Plux Wearables – Smart Biosignal Sensors for Research, Biofeedback & Performance
Plux Wearables are high-precision, modular biosignal sensors designed to capture physiological data such as EMG, EDA, ECG, and motion. They enable reliable real-time biosignal tracking and can be used in both laboratory environments and real-world scenarios. These systems are ideal for researchers, developers, therapists, and users focused on biofeedback, neurotechnology, and human performance optimization.
- Accurate real-time biosignal measurement
- Wireless operation with Bluetooth streaming
- Modular and scalable sensor solutions
- Onboard memory for mobile data recording
- Ideal for research, biofeedback, and performance training
Biosignal Tracking for Research & Development
Plux Wearables provide a powerful foundation for scientific research, prototyping, and data-driven development. Open interfaces and flexible sensor integration enable custom applications and complex measurement setups.
- Capture EMG, ECG, EDA, and motion data
- API access for custom software solutions
- Compatible with Python, MATLAB, Unity, and more
- Multi-device synchronization for advanced setups
- Ideal for universities, labs, and startups
Biofeedback & Mental Self-Regulation
Plux Wearables allow you to analyze and visualize physiological processes such as stress responses and muscle activity. This enables targeted biofeedback training and supports focus, relaxation, and mental performance.
- Measure stress indicators such as skin conductance (EDA)
- Real-time visualization of physiological signals
- Support relaxation and mindfulness training
- Integration into biofeedback applications
- Improve self-regulation and awareness
Human Performance & Training
In sports and rehabilitation, Plux Wearables provide objective data on muscle activity and movement patterns. This enables data-driven training optimization and measurable performance improvements.
- EMG analysis for muscle performance
- Motion tracking for detailed analysis
- Optimize training routines based on data
- Support rehabilitation processes
- Objective performance insights
PLUX Wearables Overview
Each wearable is designed for specific biosignals and can be flexibly combined:
- cardioBAN BLE: ECG-based cardiac activity monitoring
- respiBAN BLE: Respiration and breathing analysis
- muscleBAN BLE: EMG-based muscle activity tracking
| CARDIOBAN BLE | RESPIBAN BLE | MUSCLEBAN BLE | |
|---|---|---|---|
| Signal Type | ECG (Cardiac activity) | Respiration | EMG (Muscle activity) |
| Channels | 1-channel ECG + motion | Respiration + motion | 1-channel EMG + motion |
| Integrated Sensors | ECG + ACC | Respiration + ACC | EMG + ACC |
| Sampling Rate | 1kHz, 16-bit via Bluetooth | 1kHz, 16-bit via Bluetooth | 1kHz, 16-bit via Bluetooth |
| Internal Memory | Up to 10h ECG + motion | Up to 10h respiration + motion | Up to 8h EMG + motion |
| Battery Life | ~10 hours | ~10 hours | ~8 hours |
| Filtering | 50/60Hz noise filtering | 50/60Hz noise filtering | 50/60Hz noise filtering |
| Primary Applications | Cardiac monitoring | Breathing analysis | Muscle activity tracking |
| Included Accessories | Electrodes + dongle + USB charger | Chest strap + dongle + USB charger | Electrodes + dongle + USB charger |
Which Plux Wearable is Right for You?
- Research: Multi-sensor systems with API access
- Biofeedback: Focus on EDA and heart rate monitoring
- Performance: EMG tracking and motion analysis
- Development: Flexible wearable platforms
FAQ – Frequently Asked Questions
Can I use multiple wearables at the same time?
Yes, all devices can be used simultaneously and synchronized.
Are the devices compatible with software tools?
Yes, they work with Python, MATLAB, Unity, Android, and more.
Do all wearables include internal memory?
Yes, all models include onboard memory for mobile recording.
Are the devices medically certified?
No, they are designed for research, training, and development purposes only.
