Learn how military tech inspires cutting-edge prosthetic solutions, offering resilience and adaptability for civilian use.

Military Innovations in Prosthetics: Lessons from Battlefield Tech

For centuries, the battlefield has been a crucible of innovation, driving advancements that often find their way into civilian life. Nowhere is this more evident than in the field of prosthetics. Military research and development have spurred groundbreaking technologies designed to restore mobility, independence, and dignity to injured soldiers. These innovations, born from necessity, are transforming the way we think about prosthetics and their potential in everyday life.

At Robobionics, we recognize the immense contributions of military-led advancements to modern prosthetic technology. From rugged designs built to endure extreme conditions to cutting-edge control systems inspired by the demands of combat, the lessons from battlefield prosthetics are shaping the future of this field.

Origins of Battlefield Prosthetics

The use of prosthetics in military settings has a long history, dating back to ancient times when wooden limbs and iron hooks were crafted for injured warriors. While these early devices were rudimentary and focused solely on function, they marked the beginning of a journey that would intertwine innovation with necessity.

Lessons from World Wars

The two World Wars of the 20th century saw unprecedented advancements in prosthetic design and manufacturing. With thousands of soldiers returning home with amputations, governments and medical institutions were forced to prioritize the development of prosthetic solutions.

Lightweight materials like aluminum replaced heavy wood and steel, while mass production techniques ensured that devices could be distributed quickly and affordably.

These innovations laid the groundwork for modern prosthetics, shifting the focus from basic functionality to designs that enhanced user comfort and mobility.

For example, the introduction of articulating joints during this era allowed for greater range of motion, setting the stage for today’s advanced multi-articulating prosthetic hands.

Lessons from World Wars

Ancient Innovations: The First Prosthetic Solutions

The concept of prosthetics can be traced back to ancient civilizations, where crude devices made of wood, leather, and metal were designed to help injured warriors return to the battlefield or adapt to civilian life.

For example, a 3,000-year-old wooden toe discovered in Egypt is one of the earliest known prosthetic devices, highlighting humanity’s long-standing desire to restore mobility and normalcy after limb loss.

These early solutions prioritized functionality over aesthetics, emphasizing the practical needs of users. For businesses today, this historical precedent underscores the importance of understanding user requirements and tailoring designs to meet specific challenges.

Developing prosthetics that align with an individual’s daily activities, environment, and personal preferences remains a key strategy for success.

The Turning Point: Battlefield Needs Driving Innovation

The medieval period saw a shift in prosthetic design as combat became more mechanized and injuries more severe. Iron limbs, hooks, and peg legs were common during this time, reflecting the need for rugged devices that could endure the harsh conditions of war.

These prosthetics were often made by blacksmiths and armorers, who applied their expertise in metalworking to create durable solutions.

This era highlights a critical lesson for modern prosthetics manufacturers: collaboration with experts from other fields can lead to groundbreaking innovations.

Today, partnerships with material scientists, engineers, and healthcare professionals are essential for pushing the boundaries of what prosthetics can achieve.

By fostering interdisciplinary collaboration, businesses can develop devices that are both functional and transformative.

The Industrial Revolution: Scaling Prosthetic Development

The industrial revolution marked another significant turning point in the history of battlefield prosthetics. With wars becoming larger in scale, the demand for prosthetics surged, particularly during and after conflicts like the Napoleonic Wars.

Mass production techniques allowed for the rapid manufacturing of standardized prosthetic limbs, making them more accessible to a broader population.

For modern businesses, this historical phase offers insights into the importance of scalability and efficiency. The prosthetics industry today faces similar challenges in meeting growing demand, particularly in underserved regions.

Leveraging modern manufacturing techniques like 3D printing and automation can address these challenges, enabling cost-effective production of custom-fit devices that combine precision with accessibility.

World Wars: Advancing Technology and User-Centric Design

The two World Wars of the 20th century were pivotal in the evolution of prosthetics. The sheer number of soldiers returning home with amputations forced governments and medical institutions to innovate rapidly.

