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Cocoon Airbag Protection AB

Cocoon develops the first bicycle child seat incorporating patented airbag technology for enhanced crash protection. This system features smart crash detection that instantly deploys an airbag to cushion the child's head, neck, and body during an accident. The portable airbag unit easily attaches to the seat base, offering parents advanced safety assurance for bicycle transport.

Malmö, SwedenFounded 20194200+ followers
Updated 18 months ago

Funding

Funding not disclosed

WT
Funding rounds are not available yet.

Founders

Product

Problem

Existing bicycle child seats offer limited impact protection, leaving children vulnerable to head, neck, and body injuries in the event of an accident. Parents often express concerns about the safety of transporting their children on bicycles due to potential traffic hazards and the lack of adequate safety measures in current child seat designs.

Solution

Cocoon Airbag Protection is developing an airbag system designed to attach to bicycle child seats, providing a protective barrier around the child during collisions. The system employs smart crash-detection technology to instantly deploy the airbag upon detecting accident movement patterns. This airbag is engineered to cushion the child's head, neck, and body, significantly reducing the risk of injury. The airbag system is designed to be easily installed and used daily, attaching to a built-in base on the back of the Cocoon child seat.

Target Audience

The primary target audience is parents who transport their children on bicycles and are concerned about their safety, as well as safety-conscious cyclists seeking enhanced protection for their children.

Features

  • Patented airbag technology designed specifically for bicycle child seats.
  • Smart crash detection algorithms for rapid airbag deployment.
  • Airbag design provides enhanced protection for the head, neck, and body.
  • Independently crash-tested to ensure maximum safety performance.
  • Biokinetic algorithms optimize energy consumption and processing capabilities of sensor systems.
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