Description
Cisco SFP-GE-S is a hot-swappable Small Form-Factor Pluggable (SFP) transceiver module designed for Gigabit Ethernet and Fibre Channel applications.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Cisco
|
| Category |
|
| Part Number |
SFP-GE-S |
| Subcatecory |
|
|
Cable Type
|
Multimode Fiber (MMF) |
| Connector Type |
LC |
| Speed |
Gigabit |
| Wavelength |
850 nm |
| Rate Category |
1000Base-SX |
| Reach |
550m |
| Max Operating Temperature |
158°F |
| Max Storage Temperature |
185°F |
| Transmit Power |
-9.5 (Min) ~ -3 (Max) (dBm) |
| Transceiver Type |
SFP |
| Data Transfer Rate |
1 Gbps |
| Min Operating Temperature |
32°F |
| Min Storage Temperature |
Negative 40°F |
| Receive Power |
-17 ~ 0 (dBm) |
| Depth |
2.22 in |
| Width |
0.52 in |
| Height |
0.33 in |
| Weight |
3.00 lbs |
Information About SFP-GE-S
The SFP-GE-S is a hot-swappable Gigabit Ethernet optical transceiver module designed for short-range data transmission over multi-mode fiber (MMF). It provides high-performance, flexible, and cost-effective connectivity for Cisco switches, routers, and other network equipment in enterprise, data center, and campus environments.
Key Features:
- Type: SFP (Small Form-Factor Pluggable) Gigabit Ethernet Optical Transceiver
- Supported Devices: Compatible with Cisco switches, routers, and network interface cards supporting SFP modules
- Functionality: Supports data rates up to 1.25 Gbps for Gigabit Ethernet and Fibre Channel applications over MMF with LC duplex connectors
- Distance: Up to 550 meters over OM2 MMF (220 meters over OM1 MMF)
- Wavelength: Operates at 850 nm for short-range optical transmission
- Hot-Swappable: Yes, allows installation and removal without shutting down the host device
- Compliance: IEEE 802.3z 1000BASE-SX standard, Class 1 laser safety standard (IEC 60825-1)
- Construction: Compact, durable design suitable for dense networking environments; some models support Digital Optical Monitoring (DOM)
The SFP-GE-S is an ideal solution for IT professionals and network administrators seeking reliable, scalable, and efficient short-range optical connectivity within enterprise and campus networks.