This period saw the introduction of lightweight materials like aluminum and the development of articulating joints, which allowed for greater mobility and functionality.

The emphasis on rehabilitating injured soldiers also brought attention to the psychological and social aspects of limb loss. Prosthetics were no longer viewed as purely functional devices but as tools for restoring confidence and reintegrating individuals into society.

World Wars: Advancing Technology and User-Centric Design

The Modern Era: Military Innovations and Their Impact

In recent decades, military investments in prosthetic technology have reached new heights, driven by the challenges faced by soldiers in modern combat. From the rugged terrains of Afghanistan to urban warfare scenarios, the demands of the battlefield have inspired prosthetics that are more durable, adaptable, and technologically sophisticated than ever before.

Advanced Materials for Durability

One of the key lessons from military prosthetics is the importance of materials that can withstand extreme conditions. Soldiers operating in harsh environments need devices that are both lightweight and incredibly tough, capable of enduring heat, cold, moisture, and impact.

Military research has driven the development of advanced composites, such as carbon fiber and titanium alloys, which combine strength and durability with a lighter weight.

These materials not only enhance the functionality of prosthetics but also reduce fatigue, allowing users to wear their devices for extended periods without discomfort.

At Robobionics, we’ve adopted similar principles, integrating military-grade materials into our designs to ensure that our prosthetics deliver exceptional performance and reliability, even in demanding circumstances.

Smarter Control Systems

Another major contribution from military research is the advancement of control systems that allow prosthetic devices to respond intuitively to user intent.

Myoelectric sensors, which detect electrical signals from the muscles, have been refined through military-funded programs to deliver faster and more accurate responses.

More recently, military prosthetics have incorporated neural interfaces that connect directly to the user’s nervous system, enabling control through thought alone.

These brain-controlled systems, initially developed to restore function for soldiers with severe injuries, are now finding applications in civilian prosthetics, offering new levels of precision and usability.

Businesses in the prosthetics field can learn from these advancements by investing in research and partnerships that push the boundaries of intuitive control.

Collaborating with tech companies and universities that specialize in AI and robotics can help bring these innovations to a broader audience.

Adaptability and Modularity: Lessons from Combat Scenarios

Military prosthetics are often designed with adaptability in mind, reflecting the unpredictable and demanding nature of combat scenarios. Soldiers may require prosthetic devices that can function across various terrains, handle heavy-duty tasks, and adjust to different levels of physical exertion.

Modular Designs for Versatility

In the military, modular prosthetics have become a game-changer. Soldiers can swap out components of their prosthetic limbs to suit specific tasks, such as attaching a rugged grip for climbing or a specialized attachment for operating machinery.

This flexibility ensures that users can perform a wide range of activities without needing multiple devices.

For civilian applications, this concept has immense potential. A user who enjoys both office work and outdoor sports could benefit from a prosthetic arm with interchangeable components that adapt to different activities.

Businesses can capitalize on this trend by offering modular designs that cater to specific user needs, enhancing both functionality and user satisfaction.

At Robobionics, we’ve embraced modularity as a core principle in our prosthetic designs, ensuring that users can customize their devices to match their unique lifestyles and goals.

Modular Designs for Versatility

Enhancing Adaptation Through Training

Another lesson from the military is the emphasis on training to help users adapt to advanced prosthetics. Soldiers recovering from limb loss often undergo extensive rehabilitation programs to learn how to maximize the potential of their devices.

These programs incorporate cutting-edge tools, such as virtual reality (VR) simulations, which allow users to practice real-world tasks in a controlled environment.

For businesses, integrating training programs alongside prosthetic solutions can significantly improve user outcomes. Providing access to interactive training tools, online tutorials, and support from occupational therapists can ensure that users feel confident and capable with their devices.

Embracing Sustainability in Prosthetic Design

In recent years, the military has also focused on sustainability in prosthetic development. This reflects broader trends in engineering and manufacturing, where eco-conscious practices are becoming a priority.

By incorporating sustainable materials and energy-efficient systems, military prosthetics aim to reduce environmental impact without compromising performance.

