UCS-MR-X16G1RS-H Cisco 16GB DDR4 SDRAM 2666MHz ECC Registered 288-Pin RAM
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Details of Cisco 16GB DDR4 ECC RAM
The Cisco UCS-MR-X16G1RS-H is a dependable 16GB DDR4-2666 ECC RDIMM memory module engineered for enterprise-grade servers. With advanced error correction, registered buffering, and low-voltage efficiency, this DIMM ensures stable performance for mission-critical workloads and high-density computing environments.
Main Information
- Brand Name: Cisco
- Model Number: UCS-MR-X16G1RS-H
- Product Type: 16GB DDR4 SDRAM Memory Module
Technical Specifications
Memory Capacity and Type
- Storage Capacity: 16GB
- Memory Technology: DDR4 SDRAM
- Number of Modules: 1 x 16GB
Performance Attributes
- Bus Speed: 2666MHz / PC4-21300
- Latency: CL19
- Data Integrity: ECC (Error-Correcting Code)
- Signal Processing: Registered (Buffered)
Physical Characteristics
Form Factor
- 288-pin DIMM
Server Compatibility
Blade Server Support
- Cisco UCS B200 M5
- Cisco UCS B480 M5
- Cisco UCS SmartPlay Select B200 M5 Advanced
Rack and Storage Server Support
- Cisco UCS C220 M5 High-Density Rack Server
- Cisco UCS C220 M5SX SFF
- Cisco UCS C240 M5 Rack Server
Key Benefits
Enterprise Reliability
- ECC error correction ensures data integrity and system stability
- Registered buffering enhances performance in multi-module configurations
Performance Efficiency
- 2666MHz speed supports demanding server workloads
- CL19 latency balances responsiveness and reliability
Energy-Saving Design
- 1.2V low-voltage operation reduces power consumption
- Optimized for modern server infrastructures
Cisco UCS-MR-X16G1RS-H 16GB DDR4 2666MHz RAM Overview
The Cisco UCS-MR-X16G1RS-H 16GB DDR4 memory module is designed to meet the rigorous demands of enterprise-grade servers, delivering consistent performance, enhanced reliability, and scalable capacity. Built for modern data centers and high-performance computing environments, this RDIMM module integrates advanced memory technologies to ensure optimal system responsiveness and workload efficiency. Operating at 2666MHz with PC4-21300 bandwidth, this memory module supports data-intensive applications, virtualization platforms, and mission-critical workloads where stability and speed are essential.
Advanced DDR4 Technology for Modern Server Infrastructure
DDR4 memory technology represents a significant leap forward in performance and energy efficiency compared to previous generations. The Cisco UCS-MR-X16G1RS-H module leverages DDR4 architecture to deliver higher data transfer rates and reduced latency, ensuring improved throughput across demanding applications. With a frequency of 2666MHz, it enables faster communication between the processor and memory subsystem, minimizing bottlenecks and maximizing system productivity.
Improved Bandwidth and Data Transfer Efficiency
The PC4-21300 specification indicates a high bandwidth capacity that supports seamless data processing. This enhanced bandwidth is particularly beneficial in environments where large datasets are processed continuously, such as cloud computing, virtualization clusters, and database management systems. The module’s ability to handle increased data loads ensures smooth operation without compromising performance.
Reduced Power Consumption with 1.2V Operation
Operating at just 1.2 volts, this DDR4 memory module significantly reduces power consumption compared to older DDR3 modules. Lower voltage requirements translate into decreased heat generation, which improves system cooling efficiency and extends the lifespan of server components. This energy-efficient design is essential for data centers aiming to optimize power usage and reduce operational costs.
ECC Registered RDIMM Architecture for Reliability
The Cisco UCS-MR-X16G1RS-H is engineered with ECC Registered DIMM technology, ensuring superior reliability and data integrity. ECC, or Error-Correcting Code, detects and corrects memory errors in real time, preventing data corruption and system crashes. Registered DIMM architecture further enhances stability by reducing electrical load on the memory controller, allowing systems to support larger memory configurations.
Error Correction for Mission-Critical Applications
ECC functionality is crucial for enterprise environments where data accuracy is non-negotiable. By automatically identifying and correcting single-bit errors, this memory module ensures that applications run smoothly without interruptions. This capability is particularly important in financial systems, healthcare databases, and enterprise resource planning platforms where even minor data inconsistencies can have significant consequences.
Enhanced Stability Through Registered Buffering
Registered DIMMs include a register between the DRAM modules and the system memory controller, which helps stabilize data signals. This buffering reduces the electrical load and allows servers to operate reliably with higher memory capacities. As a result, IT administrators can scale their systems efficiently without sacrificing performance or stability.
Optimized for Cisco UCS Server Environments
The Cisco UCS-MR-X16G1RS-H memory module is specifically designed for compatibility with Cisco Unified Computing System servers. This ensures seamless integration and optimal performance within Cisco environments, making it an ideal choice for organizations utilizing UCS infrastructure.
Seamless Integration with UCS Platforms
This memory module is validated for use with a wide range of Cisco UCS servers, ensuring compatibility and consistent performance. Integration with UCS management tools allows administrators to monitor and manage memory resources effectively, improving overall system efficiency.
Scalability for Growing Business Needs
As businesses expand, their IT infrastructure must scale accordingly. The 16GB capacity of this module provides a balance between performance and scalability, enabling organizations to upgrade their servers incrementally. By adding multiple modules, businesses can achieve higher memory capacities to support evolving workloads.
Detail Specifications and Design Features
The Cisco UCS-MR-X16G1RS-H module incorporates a range of technical features that contribute to its performance and reliability. Designed with precision engineering, it meets the stringent requirements of enterprise computing environments.
1Rx4 Memory Configuration
The 1Rx4 configuration indicates a single rank memory module with x4 data width. This design optimizes data access and enhances overall performance, particularly in multi-channel memory architectures. It also supports efficient memory utilization, ensuring that system resources are used effectively.
288-Pin RDIMM Form Factor
The 288-pin design is standard for DDR4 RDIMM modules, ensuring compatibility with modern server motherboards. This form factor provides a secure connection and supports high-speed data transfer, contributing to the module’s overall reliability.
Performance Benefits for Enterprise Workloads
The Cisco UCS-MR-X16G1RS-H memory module is tailored to handle a wide range of enterprise workloads, delivering consistent performance across various applications.
Virtualization and Cloud Computing
In virtualized environments, memory plays a critical role in determining system performance. This module provides the capacity and speed required to run multiple virtual machines efficiently, ensuring smooth operation and resource allocation. Its high bandwidth and low latency enable faster data access, improving the performance of cloud-based applications.
Database Management and Analytics
Data-intensive applications such as database management systems and analytics platforms benefit significantly from high-performance memory. The Cisco UCS-MR-X16G1RS-H module supports rapid data processing, enabling faster query execution and real-time analytics. This enhances decision-making capabilities and improves overall business efficiency.
High-Performance Computing Applications
For workloads that require substantial computational power, such as scientific simulations and engineering applications, this memory module provides the necessary speed and reliability. Its advanced architecture ensures consistent performance under heavy workloads, making it suitable for high-performance computing environments.
