A5614086 Dell 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC SDRAM DIMM Memory
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Dell A5614086 Memory Module
Experience superior performance with the Dell A5614086 Memory Module. This 16GB DDR3 SDRAM DIMM memory is designed to enhance your server's efficiency, offering unmatched reliability for demanding workloads. With its advanced ECC (Error-Correcting Code) technology, this memory module ensures data integrity by automatically detecting and correcting potential errors.
Product Details
- Brand Name: Dell
- Part Number: A5614086
- Product Type: 16GB DDR3 SDRAM Registered DIMM
Extended Specifications
- Capacity: 16GB
- Technology: DDR3 SDRAM
- Speed: 1333MHz (PC3-10600)
- Error Correction: ECC
- Processing Type: Registered for enhanced stability
- Design Feature: Fully buffered architecture
Physical Attributes
- Form Factor: 240-pin DIMM
- Low Voltage design for energy efficiency
Compatibility
Dell PowerEdge Models
- C2100, C6105, C6145
- C8220, C8220x
- M420, M520, M610, M610x
- M620, M710, M710HD
- M820, M915
- R410, R415, R510, R515
- R710, R720, R720xd
- R910
- T410, T610
Precision Workstation
- R5500
- T3600
- T5600
- T7600
Dell 16GB 1333MHz Memory Overview
The Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server occupies a critical position within the server memory category, blending mature DDR3 architecture with enterprise-grade reliability features such as ECC and registered buffering. Emphasizing compatibility, power efficiency, error correction, and long-term stability, modules in this category are ideal for mixed workload environments where reliability and cost-per-GB matter.
Key Specifications
The Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server is defined by several core technical specifications that make it straightforward for purchasers to match modules to server needs. The 16GB capacity per module enables dense memory configurations for virtualization, database caching, and application server consolidation. The 1333MHz data rate, commonly designated as PC3-10600, represents a balanced choice between throughput and broad platform compatibility, particularly with mid-generation PowerEdge servers designed for DDR3 memory. The 240-pin form factor adheres to standard DDR3 DIMM physical interfaces, while ECC (Error Correcting Code) provides single-bit error correction and multi-bit detection to protect data integrity in mission-critical workloads. Registered (RDIMM) design introduces a register between the memory controller and DRAM chips, reducing electrical load on the memory bus and allowing higher total memory capacities and improved signal integrity across multiple populated slots. The low voltage profile reduces operating power compared with standard 1.5V DDR3 modules, enhancing thermal performance and reducing energy consumption at scale — an important consideration for rack density and long-term operational costs.
Memory Architecture
ECC, registered buffering, and low voltage are not mere marketing buzzwords in server memory; they are architectural choices that materially affect system behavior. ECC provides on-the-fly correction for single-bit errors and detection of multi-bit errors, reducing silent data corruption risk and improving uptime. Registered memory shifts control signals through a register to stabilize timing and electrical characteristics; this makes RDIMM modules like the Dell A5614086 highly suitable for systems that require many populated DIMM slots and large aggregated memory pools. Low voltage variants of DDR3 reduce the nominal operating voltage from the traditional 1.5V to a lower threshold (often 1.35V), yielding measurable power savings when scaled across dozens or hundreds of modules. The combination of ECC, RDIMM, and low voltage is especially attractive for enterprise deployments that must balance capacity, reliability, and energy efficiency.
Compatibility
One of the most important elements for procurement teams is compatibility. The Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server is engineered to fit specific generations of the Dell PowerEdge lineup that accept DDR3 RDIMM modules at 1333MHz. Compatibility extends beyond mere mechanical fit; it includes BIOS support, memory population rules, and error-handling behaviors expected by Dell firmware. Server owners should consult their platform-specific memory population guides to ensure optimum pairing and symmetrical channel configuration for maximum performance. Servers configured with this memory type typically support higher aggregated capacities than unbuffered modules allow, enabling denser virtualization hosts or larger in-memory caches for database servers. When planning upgrades, confirm the PowerEdge chassis, CPU generation, and BIOS revision support ECC RDIMM at 1333MHz to avoid incompatibility or suboptimal downclocking scenarios.
