HPE MSA 2062 16Gb FC SFF Reman Storage
The HPE MSA 2062 16Gb FC SFF refurbished storage delivers enterprise-grade performance for organizations seeking reliable, cost-effective storage solutions. This 16Gb Fibre Channel SFF storage array combines proven HPE architecture with significant savings through certified refurbishment. Ideal for mid-market data centers and virtualized environments requiring high-speed connectivity and scalable capacity.
Key Features
- 16Gb Fibre Channel connectivity for high-speed data transfer
- Small Form Factor (SFF) design optimizes data center space
- Enterprise-class reliability and performance
- Certified refurbished with full HPE warranty support
- Scalable storage architecture for growing environments
- Integrated management tools for simplified operations
- Cost-effective alternative to new storage systems
Technical Specifications
| Specification |
Details |
| Manufacturer |
Hewlett Packard Enterprise (HPE) |
| Model |
MSA 2062 |
| Part Number |
R0Q80BR |
| Interface |
16Gb Fibre Channel |
| Form Factor |
Small Form Factor (SFF) |
| Condition |
Refurbished (Reman) |
| Product Type |
Storage Array |
Frequently Asked Questions
What is the HPE MSA 2062 16Gb FC storage array used for?
The HPE MSA 2062 is designed for enterprise data centers requiring reliable, high-performance storage with Fibre Channel connectivity. It supports virtualized environments, database applications, and mixed workloads with scalable capacity.
Is refurbished HPE storage reliable?
Yes. HPE certified refurbished storage undergoes rigorous testing and includes full manufacturer warranty. Reman units deliver the same performance and reliability as new systems at significantly lower cost.
What are the benefits of 16Gb Fibre Channel?
16Gb FC provides high-speed connectivity for demanding applications, reducing latency and improving throughput compared to lower-speed interfaces. Ideal for performance-critical environments.
How does SFF design benefit data centers?
Small Form Factor design maximizes storage density while minimizing physical footprint, reducing rack space requirements and cooling costs in data center environments.