LED Lighting - White

Image Part Number Description / PDF Quantity Rfq
LNJ03004GDD1

LNJ03004GDD1

Panasonic

LED COOL WHITE 6500K 82CRI 1212

1887

LNJ03004GLD1

LNJ03004GLD1

Panasonic

LED WARM WHITE 2700K 82CRI 1212

2557

LNJ03004BDD1

LNJ03004BDD1

Panasonic

LED COOL WHITE 6500K 82CRI 1212

2211

LNJ03004BND1

LNJ03004BND1

Panasonic

LED COOL WHITE 5000K 82CRI 1212

644

LNJ03004GND1

LNJ03004GND1

Panasonic

LED COOL WHITE 5000K 82CRI 1212

3763

LNJ03004BLD1

LNJ03004BLD1

Panasonic

LED WARM WHITE 2700K 82CRI 1212

1379

LNJ037X8BRA

LNJ037X8BRA

Panasonic

LED WHITE SID-FIRING 1608 SMD

0

LED Lighting - White

1. Overview

White Light-Emitting Diodes (LEDs) are semiconductor devices that convert electrical energy into visible white light. They represent a fundamental shift from traditional lighting technologies due to their energy efficiency, longevity, and controllability. Modern white LEDs primarily use blue-emitting chips coated with phosphor materials to produce broad-spectrum white light, enabling precise color tuning and dimming capabilities.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Blue Chip + Yellow PhosphorCost-effective, CRI 70-90, correlated color temperature (CCT) 2700-6500KGeneral lighting, residential bulbs
RGB Tri-colorTunable color output, high CRI (>90), complex driver requirementsStage lighting, architectural accenting
UV Chip + RGB PhosphorEnhanced color rendering, reduced blue light hazardMuseum lighting, medical diagnostics
Remote PhosphorUniform light distribution, improved thermal managementCommercial downlights, automotive headlamps

3. Structure & Components

Typical white LED construction includes:

  • Die: Gallium Nitride (GaN) on sapphire substrate emitting blue light (450nm)
  • Phosphor Layer: Cerium-doped YAG (Y3Al5O12) converting blue to yellow wavelengths
  • Encapsulation: Silicon dioxide lens with secondary optical elements
  • Thermal Interface: Metal-core PCB (MCPCB) for heat dissipation
  • Driver Circuit: Constant current source with EMI filtering

4. Key Technical Parameters

ParameterTypical RangeImportance
Luminous Flux100-20,000 lmDetermines light output capability
Color Temperature2700K-6500KAffects ambiance and visual comfort
Color Rendering Index (CRI)70-98Measures color fidelity accuracy
Luminous Efficacy100-200 lm/WEnergy conversion efficiency metric
Lifespan25,000-100,000 hrsTotal cost of ownership factor
Forward Voltage2.8-3.6 VDriver design specification

5. Application Fields

  • Residential: Smart bulbs, under-cabinet lighting
  • Commercial: Retail accent lighting, office panel lights
  • Industrial: High-bay warehouse fixtures, machine vision systems
  • Transportation: Automotive headlights, aircraft cabin lighting
  • Healthcare: Surgical lighting, circadian rhythm regulation

6. Leading Manufacturers & Products

ManufacturerKey Product SeriesTechnical Highlights
Signify (Philips)Luxeon 3535L180 lm/W efficacy, 90 CRI, automotive grade
OSRAM OptoOstar LightingSurface-mount package, 2000cd/m luminance
Cree (Wolfspeed)XHP50.2High-density emitter, 20A drive current capability
Seoul SemiconductorWICOP2Chip-level integration, 0.2W-100W scalability

7. Selection Recommendations

Key considerations:

  • Optical requirements: Match CRI and CCT to application needs
  • Thermal management: Select appropriate heatsink and package type
  • Electrical compatibility: Verify driver specifications and dimming protocols
  • Form factor: Consider footprint constraints (e.g., 2835, 5630 packages)
  • Regulatory compliance: Ensure ENERGY STAR, DLC, or UL certification

8. Industry Trends

Emerging developments include:

  • Micro-LED integration for displays and Li-Fi communication
  • Quantum dot phosphors expanding color gamut (NTSC >100%)
  • Smart lighting systems with IoT connectivity (Zigbee, Bluetooth Mesh)
  • Advanced thermal materials (graphene MCPCBs)
  • Regulatory shifts toward higher minimum efficacy standards (DOE 2023: 120 lm/W)
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