EMI Shielded Multi-Branch Flexible Flat Cable FFC for High-Speed Display Data Link

EMI Shielded Multi-Branch Flexible Flat Cable FFC for High-Speed Display Data Link

EMI Shielded Multi-Branch Flexible Flat Cable FFC for High-Speed Display Data Link

Product Specifications

Connector TypeFFC Connector
ShieldingFull EMI Shielding Tape
Cable TypeAWM 20624 / AWM 20708 / AWM 20798
Voltage Rating60V
Pitch OptionsCustom (Standard 0.5mm / 1.0mm / 1.25mm)

Product Description

These premium Flexible Flat Cable (FFC) and Internal Wire Harness assemblies are engineered for precision signal transmission in modern high-density electronics. Designed to bridge internal modules in laptops, monitors, medical devices, and industrial control systems, our cables offer exceptional flexibility and reliability.

The assemblies feature advanced configurations, including multi-branch Y-split pigtails and fully shielded high-speed data cables, providing engineers with the versatility needed for complex internal routing. With compliance to industry-standard AWM ratings (80°C/60V), these jumpers ensure stable performance and signal integrity even in demanding environmental conditions.

Key Features

  • High-Density Connectivity: Ultra-thin profile design allows for reliable high-density board-to-board connections in extremely compact electronic housings.
  • EMI/RFI Protection: Specialized black shielding tape options significantly reduce electromagnetic interference, ensuring stable high-speed signal integrity for LVDS and data applications.
  • Versatile Multi-Branch Design: Available in complex Y-split and multi-terminal configurations to connect a single mainboard to multiple peripheral modules.
  • Superior Durability: High-temperature resistant (80°C) and flexible construction allows for repeated folding and high-vibration routing without signal degradation.
  • Precision Termination: Features reinforced stiffeners for secure ZIF (Zero Insertion Force) or LIF connector mating, as well as specialized crimped-on connectors for board-level stability.
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