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ProductMedical Equipment & Devices

ElecSil Conductive Dry Electrodes

Seoul, South Korea

Flexible, skin-safe conductive silicone electrodes that integrate directly into textile substrates for EMG, ECG, EMS, and motion sensing applications without rigid hardware or wires.

Manufactured by

Wave Company Ltd.

Seoul, South Korea

Wave Company researches and develops innovative smart textiles to create smart wear and functional sportswear that aids human movement. Wave Company is at the forefront of wearable technology, revolutionizing digital wellness and performance with our CES 2024 award-winning TracMe and innovative smart textiles. Our unique, stretchable materials serve as both conductive wires and electrodes, providing unmatched comfort and accuracy for monitoring and enhancing user performance. Approved for use in medical devices, our technology ensures reliability and safety. - TracMe: A CES 2024 Digital Health Innovation Award-winning smart fitness solution that revolutionizes workout efficiency with knee and elbow sleeves equipped with movement-tracking sensors. Integrated with the TracMe App, it offers personalized workouts and analysis, aiding in your fitness journey. Utilizes movement tracking stretchable silicone e-textile sensor TracSil™ , detecting joint movement, it currently counts exercise reps and is in development to assess range of motion, angle, speed measurement and movements in three dimensions. Demonstrates expansive versatility with potential to provide precise motion and repetitive movement analysis for rehabilitation and sports applications, real-time joint tracking, monitoring robotic and mechanical movements for high precision tasks in industrial settings. - ElecSuit: Smartwear with EMS, Haptics and accurate accumulation and transmission of biometric data such as ECG, EMG for sports, training, medical, XR/AR. Provides lightweight garment comfort, washability, and affordable manufacturing costs. Utilizes conductive stretchable silicone e-textile ElecSil™ with usages as wires and electrodes and an alternative for stretchable fpcb. Achieved ISO 10993 certification, which is the international standard for biocompatibility necessary for medical device approval.

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