Performance
Though DDR3 at 1333MHz may not match the raw bandwidth of later memory generations, the Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server delivers consistent, predictable performance for a wide range of server workloads. Typical use cases include virtualization infrastructures that benefit from large memory pools per host, application servers running enterprise middleware, database read/write caching where stability outweighs peak bandwidth, and storage controllers that prioritize data integrity. The RDIMM architecture supports systems with many DIMMs per CPU socket without excessive signal degradation, making it preferable for memory-dense configurations. Additionally, the low voltage trait reduces heat generation under sustained, heavy memory utilization, improving thermals in densely packed racks and prolonging component life by keeping operating temperatures lower.
Reliability
Enterprise memory categories such as the Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server are typically subjected to rigorous validation and burn-in testing to ensure compatibility and longevity under data center conditions. Reliability metrics include error rates under high memory pressure, thermal tolerance across operating temperature ranges, sustained I/O stress testing, and longevity cycles. Vendors and suppliers often perform platform-specific validation on dominant PowerEdge models to verify full functionality with Dell firmware and management tools. For mission-critical systems, purchasers should look for modules that come with documented testing, traceability to manufacturing batches, and supplier warranties that cover premature failures. Sourcing memory from reputable suppliers reduces the risk of counterfeit or substandard parts which can introduce silent failures or incompatibilities over time.
Energy Efficiency
Low voltage memory modules like those in this category contribute to measurable energy savings when deployed at scale. Each module operating at a reduced voltage dissipates less power, which compounds across large server fleets. The Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server can therefore be an attractive option for organizations focused on lowering data center power usage while maintaining adequate capacity. Beyond power draw, lower operating voltage reduces heat output, alleviating cooling demands and potentially allowing more efficient use of existing cooling infrastructure. These benefits are particularly relevant in high-density racks where thermal headroom is constrained and in environments where power and cooling are costly or limited.
Comparisons
When evaluating Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server against alternatives, several trade-offs emerge. Compared to unbuffered ECC DIMMs, RDIMMs support greater total memory capacities and better signal integrity for multi-DIMM configurations. Compared to higher-speed DDR3 modules, the 1333MHz profile is often slightly less performant in peak bandwidth but frequently more compatible and less expensive, offering a favorable price-to-capacity ratio. Against newer memory generations such as DDR4 and DDR5, DDR3 variants generally have lower maximum bandwidth and per-module ceiling capacities; however, for legacy server fleets or budget-sensitive expansions, DDR3 RDIMMs may remain the most pragmatic choice. The low voltage aspect narrows the efficiency gap to newer standards, making these modules an attractive compromise for environments that value energy and cost savings over absolute top-tier throughput.
How to Choose
Selecting the right module involves matching the Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server to the specific server model, workload profile, and capacity planning goals. Key decision factors include the server’s supported DIMM density per CPU socket, the desired memory capacity per server, the need for ECC/registered features, and budgetary constraints. For virtualization hosts that require more memory per VM, prioritize capacity and RDIMM compatibility. For compute nodes where memory bandwidth is the critical limiter, review whether higher-frequency DDR3 modules are supported and whether BIOS settings will allow the system to operate at those speeds. In consolidation projects, calculate consolidated memory needs across workloads to determine the number of 16GB modules required to achieve performance and SLA objectives.
Use Cases
Common deployment patterns for the Dell A5614086 16GB 1333MHz PC3-10600 240-Pin DDR3 ECC Low Voltage Registered SDRAM DIMM Memory for PowerEdge Server include virtualization clusters running multiple small-to-medium VMs per host, database caching layers where memory capacity reduces disk I/O, web and application server farms requiring consistent uptime, and archival compute nodes that process batch analytics. In research and development labs maintaining legacy PowerEdge servers, these modules provide affordable capacity increases without replacing entire systems. Enterprises performing refresh cycles often redeploy these modules into secondary or less performance-sensitive hardware, extending useful life and improving return on investment. In cloud or managed services, predictable ECC behavior and RDIMM scalability ensure customers experience consistent performance levels as tenants scale usage up or down.
