





- Stock: In Stock
- Model: High Power RGB LED 10W Common Anode
- Weight: 0.52kg
- Dimensions: 2.00cm x 2.00cm x 0.68cm
- SKU: 2686
High-Performance Optoelectronic Engineering
The Chanzon 10W RGB COB LED Chip is an industrial-grade optoelectronic component engineered for vibrant color rendering and high luminous efficiency. Built upon a high-thermal-conductivity pure copper frame and bound with 99.99% pure double golden wires, this Chip-on-Board light emitter delivers exceptional reliability, low thermal resistance, and extended operating life. The high-grade silicone resin encapsulation ensures stable spectral distribution and wide-angle light dispersion across demanding optical setups.
Precision Color Tuning and Electrical Architecture
Featuring a Common Anode circuit layout, this 10W emitter houses three separate Red, Green, and Blue semiconductor dies. Each channel is optimized for 300mA operation, allowing precise dynamic color mixing and PWM dimming control. The Red channel operates at a forward voltage of 6-7V delivering 90-100 Lumens, while the Green channel operates at 9-11V producing 120-130 Lumens, and the Blue channel operates at 9-11V generating 40-50 Lumens. The wide 120 to 140 degree beam angle provides uniform illumination without harsh spot artifacting.
Thermal Management and Driving Guidelines
To ensure peak performance and prevent thermal degradation, high-power COB LEDs require active or passive heatsinking. Operating temperature must be maintained below 60 degrees Celsius (140 degrees Fahrenheit) using thermal interface paste and adequate aluminum or copper heatsinks. It is strongly recommended to drive each channel using dedicated constant current LED drivers to prevent current thermal runaway and guarantee long-term flux stability.
Wide-Ranging Application Scenarios
This high-output RGB light engine is ideal for custom architectural accent lighting, stage illumination, outdoor landscape floodlights, smart home color-changing fixtures, DIY photography lights, and custom aquarium lighting arrays. Its robust construction and standardized pad layout facilitate easy soldering and integration into modern microcontroller-driven lighting projects.


