AB606885 Dell 32GB PC4-25600 DDR4 3200MT/s Non-ECC Memory
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Dell AB606885 32GB XMP PC4-25600 Memory
The Dell AB606885 32GB DDR4 UDIMM module is engineered to deliver fast, stable, and efficient memory performance for modern desktops and high‑end gaming rigs. Designed with XMP support and optimized timings, it ensures smooth multitasking and improved responsiveness across intensive workloads. This advanced 32GB 3200MHz PC4‑25600 memory module offers exceptional speed and reliability, making it ideal for users who require consistent performance. Built with dual‑rank architecture and X8 configuration, it enhances data throughput while maintaining low power consumption at just 1.25v.
General Specifications
- Brand Name: Dell
- Part Number: AB606885
- Product Type: 32GB 2Rx8 DDR4 UDIMM with XMP Support Memory
Technical Attributes
- Capacity: 32GB single module
- Memory Standard: DDR4 SDRAM
- Speed Rating: 3200MT/s (PC4‑25600)
- CAS Latency: CL22 for balanced speed and stability
- Data Integrity: Non‑ECC for standard desktop environments
- Signal Type: Unbuffered for direct communication with the memory controller
- Rank Configuration: Dual Rank (2Rx8)
- Voltage: 1.25v for efficient power usage
Compatibility
Supported Alienware Models
- Alienware Aurora R7
- Alienware Aurora R8
- Alienware Aurora R9
- Alienware Aurora R10
- Alienware Aurora R11
- Alienware Aurora R12
- Alienware Aurora R14
Dell AB606885 32GB DDR4 Memory
Dell desktop memory modules represent a specialized category within the broader DDR4 SDRAM ecosystem, focusing on stability, compatibility, and performance consistency for professional desktops, enterprise workstations, and advanced personal computing environments. The Dell AB606885 32GB DDR4 UDIMM module belongs to a class of memory engineered to meet the operational demands of data-intensive workloads while maintaining compatibility with industry-standard Intel and AMD platforms that support unbuffered, non-ECC memory. This category emphasizes predictable behavior, validated electrical characteristics, and long-term reliability, making it suitable for users who prioritize system integrity alongside measurable performance gains. DDR4 UDIMM memory in this segment is widely adopted in corporate IT infrastructures, creative studios, development labs, and high-performance home systems where capacity and bandwidth play a critical role in overall responsiveness.
DDR4 SDRAM
DDR4 SDRAM represents a significant architectural evolution compared to earlier generations, introducing higher data rates, improved signal integrity, and reduced operating voltage. Memory modules within this category operate at 1.25 volts, which strikes a balance between energy efficiency and stability, particularly at higher frequencies such as 3200MHz. The PC4-25600 designation reflects the theoretical peak bandwidth of 25.6 GB/s per module, allowing modern CPUs to access data rapidly and efficiently. This bandwidth is especially relevant for applications that stream large datasets, perform real-time calculations, or rely on fast memory access for multitasking scenarios. As part of the DDR4 generation, these modules support advanced memory controllers and optimized trace layouts on motherboards designed for 288-pin UDIMM configurations.
Unbuffered DIMM
Unbuffered DIMM memory modules are defined by their direct communication pathway between the memory controller and the DRAM chips. In this category, the absence of a register or buffer reduces latency and simplifies signal flow, which is advantageous for desktop systems and workstations that require responsive memory access. The Dell AB606885 module aligns with this design philosophy by offering a straightforward, high-capacity solution without introducing the complexity associated with registered memory. This design choice ensures compatibility with a wide range of consumer and professional motherboards while maintaining the performance characteristics expected from high-frequency DDR4 memory.
Non-ECC Memory
Non-ECC memory modules are optimized for systems where error correction is not a primary requirement, allowing for higher capacities and frequencies at a more accessible cost profile. Within this category, non-ECC memory is commonly used in desktops, creative workstations, and development machines where performance and capacity are prioritized over mission-critical fault tolerance. The Dell AB606885 module fits seamlessly into this use case by delivering 32GB of memory capacity without the additional overhead of ECC logic. This makes it suitable for professionals working with large media files, complex software development environments, and multitasking-heavy workflows that benefit from ample memory resources.
Performance
Memory modules operating at 3200MHz occupy a performance tier that balances high throughput with broad platform support. This frequency is widely supported by modern chipsets and processors, making it a practical choice for users seeking performance improvements without extensive manual tuning. The Dell AB606885 module’s 3200MHz data rate allows systems to handle demanding applications with reduced latency and improved data transfer efficiency.
XMP Integration
Extreme Memory Profile support is a defining feature within this category, enabling users to achieve rated performance through predefined BIOS settings. The inclusion of XMP profiles simplifies memory configuration by allowing compatible motherboards to automatically apply optimal timings and voltage settings. This approach reduces the need for manual tuning while ensuring stable operation at 3200MHz. For system integrators and enthusiasts alike, XMP-enabled memory modules provide a convenient pathway to enhanced performance without sacrificing reliability or compatibility.
CAS Latency
The CL22 latency rating associated with this module reflects a timing profile designed for stability at higher capacities. While lower CAS latency values are often associated with enthusiast-grade memory, CL22 is a practical and widely supported timing for 32GB DDR4 modules operating at 3200MHz. This balance ensures consistent performance across a range of workloads, particularly those that benefit from capacity and bandwidth rather than ultra-low latency.
High-Capacity
The 32GB capacity places this module in a category tailored for memory-intensive applications and future-proof system configurations. This is particularly beneficial in compact workstation builds or systems with limited DIMM slots. By utilizing a single 32GB module or pairing multiple modules for expanded capacity, users can scale their systems to meet evolving demands without replacing existing components.
Dual Rank X8
Dual rank memory modules feature two sets of memory ranks accessible by the memory controller, effectively increasing parallelism and improving data throughput in certain scenarios. The X8 chip organization further enhances compatibility and performance by aligning with common memory controller designs. Within this category, dual rank X8 modules are valued for their ability to deliver consistent performance across a range of workloads, particularly those that benefit from increased memory interleaving. This configuration contributes to balanced system behavior, making it suitable for both professional and advanced personal computing environments.
Compatibility
Dell-branded memory modules are often validated against specific system configurations to ensure optimal compatibility and performance. This category is designed to integrate seamlessly with Dell desktops and workstations that support DDR4 UDIMM memory at 3200MHz. Beyond Dell systems, the standardized nature of the 288-pin UDIMM form factor ensures broad compatibility with industry platforms that adhere to DDR4 specifications. This cross-platform support makes the module a versatile choice for system upgrades, replacements, or custom builds where reliability and compatibility are paramount.
Use Cases
Memory modules in this category are well-suited for a wide range of professional and advanced computing use cases. Content creation workflows benefit from the large capacity and bandwidth, enabling smooth editing of high-resolution video, complex 3D scenes, and large photographic datasets. Software development environments leverage the capacity for running multiple virtual machines, containers, and development tools simultaneously. Data analysis and scientific computing tasks benefit from the ability to hold large datasets in memory, reducing reliance on slower storage solutions.
Enterprise
In enterprise environments, memory reliability and consistency are critical factors. This category addresses these needs by offering validated performance characteristics and stable operation under sustained workloads. Corporate desktops equipped with high-capacity DDR4 memory can handle modern productivity software, collaboration tools, and data processing tasks with ease.
