• Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module

Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module

No.SFP-10G-CWxx-40

Features

  • Compliant with SFF-8413 and IEE802.3ae
  • Data rate selectable ≤4.25Gbps or 9.95Gbps to 10.3Gbps bit rates
  • Cooled DFB transmitter and PIN receiver
  • Wavelength selectable to ITU-T standards covering
  • CWDM grid wavelengths
  • link length up to 40km
  • Low Power Dissipation 1.2W Maximum
  • -5ºC to 70ºC Operating Case Temperature
  • Single 3.3V power supply
  • Diagnostic Performance Monitoring of module temperature, supply
  • Voltages, laser bias current, transmit optical power, receive optical power
  • RoHS compliant and lead free
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~ 1450nm 40km DOM LC SMF Optical Transceiver Module
  • Description

  • Applications

  • Specifications

Description


Miray’s SFP-10G-CWxx-40 is a high-performance SFP+ transceiver designed for extended-range 10-Gigabit Ethernet applications over single-mode fiber (SMF). It supports data rates of up to 10Gbps and achieves transmission distances of up to 40 kilometers, making it ideal for use in metropolitan area networks (MANs), wide area networks (WANs), and enterprise network backbones. The module integrates a high-quality  DFB  laser  and  PIN  photodiode  in  a  compact  optical  sub-assembly,  ensuring  reliable  and  efficient performance. Compliant with the SFP+  Multi-Source Agreement (MSA) and SFF-8472 standards, it supports advanced digital diagnostics monitoring (DDM) for real-time access to critical operating parameters.

The SFP-10G-CWxx-40 features an enhanced digital diagnostic interface, providing real-time monitoring of transceiver temperature, laser bias current, transmitted and received optical power, and supply voltage. It also includes a sophisticated system of alarm and warning flags to alert users when operating parameters fall outside predefined ranges. With its hot-pluggable design and low power consumption, the transceiver ensures easy installation and energy efficiency. Whether deployed in telecommunications, data center interconnects, or enterprise networks, the SFP-10G-CWxx-40 delivers a reliable and cost-effective solution for high-speed, long-distance connectivity.

Functional Role and Target Applications of the optical transceiver

The Cisco Compatible 10GBASE-CWDM SFP+ 1270nm~1450nm 40km DOM LC SMF optical transceiver Module is designed to serve enterprise network engineers, telecom operators, and data center architects requiring robust long-distance fiber connectivity. This solution from experienced optical transceiver manufacturers targets deployments that demand high-speed 10 Gigabit Ethernet links over single-mode fiber (SMF) with efficient wavelength multiplexing across the ITU-T CWDM grid. Its compatibility with Cisco hardware platforms further extends utility for procurement teams requiring dependable, interoperable optical equipment sourced from certified optical transceiver supplier channels.

Key Technical Features and Specifications for Performance Assurance

This high-performance optical transceiver supports data rates up to 10.3125Gbps with wavelength flexibility between 1270nm and 1450nm, addressing telecom-grade channels effectively. It integrates cooled DFB laser transmission and PIN photodiode receiving technologies to maintain stable optical signals with a power budget suitable for distances up to 40 km on SMF. The module includes a duplex LC interface and supports digital optical monitoring (DOM), offering real-time status on temperature, voltage, laser current, and optical power metrics. Compliance with SFF-8413 and IEEE 802.3ae standards guarantees seamless plug-and-play functionality vital for network engineers evaluating optical transceivers.

Industry Deployment Scenarios and Operational Benefits

Organizations focused on metropolitan area networks (MANs), campus backbone extensions, and wide-area network (WAN) links benefit from integrating this optical transceiver. Telecom service providers and enterprise IT teams gain enhanced network scalability by utilizing CWDM wavelength multiplexing to optimize fiber assets without extensive infrastructure changes. The module’s compliance with multiple industry standards ensures reliability in Cisco-compatible routing and switching environments while facilitating proactive network maintenance through DOM capabilities. As a result, it substantiates investment decisions reflecting long-term operational efficiency within communication infrastructure projects promoted by optical transceiver manufacturers globally.