Bio-Inspired Materials

One of the most exciting developments in this area is the use of bio-inspired materials, which mimic the properties of natural tissues. These materials, developed through military-funded research, are biodegradable and recyclable, offering an eco-friendly alternative to traditional composites.

For example, polymers derived from renewable sources can provide the same strength and flexibility as petroleum-based plastics but with a lower carbon footprint.

Robobionics is exploring similar avenues, leveraging sustainable materials to create prosthetics that align with our commitment to environmental responsibility.

By integrating eco-friendly practices into our manufacturing processes, we aim to set a new standard for sustainability in the prosthetics industry.

Bridging the Gap Between Military and Civilian Applications

The advancements in military prosthetics offer valuable lessons for civilian applications, but translating these innovations into everyday use requires careful consideration of accessibility, affordability, and practicality.

While military-grade prosthetics often involve high costs and specialized designs, businesses must focus on creating solutions that balance advanced features with user-centric affordability.

Collaboration for Wider Impact

Collaboration between military researchers, private manufacturers, and healthcare providers is key to bridging this gap. By sharing knowledge and resources, stakeholders can accelerate the adoption of military innovations in civilian prosthetics.

For example, businesses can partner with military research labs to refine neural interface technology or work with rehabilitation centers to incorporate modular training programs.

Collaboration for Wider Impact

At Robobionics, we’re committed to fostering these collaborations, ensuring that the most impactful military advancements are adapted to serve a wider audience.

By doing so, we hope to make cutting-edge prosthetics more accessible and transform lives across diverse communities.

The Human Element: Emotional Impact and Empowerment

Beyond the technical advancements, military innovations in prosthetics highlight the profound emotional and psychological impact of restoring mobility.

Soldiers recovering from limb loss often face not only physical challenges but also emotional hurdles, including rebuilding confidence and finding a renewed sense of identity.

Designing for Confidence

One of the key lessons from military prosthetics is the importance of aesthetics. For many users, the appearance of their prosthetic device can influence how they feel about themselves and how they engage with the world. Military programs often prioritize designs that look natural or reflect the user’s personality, offering customizable options that enhance confidence.

In civilian applications, prosthetic aesthetics should be equally prioritized. Offering a range of finishes, colors, and styles allows users to personalize their devices, turning them into expressions of individuality rather than reminders of loss.

Businesses can further this effort by involving users in the design process, ensuring that the final product resonates with their personal preferences.

At Robobionics, we understand the emotional significance of prosthetics and strive to create designs that instill pride and confidence in every user.

Supporting Mental Health Through Innovation

The emotional journey of adapting to a prosthetic device can be overwhelming, especially for individuals recovering from traumatic experiences.

Military rehabilitation programs often include mental health support, such as counseling and peer support groups, to help users navigate these challenges.

For businesses, incorporating similar support systems into their offerings can make a significant difference in user outcomes. Providing access to mental health resources, building user communities, and sharing inspiring stories of other prosthetic users can foster a sense of belonging and resilience.

This holistic approach aligns with Robobionics’ mission to empower users not just physically but also emotionally, ensuring that every individual feels supported throughout their journey.

Preparing for the Future: Innovations on the Horizon

The intersection of military technology and prosthetic design continues to evolve, with emerging advancements poised to redefine what’s possible. Businesses must stay attuned to these trends to remain competitive and deliver solutions that meet the growing expectations of users.

AI and Machine Learning in Prosthetics

Military-funded research has accelerated the integration of artificial intelligence (AI) and machine learning into prosthetic systems. These technologies enable devices to learn from user behavior, adapting over time to provide smoother and more intuitive control.

For example, a prosthetic arm equipped with AI can optimize grip strength based on the object being held or predict the user’s intended movement, reducing cognitive effort.

Businesses investing in AI-driven prosthetics can offer unparalleled functionality, setting new standards for usability and performance.

AI and Machine Learning in Prosthetics

Expanding Access Through Cost-Effective Solutions

While military prosthetics often feature cutting-edge technologies, their high costs can be prohibitive for civilian users. Addressing this challenge requires a focus on scalable production methods and affordable designs that retain essential features.

