跳至产品信息
Dell SFP-10G-SR 03G84K AFBR-709SMZ-D1 10G Multi-Mode SFP+ Transceiver
¥182.00
促销价
¥182.00
常规价格
Basic Parameter Table
| Item | Details |
|---|---|
| Brand | Dell OEM Avago |
| Model | SFP-10G-SR |
| Dell Part Number | 03G84K |
| Avago OEM PN | AFBR-709SMZ-D1 |
| Bandwidth | 10Gbps 10 Gigabit |
| Standard | 10GBASE-SR Multi-Mode Fiber |
| Wavelength | 850nm Short Wavelength |
| Fiber Interface | LC Duplex Connector |
| Max Transmission Distance | 300m over OM3 Multi-Mode Fiber |
| Form Factor | Hot-Pluggable SFP+ Package |
| Condition | Factory New Sealed |
| Stock Availability | In Stock |
| Lead Time | Shipment within 2 business days |
| Warranty | 3-Year Global Warranty |
| Unit Price | $28.00 |
Core Product Features
- Dell OEM Avago 10G multi-mode optical SFP+ transceiver, fully certified compatible with all Dell PowerEdge rack servers and Dell enterprise SFP+ network switches.
- 850nm short-wave multi-mode design following the 10GBASE-SR industry standard, supporting maximum 300-meter transmission over OM3 multi-mode fiber cable.
- Hot-swappable SFP+ form factor with built-in DDM (Digital Diagnostic Monitoring), supporting real-time monitoring of optical transmit/receive power, operating temperature and supply voltage.
- Low-power industrial-grade hardware with wide temperature range, capable of stable 24/7 continuous operation inside data center rack cabinets.
- Fully compliant with IEEE 802.3ae standard, widely deployed for storage area networks, virtualization host uplinks and intra-rack server interconnections.
- Cost-effective multi-mode short-range solution for dense intra-cabinet and same-row rack 10G high-speed fiber connections.
Application Scenarios
- High-speed interconnection between servers inside data center racks, 10G uplink for virtualization compute hosts, short-distance fiber transmission for NAS & iSCSI storage networks.
- Networking for enterprise dense cabinet clusters and same-floor server interconnections within 300 meters.
- Not suitable for long-distance inter-building transmission and single-mode fiber deployment scenarios.