%202km%20MMF%20Transce.webp?width=1920&quality=75)
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
Enterasys MGBIC-LC04 100Mb/s SFP (mini-GBIC) 2km MMF Transceiver
- Data Rate: 100Mb/s
- Form Factor: SFP (mini-GBIC)
- Fiber Type: Multi-Mode Fiber (MMF)
- Maximum Distance: 2km
- Connector Type: Duplex LC
- Manufacturer: Enterasys
Click on Inquire to get latest price
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
The Enterasys MGBIC-LC04 is a 100Mb/s SFP (mini-GBIC) transceiver designed for multi-mode fiber applications. It supports distances up to 2km and uses a duplex LC connector for reliable short-range connectivity.
Technical Information
| Product Type | SFP Transceiver |
| Data Rate | 100Mb/s |
| Fiber Type | Multi-Mode Fiber (MMF) |
Additional Specifications
| Max Distance | 2km |
| Connector | Duplex LC |
| Manufacturer | Enterasys |
Product Description
The Enterasys MGBIC-LC04 is a compact and versatile SFP (Small Form-factor Pluggable) transceiver, also known as a mini-GBIC, designed for network connectivity over multi-mode fiber (MMF) optic cables. This module operates at a data rate of 100 Megabits per second, making it suitable for applications requiring moderate bandwidth over shorter distances. It is engineered to support network links up to a maximum distance of 2 kilometers. This makes it an excellent choice for within-building or campus network deployments, connecting switches, routers, or servers in close proximity. The use of multi-mode fiber allows for cost-effective cabling solutions for these shorter runs. The MGBIC-LC04 utilizes a duplex LC connector, which is a common and reliable interface for fiber optic connections, ensuring a secure physical link. As an SFP module, it is hot-swappable, allowing for easy installation and replacement without the need to power down the host network device, thereby minimizing downtime.

