Fiber Optics - Transmitters - Discrete

Image Part Number Description / PDF Quantity Rfq
HFE8500-500-XBA

HFE8500-500-XBA

Honeywell Sensing and Productivity Solutions

FIBER OPTIC LED

0

SFH 757

SFH 757

IR (Infineon Technologies)

TRANSMITTER DIODE FIBER OPTIC

0

PDI-E521

PDI-E521

Luna Optoelectronics (Advanced Photonix)

EMITTER FIBER OPTIC 880NM PLASTC

0

HFE4020-313/ADA

HFE4020-313/ADA

Honeywell Sensing and Productivity Solutions

FIBER OPTIC TRANSCEIVER

0

OPF342C

OPF342C

TT Electronics / Optek Technology

LED FBR OPTC GAAIAS HS TO-46 ST

0

HFE4070-500-XBA

HFE4070-500-XBA

Honeywell Sensing and Productivity Solutions

LED 850NM GAALAS

0

PDI-E524

PDI-E524

Luna Optoelectronics (Advanced Photonix)

EMITTER FIBER OPTIC 470NM PLASTC

0

50005570-001

50005570-001

Honeywell Sensing and Productivity Solutions

LED 850NM GAAIAS

0

259012-1

259012-1

TE Connectivity AMP Connectors

LED 1.3UM ST STYLE STD.

0

HFBR-1531

HFBR-1531

Broadcom

XMITTER OPT HI PERFORMANCE VERT

0

HFE1011-590

HFE1011-590

Honeywell Sensing and Productivity Solutions

FIBER OPTIC DETECTOR

0

V850-2122-001

V850-2122-001

Finisar Corporation

PHOTODIODE

0

HFBR-1532

HFBR-1532

Broadcom

XMITTER OPT HI PERFORMANCE VERT

0

HFBR-779BWZ

HFBR-779BWZ

Broadcom

XMITTER 12X2.7GBD 62.5UM FO

0

V850-2182-001

V850-2182-001

Finisar Corporation

PHOTODIODE

0

OPF370B

OPF370B

TT Electronics / Optek Technology

LED FIBER OPTC GAAIAS HS TO-18

0

OPF392D

OPF392D

TT Electronics / Optek Technology

LED FIBER OPTC GAAIAS HS TO18 ST

0

OPF1412

OPF1412

TT Electronics / Optek Technology

TRANSMITTER FIBER OPTIC HS ST

0

HFBR-1527

HFBR-1527

Broadcom

XMITTER OPTICAL HI SPEED HORZ

0

HFBR-772BEHWZ

HFBR-772BEHWZ

Broadcom

XMITTER FO 12X2.7GBD EXT SHIELD

0

Fiber Optics - Transmitters - Discrete

1. Overview

Discrete fiber optic transmitters are optoelectronic devices that convert electrical signals into optical signals through individual component packages. They serve as fundamental building blocks in fiber communication systems, enabling data transmission via modulated light waves. These transmitters play critical roles in telecommunications, data centers, and sensing applications due to their high bandwidth efficiency and electromagnetic interference immunity.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
LED TransmittersLow-cost, low-power, broad spectral widthShort-distance links ( 2km), premises networks
Laser Diodes (LD)High power, narrow linewidth, high speedLong-haul telecom, CATV systems
VCSELsLow divergence beam, low power consumptionData center interconnects (100G-400G)
Electro-absorption Modulated Lasers (EML)Integrated modulation, low chirpHigh-speed DWDM systems ( 100Gbps)

3. Structure & Components

Typical discrete transmitters consist of: (1) Light source (LED/LD/VCSEL chip), (2) Optical sub-assembly (OSA) with lens/filter, (3) Electrical interface (bonding wires/PCB), (4) Hermetic package (TO-can or surface-mount). Advanced designs integrate drivers/modulators in photonic integrated circuits (PICs).

4. Key Technical Specifications

ParameterSignificance
Wavelength (1270-1610nm)Determines fiber transmission window and dispersion characteristics
Output Power (-20 to +20dBm)Affects transmission distance and signal-to-noise ratio
Modulation Bandwidth (DC-67GHz)Limits maximum data rate capability
Chirp CharacteristicsImpacts dispersion penalty in high-speed systems
Operating Temperature (-40 to +85 C)Determines environmental deployment flexibility

5. Application Domains

Primary industries include: Telecommunications (DWDM networks), Data Centers (QSFP modules), Cable TV (HFC networks), Industrial Sensing (strain/temperature monitoring). Typical equipment: Optical line terminals (OLTs), active optical cables (AOCs), OTDR test instruments.

6. Leading Manufacturers & Products

VendorRepresentative Product
II-VI Incorporated100G CFP EML transmitter
LumentumMulti-junction VCSEL arrays
Finisar (II-VI)TO-Can DFB lasers
BroadcomIntegrated TOSA assemblies
NeoPhotonicsHigh-power narrow-linewidth lasers

7. Selection Guidelines

Key considerations: (1) Match wavelength to system requirements (O-band/C-band), (2) Verify output power vs. link budget needs, (3) Ensure modulation bandwidth exceeds data rate requirements, (4) Evaluate thermal stability for operating environments, (5) Consider packaging form factor (TO/ROSA vs. SMT), (6) Balance cost/performance for volume deployments.

8. Industry Trends

Current development directions include: (1) 400G+ transmission through advanced modulation formats, (2) Silicon photonics integration for cost reduction, (3) Shortwave infrared (SWIR) sources for emerging applications, (4) AI-driven digital signal processing co-design, (5) Environmental compliance with RoHS/Green Photonics initiatives. Market growth in 5G fronthaul and automotive LiDAR applications is driving innovation in compact, low-power transmitters.

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