Cisco GLC-LH-SMD Gigabit SFP transceiver module, MMF/SMF Multimode & SingleMode

by Cisco

KES 8,000 Excl. Tax

The Cisco GLC-LH-SMD Gigabit SFP transceiver module is designed to support both multimode and single-mode fibers. It is compatible with the IEEE 802.3z 1000BASE-LX standard and operates at a wavelength of 1300 nm.

  • Compatibility: It is compatible with the IEEE 802.3z 1000BASE-LX standard, ensuring interoperability with various networking devices and equipment.
  • Fiber Support: The module supports both multimode and single-mode fibers, making it versatile for different network environments.
  • Reach: When used with single-mode fiber, the module can achieve link spans of up to 10 kilometers, enabling long-distance connections. On multimode fibers, it supports a maximum reach of 550 meters.
  • Mode Conditioning: When connected to legacy multimode fiber, the transmitter should be coupled through a mode conditioning patch cable to ensure optimal performance.
  • Wavelength: The module operates at a 1300-nanometer (nm) wavelength, which is commonly used for fiber optic transmission in the LX/LH range.
  • Temperature Range: It features an extended operating temperature range, allowing it to operate reliably in varying environmental conditions.
SKU1243

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Description

Cisco GLC-LH-SMD Gigabit SFP transceiver module, MMF/SMF Multimode & SingleMode

The Cisco GLC-LH-SMD Gigabit SFP transceiver module is designed to support both multimode and single-mode fibers. It is compatible with the IEEE 802.3z 1000BASE-LX standard and operates at a wavelength of 1300 nm.

When used with single-mode fiber, the GLC-LH-SMD can achieve link spans of up to 10 kilometers. It can also operate on multimode fibers with a maximum reach of 550 meters. However, when connecting to legacy multimode fiber, a mode conditioning patch cable is required to ensure proper coupling of the transmitter.

The GLC-LH-SMD module features an extended operating temperature range, allowing it to function in various environmental conditions. It also supports Digital Optical Monitoring (DOM), which provides real-time monitoring of key parameters such as optical power, temperature, and transceiver voltage.

For connectivity, the GLC-LH-SMD module utilizes dual LC/PC connectors, which are common in fiber optic networks. These connectors provide a reliable and efficient connection between the transceiver module and the network equipment.

Overall, the Cisco GLC-LH-SMD Gigabit SFP transceiver module is a versatile and high-performance solution for both multimode and single-mode fiber networks, offering extended reach, temperature tolerance, and monitoring capabilities.

Key features:

Compatibility: It is compatible with the IEEE 802.3z 1000BASE-LX standard, ensuring interoperability with various networking devices and equipment.

  1. Fiber Support: The module supports both multimode and single-mode fibers, making it versatile for different network environments.

  2. Reach: When used with single-mode fiber, the module can achieve link spans of up to 10 kilometers, enabling long-distance connections. On multimode fibers, it supports a maximum reach of 550 meters.

  3. Mode Conditioning: When connected to legacy multimode fiber, the transmitter should be coupled through a mode conditioning patch cable to ensure optimal performance.

  4. Wavelength: The module operates at a 1300-nanometer (nm) wavelength, which is commonly used for fiber optic transmission in the LX/LH range.

  5. Temperature Range: It features an extended operating temperature range, allowing it to operate reliably in varying environmental conditions.

  6. Digital Optical Monitoring (DOM) Support: The GLC-LH-SMD module supports DOM, providing real-time monitoring of key parameters such as optical power, temperature, and transceiver voltage. This enables enhanced network management and troubleshooting capabilities.

  7. Connector: The module utilizes dual LC/PC connectors, which are standard connectors used in fiber optic networks. These connectors provide a reliable and efficient connection between the module and the networking equipment.