C-Light Network

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C-LIGHT with 15 years of experience,main products include 800G, 2x400G, 400G, 4x100G, 200G, 4X32G, OTU4, 100G, 50G, 40G, 4x10G, 32G, 25G, 16G, 10G, 8G, 6G, 4G, 2.5G, 1.25G, 100M various high-speed optical modules, AOC, ACC, DAC,AEC,DWDM/CWDM

🚀 C-LIGHT 16G FC 40km SFP+ Optical Transceiver – Enabling Long-Distance, High-Reliability SAN Connectivityhttps://c-ligh...
29/06/2026

🚀 C-LIGHT 16G FC 40km SFP+ Optical Transceiver – Enabling Long-Distance, High-Reliability SAN Connectivity

https://c-light.com/news/details/16G_FC_SFP_40km_Optical_Transceiver_for_SAN_Storage_Networks.html



As enterprise data continues to grow exponentially, storage networks require higher bandwidth, lower latency, and extended transmission reach. The C-LIGHT 16G FC 40km Optical Transceiver is purpose-built for mission-critical Fibre Channel SAN and Data Center Interconnect (DCI) environments, delivering stable and secure high-speed optical performance over long distances.

Designed for enterprise-grade applications in finance, healthcare, cloud infrastructure, telecom, and large-scale data centers, this SFP+ module ensures reliable 24/7 operation even under demanding workloads.

🔧 Key Highlights

⚡ Supports 16G Fibre Channel (14.025 Gbps data rate)

📡 Transmission distance up to 40km over Single-Mode Fiber (SMF)

📦 Standard SFP+ hot-pluggable form factor

🌈 Wavelength: 1310nm, Dual LC connector

📊 Built-in DDM/DOM real-time diagnostics

🔋 Low power consumption design for efficient deployment

🛡️ Enterprise-Grade Performance Advantages

Low Bit Error Rate (BER) for stable data transmission

Strong EMI resistance and anti-interference capability

High-sensitivity receiver design for improved link reliability

Carrier-class performance for continuous 24/7 operation

SLA-ready stability for mission-critical storage networks

🏢 Ideal Use Cases

Enterprise Storage Area Networks (SAN)

Data Center Interconnect (DCI)

Financial trading systems

Healthcare data infrastructure

Cloud and telecom backbone networks

The C-LIGHT 16G FC 40km SFP+ Optical Transceiver delivers the perfect balance of performance, reliability, and long-distance capability—helping enterprises build more resilient and scalable storage networks.

If you have any question please contact us by Email: [email protected]

With the rapid development of FTTH (Fiber to the Home), enterprise private networks, smart campuses, industrial internet...
08/06/2026

With the rapid development of FTTH (Fiber to the Home), enterprise private networks, smart campuses, industrial internet, and high-definition video surveillance, Passive Optical Network (PON) technology has become the mainstream solution for modern fiber access networks.
At the same time, network infrastructure is evolving toward greater miniaturization, integration, and intelligence. Traditional standalone ONU devices are facing challenges related to installation space, deployment complexity, and maintenance efficiency.
An ONU STICK is a GPON ONU module packaged in a standard SFP form factor. By integrating the functionality of a traditional ONU into a compact SFP module, it can be directly inserted into PCs, switches, routers, wireless access points, IP cameras, and industrial devices, enabling direct connectivity to GPON networks.
Compared with conventional ONU solutions, ONU STICK offers significant advantages, including compact size, plug-and-play deployment, flexible installation, broad compatibility, and lower overall costs. As a result, it is becoming an increasingly popular choice among telecom operators, system integrators, and enterprise network builders.
What Is an ONU STICK?
An ONU STICK is a GPON optical network unit integrated into a standard SFP module.
By using an ONU STICK, devices equipped with SFP ports can connect directly to a GPON network without requiring an external standalone ONU. This enables rapid integration of fiber access capabilities into a wide range of networking equipment.
The C-LIGHT GPON ONU SFP STICK (CLGPONONUSTK) provides the following key features:
GPON access
Automatic ONU registration
SN authentication
LOID authentication
OMCI management
VLAN service support
QoS functionality
Remote configuration and maintenance
In essence, an ONU STICK modularizes traditional ONU functionality, making fiber access more flexible, efficient, and cost-effective.
https://c-light.com/news/details/ONU_STICK_Applications_and_Typical_GPON_Network_Architecture.html

QSFP28 100G LR4 LAN WDM 10km LCQSFP28 100G LR4 LAN WDM 10km LC optical transceiver is a state-of-the-art solution design...
05/01/2026

QSFP28 100G LR4 LAN WDM 10km LC
QSFP28 100G LR4 LAN WDM 10km LC optical transceiver is a state-of-the-art solution designed to meet the escalating demands of high-speed data transmission in modern networks. Ideal for 100G Ethernet, data centers, and telecommunications, this transceiver combines advanced technology with robust performance to deliver seamless connectivity over long distances. With its compatibility with single-mode fiber and support for up to 10km transmission, it is a versatile choice for contemporary network infrastructure.
https://www.c-light.com/news/details/QSFP28_100G_LR4_1310nm_10Km_LC.html
If you are interested in the QSFP28 100G LR4 LAN WDM 10km LC transceiver,please contact us [email protected]

Ethernet applications.-40℃~85℃ 丨 1.25G 1310nm/1550nm BiDI 丨 TX :-2~-6dBm丨RX:< -23dBm 丨< 1.5w丨Factory warranty●Up to 1.25...
04/12/2025

