The Global Assistive Robotics Market is valued at approximately USD 10.1 billion in 2025 and is projected to reach about USD 26.2 billion by 2030, growing at a CAGR of around 19.8% during the forecast period from 2025 to 2030.
This robust growth is driven by the rising geriatric population worldwide, increasing prevalence of strokes and spinal cord injuries, and advancements in AI, machine learning, and sensor technologies that enhance robot functionality for rehabilitation, elderly care, and mobility support. Supportive factors include expanded insurance coverage for exoskeletons and robotic surgeries, government funding for assistive tech research, and growing adoption in healthcare and home environments amid labor shortages for caregivers.
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United States: Key Industry Developments
✅ April 2025: Cyberdyne launched its HAL-Hybrid Assistive Limb 2.0 in North America, featuring modular hip and knee actuators priced at USD 32,000 per unit to boost adoption in outpatient rehabilitation clinics.
✅ March 2025: Intuitive Surgical partnered with NVIDIA to integrate real-time AI surgical guidance into the da Vinci 5 platform, targeting a 15% reduction in operative time pending FDA clearance.
✅ January 2025: Ekso Bionics received FDA clearance for its EksoNR exoskeleton, enabling the first powered device for unsupervised home use by stroke patients in rehabilitation.
Asia Pacific / Japan: Key Industry Developments
✅ April 2025: Cyberdyne launched its HAL-Hybrid Assistive Limb 2.0 in key Asia Pacific markets including Japan, with modular actuators designed for broader clinic deployment at JPY 4.8 million per unit.
✅ February 2025: Fourier Intelligence, active in Asia Pacific, secured USD 60 million in Series C funding to scale production of its M2 lower-limb exoskeleton and build regional manufacturing capacity.
✅ January 2025: Japan mandated robotic lift installations in all new nursing facilities, spurring orders for transfer-assist platforms amid rising eldercare demands from its aging population.
Key Merges and Acquisitions (2025):
✅ ReWalk Robotics Ltd. – acquired a tech startup specializing in AI for mobility aids, integrating advanced AI into exoskeletons to enhance intuitive user interaction and adaptability.
✅ Ekso Bionics Holdings Inc. – merged with a European robotics firm to bolster R&D capabilities and expand geographical reach for rehabilitation solutions.
✅ Kinova – launched a robotic arm with AI integration for precise daily task assistance, reinforcing market leadership in assistive robotics innovation.
Market Segmentation Analysis:
-By Type: Physically Assistive Robots Lead with Strongest Share
Physically assistive robots hold the largest market share at 42% as of 2024, focusing on mobility aids like exoskeletons and manipulators that enhance physical tasks for disabled users.
Socially assistive robots capture 28%, emphasizing emotional support and interaction via AI companions to reduce isolation.
Mixed assistive robots account for 30%, combining physical and social functions for comprehensive elderly or rehab care, driving efficiency in multifaceted applications.
-By Mobility: Mobile Robots Dominate Expansion
Mobile robots lead with 58% share in 2024, enabling navigation in dynamic settings like homes for elderly assistance and companionship.
Stationary robots hold 42%, excelling in fixed medical or industrial uses such as surgery aids and manipulators for precise, controlled tasks.
-By Application: Elderly Assistance Tops with Highest Share
Elderly assistance commands 35% market share, supporting aging populations through daily living aids amid global demographic shifts.
Handicap assistance follows at 22%, restoring independence via rehab and mobility tools with the fastest CAGR.
Surgery assistance takes 18%, boosting precision in operations; companionship 10% combats loneliness; industrial 7% automates tasks; defense 4% enhances security; public relations 2% aids interactions; others 2% cover niche uses.
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Growth Drivers:
-Aging global population increases demand for elderly care and independent living support.
-Technological advancements in AI, sensors, and IoT enhance robot functionality and personalization.
-Rising prevalence of disabilities, chronic diseases, strokes, and mobility -impairments drives rehabilitation needs.
-Government initiatives, funding, and supportive policies promote adoption and reduce healthcare costs.
-Growing demand for home healthcare and cost-effective solutions expands market accessibility.
Regional Insights:
-North America leads the assistive robotics market with the highest share, approximately 40% as of recent 2024-2025 estimates, driven by advanced healthcare infrastructure, high adoption in rehabilitation and elderly care, and strong R&D investments in the US and Canada.
-Europe follows with around 33% market share, benefiting from robust regulatory support, aging populations in countries like Germany and the UK, and innovations in mobility assistance robots.
-Asia Pacific holds about 23% share, fueled by rapid industrialization in Japan, China, and India, alongside growing demand for companionship and handicap assistance applications amid expanding geriatric needs.
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Key Players:
Kinova Robotics | ReWalk Robotics | Ekso Bionics | Telefónica S.A. | Fourier Intelligence | Cyberdyne | Blue Frog Robotics | Barrett Technology | Intuitive Surgical | F&P Robotics
Key Highlights (Top 5 Key Players) for Assistive Robotics Market:
-Ekso Bionics develops wearable exoskeletons like EksoNR for neurorehabilitation, aiding stroke and spinal cord injury patients in regaining mobility through powered lower-body support.
-ReWalk Robotics designs powered exoskeletons that enable individuals with spinal cord injuries to stand, walk, and navigate daily environments during rehabilitation and personal use.
-Kinova Robotics produces lightweight robotic arms such as JACO for assistive purposes, allowing users with upper limb impairments to perform tasks like eating, drinking, and object manipulation.
-Cyberdyne creates the HAL (Hybrid Assistive Limb) suit, which detects muscle signals to provide powered assistance for movement in patients with neuromuscular disorders and mobility challenges.
-Intuitive Surgical pioneers robotic-assisted surgical systems like da Vinci, enhancing precision in minimally invasive procedures to support surgeons and improve patient recovery outcomes.
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