Fiber Optics - Transceiver Modules

Image Part Number Description / PDF Quantity Rfq
1837023037

1837023037

Woodhead - Molex

GE LX SFP

9

1837024296

1837024296

Woodhead - Molex

GE EX SFP

72

1837043262

1837043262

Woodhead - Molex

10GBE ER SFP+

0

1061086004

1061086004

Woodhead - Molex

CONN SMI LONG BODY 50PCS/PKG

69

1837042024

1837042024

Woodhead - Molex

10GBE LR SFP+

56

1837021000

1837021000

Woodhead - Molex

1000BASE-T SFP

0

1837022037

1837022037

Woodhead - Molex

GE SX SFP

0

1061082100

1061082100

Woodhead - Molex

CONN TXRX SMI FOT IEEE 1394 T/H

37

TRBUG1CFBC000E2G

TRBUG1CFBC000E2G

Woodhead - Molex

GE SFP BX10-U TX1310/ RX1490

9

TRBUG1CBBC000E2G

TRBUG1CBBC000E2G

Woodhead - Molex

GE SFP BX10-D TX1490/ RX1310

0

TPP3XGDS0C000E2G

TPP3XGDS0C000E2G

Woodhead - Molex

10GBE SR SFP+

33

1061083100

1061083100

Woodhead - Molex

CONN TXRX SMI FOT DGTL S200 T/H

0

1061083200

1061083200

Woodhead - Molex

CONN TXRX SMI FOT DGTL S200

0

1061086000

1061086000

Woodhead - Molex

SMI SHORT BODY CONNECTOR

0

0869909061

0869909061

Woodhead - Molex

CONN FIBEROPTIC TXRX/GBIC 1300NM

0

1061086301

1061086301

Woodhead - Molex

SHORT SMI CONN BULK KIT 50PCS

0

0869909060

0869909060

Woodhead - Molex

CONN FIBEROPTIC TXRX/GBIC 850NM

0

1061082200

1061082200

Woodhead - Molex

CONN TXRX SMI FOT IEEE 1394

0

Fiber Optics - Transceiver Modules

1. Overview

Fiber optic transceiver modules are compact devices that integrate optical transmitters and receivers to enable bidirectional data transmission over fiber optic cables. These modules convert electrical signals to optical signals (and vice versa) using laser diodes and photodetectors. They play a critical role in modern high-speed communication systems, supporting applications ranging from telecommunications to data center infrastructure. Their miniaturized design and standardized interfaces (e.g., SFP, QSFP) have revolutionized scalable network architecture deployment.

2. Main Types and Functional Classification

TypeTransmission RateWavelengthTransmission DistanceApplication Example
SFP100Mbps-1Gbps850nm(MMF)/1310nm(SMF)550m-2kmEnterprise LAN switches
SFP+1-10Gbps1270-1330nm100m-120km10GbE data centers
QSFP40Gbps1270-1330nm2km-2kmHigh-performance computing clusters
CFP100Gbps-400Gbps1270-1330nm500m-120kmLong-haul optical transport
QSFP28100Gbps1270-1330nm100m-2kmCloud data center backbone

3. Structure and Components

A typical transceiver module consists of:

  • Optical sub-assembly (OSA) with TOSA (Transmitter Optical Sub-Assembly) and ROSA (Receiver Optical Sub-Assembly)
  • Electrical interface (e.g., LC, MPO connectors)
  • Digital diagnostic monitoring (DDM) circuitry
  • Thermal management components
  • Compliance with industry standards (IEEE 802.3, SFF-8431)
The housing provides EMI shielding and mechanical protection while maintaining hot-pluggable functionality.

4. Key Technical Specifications

ParameterDescriptionImportance
Transmission RateData throughput capacity (Gbps)Determines network bandwidth
Optical WavelengthOperating frequency (nm)Matches fiber type and multiplexing scheme
Receiver SensitivityMinimum detectable optical power (dBm)Impacts link budget and distance
Power ConsumptionOperational energy usage (W)Affects cooling requirements and costs
Operating TemperatureFunctional range (-40 C to +85 C)Determines environmental suitability

5. Application Fields

Key industries include:

  • Telecommunications (5G networks, metro access)
  • Data centers (switch interconnects, storage area networks)
  • Industrial automation (real-time sensor networks)
  • Medical imaging (high-resolution video transmission)
  • Aerospace (avionics data links)
Typical equipment: Cisco Catalyst switches, Huawei OptiX routers, InfiniBand HCAs.

6. Leading Manufacturers and Products

ManufacturerProduct LineKey Features
FinisarCFP2-100G-LR4100Gbps, 2km reach, low power
Sumitomo ElectricQSFP-100G-ER440km transmission, DWDM support
Source PhotonicsSFP28-25G-LR25Gbps, 2km, CPRI applications
LumentumQSFP28-ZR100Gbps, 80km, coherent optics

7. Selection Recommendations

Key considerations:

  • Match data rate requirements with protocol standards (Ethernet, Fibre Channel)
  • Evaluate fiber type compatibility (MMF/SMF) and connector types
  • Assess power budget and thermal management needs
  • Consider digital diagnostics for network monitoring
  • Verify compliance with industry standards
  • Plan for future scalability (e.g., 400G readiness)
Case study: Deploying QSFP28-100G-SR4 modules in a hyperscale data center achieved 50% lower latency compared to 40G solutions.

8. Industry Trends

Emerging developments:

  • Transition to 400G/800G modules using 100G per lane electrical interfaces
  • Adoption of silicon photonics for cost reduction
  • Integration of PAM4 modulation for higher spectral efficiency
  • Embedded optics in switch ASICs for reduced latency
  • Co-packaged optics for advanced thermal management
  • Increased focus on energy efficiency ( 2W per 100G lane)
Market forecasts predict a CAGR of 12.3% from 2023-2030, driven by AI/ML infrastructure demands.

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