
( Brand: Intel ), ( Manufacturer Part Number: SPTSMP3CLCK9 ), ( Part Type: Transceiver Module )
Introducing the Intel SFP 200G FR4 1311nm Optical Transceiver Module, a high-performance solution designed for data center networks that demand greater bandwidth and efficiency. This transceiver module, specifically modeled as Intel SFP28-SQFP-32941-C1S, adheres to the QSFP28 form factor and is equipped with four independent 50 Gbps lanes.
The module is based on the Short Wavelength Plastic (SWP) Single Mode Photonic Integrated Circuit (PIC) technology, which uses a 1311nm wavelength for transmission over multi-mode fiber cables. With a reach of up to 3 kilometers, this transceiver ensures reliable connectivity for your data center network.
The Intel SFP 200G FR4 1311nm Optical Transceiver Module is compliant with the Small Form-factor Pluggable Plus (SFP ) standard, ensuring interoperability with a wide range of switches, routers, and other network devices. Its compact design, featuring a square footprint and only 32mm in height, makes it an ideal choice for space-constrained environments.
Key features of this transceiver include a low power consumption of less than 12W, a robust design that supports a wide operating temperature range (-10 C to 70 C), and a built-in digital diagnostic interface for easy monitoring and troubleshooting. Additionally, the module undergoes rigorous testing to ensure reliable performance and longevity, providing peace of mind for your data center infrastructure.
In summary, the Intel SFP 200G FR4 1311nm Optical Transceiver Module is a powerful and versatile solution that delivers high-speed, long-reach connectivity for data center networks. Its advanced technology, compact form factor, and robust design make it an essential component for modern data centers seeking to maximize bandwidth and efficiency.
The Intel SFP 200G QSFP28 3km 1311nm Optical Transceiver Module, specifically the models SPTSMP3CLCK9 and SPTSMP3CLCKAR, are high-performance components designed for data center networks. In this analysis, we will discuss the key features, pros, cons, and a concluding recommendation.
Features:1. High-speed data transfer: Supporting 200Gbps data transfer rates, these transceivers are ideal for high-density, high-bandwidth data center environments.
2. Long reach: With a 3km reach, these modules can cover considerable distances within a data center, reducing the need for intermediate equipment.
3. Wavelength division multiplexing (WDM): These transceivers utilize WDM technology, allowing multiple data streams to be transmitted over a single fiber.
Pros:1. High-speed connectivity: The 200Gbps data transfer rate ensures efficient and rapid data transfer, making it suitable for modern data-intensive applications.
2. Long reach: The 3km reach of these modules enables the extension of network links within a data center without the need for additional equipment.
3. Wavelength division multiplexing (WDM): WDM technology facilitates cost savings by reducing the number of required fiber cables and simplifying the cabling infrastructure.
Cons:1. Cost: As high-end components, these transceivers come with a premium price tag, which may be a limiting factor for smaller organizations or budget-conscious enterprises.
2. Power consumption: The Intel SFP 200G QSFP28 modules consume more power compared to their lower-capacity counterparts, which may add to the overall power usage and cooling requirements of a data center.
Conclusion:The Intel SFP 200G QSFP28 3km 1311nm Optical Transceiver Modules (SPTSMP3CLCK9, SPTSMP3CLCKAR) offer significant advantages for data center networks, including high-speed connectivity, long reach, and WDM technology. However, their premium cost and power consumption may deter some organizations.
Based on the analysis, these transceivers are recommended for large-scale data centers with intensive bandwidth requirements and the necessary budget to invest in high-performance components. For smaller organizations or those with more modest bandwidth needs, it may be more cost-effective to consider lower-capacity transceivers or alternative solutions.
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