MEM-DR416L-HL03-ER24 Supermicro 16GB DDR4 SDRAM 288-Pin Rdimm Memory Module
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Supermicro 16GB DDR4 Memory
The Supermicro MEM-DR416L-HL03-ER24 is a high-performance DDR4 memory module designed for enterprise-grade servers and workstations. With advanced error correction and dual-rank architecture, it ensures stability and reliability for demanding computing environments.
General Details
- Brand: Supermicro
- Part Number: MEM-DR416L-HL03-ER24
- Device Type: 16GB DDR4-2400MHz Registered DIMM
Technical Specifications
- Capacity: 16GB (Single Module)
- Memory Technology: DDR4 SDRAM
- Speed Rating: 2400MHz (PC4-19200)
- Form Factor: 288-Pin RDIMM
- Error Correction: ECC (Error Correcting Code)
- Rank Configuration: Dual Rank x8 (2Rx8)
- CAS Latency: CL17
- Operating Voltage: 1.2V
MEM-DR416L-HL03-ER24 16GB DDR4 Memory Modules Overview
The Supermicro MEM-DR416L-HL03-ER24 16GB 2400MHz PC4-19200T CAS-17 ECC Registered Dual Rank X8 DDR4 SDRAM 288-Pin RDIMM memory module represents a pinnacle of reliability and performance for enterprise servers, high-end workstations, and data-intensive computing environments. Designed with cutting-edge DDR4 SDRAM technology, this memory module is engineered to deliver consistent and stable memory operations under heavy workloads. Its 16GB capacity allows for optimal handling of modern applications, database management, virtualization tasks, and intensive computational workloads. Featuring a 2400MHz clock speed, this module ensures faster data transfer rates and reduced latency, resulting in smoother and more responsive server performance.
Advanced Memory Architecture
The MEM-DR416L-HL03-ER24 leverages ECC registered dual-rank architecture to provide superior error correction capabilities, which is essential for maintaining data integrity in mission-critical operations. ECC, or Error-Correcting Code, ensures that single-bit errors are automatically detected and corrected, minimizing the risk of data corruption. The dual-rank X8 configuration enhances memory throughput and improves system stability, particularly in environments running high-density memory configurations. Each 288-pin RDIMM memory module is carefully engineered to align with industry standards, guaranteeing seamless compatibility with a broad range of Supermicro server motherboards and enterprise-class systems.
Performance Optimization for Enterprise Servers
Enterprise environments demand memory solutions that not only deliver speed but also maintain reliability under continuous operation. The MEM-DR416L-HL03-ER24 16GB module is optimized for these scenarios, supporting high-frequency 2400MHz data rates and low CAS latency of 17. This combination allows for efficient data access and high-performance computing, ensuring that server applications such as virtualization, database management, and large-scale analytics operate at peak efficiency. The RDIMM form factor further ensures robust electrical signaling and system stability, making it a preferred choice for high-performance computing environments that require consistent uptime and minimal memory errors.
DDR4 Technology and Compatibility
DDR4 SDRAM represents a significant leap over its DDR3 predecessor, offering higher bandwidth, lower voltage consumption, and improved power efficiency. The MEM-DR416L-HL03-ER24 module operates at a voltage of 1.2V, contributing to reduced energy consumption while delivering superior memory performance. Its 288-pin interface is designed to accommodate high-density server configurations, allowing multiple memory modules to be installed simultaneously without compromising performance. Compatibility extends across various Supermicro server platforms, ensuring that system administrators can scale memory capacity according to application demands without concerns about module interoperability.
Reliability and Data Integrity Features
When deploying servers in enterprise settings, reliability is paramount. The MEM-DR416L-HL03-ER24 incorporates registered DIMM technology, which buffers memory signals to improve electrical integrity, especially when multiple modules are installed in the same system. This registered design reduces the electrical load on the memory controller, preventing signal degradation and system instability. Coupled with ECC capabilities, the module ensures that data errors are detected and corrected in real-time, safeguarding critical business applications and sensitive information. Supermicro’s rigorous quality assurance processes further enhance the dependability of this module, ensuring consistent performance across extended operational lifetimes.
Thermal Design and Operational Efficiency
Modern memory modules must balance performance with thermal efficiency to prevent overheating and maintain system longevity. The MEM-DR416L-HL03-ER24 is designed with advanced thermal management in mind, featuring a heat-spreader configuration that dissipates heat effectively during high-intensity workloads. This thermal regulation not only prolongs the lifespan of the memory module but also helps maintain stable operating temperatures for the entire server system. Coupled with energy-efficient DDR4 technology, this module minimizes power consumption while maximizing computational throughput, making it a practical solution for data centers focused on energy efficiency and operational cost reduction.
Memory Scalability and System Expansion
Supermicro MEM-DR416L-HL03-ER24 modules provide a scalable memory solution for growing enterprise environments. System administrators can expand memory capacity by installing additional modules, leveraging the dual-rank architecture to optimize bandwidth and reduce latency. The 288-pin RDIMM format supports large memory arrays, enabling servers to meet the demands of modern workloads without compromising system stability. As businesses scale and data requirements increase, these modules offer a flexible solution to enhance computing power while maintaining reliability and efficiency.
Server Platform Integration
Designed specifically for Supermicro server platforms, the MEM-DR416L-HL03-ER24 ensures seamless integration with a variety of motherboard architectures. Its compatibility with multiple generations of Supermicro systems guarantees that IT professionals can upgrade existing servers without concerns about hardware mismatches or configuration issues. Each module undergoes rigorous testing and validation to ensure optimal performance, signal integrity, and thermal stability, aligning with the high standards demanded in enterprise IT environments.
Optimizing Performance for Virtualization Workloads
Virtualization environments place significant demands on memory due to the simultaneous operation of multiple virtual machines. The MEM-DR416L-HL03-ER24’s 16GB capacity and 2400MHz speed are well-suited for virtualization scenarios, enabling efficient allocation of memory resources across VMs. Dual-rank design ensures high bandwidth, supporting fast memory access for multiple threads and processes. The combination of ECC protection and registered DIMM stability allows system administrators to deploy virtualized workloads confidently, knowing that memory errors will be minimized and performance will remain consistent.
High-Density Memory Configurations
For enterprises requiring extensive memory expansion, the MEM-DR416L-HL03-ER24 offers flexibility and high-density configuration support. Its dual-rank architecture and RDIMM design make it possible to populate multiple memory slots while maintaining optimal electrical performance and signal integrity. This scalability allows businesses to future-proof their servers, ensuring that growing memory demands can be met without needing frequent hardware replacements. The 16GB module size strikes a balance between individual module capacity and overall system scalability, supporting large-scale deployments in data centers and HPC environments.
Quality Assurance and Compliance Standards
Supermicro’s commitment to quality is evident in the MEM-DR416L-HL03-ER24 memory module. Each unit undergoes comprehensive testing to validate performance, stability, and compatibility with Supermicro server platforms. Compliance with international standards for memory modules ensures that these RDIMMs meet rigorous operational and environmental requirements. This dedication to quality guarantees that IT departments can deploy these modules in critical applications with confidence, knowing that each module has been engineered to deliver consistent, reliable performance.
