HOCO UPA26 Type-C to Lightning 3.5mm Braided Audio Cable – 1M Metal + Nylon, Hi-Fi Digital-to-Analog Sound Conversion, Durable Flexible Design, Black

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Expert Features

  • Professional Audio Conversion: The HOCO UPA26 Type-C to Lightning 3.5mm Cable delivers crystal-clear digital-to-analog sound, ensuring rich and detailed audio when connecting Apple devices to 3.5mm inputs.
  • Universal Audio Compatibility: Perfect for linking your iPhone, iPad, or iPod to headphones, car stereos, or home audio systems—ideal for music, podcasts, or calls.
  • High-Fidelity Transmission: Features a 10/0.10BC3C OD4.2mm wire core, optimized for stable signal flow and minimal distortion, maintaining pure sound quality.
  • Premium Build Quality: Constructed from metal braid and reinforced nylon, the cable offers exceptional durability, flexibility, and resistance to daily wear or tangling.
  • Digital-to-Analog Conversion (DAC): Built-in DAC chip ensures accurate digital-to-analog sound conversion, enhancing clarity and reducing background noise.
  • Optimal Length: The 1-meter design offers just the right reach for everyday use—whether in your car, at your desk, or during travel.
  • Stylish & Durable Design: The braided black finish combines durability with a modern, sleek aesthetic.
  • Lightweight & Portable: Weighs only 25 grams, making it easy to carry for on-the-go connectivity and entertainment.

Expert Specs

Specification Details
Brand HOCO
Model UPA26 iP Fresh
Cable Type Type-C / Lightning to 3.5mm Audio Cable
Length 1 Meter
Color Black
Material Metal Braid + Nylon
Connector Types Lightning Male to 3.5mm Male
Wire Core 10/0.10BC3C, OD4.2mm
Function Digital-to-Analog Audio Conversion
Compatibility iPhone, iPad, iPod, and Lightning Devices
Audio Quality High-Fidelity, Low-Noise Transmission
Use Case Car, Home, or Portable Speaker Connection
Design Feature Braided, Flexible, and Tangle-Free
Weight 25g
Durability Anti-Tear, High-Strength Nylon Weave
Chipset Built-In DAC (Digital Audio Converter)
Signal Stability Excellent Resistance to Interference
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