LED Lighting - COBs, Engines, Modules, Strips

Image Part Number Description / PDF Quantity Rfq
SPHWHAHDNF28YZU3D2

SPHWHAHDNF28YZU3D2

Samsung Semiconductor

LED COB D 3500K SQUARE

0

SI-B9T222B2HUS

SI-B9T222B2HUS

Samsung Semiconductor

LED

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SPHWHAHDNC25YZT2D3

SPHWHAHDNC25YZT2D3

Samsung Semiconductor

LED COB D 4000K SQUARE

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SPHWHAHDNL271ZT3D2

SPHWHAHDNL271ZT3D2

Samsung Semiconductor

LED COB LC060D 4000K SQUARE

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SPHWHAHDNH25YZV3D3

SPHWHAHDNH25YZV3D3

Samsung Semiconductor

LED COB D 3000K SQUARE

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SPHWHAHDNB25YZU3DB

SPHWHAHDNB25YZU3DB

Samsung Semiconductor

LED COB WHT LC006D 3500K 80CRI

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SPHWW1HDN947YHT2FG

SPHWW1HDN947YHT2FG

Samsung Semiconductor

LED COB WHT 4000K 2STEP 90CRI

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SPHWHAHDND25YZT3D3

SPHWHAHDND25YZT3D3

Samsung Semiconductor

LED COB D 4000K SQUARE

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SPHWHAHDNE25YZQ3D3

SPHWHAHDNE25YZQ3D3

Samsung Semiconductor

LED COB D 5700K SQUARE

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SPHWHAHDNK25YZQ3D3

SPHWHAHDNK25YZQ3D3

Samsung Semiconductor

LED COB D 5700K SQUARE

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SPHWHAHDNG28YZV3D2

SPHWHAHDNG28YZV3D2

Samsung Semiconductor

LED COB D 3000K SQUARE

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SPHWHAHDNF25YZT2DB

SPHWHAHDNF25YZT2DB

Samsung Semiconductor

LED COB LC019D WHITE SQ GEN 2+

0

SPHWHAHDNB27YZT3D2

SPHWHAHDNB27YZT3D2

Samsung Semiconductor

LED WHITE COB LC006D

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SPHWW1HDNE25YHU34G

SPHWW1HDNE25YHU34G

Samsung Semiconductor

LED COB LC040B 3500K SQUARE

0

SPHWW1HDN825YHW3ED

SPHWW1HDN825YHW3ED

Samsung Semiconductor

LED COB LC006B 2700K SQUARE

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SPHWW1HDN827YHT2CG

SPHWW1HDN827YHT2CG

Samsung Semiconductor

LED COB LC006B 4000K SQUARE

0

SPHWHAHDNK23YZV3D3

SPHWHAHDNK23YZV3D3

Samsung Semiconductor

LED COB D 3000K SQUARE

0

SPHWHAHDNG2VYZV2D2

SPHWHAHDNG2VYZV2D2

Samsung Semiconductor

LED COB D 3000K SQUARE

0

SPHWHAHDNG27YZR3D3

SPHWHAHDNG27YZR3D3

Samsung Semiconductor

LED COB D 5000K SQUARE

0

SI-B8T342B2CUS

SI-B8T342B2CUS

Samsung Semiconductor

LED V SERIES GEN2

195

LED Lighting - COBs, Engines, Modules, Strips

1. Overview

LED lighting technologies, including Chip-on-Board (COB), LED Engines, Modules, and Strips, represent advanced solid-state lighting solutions. These components integrate semiconductor diodes to convert electrical energy into light, offering superior energy efficiency, longevity, and design flexibility compared to traditional lighting. Their importance spans industries such as architecture, automotive, consumer electronics, and industrial automation, driven by demands for sustainable and smart lighting systems.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
COBsHigh-density LED arrays mounted directly on substrates, providing uniform light distribution and simplified thermal management.Commercial downlights, high-bay warehouse lighting, film/photography lighting.
EnginesPre-assembled units combining LEDs, drivers, and optics for plug-and-play integration.Smart home lighting systems, retrofit lamps, horticultural grow lights.
ModulesStandardized units with LED arrays and integrated circuits for modular system design.Office panel lighting, tunnel illumination, outdoor streetlights.
StripsFlexible PCB-based linear arrays for customizable length and color control.Architectural accent lighting, vehicle underglow, signage backlighting.

3. Structure and Components

Typical structures include:

  • COBs: Ceramic/aluminum substrate + multiple LED chips + phosphor coating + silicone encapsulation.
  • Engines: LED chip(s) + constant-current driver IC + primary optics + thermal interface material.
  • Modules: PCB board + SMD LEDs + secondary optics + connector terminals.
  • Strips: Flexible FPCB + RGB/W LED diodes + current-limiting resistors + adhesive backing.

All variants utilize semiconductor materials like GaN-on-SiC for blue/white emission or AlInGaP for red/yellow wavelengths.

4. Key Technical Specifications

ParameterDescriptionImportance
Luminous Flux (lm)Measure of total visible light output.Determines brightness suitability for space.
Color Rendering Index (CRI)Ability to accurately render object colors (0-100 scale).Critical for retail, healthcare, and photography.
Correlated Color Temperature (CCT)Light appearance from warm (2700K) to cool (6500K).Affects ambiance and circadian rhythm regulation.
Lifespan (L70)Operating hours until 70% lumen maintenance.Reduces long-term maintenance costs.
Thermal Resistance ( C/W)Efficiency of heat dissipation.Impacts reliability and maximum drive current.

5. Application Fields

  • Architecture: Office lighting (Modules), hotel accenting (Strips), museum displays (COBs)
  • Automotive: Headlights (COBs), interior mood lighting (Strips), dashboard indicators (Modules)
  • Consumer Electronics: Smart bulb replacements (Engines), gaming PC lighting (Strips)
  • Industrial: Machine vision systems (COBs), warehouse safety lighting (Modules)

6. Leading Manufacturers

ManufacturerRepresentative ProductKey Features
Cree (now Wolfspeed)XLamp COB Arrays3000K-5700K CCT range, 80 CRI, 1500mA max current
OsramOSTAR LED EnginesIntegrated driver, DALI compatibility, automotive-grade reliability
Philips LightingCorePro ModulesIEC 62031 compliant, 50,000-hour lifespan
Samsung LEDLPD8 StripsAddressable RGB control, IP65 rating, 24V operation

7. Selection Recommendations

Key considerations:

  • Match L70 lifespan to maintenance schedules (e.g., 50,000+ hours for hard-to-reach installations)
  • Select CRI 90 for critical color applications vs. CRI 80 for general lighting
  • Verify IP rating compatibility (IP20 for indoor vs. IP67 for outdoor Strips)
  • Evaluate thermal management needs - COBs require heatsinks, Strips need ventilation
  • Check dimming compatibility (PWM vs. constant current reduction)

Case Study: Retail store lighting selected 4000K COBs with 95 CRI for product displays, achieving 40% energy savings over halogen systems while improving color accuracy.

8. Industry Trends

Emerging developments include:

  • Micro-LED integration for sub-100 m pixel densities in displays
  • HDR lighting systems using tunable white Modules
  • LiFi-enabled Engines for data transmission through light
  • UV-C disinfection modules for healthcare applications
  • Recyclable phosphor materials to meet EU RoHS standards

Market growth is projected at 12.3% CAGR (2023-2030), driven by smart city initiatives and automotive LED adoption.

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