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10G SFP+

10G SFP+ SR 850nm 300M LC Optical Transceiver

10G SFP+ SR 850nm 300M LC Optical Transceiver

  • Product Model:

    ESP85X-03D
  • Data Rate:

    10G
  • Wavelength:

    850nm
  • Distance:

    300M
  • Connector:

    LC
  • Fiber Type:

    MM
  • DDM:

    YES
  • Product Origin:

    China
  • Shipping Port:

    ShenZhen

850nm wavelength over laser-optimized multimode fiber (OM3/OM4), it supports data rates up to 10.3125Gbps.

  • Product Detail

Product Overview

The 10G SFP+ SR 850nm 300M LC Optical Transceiver is a high-performance, cost-effective solution for 10 Gigabit Ethernet short-reach applications. This hot-pluggable transceiver supports data rates up to 10.3125Gbps with a transmission distance of up to 300 meters on OM3 multi-mode fiber. Operating at 850nm wavelength, it features an LC duplex connector interface and complies with IEEE 802.3ae 10GBASE-SR standard. The compact SFP+ form factor enables high port density while maintaining low power consumption. Designed for data center and enterprise network deployments, this transceiver offers excellent performance with full digital diagnostics monitoring (DDM) capabilities for real-time performance tracking. Its superior quality and reliability make it an ideal choice for 10G Ethernet, Fibre Channel, and other high-speed networking applications. Compatible with major switch brands, this transceiver ensures seamless integration into existing network infrastructures.


Key Features

  • Optical interface compliant to IEEE 802.3ae
  • Electrical interface compliant to SFF-8431
  • Hot Pluggable
  • 850nm VCSEL transmitter, PIN photo-detector
  • Maximum link length of 300m on 2000MHz/km MMF
  • Operating case temperature: 0 to 70 °C
  • Low power consumption
  • Maximum link length of 300m on 2000MHz/km MMF
  • All-metal housing for superior EMI performance
  • Advanced firmware allow customer system encryption information to be stored in transceiver
  • Cost effective SFP+ solution, enables higher port densities and greater bandwidth
  • RoHS6 compliant (lead free)







SFP+ LR 1310nm 20KM
SFP+ LR 1550nm 40KM
SFP+ ER 1550nm 80KM
SFP+ ZR 1550nm 100KM SFP+ ZR 1550nm 120KM
10G
10G
10G
10G
10G
1310nm
1550nm
1550nm
1550nm
1550nm
20KM
40KM
80KM
100KM 120KM
LC
LC
LC
LC LC
SM
SM
SM
SM SM
DDM
DDM
DDM
DDM
DDM
COM: 0°C ~70°C
EXT: -20°C ~85°C
IND: -40°C ~85°C
COM: 0°C ~70°C
EXT: -20°C ~85°C
IND: -40°C ~85°C
CCOM: 0°C ~70°C
EXT: -20°C ~85°C
IND: -40°C ~85°C
COM: 0°C ~70°C
EXT: -20°C ~85°C
IND: -40°C ~85°C
COM: 0°C ~70°C
EXT: -20°C ~85°C
IND: -40°C ~85°C





FAQ:

Q1: Can 10G SFP+ LR modules work with single-mode fibers?‌
A1: Yes, standard 10G-LR modules require OS2 single-mode fiber (1310nm wavelength) with 10km reach.


Q2: Can I use 10G BiDi SFP+ for duplex fiber conversion?‌
A2: Yes, BiDi modules (1270nm/1330nm) enable single-fiber bidirectional transmission on existing duplex fiber plants.


Q3: Why do some 10G SFP+ modules require external clock circuits?‌
A3: High-speed modules (e.g., 10G-LR) use ‌CDR (Clock Data Recovery)‌ chips to reduce jitter, requiring precise clock synchronization circuits on host PCB designs.


Q4: Can I plug a 10G SFP+ module into an SFP port?‌
A4: Physically compatible, but ‌electrically incompatible‌ – SFP ports lack 10G SerDes lanes, causing link failure unless switch supports rate adaptation.


Q5: What is difference between SFP and SFP+?
A5: The main difference between SFP and SFP+ is that the SFP+ is used in Gigabit Ethernet applications while SFP is for 100Bse or 1000Base applications. SFP doesn't support 10G transmission data rate, which means they can't be used in the same network.


Q6: What is SFP+ port used for?
A6: SFP + modules are commonly used for Gigabit Ethernet and 10 Gigabit Ethernet connections and can adapt to various application scenarios, including high-speed network connections and fiber optic links.


Q7: How to choose between SR, LR and ER optical modules?‌

A7: SR (Short Reach) for ≤300m multimode, LR (Long Reach) for 10km single-mode, ER (Extended Reach) for 40km+ single-mode applications.


