|
Model No. |
GC-2335 |
|
Sizes |
35*24 MM |
|
Backing |
Foam/Non-woven |
|
Snap |
3.9MM Button |
|
Gel |
Conductive Hydrogel |
|
Liner |
0.1mm PET |
|
Model No. |
GC-2335 |
|
Sizes |
35*24MM |
|
Backing |
Foam/Non-woven |
|
Snap |
3.9mm Button |
|
Gel |
Conductive Hydrogel |
|
Liner |
0.1mm PET |
|
Color |
White, black option |
|
Packing |
3pcs/film, 3pcs/bag ,2000pcs/ctn, |
|
Report |
ROHS/Bio-compatibility report |
|
Certificate |
CE ISO13485 |
1. High-quality Ag/AgCl material
Ensures stable signal acquisition and low electrode-skin impedance.
2. Low noise and high sensitivity
Designed for recording extremely low-amplitude auditory brainstem responses (μV level).
3. Pre-gelled conductive hydrogel
Provides fast skin contact, consistent conductivity, and improved patient comfort.
4. Disposable and hygienic design
Single-use electrode reduces cross-contamination risk and meets clinical hygiene requirements.
5. Strong and reliable adhesion
Maintains stable contact during testing, suitable for both adult and pediatric patients.
6. Skin-friendly materials
Latex-free and biocompatible materials minimize skin irritation.
7. Compatible with standard ABR/BERA systems
Available with snap / clip / touch-proof connectors upon request.
The Ag/AgCl sensor monitoring electrode is a non-polarizable electrode designed for precise acquisition of biopotential signals such as ECG, EEG, and EMG.
By facilitating a stable electrochemical interface between the skin and the monitoring system, the electrode efficiently converts ionic currents into electrical signals with minimal distortion, ensuring accurate and reproducible physiological measurements.
Recording auditory brainstem responses (ABR / BERA)
Captures neural electrical signals generated along the auditory pathway following sound stimulation.
Supporting hearing assessment and screening
Used for newborn hearing screening, pediatric audiology, and adult diagnostic evaluations.
Assisting neurological pathway evaluation
Helps clinicians assess the integrity and function of the auditory nerve and brainstem.
Providing accurate and repeatable test results
Ensures reliable signal transmission for consistent clinical measurements.
Enabling non-invasive diagnostic procedures
Allows safe, painless monitoring without penetrating the skin.