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Welcome to the next generation of accurate recording EEG devices with 8, 20 and 32 channels and an intuitive user interface for real-time visualization of high-resolution EEG data. Enobio is clinically CE certified in Europe and FDA approved in the US.
The Enobio EEG, developed by Neuroelectrics, is a professional wireless electroencephalography (EEG) platform designed for precise and flexible acquisition of brain electrical activity in neuroscience research, neurofeedback, Brain-Computer Interface (BCI), neurophysiology, and experimental applications.
In its Enobio 32 configuration, the system provides high-density EEG acquisition with 32 channels, wireless connectivity, a portable architecture, and support for different dry and gel-based electrode configurations, allowing researchers to adapt the setup to the specific requirements of each experimental protocol.
32-Channel Wireless EEG
The Enobio 32 enables simultaneous EEG recording from up to 32 channels, providing multichannel coverage for studies that require monitoring electrical activity across different areas of the scalp.
The combination of a high channel count and wireless mobility makes the system suitable for both conventional laboratory environments and experimental protocols requiring greater freedom of movement during EEG acquisition.
High-Precision EEG Acquisition
Enobio 32 incorporates 24-bit resolution and a dynamic resolution of approximately 0.05 µV, providing the sensitivity required to capture subtle variations in brain electrical activity.
The system operates with a bandwidth of 0 to 125 Hz, supporting accurate acquisition across the EEG frequency spectrum for a wide range of neuroscience and neurophysiological applications.
Dry and Gel-Based Electrode Options
One of Enobio's key advantages is its flexible electrode configuration.
The system supports both dry electrodes and conventional gel-based electrodes, allowing researchers to select the most appropriate approach according to the experimental protocol.
Dry electrodes can significantly reduce preparation time, making them particularly useful for applications where rapid setup, repeated measurements, or greater participant mobility are important.
Fast EEG Setup
Enobio is designed to simplify the preparation of multichannel EEG recordings.
According to the manufacturer, a 32-channel configuration using dry electrodes can be prepared in approximately 4 minutes, while gel-based configurations may require approximately 20 to 25 minutes.
This flexibility allows researchers to balance preparation speed and electrode configuration according to the requirements of each study.
Flexible Headcap
Enobio uses a flexible headcap architecture that supports different electrode configurations and experimental requirements.
The headcap can be combined with dry or gel-based electrodes, providing a versatile platform for laboratory studies as well as research scenarios requiring increased participant mobility.
Its flexible design also facilitates the positioning of multiple EEG electrodes across the scalp.
Wireless and Portable Architecture
Mobility is one of the main characteristics of the Enobio platform.
Its wireless architecture allows EEG signals to be acquired without keeping the participant physically connected to the computer through conventional acquisition cables throughout the session.
This expands the possibilities for research involving movement, human behavior, performance, cognitive tasks, and consumer neuroscience, in addition to conventional laboratory-based EEG experiments.
NIC2 Software
Enobio 32 integrates with NIC2, Neuroelectrics' software platform for device configuration, EEG acquisition, signal monitoring, and data visualization.
NIC2 enables researchers to monitor EEG signals in real time and provides tools for managing the acquisition workflow and experimental setup.
The combination of hardware and software creates an integrated environment for professional EEG research.
Real-Time EEG Analysis
NIC2 provides tools for real-time time-frequency analysis and visualization, allowing researchers to monitor different aspects of brain activity during acquisition.
Available visualization and analysis resources can include:
- Spectrum visualization;
- Spectrograms;
- Frequency-band power analysis;
- Scalp maps;
- Real-time cortical representations of filtered EEG data.
These tools allow researchers to customize signal visualization according to the objectives of the experimental protocol.
External Event Markers and Synchronization
Precise synchronization between EEG recordings and external experimental events is essential for many neuroscience applications.
Enobio supports integration of external markers through technologies such as LSL, TCP, and hardware triggers, enabling experimental events to be synchronized with the acquired EEG data.
This architecture facilitates integration between EEG recordings, stimulus presentation systems, behavioral tasks, and other research platforms.
Event-Related Potentials – ERP
Enobio can be incorporated into Event-Related Potential (ERP) experiments.
Its ability to synchronize EEG signals with external events and stimulus presentation systems enables researchers to investigate brain responses associated with specific sensory, cognitive, or behavioral events.
This makes the platform suitable for different applications in cognitive neuroscience and experimental neurophysiology.
Brain-Computer Interface – BCI
The system can also be integrated into Brain-Computer Interface (BCI) applications.
Enobio provides mechanisms for sharing EEG signals with external software and research environments, allowing brain activity to be incorporated into real-time processing and interaction systems.