Product Advantages

Design and System Integration Benefits of the optical transceiver

This module’s compact SFP+ form factor enables high-density switch and router configurations, aligning with modern data center architecture principles promoted by top optical transceiver manufacturers and verified optical transceiver supplier entities. The cooled DFB laser and PIN receiver are engineered for thermal stability and low power consumption, supporting energy-efficient system design without sacrificing performance. Inclusion of a standardized duplex LC connector facilitates straightforward fiber connectivity, while adherence to SFF-8413 mechanical and electrical specifications ensures modular interoperability across a broad range of network hardware, streamlining inventory and deployment for IT procurement professionals.

Performance Reliability and User-Centric Operational Features

From a network operations perspective, this optical transceiver delivers consistent 10Gbps throughput with a bit error rate of 1E-12, critical for maintaining data integrity in high-demand communication environments. Its integrated digital optical monitoring empowers network administrators with accurate diagnostics, enabling preemptive fault detection and rapid troubleshooting, thereby reducing downtime and operational costs. Additionally, the module’s hot-pluggable design simplifies in-field upgrades and replacements, reinforcing its value proposition to systems integrators and network managers prioritizing scalable and maintainable fiber optic solutions supplied by reliable optical transceiver supplier channels.



Products Hardware

Every fiber optic transceiver is thoroughly tested by the Miray Assurance Program, which is equipped with the world’s most advanced analytical equipment to ensure that our transceivers meet the industry’s international public protocol standards while still functioning flawlessly in your facility.

Eye Pattern Test: A high-speed oscilloscope is used to capture the optical signal output from a transceiver to form an eye diagram. It is used to assess the quality of the transceiver signal and determine the quality of the signal.

High and Low Temperature Test: The transceiver was placed in a high and low temperature control box to evaluate the signal quality of the transceiver and the degree to which the transceiver device was subjected to stress at temperatures ranging from -40°C to +85°C.

Aging Test: The transceiver is subjected to high and low temperature cycling environments (-40°C to +85°C) for more than 72 hours of continuous power-on operation to screen for early failure modules through accelerated aging and improve product reliability.

BER Test: A pseudo-random code pattern is sent using a bit error recorder (BERT), transmitted and received through a transceiver to quantify the accuracy of the transmission of the optical module at a certain bit error rate.

Standard Hardware Tests

Use Scenarios

Metropolitan Area Network Fiber Expansion with optical transceivers

In metropolitan network environments requiring interconnection between distributed offices or data centers, this Cisco Compatible 10GBASE-CWDM SFP+ optical transceiver supports fiber links extending up to 40 km over SMF. Network infrastructure teams leverage its CWDM wavelength flexibility to multiplex multiple channels on a single fiber, optimizing fiber utility while complying with ITU-T grid standards. The optical transceiver’s precise digital optical monitoring aids in maintaining link integrity, ensuring sustained high throughput across Cisco-compatible hardware. Its compatibility and robust design minimize integration challenges, making it a preferred product among optical transceiver manufacturers delivering solutions to telecom and enterprise sectors.

Data Center Backbone Connectivity and Network Efficiency

Data center network architects rely on high-performance optical transceivers to interlink switches and servers efficiently, ensuring low latency and high bandwidth availability. This optical transceiver module, compliant with IEEE 802.3ae and SFF-8413, is deployed to extend 10 Gigabit Ethernet backbone connections within campus or multi-facility environments. The low power consumption and compact form factor reduce thermal loads and maximize port density, critical for scalable data centers managed by experienced optical transceiver supplier firms. Real-time diagnostic capabilities integrated into the module facilitate continuous monitoring and swift maintenance, aligning with reliable practices in network management and uptime assurance.

