17,000+ TELECOM EQUIPMENT AVAILABLE THROUGH OUR NETWORK

Leading Suppliers of telecom equipment 2G/3G/4G/LTE/5G

REVO offers a wide selection of Finisar network parts and equipment — new, used and refurbished.

Finisar FTLC1183SDNL-EI

Part Number
FTLC1183SDNL-EI
Manufacturer
Finisar
In Stock

The Finisar FTLC1183SDNL-EI is a 100G CFP optical transceiver, designed for 10km reach over single-mode fiber using 1310nm LR4 optics.

Contact us for price & availability

Specifications

Weight 0.3000 kg  /  0.66 lbs
Volumetric Weight (L×W×H÷5000) 0.032 kg  /  0.07 lbs couriers bill the greater of actual vs volumetric
Dimensions (L×W×H) 14.4800 × 8.2000 × 1.3600 cm  /  5.7 × 3.2 × 0.5 in
AI Research Sourced from publicly available data — verify before purchase.
Part Type Optical Transceiver
Data Rate 10 Gbps
Protocol 10GBase-LR
Form Factor SFP+
Wavelength Nm 1310
Reach Km 10.0
Connector LC duplex
Power W 1.5
Voltage V 3.3V
Temp Min C 0.0
Temp Max C 70.0
Dim Notes Standard SFP+ dimensions.
Spec Notes Specifications based on typical SFP+ transceiver characteristics.
Dim Confidence form_factor_standard

About This Part

The Finisar FTLC1183SDNL-EI is a high-performance 100 Gigabit Ethernet (100GbE) CFP optical transceiver module, engineered for robust data center interconnect and telecommunications applications. This module operates as a C form-factor pluggable (CFP) device, adhering to industry standards for hot-pluggable interfaces. Its primary function is to facilitate high-speed optical data transmission over single-mode fiber (SMF) with a nominal reach of up to 10 kilometers. Technically, the Part Number FTLC1183SDNL-EI supports a 100G data rate, achieved by multiplexing four independent 25Gbps optical lanes, each transmitting at a distinct wavelength within the 1310nm range. This design is compliant with specifications such as 100GBASE-LR4, ensuring interoperability and reliable performance in demanding network environments. The Finisar module provides a critical component for aggregating and transporting massive volumes of data across medium-reach optical links. This Finisar 100G CFP transceiver is typically deployed in core routing platforms, high-capacity switches, and optical transport systems within large-scale data centers, internet service provider (ISP) networks, and enterprise campus backbones. It is crucial for connecting high-bandwidth network equipment, such as routers and switches from leading vendors, enabling the aggregation of multiple 10GbE or 40GbE links into a single 100GbE interface. The FTLC1183SDNL-EI solves the critical challenge of increasing network capacity and reducing operational complexity by providing a dense, power-efficient solution for 100G connectivity. It serves as an essential upgrade path for networks transitioning from lower-speed interfaces, allowing operators to meet the escalating demand for bandwidth driven by cloud computing, video streaming, and other data-intensive applications. Its robust design ensures reliable operation in demanding environments, supporting the continuous flow of mission-critical data. At Revo Distribution Limited, we understand the imperative for B2B clients to secure high-quality networking components like the Finisar FTLC1183SDNL-EI at competitive price points. We specialize in providing used and refurbished units of this essential 100G CFP transceiver, offering a sustainable and economically advantageous alternative to new equipment. Our meticulously tested and certified inventory enables telecom operators, data centre providers, and large enterprises to expand or upgrade their network infrastructure efficiently, without compromising on performance or reliability. By sourcing through Revo, clients can significantly reduce capital expenditure while still deploying robust, industry-standard solutions. This approach not only supports immediate operational needs but also extends the lifecycle of existing network infrastructure, contributing to a more sustainable and cost-effective IT strategy. Revo is committed to delivering value and ensuring the availability of critical components for evolving network demands.