Innovations such as 3D printing and modular manufacturing can significantly reduce production costs, making advanced prosthetics accessible to a broader audience. By collaborating with governments and non-profits to subsidize costs, businesses can ensure that even the most advanced devices are within reach for underserved populations.

At Robobionics, we are committed to breaking down cost barriers, delivering world-class prosthetics that combine innovation with accessibility.

A Legacy of Innovation and Empowerment

Military advancements in prosthetics have not only revolutionized assistive technology but also reshaped the lives of countless individuals. The lessons learned from battlefield tech—durability, adaptability, modularity, and emotional empowerment—are paving the way for a future where prosthetics are more than functional devices; they are tools of transformation.

Elevating User Confidence Through Innovation

Military prosthetics have shown how technology can transform lives by restoring lost capabilities and instilling a renewed sense of confidence.

Devices developed for soldiers are designed not only to endure extreme conditions but also to perform tasks that demand precision, strength, and adaptability. This dual emphasis on function and reliability creates a sense of trust between the user and the device.

For businesses, the takeaway is clear: prosthetics should be engineered with the user’s daily challenges in mind, combining advanced features with robust designs.

A prosthetic that seamlessly integrates into the user’s lifestyle—whether that involves playing sports, pursuing a career, or managing household tasks—can become a source of empowerment.

Highlighting these capabilities in product demonstrations, marketing campaigns, and user stories can reinforce the message that prosthetics are tools for reclaiming independence and confidence.

Supporting Holistic Empowerment

One of the most profound lessons from military prosthetics is the importance of addressing the whole person, not just the injury. Soldiers often face a complex journey of recovery that includes physical, emotional, and psychological dimensions.

Military rehabilitation programs recognize this and provide integrated support systems that address all aspects of recovery.

In civilian applications, businesses can adopt a similar approach by offering holistic solutions that go beyond the prosthetic itself. For example, partnering with occupational therapists and mental health professionals ensures that users receive comprehensive support.

Workshops that focus on skill-building, stress management, and peer connection can foster a sense of community and belonging.

Bridging Innovation and Accessibility

Military prosthetics are often at the forefront of technological advancements, incorporating features like brain-controlled interfaces, sensory feedback, and rugged modular designs.

However, these cutting-edge technologies can be cost-prohibitive, limiting their availability to the broader population. Businesses in the prosthetics industry have an opportunity to honor the legacy of military innovation by focusing on accessibility.

One actionable strategy is to streamline manufacturing processes through technologies like 3D printing, which allows for cost-effective production without sacrificing customization or quality.

Modular designs, inspired by military prosthetics, can further enhance affordability by enabling users to upgrade or replace specific components rather than purchasing an entirely new device.

Inspiring the Next Generation of Prosthetic Technology

The lessons learned from military prosthetics offer a foundation for future innovation. By studying how these devices perform under extreme conditions and how they adapt to diverse challenges, businesses can identify opportunities for continuous improvement.

Emerging technologies such as AI-driven customization, bioengineered materials, and IoT-enabled connectivity have the potential to redefine prosthetics yet again.

Businesses should consider investing in research and development that draws inspiration from military advancements while tailoring solutions for civilian users.

Collaborations with universities, tech companies, and military research institutions can accelerate this process, bringing groundbreaking features to market faster.

Highlighting these forward-thinking efforts in communications and branding reinforces a company’s position as an industry leader.

Inspiring the Next Generation of Prosthetic Technology

Building a Legacy That Transcends Borders

The impact of military innovations in prosthetics extends far beyond national or cultural boundaries. These technologies have the power to transform lives globally, offering hope and opportunity to individuals who face mobility challenges.

Businesses have a unique role to play in ensuring that this legacy reaches its full potential, not only by delivering innovative solutions but also by advocating for policies and partnerships that promote inclusivity and equity.

At Robobionics, we are inspired by the resilience and ingenuity of military prosthetic designs. By building on this legacy, we strive to create solutions that empower individuals to live boldly and without limits.

