ROHM Semiconductor SML-D12 EXCELED Automotive LEDs
ROHM Semiconductor SML-D12 EXCELED™ Automotive LED series includes AEC-Q101 qualified, standard SMD LEDs in a mini-mold 1608 package. Based on the original device technology, the SML-D12 LEDs ensure high brightness and reliability across the 560nm-630nm wavelength. The SML-811 LEDs have an AIGaInP chip structure and a tinted, diffused lens. Available in yellow, green, yellow-green, and red versions, the SML-D12 LEDs are rated at 7.1mcd, 6.3mcd, 25mcd, and 40mcd (respectively) for luminous intensity. The SML-D12 EXCELED Automotive LEDs operate with a typical 20mA forward current, 2.2V forward voltage, and 54mW power dissipation in the -40 to 85°C temperature range.Features
- EXCELED series
- Original device technology enables high brightness and high reliability
- AEC-Q101 Qualified
Specifications
- 1608 package
- Mini-mold type
- Yellow, green, yellow-green, and red
- LEDs with luminous intensity ratings ranging from 6.3mcd-63mcd
- 560nm-630nm dominant wavelength (typical)
- 2mA or 20mA Forward Current (IF)
- 2V or 2.2V Forward Voltage (VF)
- AIGaInP chip structure
- 54mW power dissipation
- -40°C to 85°C operating temperature
- -40°C to 85°C storage temperature
Rank Reference of Brightness
Applications
- Ambient light
- Car audio
- Automotive panels
- Navigation
- Air conditioning
- In-dash cluster panels
Learn More About
View Results ( 6 ) Page
| Part Number | Illumination Colour | Wavelength/Colour Temperature | Luminous Intensity | If - Forward Current | Vf - Forward Voltage | Datasheet |
|---|---|---|---|---|---|---|
| SML-D12M8WT86C | Yellow-Green | 572 nm | 25 mcd | 20 mA | 2.2 V | ![]() |
| SML-D12V8WT86C | Red | 630 nm | 40 mcd | 20 mA | 2.2 V | ![]() |
| SML-D12W8WT86C | Yellow | 587.5 nm | 7.1 mcd | 2 mA | 2 V | ![]() |
| SML-D12Y8WT86C | Yellow | 590 nm | 63 mcd | 20 mA | 2.2 V | ![]() |
| SML-D12P8WT86C | Green | 560 nm | 6.3 mcd | 20 mA | 2.2 V | ![]() |
| SML-D12U8WT86C | Red | 620 nm | 63 mcd | 20 mA | 2.2 V | ![]() |
Published: 2018-06-13
| Updated: 2023-03-15

