Overview

Overview

The GBIC is a hot-swappable input/output device that plugs into a Gigabit Ethernet port, linking the module port with the fiber-optic network. There are two physical GBIC models available; one model has a locking handle that secures the GBIC in the module; the other model uses two clips, one on each side of the GBIC, that secure the GBIC in the module. GBICs are also available in three optical models. The three optical models differ in the distance light can be sent through a fiber-optic network. The two physical models are shown in Figure 1. The three optical models are listed in Table 1.

Figure 1 Physical GBIC Models

 

Clip

Receiver

Handle

Transmitter

Receiver

 

Transmitter

Table 1 is a list of the available GBIC optical models.

Table 1 GBIC Optical Models

GBIC

Product Number

Short wavelength

WS-G5484

(1000BASE-SX)

 

Long wavelength/long haul

WS-G5486

(1000BASE-LX/LH)

 

Extended distance

WS-G5487

(1000BASE-ZX)

 

 

 

51178

WS-G5484

The WS-G5484 GBIC (1000BASE-SX) operates on ordinary multimode fiber (MMF) link spans of up to 1804 feet (550 meters) in length (See Table 5 on page 4).

WS-G5486

The WS-G5486 GBIC (1000BASE-LX/LH) interfaces fully comply with the IEEE 802.3z 1000BASE-LX standard. However, their higher optical quality allows them to reach 10 km over single-mode fiber (SMF) versus the 5 km specified in 802.3z.

 

Gigabit Interface Converter Installation Note

2

78-5399-03 Rev. A0

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Cisco Systems WS-G5486, WS-G5487 technical specifications Overview, WS-G5484

WS-G5484, WS-G5487, WS-G5486 specifications

Cisco Systems is a renowned leader in networking technology, offering a wide array of products designed to meet the growing demands of modern network infrastructure. Among its extensive portfolio, the WS-G5484, WS-G5486, and WS-G5487 series of line cards stand out for their robust features and exceptional performance, catering specifically to the needs of service providers and large enterprise networks.

The Cisco WS-G5484 is a 48-port 10/100 Fast Ethernet switching module. Its primary purpose is to provide high-density Ethernet connectivity in a modular switch architecture. This line card supports a variety of features such as Cisco's VLAN segmentation, enabling network administrators to efficiently segregate traffic and enhance security. It is designed for ease of use, offering plug-and-play capabilities and seamless integration into existing network infrastructures.

Meanwhile, the WS-G5486 is a more advanced line card that incorporates both Ethernet and uplink services. This model features 48 ports of 10/100/1000 Mbps Ethernet, allowing for a combination of Fast and Gigabit Ethernet connections in a single module. One of the key characteristics of the WS-G5486 is its support for Power over Ethernet (PoE), which enables it to supply power to connected devices like IP phones, wireless access points, and security cameras, thus simplifying deployment and reducing the need for additional power sources.

In addition to the above models, the WS-G5487 further enhances the capability of Cisco's switching solutions. It is designed as a 10 Gigabit Ethernet line card that features four 10G SFP+ ports. This card is particularly well-suited for high-speed data centers and backbone networks, offering exceptional bandwidth to accommodate demanding applications. The WS-G5487 supports advanced features such as Virtual Routing and Forwarding (VRF), which allows for efficient traffic management and better resource utilization.

All three line cards operate on Cisco's IOS software, which provides robust features like Layer 2 and Layer 3 switching, advanced security protocols, and comprehensive network management tools. This software backbone ensures that these devices are not only reliable but also capable of scalable solutions as network demands evolve.

Together, the WS-G5484, WS-G5486, and WS-G5487 represent a powerful trio of line cards that provide network professionals with scalable, flexible, and high-performance connectivity solutions, meeting the diverse needs of evolving network environments.