Electroluminescent

Image Part Number Description / PDF Quantity Rfq
69-ELW3.2-OR

69-ELW3.2-OR

NTE Electronics, Inc.

EL WIRE ORANGE 3.2MM DIA

105

629

629

Adafruit

STARTER PK EL PANEL 10X10CM BLUE

0

69-ELW2.3-TB

69-ELW2.3-TB

NTE Electronics, Inc.

EL WIRE TRANS BLUE 2.3MM

240

COM-10193

COM-10193

SparkFun

EL WIRE - ORANGE 3M

2

COM-14702

COM-14702

SparkFun

BENDABLE EL WIRE BLUEGREEN 3M

0

446

446

Adafruit

ELECTROLUMINESCN STRIP GRN 100CM

2

COM-12930

COM-12930

SparkFun

EL WIRE - BLUE-GREEN 3M (CHASING

1

69-ELW3.2-RD

69-ELW3.2-RD

NTE Electronics, Inc.

EL WIRE RED 3.2MM DIA

102

DFR0185-O

DFR0185-O

DFRobot

EL WIRE - ORANGE

0

407

407

Adafruit

ELECTROLUMINESCENT WIRE GRN 2.5M

0

COM-14700

COM-14700

SparkFun

BENDABLE EL WIRE PURPLE 3M

0

408

408

Adafruit

ELECTROLUMINESCENT WIRE BLU 2.5M

0

COM-10191

COM-10191

SparkFun

EL WIRE - RED 3M

1

414

414

Adafruit

ELECTROLUMINESC PNL 20X15CM AQUA

0

DFR0185-B

DFR0185-B

DFRobot

EL WIRE - BLUE

0

COM-12926

COM-12926

SparkFun

EL WIRE - GREEN 3M (CHASING)

0

104990034

104990034

Seeed

EL WIRE-YELLOW 3M

0

COM-12929

COM-12929

SparkFun

EL WIRE - WHITE 3M (CHASING)

0

104990038

104990038

Seeed

EL WIRE-GREEN 3M

0

COM-12925

COM-12925

SparkFun

EL WIRE - BLUE 3M (CHASING)

0

Electroluminescent

1. Overview

Electroluminescence (EL) is a phenomenon where materials emit light in response to an electric current or strong electric field. This technology forms the basis for various modern optoelectronic devices, combining electrical and optical functionalities. Its significance lies in enabling efficient solid-state lighting, flexible displays, and advanced sensing systems, revolutionizing industries from consumer electronics to biomedical engineering.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Organic EL (OLED)Self-emissive, high contrast ratio, flexible substratesSmartphone displays, VR headsets
Inorganic EL (LED)High brightness, long lifetime, narrow emission spectrumBacklighting, automotive lighting
Quantum Dot EL (QLED)Tunable emission wavelength, high color purityTV panels, medical imaging
Electroluminescent WiresLinear light sources, flexible and thin profileWearable electronics, signage

3. Structure and Composition

A typical EL device consists of multiple layers: transparent anode (ITO glass), hole transport layer (HTL), emissive layer (organic/inorganic phosphors), electron transport layer (ETL), and metallic cathode. Advanced designs incorporate microcavity structures for enhanced light extraction and flexible barrier films for mechanical durability. Quantum dot variants use nanocrystal dispersions in polymer matrices.

4. Key Technical Specifications

ParameterDescriptionImportance
Luminous EfficiencyLight output per watt (lm/W)Energy consumption optimization
Color Rendering Index (CRI)Ability to reproduce colors accuratelyVisual fidelity in lighting applications
Operating LifetimeHours until 50% brightness loss (L50)Device durability assessment
Response TimeLight emission delay ( s-ms range)Crucial for high-speed displays
Quantum EfficiencyPhoton-electron conversion ratioPerformance benchmarking

5. Application Fields

Key industries include:

  • Consumer Electronics: Foldable smartphones, transparent TVs
  • Automotive: HUDs, adaptive headlights
  • Healthcare: Flexible X-ray detectors, photodynamic therapy devices
  • Architecture: Smart windows, decorative lighting

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Samsung DisplayQD-OLED Monitor2000 nits peak brightness, 97% DCI-P3 coverage
LG InnotekFlexible OLED Lighting0.3mm thickness, 20,000 hour lifespan
General ElectricEL Automotive PanelsWide color gamut, vibration resistance
Nanoco TechnologiesHeavy-metal-free QLEDsRoHS compliance, 100% sRGB coverage

7. Selection Guidelines

Key considerations:

  • Application-specific requirements (flexibility, transparency)
  • Operating environment (temperature, humidity)
  • Power budget vs brightness demands
  • Color accuracy requirements (CRI >90 for medical imaging)
  • Lifetime cost analysis (LCOE for lighting systems)

8. Industry Trends Analysis

Current developments focus on:

  • Hybrid architectures combining OLED microdisplays with silicon backplanes
  • Perovskite-based EL materials achieving 30% EQE efficiency
  • Biocompatible EL devices for implantable medical sensors
  • Micro-LED integration with wafer-level packaging
  • AI-driven luminance optimization algorithms

Market projections indicate a CAGR of 12.4% through 2030, driven by augmented reality and autonomous vehicle applications.

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