Vention Micro-B 2M Cable
The Vention Micro-B 3A Cable provides a high-efficiency solution for power delivery and data synchronization between legacy Micro-USB peripherals and Type-A host controllers. This specific model supports a maximum current throughput of 3 Amperes, facilitating rapid charging for compatible mobile devices and power banks. Consequently, it serves as a reliable replacement or extension for standard OEM cables in professional IT environments.
Key Features
-
High-Current Support
The internal architecture utilizes thickened copper conductors to maintain 3A current flow with minimal voltage drop. -
USB 2.0 Data Transmission
This interconnect supports a theoretical data transfer rate of 480Mbps, ensuring stable synchronization for storage devices. -
Reinforced Construction
The assembly features a durable PVC jacket and integrated strain relief to prevent internal wire breakage during use. -
Universal Compatibility
The interface remains compatible with a wide range of devices including Android smartphones, tablets, and IoT hardware.
Specifications
| Feature | Specification |
|---|---|
| Interface Type | USB 2.0 A Male to Micro-B Male |
| Rated Current | 3.0 Amperes (Max) |
| Transmission Speed | 480 Mbps |
| Cable Length | 2 Meters (6.6 Feet) |
| Conductor Material | Oxygen-Free Copper (OFC) |
| Jacket Material | PVC / TPE |
| Connector Plating | Nickel-Plated |
What’s in the Box
- 1 x Vention USB 2.0 A Male to Micro-B Male 3A Cable (2M, Black)
Why Choose This Cable
- The 2-meter length offers significant flexibility for workstation setups where the power source is distant from the device.
- Additionally, the 3A rating ensures that high-draw devices receive optimal power without overheating the cable assembly.
- The use of oxygen-free copper conductors maintains signal integrity over the full length of the 200cm span. Therefore, data corruption risks during file transfers are minimized.
- Vention engineering focuses on mechanical durability, employing a multi-layer shielding process to reject electromagnetic interference (EMI). Consequently, this prevents performance degradation in high-density electronic environments.






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