BioX
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WEARABLE ROBOTICS
Precision FMG Wearable Technology
Discover the BioX AAL-Band : We power the next frontier of industrial robotics, exoskeleton control, and biomechanical research with interference-free muscle tracking.
29/06/2026
Electrode shift and sweat degradation are the hidden costs of long-duration surface EMG tracking.
For continuous exoskeleton synchronization, clinical gait analysis, or immersive HMI control pipelines, relying on skin-conductive impedance means dealing with inevitable baseline signal drift as sessions cross the 20-minute mark.
Force Myography (FMG) bypasses skin impedance constraints entirely. By mapping the mechanical, volumetric expansion of the muscle belly via localized pressure arrays, the signal amplitude remains completely stable across multi-hour testing blocks—regardless of sweat, muscle fatigue, or active sensor displacement.
When you pair that mechanical stability with an onboard 9-axis IMU tracking absolute spatial coordinates, your classification models get a clean data baseline. As shown in our raw stream interface, developers can access synchronous data streams across FSR, Linear Acceleration, and Euler Angles natively—allowing real-time classification algorithms (like SVMs) to perform reliably without constant recalibration breaks.
Review our structural data stability metrics and user integration guide: https://www.bioxgroup.dk/fmg-sensor-user-guide/
26/06/2026
No marketing fluff—just clean integration.
When developing human-machine interfaces (HMI) or robotic control pipelines, the biggest bottleneck isn't the hardware; it’s the time wasted fighting closed SDKs or parsing messy data streams.
The BioX AAL-Band 2.0 streams raw data packages natively over BLE. In just a few lines of code, you can pull synchronous data arrays containing the full FSR pressure matrix along with the absolute orientation data from the integrated 9-axis IMU. No data throttling, no proprietary licensing walls, and no local processing overhead.
Integrate seamlessly into Unity, Python, or ROS pipelines.
See our full technical specifications and SDK integration paths: https://github.com/BioxGroup/AAL-Band-Bluetooth-SDK
25/06/2026
How do we seamlessly bridge the gap between human intent and robotic ex*****on? By utilizing high-fidelity Force Myography (FMG) data. Take a look into how BioX Group is driving the future of artificial intelligence, machine learning, and automation through advanced wearable sensors.
Watch the vision: https://www.youtube.com/watch?v=2qt7b9pFj0o
Learn more about our company: https://www.bioxgroup.dk/biox-company/
The Future of AI and Automation with BioX FMG Wearables A look into how BioX Group is driving the future of artificial intelligence and automation. By utilizing Force Myography (FMG) technology, our wearables capt...
25/06/2026
For research facilities needing synchronized, multi-limb data streaming, we have bundled up and created the BioX Research Starter Kit.
This kit bundles both our Forearm and Leg FMG/IMU bands, allowing your team to track full-body musculoskeletal intent simultaneously. With native cross-platform compatibility, your researchers can pull stable, zero-prep muscle data directly into their preferred environments—whether that is Python, MATLAB, or ROS.
Equip your lab with the next generation of human-machine interface technology. (Currently available at our Summer Sale pricing).
View the bundle: https://www.bioxgroup.dk/webshop/biox-research-starter-kit/
24/06/2026
Seamless ROS integration in action. Watch developer Ion Sircu utilize the BioX AAL-Band to control a MiR autonomous mobile robot in real-time. By reading muscle intent via FMG, the wearable acts as a highly intuitive, hands-free controller, unlocking new potential for complex AMR systems.
Watch the integration: https://www.youtube.com/watch?v=u8mBLeLtvNU
Explore AMR solutions: https://www.bioxgroup.dk/fmg-sensor-band/
Controlling a MiR Robot in Real-Time with the BioX AAL-Band Watch developer Ion Sircu use the BioX AAL-Band to control a MiR (Mobile Industrial Robots) autonomous mobile robot in real-time. By reading muscle intent vi...
23/06/2026
A look back at the science that started it all. This archival video breaks down the foundational mechanics behind Force Myography (FMG) using our V1.0 hardware. Unlike traditional EMG, our sensors measure the mechanical pressure of muscle volume changes, providing highly stable, sweat-resistant data without skin prep.
Watch the breakdown: https://www.youtube.com/watch?v=G46ic_R8VUQ
Explore the current generation of hardware: https://www.bioxgroup.dk/fmg-sensor-band/
How Force Myography (FMG) Works: The BioX AAL-Band (V1.0 Archive) An archival look at the first generation of the BioX AAL-Band (V1.0). See the foundational science behind our Force Myography (FMG) sensors. Unlike tradition...
22/06/2026
Experience the freedom of wireless robotic teleoperation. By translating muscle movements into real-time commands, BioX FMG wearables allow operators to guide and interact with robots completely hands-free. No tethers, no traditional controllers—just natural human intention driving machine ex*****on.
Watch the teleoperation demo: https://www.youtube.com/watch?v=TdIK-QwGh-A
Discover the future of HMI: https://www.bioxgroup.dk/fmg-sensor-band/
Wireless Robotic Control: Take Your Robot for a Walk Experience the freedom of wireless robotic teleoperation with BioX ...
19/06/2026
Translating complex human intent into highly precise robotic actuation. Watch as real-time control of a robotic arm is achieved using the BioX AAL-Band. Our FMG sensors accurately classify hand gestures and muscle intents instantly, bridging the gap between operator and machine.
See the real-time actuation: https://www.youtube.com/watch?v=cCE2997lFFs
Equip your lab today:https://www.bioxgroup.dk/webshop/
Real-Time Robotic Arm Control with the BioX AAL-Band Watch as real-time control of a robotic arm is achieved using the BioX AAL-Band. Our Force Myography (FMG) sensors accurately classify complex hand gestures ...
17/06/2026
Meet the BioX AAL-Band 2.0 (Forearm Edition).
We designed this specific wearable for upper-limb telemetry. By combining an 8-sensor high-sensitivity FSR array with a 9-DOF IMU, we give researchers the ability to map volumetric muscle contraction intensity and angular velocity in real time.
Because it uses Force Myography (FMG) instead of traditional EMG, it is completely sweat-resistant and requires no skin preparation. Just strap it on and start streaming data directly into Python, MATLAB, or ROS.
Perfect for prosthetics research, VR/AR gesture control, and upper-body exoskeletons.
Explore the hardware: https://www.bioxgroup.dk/webshop/aal-band-2-0-forearm-sensor/
AAL-Band - NEW Wearable Sensor Technology Order the AAL-Band 2.0 Forearm. A professional wearable FMG and IMU sensor for gesture control. High-accuracy data for research. Shop BioX.
16/06/2026
Introducing the BioX AAL Leg-Band 2.0.
Optimized specifically for leg kinematics, this band captures interference-free lower-limb muscle dynamics and spatial orientation. By measuring the physical expansion of the muscle rather than electrical signals, the data remains stable no matter how rigorous the movement.
This is the ideal, non-invasive tracking tool for:
🔹 Clinical gait analysis
🔹 Neurorehabilitation tracking
🔹 Lower-body exoskeleton synchronization
Capture high-fidelity lower-limb intent without the noise.
View the specs: https://www.bioxgroup.dk/webshop/aal-leg-band-2-0/
AAL Leg-Band 2.0 | Trusted & Ultimate FMG Sensor For Leg Tracking Get the BioX AAL Leg-Band 2.0. A professional wearable FMG sensor for lower limb motion tracking. High-accuracy data for research and robotics.
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