XPG Lancer Blade RGB DDR5 32GB (2×16GB) 6000MHz CL36 Desktop Memory Kit – Low-Profile White Heatsink, Intel XMP 3.0 & AMD EXPO Support

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32 GB (2 × 16 GB) DDR5 dual-channel memory kit operating at 6000 MHz with CL36-38-38 timings
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Compatible with Intel XMP 3.0 and AMD EXPO one-click overclocking profiles for stable performance
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Elegant low-profile white aluminum heatsink with integrated addressable RGB lighting
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Optimized for gaming, rendering, and professional applications requiring high bandwidth
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Built-in PMIC for stable voltage regulation and on-die ECC for improved reliability and data integrity
The XPG Lancer Blade RGB DDR5 32 GB (2 × 16 GB) 6000 MHz CL36 Desktop Memory Kit, model AX5U6000C3616G-DTLABRWH, is engineered for desktop systems that demand high-speed responsiveness, consistent reliability, and refined visual design. It combines the next-generation benefits of DDR5 memory technology with XPG’s performance-oriented engineering, offering gamers, creators, and professionals an optimal combination of speed, stability, and power efficiency. The kit features a total capacity of 32 GB (two 16 GB modules) designed for dual-channel operation to maximize throughput on modern Intel and AMD systems. Operating at a frequency of 6000 MHz and tight CL36-38-38 timings, it provides fast data access, minimized latency, and stable multitasking performance. DDR5 technology delivers a substantial improvement over DDR4, doubling data transfer bandwidth and improving overall system responsiveness. Each module integrates dual 32-bit sub-channels for more efficient communication with the CPU and includes on-die ECC (Error Correction Code) for automatic correction of data errors. This ensures data integrity under sustained workloads such as gaming, 3D rendering, simulation, and high-resolution video editing. The built-in Power Management IC (PMIC) enhances stability by regulating voltage directly at the module, delivering cleaner power and reducing noise. This efficiency contributes to lower temperatures and improved reliability, especially under continuous heavy operation. The low-profile aluminum heat spreader ensures excellent thermal performance while maintaining a compact height suitable for small form factor builds and large air coolers. Finished in matte white, the heatsink complements clean or all-white build themes while providing strong structural rigidity and heat dissipation. Integrated addressable RGB lighting adds customizable illumination with smooth diffusion, controllable through major motherboard lighting systems for full synchronization with other components. Supporting Intel XMP 3.0 and AMD EXPO, the Lancer Blade DDR5 allows simple performance optimization through the BIOS. Users can activate the preconfigured 6000 MHz profile without manual timing adjustments, ensuring stable high-speed operation. The modules undergo rigorous validation across multiple motherboard platforms to guarantee compatibility and reliability with leading brands such as ASUS, MSI, Gigabyte, and ASRock. Built from premium DRAM ICs and a 10-layer PCB, the XPG Lancer Blade provides robust signal integrity and strong electrical stability for both stock and overclocked configurations. The high-speed 6000 MHz data rate significantly boosts gaming frame rates and system responsiveness, particularly in CPU-bound scenarios. For creators, the additional bandwidth accelerates rendering and file caching operations, reducing processing time for large data workloads. The CL36 timing configuration balances frequency and latency for consistent real-world performance, making it suitable for both gaming and professional productivity use cases. At a nominal voltage of 1.35 V, the modules operate efficiently while maintaining low thermal output. The aluminum heatsink’s passive cooling ensures silent operation and long-term stability. Its low height ensures compatibility in compact cases, while its solid build quality ensures durability during installation and frequent component upgrades. The RGB illumination provides subtle yet vibrant customization without excessive brightness, appealing to users who prefer understated elegance. Each module passes through extensive stress and thermal testing to ensure performance consistency under high ambient temperatures. The combination of PMIC power regulation, efficient heat dissipation, and precision-engineered PCB design ensures minimal voltage drop and maximum performance headroom. Whether used in competitive gaming systems, workstations, or general-purpose high-performance PCs, the XPG Lancer Blade DDR5 delivers dependable results. The DDR5 architecture also includes improvements in command efficiency, burst length, and memory prefetching, leading to higher effective bandwidth across a variety of applications. It supports enhanced multitasking by maintaining stable throughput during concurrent memory-intensive processes. The design adheres to JEDEC DDR5 standards, ensuring compatibility with all DDR5-supported motherboards. The XPG Lancer Blade DDR5 CL36 variant is ideal for enthusiasts seeking a combination of speed and reliability with visual refinement. The memory modules maintain consistent frequency scaling without thermal throttling due to their optimized heatsink structure and high-quality thermal compound application. In practical use, they offer measurable gains in game load times, video playback stability, and overall system fluidity. These modules are built to deliver performance that complements high-end processors such as Intel Core i9, i7, or AMD Ryzen 9 and Ryzen 7 models. The precision white aluminum heatsink provides both aesthetic cohesion and durability, while the lifetime warranty ensures long-term support for users and system integrators. Summary: The XPG Lancer Blade RGB DDR5 32 GB (2 × 16 GB) 6000 MHz CL36 White Memory Kit combines speed, stability, and design in one low-profile, future-ready product. Optimized for Intel and AMD DDR5 platforms, it features high bandwidth, low latency, efficient voltage regulation, and elegant white RGB styling, making it suitable for high-performance gaming and creative workloads.