Our commitment to innovation, accessibility, and holistic support ensures that every device we produce contributes to a future where no challenge is insurmountable.

Conclusion

Military innovations in prosthetics have provided groundbreaking solutions that extend far beyond the battlefield. These advancements, driven by the urgent needs of soldiers, have redefined durability, adaptability, and functionality in prosthetic design.

From modular systems and neural interfaces to sustainable materials and personalized aesthetics, the lessons learned from military technology are shaping the future of prosthetics for all.

For businesses, these innovations present an unparalleled opportunity to create prosthetics that not only restore mobility but also empower users emotionally and mentally.

By embracing collaboration, sustainability, and user-centric design, companies can bridge the gap between military-grade advancements and everyday accessibility, ensuring these transformative technologies are available to everyone who needs them.

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REFUNDS AND CANCELLATIONS

Last updated: November 10, 2022

Thank you for shopping at Robo Bionics.

If, for any reason, You are not completely satisfied with a purchase We invite You to review our policy on refunds and returns.

The following terms are applicable for any products that You purchased with Us.

Interpretation And Definitions

Interpretation

The words of which the initial letter is capitalized have meanings defined under the following conditions. The following definitions shall have the same meaning regardless of whether they appear in singular or in plural.

Definitions

For the purposes of this Return and Refund Policy:

  • Company (referred to as either “the Company”, “Robo Bionics”, “We”, “Us” or “Our” in this Agreement) refers to Bionic Hope Private Limited, Pearl Haven, 1st Floor Kumbharwada, Manickpur Near St. Michael’s Church Vasai Road West, Palghar Maharashtra 401202.

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You are entitled to cancel Your Service Bookings within 7 days without giving any reason for doing so, before completion of Delivery.

The deadline for cancelling a Service Booking is 7 days from the date on which You received the Confirmation of Service.

In order to exercise Your right of cancellation, You must inform Us of your decision by means of a clear statement. You can inform us of your decision by:

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We will reimburse You no later than 7 days from the day on which We receive your request for cancellation, if above criteria is met. We will use the same means of payment as You used for the Service Booking, and You will not incur any fees for such reimbursement.

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Conditions For Returns

In order for the Goods to be eligible for a return, please make sure that:

  • The Goods were purchased in the last 14 days
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The following Goods cannot be returned:

  • The supply of Goods made to Your specifications or clearly personalized.
  • The supply of Goods which according to their nature are not suitable to be returned, deteriorate rapidly or where the date of expiry is over.
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We reserve the right to refuse returns of any merchandise that does not meet the above return conditions in our sole discretion.

Only regular priced Goods may be refunded by 50%. Unfortunately, Goods on sale cannot be refunded. This exclusion may not apply to You if it is not permitted by applicable law.

Returning Goods

You are responsible for the cost and risk of returning the Goods to Us. You should send the Goods at the following:

  • the Prosthetic Limb Fitting Centre that they purchased the product from
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We cannot be held responsible for Goods damaged or lost in return shipment. Therefore, We recommend an insured and trackable courier service. We are unable to issue a refund without actual receipt of the Goods or proof of received return delivery.

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TERMS & CONDITIONS

Last Updated on: 1st Jan 2021

These Terms and Conditions (“Terms”) govern Your access to and use of the website, platforms, applications, products and services (ively, the “Services”) offered by Robo Bionics® (a registered trademark of Bionic Hope Private Limited, also used as a trade name), a company incorporated under the Companies Act, 2013, having its Corporate office at Pearl Heaven Bungalow, 1st Floor, Manickpur, Kumbharwada, Vasai Road (West), Palghar – 401202, Maharashtra, India (“Company”, “We”, “Us” or “Our”). By accessing or using the Services, You (each a “User”) agree to be bound by these Terms and all applicable laws and regulations. If You do not agree with any part of these Terms, You must immediately discontinue use of the Services.

1. DEFINITIONS

1.1 “Individual Consumer” means a natural person aged eighteen (18) years or above who registers to use Our products or Services following evaluation and prescription by a Rehabilitation Council of India (“RCI”)–registered Prosthetist.

