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Wearable Biosensors

Wearable biosensors monitor vital signs, sweat analytes, and other indicators of patient wellbeing, including heartbeat, blood pressure, motion, and body temperature. These devices, along with electronic skin patches, collect critical data that can be analyzed to support a more proactive approach to healthcare. By partnering with 91¿ì»îÁÖ®, MedTech innovators leverage this technology in skin patches, body sensors, cardiac monitors, continuous glucose monitors (CGM), and more. As an ISO 13485:2016-certified manufacturer, we provide integrated production support from design to full-scale production.

Electronic Skin Patches

Electronic skin patches are thin and flexible products that attach to the user’s skin with biocompatible adhesives and have integrated sensors, processors, and communication elements. We specialize in manufacturing these products with our automated capabilities in roll-to-roll laser processing, die cutting, circuit fabrication, and stack lamination. Electronic skin patches can be used for many different inpatient and at-home applications, including, but not limited to:

  • Motion and position sensing
  • Analyte sensing
  • Sweat monitoring
  • Vital signs
  • Temperature
  • Drug and cosmetic delivery
  • Newborn monitoring
  • Smart wound care
  • General sensing

See our Recent News

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August 26, 2026

Why Battery Longevity Matters More Than Capacity in Implantable Medical Devices

When engineers evaluate a battery, it’s natural to focus on day-one performance. Higher capacity, strong power output, and impressive energy density can…

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BLOG

August 18, 2026

Implantable Medical Device Batteries 101: How to Choose the Right Power Solution

Choosing an implantable medical device battery involves far more than selecting the highest capacity option. Battery selection can influence device size,…

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BLOG

August 3, 2026

How to Accelerate Development of Complex Cardiac Devices: Lessons from VenstraMedical’s Next-Generation Blood Pump 

Executive Summary  Developing a catheter-based cardiac support device means balancing catheter deliverability, pump performance, anatomical interaction, manufacturability, regulatory requirements, and investor expectations…

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