 

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Eye Diagram Testing

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Bit Error Rate (BER) Test

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Optical Spectrum Test

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High and Low Temperature 

Compatibility Testing 

Hardware Compatibility TestInstall the transceiver on the switch, router, server, and NIC device in real time: 1. Ensure that the transceiver can be installed or uninstalled smoothly. 2. Verify that the transceiver is compatible with different brands of devices and fiber optic patch cords. 3. Verify that the transceiver restores the link connection normally after the device is rebooted.

Software Compatibility TestCheck if the transceiver can be recognised properly by each brand of switch, NIC, server, and that no error logs are popping up from the switch. The transceiver information recognised by the device is consistent with the transceiver label description.

Stability TestTo test the transceiver’s ability to transmit at full speed for 7*24 hours using a multi-protocol network traffic analyser and various brands of switches. To ensure that the transceiver will not have problems such as link interruptions, link flap, and rate degradation in a long time working environment.

Quality Control 

We use advanced quality management solutions. The four-fold quality firewall system (self-inspection-IPQC-OQC-OBA) effectively eliminates the flow of bad products into the market.

Visual inspection100% visual inspection of transceivers by production employees.

Microscopic examinationUsing a 20x and 200x microscope, respectively, examine the electronics on the transceiver.

IPQC: During the production process, semi-finished products of important processes are fully IPQC inspected to ensure that there are no potential abnormalities in the transceiver production process.

OQC: OQC inspects the transceivers after production before they are sent to the warehouse and freezes the entire batch if abnormalities are found to ensure that the abnormal products do not reach the market.

OBA: For the products ordered by customers, OBA inspection is carried out on the products after relevant functional tests and product packaging to ensure that the products are in line with the customer’s requirements.


FAQ

Is the Cisco Compatible 10GBASE-CWDM SFP+ compatible with all Cisco switches and routers?
We ensure that our optical transceiver modules are Cisco compatible and meet SFF-8413 and IEEE 802.3ae standards, but compatibility depends on your specific Cisco device models. Please verify with us to confirm that the transceiver will work seamlessly with your hardware, ensuring dependable network performance.

Can you customize the wavelength or transmission distance of this optical transceiver?
Yes, as an experienced optical transceiver manufacturer, we offer customization options for wavelengths and transmission distances to meet your project requirements. Contact our sales team to discuss specific needs so we can provide tailored solutions that fit your network design and deployment scenarios.

What digital monitoring features are included with this SFP+ transceiver?
Our module supports Digital Optical Monitoring (DOM), providing real-time diagnostics on temperature, supply voltage, laser bias current, and optical power levels. This enables proactive network maintenance and ensures consistent signal quality, which is critical for robust 10G Ethernet links over long distances.

How do you handle shipping and lead times for orders of optical transceivers?
Lead times vary depending on order quantities and customization. As a reliable optical transceiver supplier, we recommend contacting us directly via sales@miraycomm.com or phone to get current delivery estimates and logistics support tailored to your order and location.


 


Applications

  • 10G CWDM Direct Connection


 

Specifications

 Model No. SFP-10G-CWxx-40  Vendor Name Miray
 Form Factor SFP+   Max Data Rate 10.3125Gbps
Wavelength 1270~1450nm  Max Cable Distance 40km
Media SMF  Connector Duplex LC
Transmitter Type DFB  Receiver Type PIN
TX Power -2~5dBm  Receiver Sensitivity <-15dBm
Electrical Modulation 10.3125Gb/s NRZ  Optical Modulation 10.3125Gb/s NRZ
Power Consumption ≤1.0W  CBit Error Ratio(BER) 1.00E-12
Temperature Range 0 to 70℃(32 to 158°F)  Operating Relative Humidity 5%~85%
Protocols
SFP+MSA Compliant,SFF8472,SFF8431,
802.3ae,ITU-T G.652

 Main application
 environments

10 Gigabit Ethernet,10G Fiber Channel,
CWDM Networks

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