Q8: What are the advantages of 10G SFP+ BIDI?
A8: Key Benefits:‌
Single-Fiber Solution‌ - Uses WDM to transmit/receive on one fiber (e.g., 1270nm/1330nm pairing)
Cost Savings‌ - 50% less fiber usage, 30-40% lower installation costs
Space Efficiency‌ - Doubles port density without new cabling
Applications: areas with limited fiber resources, 5G fronthaul networks, metropolitan area network expansion, and high-density data center interconnection.


Q9: Do 10G modules support DDM/DOM monitoring?‌
A9: A: Yes, compliant modules follow ‌SFF-8472‌ for real-time monitoring of temperature, TX power, and RX sensitivity.


Q10: What is the maximum transmission distance of ETU-Link optical modules?‌
A10: Our modules support from 100m (SR multimode) up to 120km (ZR single-mode), with specific models optimized for 300m, 10km, 40km, 80km and 120km applications.



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10G SFP+ Electrical Passive Loopback
10G SFP+ Electrical Passive Loopback

Product Description The ‌10G SFP+ Electrical Passive Loopback‌ is a cost-effective testing solution designed for network equipment verification and diagnostic applications. This compact, plug-and-play module creates an internal loopback path for 10 Gigabit Ethernet (10GbE) ports, enabling comprehensive testing of SFP+ interfaces without requiring external fiber connections. This reliable loopback module provides a simple, efficient way to verify 10G SFP+ port functionality and perform bit error rate testing (BERT) in various networking environments. Its durable construction ensures repeated use while maintaining signal integrity. PN: ESX-LB Features  SFP+ MSA Compliant  Hot-pluggable MSA foot print  Custom Memory Maps Capability  Case Temperature range from -20° to 85°C  Compliant with SONET, SDH, GBE, FC  Power Consumption Different Option  Internal Attenuation Different Option Applications  Board and System Level Testing  Test and Measurement  Switch and Router Chamber Testing ---HASS and HALT  100Mb/s to 10.5Gbps Description 10G SFP+ Loopback modules provide an effective way of testing the SFP+ port in the host system by looping back the electrical signal (optics are excluded). The units provide basic serial ID information that attempts to mimic a shortwave Gigabit Ethernet, 1.25G, 2. 125G FC SFP transceiver, 4.25G FC, 8.5G FC and 10Gb/s Ethernet/FC for factory, environment, installation, simulation tests. FAQ: Q1: Can 10G SFP+ LR modules work with single-mode fibers?‌ A1: Yes, standard 10G-LR modules require OS2 single-mode fiber (1310nm wavelength) with 10km reach. Q2: Can I use 10G BiDi SFP+ for duplex fiber conversion?‌ A2: Yes, BiDi modules (1270nm/1330nm) enable single-fiber bidirectional transmission on existing duplex fiber plants. Q3: Why do some 10G SFP+ modules require external clock circuits?‌ A3: High-speed modules (e.g., 10G-LR) use ‌CDR (Clock Data Recovery)‌ chips to reduce jitter, requiring precise clock synchronization circuits on host PCB designs. Q4: Can I plug a 10G SFP+ module into an SFP port?‌ A4: Physically compatible, but ‌electrically incompatible‌ – SFP ports lack 10G SerDes lanes, causing link failure unless switch supports rate adaptation. Q5: What is difference between SFP and SFP+? A5: The main difference between SFP and SFP+ is that the SFP+ is used in Gigabit Ethernet applications while SFP is for 100Bse or 1000Base applications. SFP doesn't support 10G transmission data rate, which means they can't be used in the same network. Q6: What is SFP+ port used for? A6: SFP + modules are commonly used for Gigabit Ethernet and 10 Gigabit Ethernet connections and can adapt to various application scenarios, including high-speed network connections and fiber optic links. Q7: How to choose between SR, LR and ER optical modules?‌ A7: SR (Short Reach) for ≤300m multimode, LR (Long Reach) for 10km single-mode, ER (Extended Reach) for 40km+ single-mode applications. Q8: What are the advantages of 10G SFP+ BIDI? A8: Key Benefits:‌ Single-Fiber Solution‌ - Uses WDM to transmit/receive on one fiber (e.g., 1270nm/1330nm pairing) Cost Savings‌ - 50% less fiber usage, 30-40% lower installation costs Space Efficiency‌ - Doubles port density without new cabling Applications: areas with limited fiber resources, 5G fronthaul networks, metropolitan area network expansion, and high-density data center interconnection. Q9: Do 10G modules support DDM/DOM monitoring?‌ A9: A: Yes, compliant modules follow ‌SFF-8472‌ for real-time monitoring of temperature, TX power, and RX sensitivity. Q10: What is the maximum transmission distance of ETU-Link optical modules?‌ A10: Our modules support from 100m (SR multimode) up to 120km (ZR single-mode), with specific models optimized for 300m, 10km, 40km, 80km and 120km applications.

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