10-2418-01 Cisco SFP+ Transceiver Module 8GBPS 850nm SW
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Cisco 10-2418-01 8Gbps Fibre Channel Transceiver Outline
The Cisco 10-2418-01 Fibre Channel Transceiver is a high-performance short-wave optical networking module designed for fast, reliable data transmission in enterprise storage and data center environments. This SFP+ LC multi-mode transceiver delivers stable connectivity with enhanced bandwidth efficiency.
General Information About This Cisco 10-2418-01
- Brand: Cisco
- Part Number: 10-2418-01
- Product Type: SFP+ Transceiver Module
- Technology: Short Wave Fibre Channel
- Data Speed: Up to 8.5 Gbps
Technical Specifications
Physical and Build Information
- Form Factor: Plug-in SFP+ module
- Approximate Size (W x D x H): 0.6 in x 2.2 in x 0.4 in
- Enclosure Type: Compact modular design for easy installation
Optical and Transmission Features
- Cabling Type: Fiber Optic (Multi-mode)
- Wavelength: 850 nm
- Data Link Protocol: 8Gb Fibre Channel (Short Wave)
- Maximum Transmission Distance: Up to 1640 ft
Performance Capabilities
- High-speed data transfer rate of up to 8.5 Gbps
- Stable and low-latency fiber optic communication
- Optimized for enterprise storage networking environments
Benefits of Cisco 10-2418-01 Transceiver Module
- Improved network efficiency for SAN environments
- Reliable short-distance high-speed connectivity
- Easy plug-and-play installation
- Compatible with Cisco enterprise networking systems
Ideal Use Cases
- Data centers requiring high-speed storage access
- Enterprise Fibre Channel switching environments
- Server-to-storage communication networks
Advantages of This Cisco Transceiver
- Trusted Cisco engineering and quality assurance
- Designed for high-density networking setups
- Supports efficient fiber optic data transmission
Cisco 10-2418-01 Short Wave 8Gbps Transceiver Outline
Understanding the Role of the Cisco 10-2418-01 in Modern Fibre Channel Networking
The Cisco 10-2418-01 Short Wave 8Gbps Fibre Channel Transceiver represents a specialized optical networking component designed for high-performance storage area network (SAN) environments. This category of transceiver is engineered to support reliable, low-latency data transmission between storage systems, switches, and enterprise servers. In contemporary data centers where data integrity, speed, and scalability are critical, this transceiver category plays a foundational role in maintaining seamless communication across Fibre Channel fabrics. The 8Gbps throughput capability ensures that organizations can handle intensive workloads such as virtualization, database replication, and real-time analytics without bottlenecks.
This class of transceiver is particularly relevant in environments where short-wave optical transmission is preferred due to its balance between cost efficiency and high-speed connectivity. The Cisco 10-2418-01 integrates into Cisco Fibre Channel switches and compatible SAN hardware, providing interoperability across enterprise storage ecosystems. Its design focuses on maintaining signal integrity over multi-mode fiber, ensuring consistent performance even in densely populated rack environments.
Fibre Channel Technology Foundation Behind 8Gbps Transceivers
Evolution of Fibre Channel Speeds and Protocol Efficiency
Fibre Channel technology has evolved through multiple generations, progressing from 1Gbps and 2Gbps systems to advanced 8Gbps and beyond. The Cisco 10-2418-01 belongs to the 8Gbps generation, which was developed to address increasing demands for faster storage access and improved throughput efficiency. Unlike traditional Ethernet-based storage solutions, Fibre Channel maintains a dedicated, lossless communication protocol optimized specifically for storage traffic. This ensures predictable latency and high reliability in mission-critical systems.
Importance of Short Wave Optical Transmission
Short wave optical transceivers operate primarily in the 850nm wavelength range, making them ideal for multi-mode fiber environments. The Cisco 10-2418-01 leverages this short wave technology to provide high-speed data transmission over relatively short distances within data centers. This makes it especially suitable for intra-data center connectivity, where servers, storage arrays, and SAN switches are located in close proximity. The use of short wave optics helps reduce deployment costs while maintaining robust performance levels.
Technical Architecture of Cisco 10-2418-01
Core Design and Optical Engine Structure
The internal architecture of the Cisco 10-2418-01 is built around a high-efficiency optical engine designed to convert electrical signals into optical signals and vice versa. This conversion process is critical in ensuring accurate data transmission across fibre channels. The transceiver integrates a laser diode optimized for short-wave transmission and a photodetector responsible for receiving incoming optical signals. These components work in synchronization to deliver stable 8Gbps data rates with minimal signal degradation.
Signal Encoding and Transmission Stability
Signal encoding within the 8Gbps Fibre Channel framework uses advanced encoding mechanisms that ensure error reduction and efficient bandwidth utilization. The Cisco 10-2418-01 is designed to maintain signal stability even in environments with high electromagnetic interference. Its shielding and internal circuitry reduce noise levels, allowing consistent transmission quality. This ensures that data packets remain intact and are delivered with minimal retransmission requirements, enhancing overall network efficiency.
