Fiber Optics - Receivers

Image Part Number Description / PDF Quantity Rfq
GN3068-3EB6AL3E3

GN3068-3EB6AL3E3

Semtech

IC ROSA LOW PWR 11.3GB/S 10KM

0

GN3155-3EA3AS7E3

GN3155-3EA3AS7E3

Semtech

IC ROSA 10G SW XMDV2 FLEX

0

SCMR-10M18G-WP

SCMR-10M18G-WP

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER IN WEATHER

0

HFBR-782BEHZ

HFBR-782BEHZ

Broadcom

RECEIVER FO 12X2.7GBD EXT SHIELD

0

GN3150-3EA3AJ7E3

GN3150-3EA3AJ7E3

Semtech

IC ROSA 10G SW SC LIMIT CUSTOM

0

SCMR-100M7G-10-20-10

SCMR-100M7G-10-20-10

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER

0

HFD3033-002/BBA

HFD3033-002/BBA

Honeywell Sensing and Productivity Solutions

OPTICAL PHOTODIODE

0

GN3252-3EB8AQ6E3

GN3252-3EB8AQ6E3

Semtech

IC ROSA 10GBPS AGC FLEX OCLARO

0

HFBR-2506AM

HFBR-2506AM

Broadcom

RCVR OPTICAL 16MBD SERCOS SMA

0

PLR233/T5P

PLR233/T5P

Everlight Electronics

FIBER OPTIC RECEIVER IR

0

LBR-22M2P4G-10-15-10-FA

LBR-22M2P4G-10-15-10-FA

MITEQ, Inc.(L3 Narda-MITEQ)

OPTICAL RECEIVER

0

SLR-10M2G-10-20-10

SLR-10M2G-10-20-10

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER

0

GN3268-3EB7AM8E3

GN3268-3EB7AM8E3

Semtech

IC ROSA 10GBPS 40KM LC XMD5 FLEX

0

SCMT-18G-WP

SCMT-18G-WP

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC TRANSMITTER IN WEATH

0

SCMR-7G14G-10-25-10-FA-E1

SCMR-7G14G-10-25-10-FA-E1

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER IN ENCLOSUR

0

SCMR-100M6G

SCMR-100M6G

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER

0

GN3155-3EA3AB4E3

GN3155-3EA3AB4E3

Semtech

IC ROSA 10G HIGH GAIN D87297 FLE

0

SCMR-50K7G-10-20-10

SCMR-50K7G-10-20-10

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER

0

SCMR-18G-SA

SCMR-18G-SA

MITEQ, Inc.(L3 Narda-MITEQ)

FIBER OPTIC RECEIVER

0

PLR233/T10

PLR233/T10

Everlight Electronics

FIBER OPTIC RECEIVER IR

0

Fiber Optics - Receivers

1. Overview

Fiber optic receivers are optoelectronic devices that convert optical signals transmitted through optical fibers into electrical signals. As critical components in fiber optic communication systems, they perform photon-to-electron conversion through semiconductor materials like silicon (Si), indium gallium arsenide (InGaAs), or germanium (Ge). Modern high-speed communication networks, sensing systems, and data centers rely on these devices for reliable signal detection with bandwidth capabilities extending from hundreds of MHz to 100+ Gbps.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
PIN PhotodiodeHigh linearity, low capacitance, fast response (ns range)Telecom networks, optical power meters
APD (Avalanche Photodiode)Internal gain mechanism, improved SNRLong-haul DWDM systems, LIDAR
PhototransistorHigh sensitivity, low costShort-range links, industrial sensors
Integrated ReceiverCombined detector and transimpedance amplifier400G/800G optical modules

3. Structure and Components

Typical fiber optic receiver architecture includes:

  • Optical Interface: FC/SC/LSH connectors with anti-reflective coated windows
  • Photodetector: Semiconductor chip with active area (50 m-2mm diameter)
  • Thermal Management: Heat sink or TEC (thermoelectric cooler) for stability
  • Pre-amplifier: Transimpedance amplifier (TIA) for current-to-voltage conversion
  • Electrical Interface: SMA/BNC connectors or PCB-mounted pads

4. Key Technical Specifications

ParameterDescriptionImportance
Responsivity0.5-1.5 A/WDetermines conversion efficiency
Bandwidth100MHz-100GHzLimits data transmission rate
Dark Current<10nAImpacts signal-to-noise ratio
Operating Wavelength850nm/1310nm/1550nmMatches fiber transmission windows
Dynamic Range-20 to -60dBmDefines signal power tolerance

5. Application Fields

Primary application domains include:

  • Telecommunications: 5G fronthaul/backhaul, DWDM networks
  • Data Centers: 400G QSFP-DD optical modules
  • Medical: Endoscopic imaging systems
  • Industrial: Optical proximity sensors
  • Aerospace: Fiber optic gyroscopes (FOG)

Case Study: 100G LR4 receiver modules in backbone networks enable 10km transmission with four 25G channels via wavelength division multiplexing.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
FinisarFTRx-100GC-band 100G coherent receiver
HamamatsuG12132-01Planar InGaAs APD array
LumentumOC5xx SeriesHigh-power photodiode modules
ThorlabsDET01CFCCompact fiber-coupled receiver

7. Selection Guidelines

Key considerations for component selection:

  • Match wavelength sensitivity to transmitter (850nm/1310nm/1550nm)
  • Ensure bandwidth exceeds system data rate by 20%
  • Select appropriate dynamic range for link budget
  • Evaluate temperature stability (-40 to +85 C operational range)
  • Consider form factor (TO-can, butterfly package, surface-mount)

Industry Trends Analysis

Future development shows:

  • Integration of photodetectors with CMOS circuits (SiPh)
  • Adoption of Bessel filters for 0.5THz+ bandwidth receivers
  • Cost reduction through silicon photonics mass production
  • Advancements in single-photon avalanche diodes (SPADs) for quantum communication
  • Miniaturization for pluggable modules (OSFP, QSFP-DD)

Market growth projections indicate 9.8% CAGR until 2027, driven by 5G and hyperscale data center expansions.

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