Ethernet applications.
-40℃~85℃ 丨 1.25G 1310nm/1550nm BiDI 丨 TX :-2~-6dBm丨RX:< -23dBm 丨< 1.5w丨Factory warranty
●Up to 1.25Gbps data links
●10Km with 9/125µm SMF
●1310nm FP /1550nm DFB laser/ PIN receiver
●Simplex LC Connector
●Hot-pluggable SFP footprint
●Single 3. 3V power supply
●Operating temperature: -40℃~85℃
●RoHS
https://www.c-light.com/news/details/1.25G_BiDi_LC_10km_SFP_Transceiver.html
If you are interested in the 1.25G BiDi 1310nm/1550nm LC 10km SFP Transceiver,please contact us [email protected]

Comprehensive Analysis of Application Scenarios for 400G DWDM Technologyhttps://c-light.com/news/details/Comprehensive_A...
05/11/2025

Comprehensive Analysis of Application Scenarios for 400G DWDM Technology
https://c-light.com/news/details/Comprehensive_Analysis_of_Application_Scenarios_for_400G_DWDM_Technology.html
Data Center Interconnection (DCI)

Data center interconnection is one of the most mature and widely adopted application scenarios for 400G DWDM technology. With the advancement of initiatives like China's "East Data West Computing" project, the demand for data flow between data centers has surged. 400G DWDM efficiently constructs the "information highways" connecting these centers.

●Technical Implementation: In this context, 400ZR/400ZR+ pluggable optical modules play a critical role. These modules integrate DWDM functionality directly into the optical modules of data center switches, eliminating the need for traditional transmission equipment. This significantly simplifies network architecture while reducing power consumption and costs.

●Transmission Requirements: Data center interconnections typically span tens to hundreds of kilometers. Modules such as 400G QSFP-DD ZR support transmission distances of 40 km to 120 km, perfectly meeting these requirements.

●Advantages: Compared to stacking multiple 100G systems, single-wave 400G technology significantly enhances fiber capacity, addressing the explosive growth in data traffic between data centers.

Long-Haul Backbone Networks

In long-haul backbone networks connecting provinces and cities, 400G DWDM technology greatly enhances the capacity of national information arteries. However, this scenario also presents the most stringent demands for transmission distance and technology.

●Technical Challenges and Breakthroughs: Signal attenuation and impairment are core challenges in long-haul transmission. Tests by China Telecom demonstrated that a single-wavelength 400G DWDM system based on ~90Gbaud technology can achieve transmission distances of 800–900 km over G.652 fiber and approximately 1,500 km over G.654.E fiber. A joint test by China Telecom Research Institute and烽火通信 achieved 400Gbit/s real-time transmission over 3,820 km of G.654.E fiber, marking a significant breakthrough.

●Fiber Optic Choices: G.654.E ultra-low loss, large effective area fiber is crucial for improving the performance of 400G long-haul transmission.

●Cost Considerations: While the cost per bit in backbone/ultra-long-haul scenarios remains higher than that of 100G systems, the deployment of 400G DWDM is expected to become a clear trend as technology matures.

Metro and Regional Networks

Metro and regional networks, which cover urban and surrounding areas, serve as bridges connecting users to core networks.

Applicable Scenarios: In these contexts, where transmission distances are relatively short (typically within a few hundred kilometers), 400G technology has largely matured and is ready for commercial deployment.

●Economic Drivers: In scenarios such as data center interconnection and metro/regional core networks, the cost per bit of 400G transmission equipment is beginning to approach or even fall below that of 100G systems, making upgrades to 400G not only beneficial for bandwidth but also economically advantageous.

Submarine Cable Systems

Submarine cables form the "central nervous system" of the global internet, and 400G DWDM technology plays a key role in enhancing transoceanic communication capacity.

●High Capacity and Long Distance: For example, the MIST submarine cable system, designed to connect Singapore, India, and Myanmar, utilizes 400Gbps DWDM technology with a total design capacity of 240 Tbps over a length of 11,000 km. This demonstrates the potential of 400G technology in ultra-long-distance submarine cable applications.

●Global Deployment: Companies like Zayo have successfully conducted 400G trials on their submarine fiber networks, further validating the technology's applicability.

Future Outlook

The application prospects for 400G DWDM are broad and closely linked to several cutting-edge technology trends:

●Synergy with Computing Power Networks: As initiatives like "East Data West Computing" advance, 400G DWDM will be a key technology for enabling cross-regional computing power scheduling.

●Evolution to Higher Speeds: Optical network technology will not stop at 400G. The next phases, such as 800G for medium-short distances and 1.6T for short-distance scenarios, are already on the horizon.

●All-Optical Network Evolution: Combining 400G DWDM with ROADM (Reconfigurable Optical Add-Drop Multiplexer) technology will create more flexible, intelligent, and efficient underlying optical networks.

In summary, 400G DWDM technology is steadily expanding from its initial application in data center interconnections to metro, long-haul, and even submarine cable scenarios. While challenges such as cost, technological maturity, and fiber infrastructure remain, 400G DWDM, with its irreplaceable high bandwidth and continuously improving cost-effectiveness, has become an indispensable core technology for building next-generation information infrastructure.

400G DWDM technology is steadily expanding from its initial application in data center interconnections to metro, long-haul, and even submarine cable scenarios.

Address

4F East, Building 1, Liuxiandong Industrial Park, Nanshan Dist
Shenzhen
518000

Opening Hours

Monday 09:00 - 18:00
Tuesday 09:00 - 18:00
Wednesday 09:00 - 18:00
Thursday 09:00 - 18:00
Friday 09:00 - 18:00

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