TEAMGROUP T-FORCE VULCAN DDR5 16GB (2 x 8GB) 6000MHz CL40 – Black
Elevate your system performance with the T-Force Vulcan DDR5 FLBD516G5600HC40BDC01 system memory. Designed for sleek aesthetics, efficient cooling, and stable overclocking, this DDR5 kit delivers reliable performance for demanding users.
Key Features
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Sleek Design
Gorgeous streamlined design with multi-angular detailing for striking visual aesthetics and a powerful OC gaming look. -
Reinforced Aluminum Structure
Molded from a single block of aluminum alloy through stamping, with the top structure secured by a snap fastener for enhanced durability. -
Optimized Cooling Performance
Professional-grade thermal conducting silicon reinforces adhesion between the cooling fin and memory. - Rapid heat transfer from top to bottom
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Helps maintain optimal operating temperatures
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Intel XMP 3.0 & One-Click Overclocking
Supports the latest Intel XMP 3.0 and one-click overclocking technology, enabling ultra-fast overclocking speeds with a single click. -
Strengthened PMIC Cooling Design
Equipped with professional thermal conductive silicon to enhance PMIC cooling for more effective and stable PMIC operation. -
Power Management ICs (PMICs)
Integrated PMICs help minimize noise interference and ensure stable, efficient power distribution for rapid, reliable power delivery. -
On-Die ECC for Enhanced Stability
On-die ECC provides error detection and correction to help maintain system stability without compromising performance. -
High-Quality ICs for Reliability
High-quality IC dies are carefully selected and tested for compatibility and reliability, delivering stable OC gaming performance.
Specifications
| Specification | Details |
|---|---|
| Product Name | Team T-Force Vulcan FLBD516G5600HC40BDC01 |
| Module Type | DDR5 288-Pin Non-ECC Unbuffered DIMM |
| Capacity | 16GB (2 x 8GB) |
| Frequency | 6000MHz |
| Latency | 40-40-40-84 |
| Voltage | 1.2V |
| Heatsink | Yes |
| Color | Black |
| Warranty | Lifetime Warranty |
The T-Force Vulcan DDR5 combines a reinforced aluminum structure, advanced thermal design, and robust power management for stable, efficient, and visually impressive system memory.