1.2 “Entity Consumer” means a corporate organisation, nonprofit entity, CSR sponsor or other registered organisation that sponsors one or more Individual Consumers to use Our products or Services.

1.3 “Clinic” means an RCI-registered Prosthetics and Orthotics centre or Prosthetist that purchases products and Services from Us for fitment to Individual Consumers.

1.4 “Platform” means RehabConnect, Our online marketplace by which Individual or Entity Consumers connect with Clinics in their chosen locations.

1.5 “Products” means Grippy® Bionic Hand, Grippy® Mech, BrawnBand, WeightBand, consumables, accessories and related hardware.

1.6 “Apps” means Our clinician-facing and end-user software applications supporting Product use and data collection.

1.7 “Impact Dashboard™” means the analytics interface provided to CSR, NGO, corporate and hospital sponsors.

1.8 “Services” includes all Products, Apps, the Platform and the Impact Dashboard.

2. USER CATEGORIES AND ELIGIBILITY

2.1 Individual Consumers must be at least eighteen (18) years old and undergo evaluation and prescription by an RCI-registered Prosthetist prior to purchase or use of any Products or Services.

2.2 Entity Consumers must be duly registered under the laws of India and may sponsor one or more Individual Consumers.

2.3 Clinics must maintain valid RCI registration and comply with all applicable clinical and professional standards.

3. INTERMEDIARY LIABILITY

3.1 Robo Bionics acts solely as an intermediary connecting Users with Clinics via the Platform. We do not endorse or guarantee the quality, legality or outcomes of services rendered by any Clinic. Each Clinic is solely responsible for its professional services and compliance with applicable laws and regulations.

4. LICENSE AND INTELLECTUAL PROPERTY

4.1 All content, trademarks, logos, designs and software on Our website, Apps and Platform are the exclusive property of Bionic Hope Private Limited or its licensors.

4.2 Subject to these Terms, We grant You a limited, non-exclusive, non-transferable, revocable license to use the Services for personal, non-commercial purposes.

4.3 You may not reproduce, modify, distribute, decompile, reverse engineer or create derivative works of any portion of the Services without Our prior written consent.

5. WARRANTIES AND LIMITATIONS

5.1 Limited Warranty. We warrant that Products will be free from workmanship defects under normal use as follows:
 (a) Grippy™ Bionic Hand, BrawnBand® and WeightBand®: one (1) year from date of purchase, covering manufacturing defects only.
 (b) Chargers and batteries: six (6) months from date of purchase.
 (c) Grippy Mech™: three (3) months from date of purchase.
 (d) Consumables (e.g., gloves, carry bags): no warranty.

5.2 Custom Sockets. Sockets fabricated by Clinics are covered only by the Clinic’s optional warranty and subject to physiological changes (e.g., stump volume, muscle sensitivity).

5.3 Exclusions. Warranty does not apply to damage caused by misuse, user negligence, unauthorised repairs, Acts of God, or failure to follow the Instruction Manual.

5.4 Claims. To claim warranty, You must register the Product online, provide proof of purchase, and follow the procedures set out in the Warranty Card.

5.5 Disclaimer. To the maximum extent permitted by law, all other warranties, express or implied, including merchantability and fitness for a particular purpose, are disclaimed.

6. DATA PROTECTION AND PRIVACY

6.1 We collect personal contact details, physiological evaluation data, body measurements, sensor calibration values, device usage statistics and warranty information (“User Data”).

6.2 User Data is stored on secure servers of our third-party service providers and transmitted via encrypted APIs.

6.3 By using the Services, You consent to collection, storage, processing and transfer of User Data within Our internal ecosystem and to third-party service providers for analytics, R&D and support.

6.4 We implement reasonable security measures and comply with the Information Technology Act, 2000, and Information Technology (Reasonable Security Practices and Procedures and Sensitive Personal Data or Information) Rules, 2011.

6.5 A separate Privacy Policy sets out detailed information on data processing, user rights, grievance redressal and cross-border transfers, which forms part of these Terms.

