1. Technology overview
The ABF100 have compact design and excellent heat management. As a light engine, its stable performance make product highly competitive.
Product Name | 100W LED module for beam light |
Model | ABF100 |
Input Voltage | Available 24V |
Luminous Flux | 5000lm |
Color temperature | 8000-9000K |
Certification | RoHS |
Warranty | 1 year |
Applications | Architectural and Specialty |
Entertainment Lighting | |
Spot Lighting | |
Flood Lighting |
2. Operating Characteristics
Item |
Symbol |
Minimum |
Typical |
Maximum |
Unit |
Recommend Forward Current |
IF |
|
3.8 |
4.0 |
A |
Luminous Flux |
ΦV |
4,700 |
5,000 |
|
lm |
Color Temperature |
TC |
8,000 |
8,500 |
9,000 |
K |
Chromaticity Coordinates
|
x |
|
0.2920 |
|
|
y |
|
0.2964 |
|
||
Color Rendering Index |
Ra |
|
70 |
|
|
Gobo Aperture Diameter |
|
|
5 |
|
mm |
Work Distance |
|
15 |
16 |
17 |
mm |
Viewing Angle |
|
|
58 |
|
Degrees |
Operating Junction Temperature |
Tiope |
|
|
135 |
℃ |
Operating Thermistor Temperature |
Tref |
|
65 |
75 |
℃ |
Storage Temperature |
|
-40 |
|
85 |
℃ |
Lifetime |
|
|
≥20,000 |
|
Hours |
3. Optical and Electrical Characteristics
The following diagrams and parameters of the product is only provided for reference(all measurement base on TA=25℃). Actual curves will vary slightly for the various radiant fluxes, input power and dominant wavelength bins of LEDs.
Typical Spectrum
Relative output Flux vs. Forward Current
Forward Voltage vs. Forward Current
Color Temperature vs. Forward Current
Color Temperature vs. Thermistor Temperature, IF =4A
Relative output Flux vs. Thermistor Temperature, IF=4A
CRI(Ra) vs. Thermistor Management, IF =4A
Max & Avg. Junction Temperature vs. Thermistor Temperature, IF =4A
4. Thermal Management
Proper thermal management is critical for successful operation of any LED system. Excess operating temperature can reduce the light output of the device.
5. Optical Characteristics
Proper optical system is critical for successful lighting fixture. Unsuitable optical system for the LED light source module will reduce the light output and the uniformity of the device.
6. Mechanical Dimensions
Note: All dimensions are ±0.5 unless otherwise indicated.