High-Flex USB 3.0 Medical Cable

Featured Product from SAB BRÖCKSKES GmbH & Co. KG

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Medical imaging systems demand reliable high-speed data transmission while maintaining maximum flexibility and excellent handling characteristics. SAB Bröckskes has developed its USB 3.0 M cable specifically for medical technology applications where precise signal transmission and ergonomic device operation are essential.

Designed for handheld imaging systems such as intraoral cameras, the cable combines lightweight construction with outstanding flexibility, enabling comfortable positioning without compromising signal quality. Its optimized cable geometry and shielding concept ensure excellent transmission characteristics while minimizing interference in high-resolution imaging applications.

The USB 3.0 M cable features a biocompatible SABmed S jacket material with biological harmlessness according to EN ISO 10993-1 and cytotoxicity according to EN ISO 10993-5, making it suitable for demanding medical environments. The FEP insulation provides excellent thermal stability with operating temperatures up to +180 °C, while the jacket offers high notch and tear resistance together with a non-adhesive surface for long-term durability.

Key features include:

  • High-flex USB 3.0 cable for medical technology
  • Biocompatible SABmed S jacket
  • Biological harmlessness according to EN ISO 10993-1
  • Cytotoxicity tested according to EN ISO 10993-5
  • Excellent transmission characteristics with nominal 90 Ω impedance
  • FEP insulation for temperatures from -40 °C to +180 °C (static)
  • High notch and tear resistance
  • Non-adhesive cable surface
  • Transmission lengths up to 3 m (longer lengths available on request)
  • Available as an assembled cable with USB Type A and USB Type B connectors

Beyond standard products, SAB Bröckskes also develops customized USB cable solutions tailored to specific medical devices. Prototype cables are manufactured using serial production equipment, enabling a seamless transition from development to volume production while ensuring reliable performance in medical imaging applications.