| Image | Part Number | Description / PDF | Quantity | Rfq |
|---|---|---|---|---|
|
S1W0-5050408006-0000005S-00002 Seoul Semiconductor |
HIGH POWER 5050, STW8L8PA, 4000K |
1990 |
|
|
|
S1W0-2835279003-0000003S-0P003 Seoul Semiconductor |
MID POWER 3528 STW9A2PD-E1 CRI90 |
12000 |
|
|
|
S1W0-2835578003-0000003S-0P009 Seoul Semiconductor |
MID POWER 3528 STW8A2PD-E1(H)(S) |
0 |
|
|
|
S1W0-3535357003-00000000-00002 Seoul Semiconductor |
WHITE LED SMD 3500K POWER Z5M3 |
1218 |
|
|
|
S1W0-2835278003-0000003S-0P004 Seoul Semiconductor |
MID POWER 3528 STW8A2PD-E1(S), 2 |
16000 |
|
|
|
S1W0-5050407006-0000005S-00002 Seoul Semiconductor |
HIGH POWER 5050, STW0L8PA, 4000K |
387 |
|
|
|
S1W0-3030579003-00000000-00001 Seoul Semiconductor |
MID POWER 3030 STW9C12C-E0, CRI9 |
3818 |
|
|
|
S1W0-2835229003-0000003S-0P003 Seoul Semiconductor |
MID POWER 3528 STW9A2PD-E1 CRI90 |
0 |
|
|
|
Seoul Semiconductor |
LED NEUTRAL WHT 4500K 80CRI 4SMD |
0 |
|
|
|
Seoul Semiconductor |
LED MOD SMD WARM WHITE 2700K |
0 |
|
|
|
S1W0-2835508003-0000003S-0P007 Seoul Semiconductor |
MID POWER 3528 STW8A2PD-E1, 5000 |
16000 |
|
|
|
S1W0-3030508003-0000003S-00001 Seoul Semiconductor |
WHITE LED SMD 5000K 3030C |
4469 |
|
|
|
S1W0-3030307003-0000003S-00001 Seoul Semiconductor |
MID POWER 3030 STW7C12C-E0, CRI7 |
0 |
|
|
|
S1W0-3030309003-00000000-00001 Seoul Semiconductor |
MID POWER 3030 STW9C12C-E0, CRI9 |
4000 |
|
|
|
S1W0-2222508003-00000000-00001 Seoul Semiconductor |
LED COOL WHITE 5000K 80CRI |
0 |
|
|
|
S1W0-3535407003-00000000-00004 Seoul Semiconductor |
HIGH POWER, Z5M4, 4000K |
750 |
|
|
|
Seoul Semiconductor |
LED COOL WHITE 6500K 80CRI 4SMD |
0 |
|
|
|
S1W0-3030659003-00000000-00001 Seoul Semiconductor |
MID POWER 3030 STW9C12C-E0, CRI9 |
3288 |
|
|
|
S1W0-3535307003-00000000-00004 Seoul Semiconductor |
HIGH POWER, Z5M4, 3000K |
0 |
|
|
|
Seoul Semiconductor |
LED WARM WHITE 32.5V 40MA |
86000 |
|
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.
| Type | Functional Features | Application Examples |
|---|---|---|
| Blue Chip + Yellow Phosphor | Cost-effective, CRI 70-90, correlated color temperature (CCT) 2700-6500K | General lighting, residential bulbs |
| RGB Tri-color | Tunable color output, high CRI (>90), complex driver requirements | Stage lighting, architectural accenting |
| UV Chip + RGB Phosphor | Enhanced color rendering, reduced blue light hazard | Museum lighting, medical diagnostics |
| Remote Phosphor | Uniform light distribution, improved thermal management | Commercial downlights, automotive headlamps |
Typical white LED construction includes:
| Parameter | Typical Range | Importance |
|---|---|---|
| Luminous Flux | 100-20,000 lm | Determines light output capability |
| Color Temperature | 2700K-6500K | Affects ambiance and visual comfort |
| Color Rendering Index (CRI) | 70-98 | Measures color fidelity accuracy |
| Luminous Efficacy | 100-200 lm/W | Energy conversion efficiency metric |
| Lifespan | 25,000-100,000 hrs | Total cost of ownership factor |
| Forward Voltage | 2.8-3.6 V | Driver design specification |
| Manufacturer | Key Product Series | Technical Highlights |
|---|---|---|
| Signify (Philips) | Luxeon 3535L | 180 lm/W efficacy, 90 CRI, automotive grade |
| OSRAM Opto | Ostar Lighting | Surface-mount package, 2000cd/m luminance |
| Cree (Wolfspeed) | XHP50.2 | High-density emitter, 20A drive current capability |
| Seoul Semiconductor | WICOP2 | Chip-level integration, 0.2W-100W scalability |
Key considerations:
Emerging developments include: