LED Emitters - Infrared, UV, Visible

Image Part Number Description / PDF Quantity Rfq
BIR-HMC33M-2-TRB

BIR-HMC33M-2-TRB

American Bright

1206 940IR

29860

BIR-BM53E4G-1

BIR-BM53E4G-1

American Bright

5MM 940 IR

19850

BIR-XM1361-TR9

BIR-XM1361-TR9

American Bright

AXIAL 940 IR

29951

BIR-BM17J8V-FZ04

BIR-BM17J8V-FZ04

American Bright

5MM 940 IR

19810

BIR-HM235A-TRB

BIR-HM235A-TRB

American Bright

0805 940 IR

29890

BIR-BM5381G

BIR-BM5381G

American Bright

3MM 940 IR

17361

BIR-BM53E4G-2

BIR-BM53E4G-2

American Bright

5MM 940 IR

19732

BIR-HMC34C-TRB

BIR-HMC34C-TRB

American Bright

1204 940 IR

30000

BWIR-35C2O48

BWIR-35C2O48

American Bright

3535 850NM IR

23604

BIR-HMC33K-TRB

BIR-HMC33K-TRB

American Bright

1206 940 IR

29970

BIR-HO033A-TRB

BIR-HO033A-TRB

American Bright

1206 850 IR

29812

BIR-BM5331

BIR-BM5331

American Bright

3MM 940 IR

17490

BIR-NM13C1

BIR-NM13C1

American Bright

SIDE LOOK 940 IR

17450

BWL-35P1U44-45R

BWL-35P1U44-45R

American Bright

UVA PLCC

8900

BL-BIK341-1

BL-BIK341-1

American Bright

UVA THROUGH HOLE

9977

BL-3535CB

BL-3535CB

American Bright

UVC LED

0

LED Emitters - Infrared, UV, Visible

1. Overview

Light Emitting Diodes (LEDs) are semiconductor devices that convert electrical energy into light. The categories of infrared (IR), ultraviolet (UV), and visible LEDs are differentiated by their emission wavelengths. These devices play critical roles in modern technology, enabling applications from communication systems to medical diagnostics, with advantages including energy efficiency, compact size, and long operational lifetimes.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Infrared LEDs850-940 nm wavelength, low power consumption, invisible emissionRemote controls, night vision cameras, optical sensors
UV LEDs280-400 nm wavelength, germicidal properties, high photon energyWater purification, counterfeit detection, medical disinfection
Visible LEDs400-700 nm wavelength, high brightness, color tunabilityLighting, displays, automotive indicators

3. Structure and Composition

LED emitters typically consist of: - Die: Semiconductor material (e.g., GaAs for IR, AlGaN for UV, InGaN for visible) - Substrate: Sapphire or silicon carbide for mechanical support - Encapsulation: Epoxy or silicone lens for light extraction and protection - Contact Layers: Metal electrodes for electrical connection - Thermal Pad: For heat dissipation in high-power devices

4. Key Technical Specifications

ParameterDescriptionImportance
Wavelength ( )Peak emission spectrumDetermines application suitability
Optical PowerLight output (mW or W)Performance in sensing/illumination
Efficiency (W/W)Electrical-to-optical conversion rateEnergy consumption and thermal management
Viewing AngleLight emission spread ( )Optical design flexibility
Operating Temperature-40 C to +125 C rangeReliability in harsh environments

5. Application Fields

Major industries include: - Consumer Electronics: Smartphones (proximity sensors), TVs (backlighting) - Healthcare: Pulse oximeters (IR), sterilization equipment (UV) - Industrial: Machine vision systems (visible), chemical detection (UV) - Security: Surveillance cameras (IR), document authentication (UV) - Automotive: Brake lights (visible), LiDAR systems (IR)

6. Leading Manufacturers and Products

ManufacturerProduct ExamplesKey Features
OSRAM OptoSFH 4715A (IR)940 nm, 1.5 W radiant power
Cree LEDUV5T-3535 (UV)365 nm, 120 mW output
Nichia CorporationNCSxW215BS (Visible)White LED with 215 lm output

7. Selection Recommendations

Key factors include: - Spectral matching to target application (e.g., 280-320 nm for DNA analysis) - Thermal management requirements (e.g., heatsinks for >1 W devices) - Environmental conditions (e.g., IP67 rating for outdoor use) - Cost vs. performance tradeoffs (e.g., high-efficiency UV LEDs for sterilization) - Compatibility with drive electronics (current/voltage specifications)

8. Industry Trends

Emerging developments: - Miniaturization for wearable devices (e.g., sub-1 mm IR LEDs) - Increased UV-C efficiency (targeting 10% wall-plug efficiency) - Integration with IoT systems (smart lighting networks) - Advancements in phosphor conversion for visible LEDs - Wide bandgap semiconductor adoption (GaN-on-SiC substrates) - Environmental regulations driving mercury-free UV solutions

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