This makes the platform suitable for BCI development, algorithm research, experimental interfaces, and other applications involving real-time EEG processing.
Neurofeedback
Enobio can be incorporated into neurofeedback protocols where information derived from brain electrical activity is processed and transformed into real-time feedback.
The combination of multichannel EEG acquisition, wireless connectivity, real-time monitoring, and integration with external software provides a flexible architecture for developing different experimental neurofeedback configurations.
SDK and Custom Application Integration
For projects requiring greater customization, the Enobio ecosystem provides integration capabilities through software development tools and APIs/SDK resources.
This enables EEG data and device functionality to be incorporated into custom experimental applications and research software.
Such flexibility is particularly valuable for projects involving BCI, neurofeedback, real-time signal processing, experimental automation, and multimodal data integration.
Integration with Research Platforms
Enobio can be incorporated into workflows involving external neuroscience and BCI platforms.
Depending on the research configuration, integration can be performed with tools such as OpenViBE, BCI2000, NeuroGuide, and Presentation, among other compatible environments.
This interoperability allows researchers to integrate Enobio into existing acquisition, processing, stimulation, and analysis workflows.
Hyperscanning
Enobio can also support hyperscanning research, in which brain activity from multiple participants is recorded and studied simultaneously.
Accurate synchronization between acquisition systems enables researchers to investigate neural activity during social interaction, cooperation, communication, and other experimental paradigms involving multiple participants.
This expands the platform's applications beyond conventional single-participant EEG studies.
EEG Beyond the Traditional Laboratory
The combination of wireless connectivity, portability, and dry-electrode options makes Enobio suitable for EEG acquisition beyond conventional laboratory environments.
The platform can support research involving human performance, behavioral studies, movement-related experiments, sports research, and consumer neuroscience, where increased participant mobility may be valuable.
This provides researchers with greater flexibility when designing experiments intended to approximate more natural conditions.
Multimodal Physiological Research
Enobio's integration capabilities also allow EEG data to be combined with other physiological or experimental signals.
This makes it possible to develop multimodal protocols where brain activity is analyzed alongside behavioral, physiological, or environmental information.
Accurate synchronization between different data sources can provide a more comprehensive view of participant responses during complex experimental tasks.
Key Features
- Professional wireless EEG system;
- Enobio configurations available with 8, 20, and 32 channels;
- 32-channel high-density EEG acquisition with Enobio 32;
- 24-bit resolution;
- Dynamic resolution of approximately 0.05 µV;
- 0–125 Hz bandwidth on Enobio 32;
- Support for dry and gel-based electrodes;
- Fast preparation with dry-electrode configurations;
- Flexible headcap architecture;
- Portable and wireless design;
- Integration with NIC2 software;
- Real-time EEG monitoring;
- Time-frequency analysis;
- Spectrum and spectrogram visualization;
- Frequency-band power analysis;
- Scalp mapping;
- Real-time cortical visualization;
- Integration through LSL, TCP, and hardware triggers;
- Custom software integration capabilities;
- Suitable for ERP research;
- Suitable for BCI development;
- Suitable for neurofeedback;
- Support for hyperscanning research;
- Integration with external neuroscience research platforms.
Applications
Enobio EEG can be incorporated into applications involving:
- Electroencephalography (EEG);
- Neuroscience research;
- Cognitive neuroscience;
- Neurophysiology;
- Neurofeedback;
- Brain-Computer Interface (BCI);
- Event-Related Potentials (ERP);
- Hyperscanning;
- Brain activity research;
- Human performance research;
- Behavioral research;
- Consumer neuroscience;
- Multimodal physiological research;
- Real-time EEG analysis;
- Experimental brain-computer interaction.
Its wireless and flexible architecture allows Enobio to support applications ranging from highly controlled laboratory experiments to protocols requiring increased mobility and more naturalistic experimental conditions.
Flexible EEG Platform for Advanced Neuroscience
The Enobio EEG combines multichannel acquisition, high-resolution signal recording, wireless mobility, flexible electrode configurations, and advanced software integration in a platform designed for modern neuroscience research.
With the Enobio 32, researchers gain access to 32 EEG channels, 24-bit resolution, dry or gel-based electrode options, wireless acquisition, and integration with the NIC2 software environment.
Its synchronization and integration capabilities further expand its potential for ERP, BCI, neurofeedback, hyperscanning, cognitive neuroscience, and multimodal experimental research.
Enobio EEG — high-precision, multichannel wireless EEG acquisition for neuroscience research, neurofeedback, BCI, and advanced brain research.
Contact our team for more information about Enobio 8, 20, and 32-channel configurations, dry and gel-based electrodes, headcaps, NIC2 software, integrations, accessories, system configuration, and commercial conditions.