world's first mass-produced human-carrying mecha, and WIRobotics closes a $68M Series B. May 11–15, 2026.

CONSTRUCTION ROBOTICS | BUSINESS MODELS & INVESTMENT LANDSCAPE

CONSTRUCTION ROBOTICS | BUSINESS MODELS & INVESTMENT LANDSCAPE

Construction robotics attracted $4.4 billion in built environment tech funding through Q3 2025. SoftBank acquired ABB Robotics for $5.375 billion. RaaS is displacing capex models. AI-native platforms command 39x revenue multiples. This is where money meets machines.

CONSTRUCTION ROBOTICS | EXOSKELETONS & HUMAN AUGMENTATION

CONSTRUCTION ROBOTICS | EXOSKELETONS & HUMAN AUGMENTATION

Construction musculoskeletal injuries cost US employers over $2 billion annually. Exoskeletons are moving from pilots to standard practice. Ottobock, German Bionic, Hyundai, and Innophys launched major products in 2024–2025. Korea and Japan lead adoption. AI is turning passive suits into connected safety platforms.

GLOBAL ROBOTICS INDUSTRY Comprehensive Sector Overview

GLOBAL ROBOTICS INDUSTRY Comprehensive Sector Overview

A comprehensive global robotics industry overview for 2025, analyzing 14 key market segments — from industrial and humanoid robots to logistics AMRs, military systems, and service robots — with expert market sizing, US case studies, five-year forecasts, and bilingual English-Chinese analysis for executives and investors.

EU Bets €1.5B on Drones and AI: Inside EDIP's 2026–2027 Defence Industry Programme

EU Bets €1.5B on Drones and AI: Inside EDIP's 2026–2027 Defence Industry Programme

The EU's €1.47 billion European Defence Industry Programme (EDIP) 2026–2027 targets drones, counter-UxS systems, AI-enabled autonomy, and loitering munitions across six major funding calls — allocating over €232 million directly to unmanned systems and related electronics supply chains.

Exoskeletons: The First Scalable Motion Platform for Humanoid Robots

Exoskeletons: The First Scalable Motion Platform for Humanoid Robots

Exoskeletons may scale before humanoid robots. A deep technical analysis of CES 2026 trends, motion systems, actuators, AI control, power constraints, and why exoskeletons are shaping humanoid robotics first.