Thermal Management and Power Efficiency
Thermal control is a critical factor in transceiver design, particularly in dense data center environments. The Cisco 10-2418-01 incorporates efficient thermal dissipation mechanisms that help regulate operating temperature. By maintaining optimal heat levels, the transceiver ensures long-term reliability and reduces the risk of performance degradation. Additionally, its power consumption profile is optimized for enterprise environments, enabling organizations to scale SAN infrastructure without significantly increasing energy costs.
Short Wave Optical Characteristics and Performance Attributes
850nm Wavelength Efficiency in Multi-Mode Fiber Systems
The short wave 850nm wavelength used in the Cisco 10-2418-01 is specifically chosen for compatibility with multi-mode fiber (MMF) infrastructure. This wavelength allows efficient transmission of high-speed signals over short distances typically found in enterprise data centers. The use of vertical-cavity surface-emitting laser (VCSEL) technology enhances precision and reduces signal dispersion, ensuring consistent data integrity across connected systems.
Distance Limitations and Optimal Deployment Scenarios
While short wave transceivers offer excellent performance in close-range environments, they are typically optimized for distances ranging from a few meters up to several hundred meters depending on the fiber type. The Cisco 10-2418-01 performs best in structured cabling environments where OM3 or OM4 multi-mode fiber is deployed. These fiber types allow extended reach while maintaining high signal quality, making them ideal for enterprise SAN architectures.
Signal Integrity and Error Reduction Mechanisms
Maintaining signal integrity is essential in Fibre Channel communication, particularly at 8Gbps speeds. The Cisco 10-2418-01 incorporates advanced error detection and correction mechanisms that help minimize data loss. These mechanisms ensure that retransmissions are minimized, thereby improving overall system throughput. The result is a stable and efficient storage network capable of supporting mission-critical workloads.
Compatibility with Storage Area Network (SAN) Environments
Integration with Cisco Fibre Channel Switches
The Cisco 10-2418-01 is designed for seamless integration with Cisco Fibre Channel switches, enabling organizations to build scalable SAN infrastructures. Its compatibility ensures that administrators can deploy it across various switch models without complex configuration requirements. This simplifies network expansion and reduces operational overhead in enterprise environments.
Interoperability with Enterprise Storage Arrays
In addition to switch compatibility, the transceiver is also designed to interoperate with a wide range of enterprise storage arrays. This ensures that data can flow efficiently between servers and storage devices without protocol mismatches. The standardized Fibre Channel interface allows the Cisco 10-2418-01 to function reliably in heterogeneous storage environments.
Scalability in Large Data Center Architectures
Scalability is a critical requirement in modern data centers, and the Cisco 10-2418-01 supports this need by enabling flexible deployment across multiple SAN layers. As organizations expand their storage infrastructure, additional transceivers can be integrated without disrupting existing configurations. This modular scalability is a key advantage in enterprise IT planning.
Performance Benefits of Cisco 10-2418-01 Transceiver Category
High-Speed Data Transfer and Low Latency Communication
One of the primary benefits of the Cisco 10-2418-01 is its ability to deliver high-speed 8Gbps data transmission with minimal latency. This is essential for applications that require real-time data access, such as virtualization platforms and database systems. The low latency characteristics of Fibre Channel ensure that storage operations are executed efficiently and without delay.
Optimized Throughput for Virtualized Environments
Virtualized environments often require rapid access to shared storage resources. The Cisco 10-2418-01 supports these requirements by providing consistent throughput that prevents performance bottlenecks. This ensures that virtual machines can operate smoothly even under heavy workloads.
Reliability in Mission-Critical Applications
Reliability is a defining feature of Fibre Channel transceivers. The Cisco 10-2418-01 is engineered for continuous operation in mission-critical environments where downtime is not acceptable. Its robust design ensures consistent performance even under high utilization conditions.
Enterprise Storage Networking Applications
Data Center Storage Optimization
In enterprise data centers, the Cisco 10-2418-01 plays a crucial role in optimizing storage performance. It enables fast data access between storage arrays and computing nodes, ensuring that enterprise applications run efficiently. This is particularly important in environments where large volumes of data must be processed in real time.
Cloud Infrastructure and Hybrid Storage Systems
Hybrid storage environments that combine on-premises infrastructure with cloud-based systems benefit significantly from high-speed Fibre Channel connectivity. The Cisco 10-2418-01 helps maintain consistent performance across these hybrid architectures by ensuring reliable data transport.
Database and Transaction Processing Systems
Database systems rely heavily on fast storage access. The Cisco 10-2418-01 supports these systems by providing low-latency communication channels that improve transaction processing speeds. This leads to enhanced application performance and improved user experience.
Long-Term Value and Enterprise Investment Considerations
The Cisco 10-2418-01 provides long-term value by reducing downtime and improving storage efficiency. Its durability and performance consistency contribute to lower total cost of ownership in enterprise SAN deployments.
Future-Proofing Storage Infrastructure
Although newer technologies continue to emerge, 8Gbps Fibre Channel remains widely used in many enterprise environments. The Cisco 10-2418-01 supports legacy and current infrastructure, making it a stable choice for organizations seeking reliable long-term deployment options.
