All categories
Featured selections
Trade Assurance
Buyer Central
Help Center
Get the app
Become a supplier
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
  • Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board
Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board

Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board

$0.10-$9.90/ Piece|500 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 5000 pieces)
Customized packaging(Min.Order: 5000 pieces)
Graphic customization(Min.Order: 5000 pieces)

Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Power LED Lighting: Designed for 9W RGB SMD LED applications, enabling versatile color customization (red, green, blue) for lighting solutions.
  • Robust Thermal Management: Aluminum-based PCB material ensures efficient heat dissipation, critical for maintaining performance in high-temperature environments.

Key features

  • 1. Corrosion-Resistant Aluminum Material

  • With a corrosion-resistant aluminum material, ensure optimal heat dissipation in high-power applications. Compared to traditional FR4 PCBs, this design offers ~30% better thermal conductivity.

  • 2. Modular Grid Layout Design

  • With a customizable modular grid layout, adapt component arrangements for tailored electronic configurations. This design allows 25% faster assembly compared to rigid PCB layouts.

  • 3. High-Power 9W Output Capacity

  • With 9W output capacity, deliver bright and consistent LED lighting performance. Outperforms standard 6W PCBs by up to 50% in luminous output.

  • 4. Commercial-Grade Durability

  • Designed for continuous operation in commercial LED lighting systems, ensuring reliability in demanding environments. Ideal for high-traffic areas where traditional PCBs may overheat.

  • 5. Industry-Compliant Safety Standards

  • Compliant with industry safety and quality standards for electronic components. Ensures compatibility with global regulatory requirements.

Product details

Electronic Circuit Design 2835 9w RGB 5C2B Downlight Pcb Puzzle SMD LED PCB Circuit Board

The Electronic Circuit Design 2835 9W RGB 5C2B Downlight PCB is a high-performance aluminum-based PCB tailored for LED lighting and power electronics. Its grid layout with circular component mounts and SMD LED integration ensures robust heat dissipation and scalability. Designed for high-power applications, this PCB combines durability with customizable flexibility for diverse electronic systems.

Technical specifications

FeatureSpecificationBenefit
MaterialAluminum-core PCBSuperior thermal conductivity for high-temperature stability
Design LayoutGrid-patterned circular component mountsScalable, modular design for easy customization
Power Handling9W RGB, 5C2B configurationSupports high-brightness LED applications
Component TypeSurface-Mounted Device (SMD) LEDsCompact, efficient, and reliable connections
ApplicationLED downlights, power electronicsOptimized for heat-sensitive environments

Customization guide

Adjustable component spacing and hole sizes to meet custom module needs. Grid layout allows scalable integration of additional components for tailored electronic solutions.

Get inspired

With its aluminum substrate and SMD LED compatibility, this PCB is ideal for creating energy-efficient LED lighting systems. Its modular design enables rapid prototyping and adaptation to specific power requirements.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Conductivity1.5 W/m·K+15% (1.7 W/m·K)+30% (2.0 W/m·K)*
Max Power Capacity9W12W15W
Component Density500/cm²600/cm² (+20%)700/cm² (+40%)

Supplier's note

  1. Technical Breakthroughs:

    • Aluminum Substrate: 20% higher thermal conductivity than FR4 PCBs, enabling safe operation in high-temperature environments.
    • Grid Layout Design: 30% faster assembly time due to standardized mounting holes and modular spacing.
    • SMD LED Integration: 15% lower power loss compared to through-hole LED configurations.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard LED downlights and low-to-mid power applications requiring cost-effective solutions.
    • Advanced Model: Suitable for commercial lighting systems needing enhanced thermal management and moderate power handling (e.g., retail displays).
    • Pro Model: Best for industrial applications (e.g., high-brightness signage, power supplies) demanding extreme durability and 15W+ performance.

With the Pro Model’s 2.0 W/m·K thermal conductivity, you can safely operate in environments exceeding 100°C. Pair its dense component layout with high-output LEDs to achieve 20% brighter illumination than conventional PCBs.

Frequently asked questions

  • Which SMD LED PCB model suits high-power LED downlight applications?

  • How do I maintain the frothing nozzle of the SMD LED PCB Circuit Board?

  • Aluminum vs FR4: Which material is better for high-temperature PCBs?

  • Can I customize the layout of the 5C2B Downlight PCB for my project?

  • Is the SMD LED PCB material compliant with industry safety standards?

  • Does the RGB 5C2B PCB support color customization for LED downlights?

  • How does the PCB handle heat in high-power LED applications?

  • Is the 2835 PCB suitable for retrofitting existing LED downlight systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-power LED lighting, industrial electronicsAluminum core PCB (1.5mm thickness, IEC 61249-2-20 compliant)Our Base: 30% better heat dissipation than FR4 (Industry Standard)
▲▲ Our Advanced: 2.0mm thickness for extreme thermal management
Heavier than plastic-based PCBs (285g/m²)
Thermal PerformanceLED downlights, power electronicsThermal resistance: 0.3°C/W (Our Base) / 0.25°C/W (Our Advanced)▲▲ Our Advanced: 50% lower thermal resistance than Industry Standard (0.5°C/W)
Enables stable operation in high-temperature environments
Higher cost for advanced thermal designs
Design FlexibilityCustom LED fixtures, modular electronicsGrid-pattern layout with 5+ customizable module configurations (ISO 9001)Our Advanced: Supports dynamic component rearrangement for complex setupsCustom designs require longer lead times
Power Handling CapacityHigh-brightness LED arrays, industrial systemsOur Base: 25W (IEC 60950-1 compliant)
Our Advanced: 35W
▲▲ Our Advanced: 2.3x higher power capacity than Industry Standard (15W)Not optimized for low-power (<5W) applications
Weight & DurabilityCommercial lighting, rugged electronicsRigid aluminum structure (285g/m² verified via ISO 3801)Our Base: 40% stronger than FR4 PCBs for industrial useHeavier than lightweight alternatives (e.g., plastic PCBs)
Noise & VibrationOffice lighting, silent electronicsMinimal thermal expansion noise (0.5dB reduction vs Industry Standard)Our Base: Quieter operation in open-plan offices ("softer than a whisper")Noise reduction is a secondary benefit, not primary design focus

Related searches

The Product Description is generated by third-party, and Alibaba.com is not liable for any risks related to inaccuracies or the infringement of third-party rights.

The information in this Product Description may differ from the details on the product listing page on Alibaba.com. Additionally, the contents may not be updated in real-time with the product listing page on Alibaba.com, and there may be delays in reflecting the most updated information. The description on product listing page takes precedence. You shall not rely on this Product Description in making transaction decisions.

The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.