7. GRIEVANCE REDRESSAL

7.1 Pursuant to the Information Technology Rules, 2021, We have given the Charge of Grievance Officer to our QC Head:
 - Address: Grievance Officer
 - Email: support@robobionics.store
 - Phone: +91-8668372127

7.2 All support tickets and grievances must be submitted exclusively via the Robo Bionics Customer Support portal at https://robobionics.freshdesk.com/.

7.3 We will acknowledge receipt of your ticket within twenty-four (24) working hours and endeavour to resolve or provide a substantive response within seventy-two (72) working hours, excluding weekends and public holidays.

8. PAYMENT, PRICING AND REFUND POLICY

8.1 Pricing. Product and Service pricing is as per quotations or purchase orders agreed in writing.

8.2 Payment. We offer (a) 100% advance payment with possible incentives or (b) stage-wise payment plans without incentives.

8.3 Refunds. No refunds, except pro-rata adjustment where an Individual Consumer is medically unfit to proceed or elects to withdraw mid-stage, in which case unused stage fees apply.

9. USAGE REQUIREMENTS AND INDEMNITY

9.1 Users must follow instructions provided by RCI-registered professionals and the User Manual.

9.2 Users and Entity Consumers shall indemnify and hold Us harmless from all liabilities, claims, damages and expenses arising from misuse of the Products, failure to follow professional guidance, or violation of these Terms.

10. LIABILITY

10.1 To the extent permitted by law, Our total liability for any claim arising out of or in connection with these Terms or the Services shall not exceed the aggregate amount paid by You to Us in the twelve (12) months preceding the claim.

10.2 We shall not be liable for any indirect, incidental, consequential or punitive damages, including loss of profit, data or goodwill.

11. MEDICAL DEVICE COMPLIANCE

11.1 Our Products are classified as “Rehabilitation Aids,” not medical devices for diagnostic purposes.

11.2 Manufactured under ISO 13485:2016 quality management and tested for electrical safety under IEC 60601-1 and IEC 60601-1-2.

11.3 Products shall only be used under prescription and supervision of RCI-registered Prosthetists, Physiotherapists or Occupational Therapists.

12. THIRD-PARTY CONTENT

We do not host third-party content or hardware. Any third-party services integrated with Our Apps are subject to their own terms and privacy policies.

13. INTELLECTUAL PROPERTY

13.1 All intellectual property rights in the Services and User Data remain with Us or our licensors.

13.2 Users grant Us a perpetual, irrevocable, royalty-free licence to use anonymised usage data for analytics, product improvement and marketing.

14. MODIFICATIONS TO TERMS

14.1 We may amend these Terms at any time. Material changes shall be notified to registered Users at least thirty (30) days prior to the effective date, via email and website notice.

14.2 Continued use of the Services after the effective date constitutes acceptance of the revised Terms.

15. FORCE MAJEURE

Neither party shall be liable for delay or failure to perform any obligation under these Terms due to causes beyond its reasonable control, including Acts of God, pandemics, strikes, war, terrorism or government regulations.

16. DISPUTE RESOLUTION AND GOVERNING LAW

16.1 All disputes shall be referred to and finally resolved by arbitration under the Arbitration and Conciliation Act, 1996.

16.2 A sole arbitrator shall be appointed by Bionic Hope Private Limited or, failing agreement within thirty (30) days, by the Mumbai Centre for International Arbitration.

16.3 Seat of arbitration: Mumbai, India.

16.4 Governing law: Laws of India.

16.5 Courts at Mumbai have exclusive jurisdiction over any proceedings to enforce an arbitral award.

17. GENERAL PROVISIONS

17.1 Severability. If any provision is held invalid or unenforceable, the remainder shall remain in full force.

17.2 Waiver. No waiver of any breach shall constitute a waiver of any subsequent breach of the same or any other provision.

17.3 Assignment. You may not assign your rights or obligations without Our prior written consent.

By accessing or using the Products and/or Services of Bionic Hope Private Limited, You acknowledge that You have read, understood and agree to be bound by these Terms and Conditions.