

Machines that
move like us.
Asyncronix builds AI-driven exoskeletons on a dual-use platform serving rehabilitation and workplace safety — engineered from first principles in Chennai, India.
0%
Lighter than traditional exoskeletons
0%
Lower build cost via AI-driven design
$0B
Projected exo market by 2030
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Squads across engineering, product & research
01 / AI ExoskeletonLighter, safer,
more affordable.
Engineered to feel natural on the body while keeping costs low through smart, AI-informed design — built for everyday use, not just the lab.
- Lightweight and comfortable — about 20–30% lighter than traditional models.
- Affordable through AI-driven design, cutting build costs by up to 40%.
- User-friendly with intuitive, low-latency controls.
- Low-cost string tensioning, cutting actuation expense by ~30%.
- Adaptable across rehabilitation and workplace-safety use cases.
- Free from blood-clotting and skin-irritation issues common to rigid braces.
- Temperature-regulated contact surfaces for all-day comfort.

Incubation — 02
Incubated at iTNT, Tamil Nadu Govt.
iTNT (Tamil Nadu Technology Hub) is a Government of Tamil Nadu deep-tech initiative that incubates and backs startups building in robotics, AI, and emerging tech.
- A Government of Tamil Nadu deep-tech incubation program
- Backs startups in robotics, AI, and emerging hardware
- Hosted at Panimalar Engineering College, Chennai
When AI becomes
an extra sense.
The integration of AI, neural interfaces and adaptive learning systems are enabling seamless human-machine interaction. From brain-computer interfaces (BCIs) to AI-powered wearables, innovations are enhancing independence for individuals with disabilities. Thought-controlled devices now let users operate computers, wheelchairs, and robotic arms using neural or muscle signals, making interaction more intuitive and hands-free.
R&D — 03
Research & Development
Where our patents, experiments and prototypes are born.
AI Advancement
Pioneering AI models for EMG analysis and adaptive prosthetic/exoskeleton control.
Biomechanics
Innovating exoskeleton joint and linkage design with motion-capture-driven studies.
EMG Signal Tech
Enhancing signal processing for accurate intent detection and motion prediction.
Exoskeleton Market Growth
2020–2030 forecast, USD billions
Blended estimate from MarketsandMarkets and related industry forecasts, assuming a ~25% CAGR through 2030.
Products — 04
Our Products
From what if
to what next.
Our open-source EMG classification model shows how muscle signals become motion commands — the same decoding pipeline behind AXON-R’s control layer.
Try our EMG modelRecognition — 05
Recognitions & Awards
Our innovations have been recognized by leading institutions and competitions in assistive technology and AI research.







