SWIR LED 1000-1900NM
Parameter |
Conditions |
Min |
Max |
Unit |
Peak Wavelength |
l=20mA |
1100 |
1900 |
nm |
|
---- |
20 |
100 |
mA |
Forward Voltage |
lf=20mA |
0.8 |
1.4 |
V |
Radiant Power(1150nm) |
lf=20mA |
2 |
6 |
mW |
Radiant Power(1250nm) |
lf=20mA |
2 |
6 |
mW |
Radiant Power(1350nm) |
lf=20mA |
2 |
6 |
mW |
Radiant Power(1450nm) |
l=20mA |
2 |
5 |
mW |
Radiant Power(1550nm) |
l=20mA |
2 |
4 |
mW |
Radiant Power(1650nm) |
lf=20mA |
1 |
3 |
mW |
Radiant Power(1750nm) |
lf=20mA |
1 |
3 |
mW |
Radiant Power(1850nm) |
l=20mA |
1 |
3 |
mW |
Viewing Angle |
---- |
120 |
deg |
|
Reverse Current |
VR=5V |
10 |
μA |
|
Rise Time |
l=100mA |
22 |
ns |
|
Fall Time |
lf=100mA |
42 |
ns |
|
|
| ||||
Parameter |
Conditions |
Min |
Max |
Unit |
Peak Wavelength |
lf=100mA |
1100 |
1800 |
nm |
|
---- |
100 |
1000 |
mA |
Forward Voltage |
lf=100mA |
0.7 |
1.4 |
V |
Radiant Power(1150nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1250nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1350nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1450nm) |
lf=100mA |
10 |
30 |
mW |
Radiant Power(1550nm) |
lf=100mA |
10 |
30 |
mW |
Radiant Power(1650nm) |
lf=100mA |
5 |
20 |
mW |
Radiant Power(1750nm) |
lf=100mA |
5 |
20 |
mW |
Viewing Angle |
lf=100mA |
120 |
deg |
|
Thermal resistance, |
---- |
10 |
℃/W |
|
LED junction temperature |
---- |
105 |
℃ |
|
|
| ||||
Parameter |
Conditions |
Min |
Max |
Unit |
Peak Wavelength |
l=100mA |
1100 |
1800 |
nm |
|
---- |
100 |
1000 |
mA |
Forward Voltage |
l=100mA |
0.7 |
1.4 |
V |
Radiant Power(1150nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1250nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1350nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1450nm) |
lf=100mA |
10 |
30 |
mW |
Radiant Power(1550nm) |
lf=100mA |
10 |
30 |
mW |
Radiant Power(1650nm) |
lf=100mA |
5 |
20 |
mW |
Radiant Power(1750nm) |
lf=100mA |
5 |
20 |
mW |
Viewing Angle |
l=100mA |
30 |
deg |
|
Thermal resistance, |
---- |
10 |
℃/W |
|
LED junction temperature |
---- |
105 |
℃ |
|
|
| ||||
Parameter |
Conditions |
Min |
Max |
Unit |
Peak Wavelength |
lf=100mA |
1100 |
1800 |
nm |
|
---- |
100 |
1000 |
mA |
Forward Voltage |
l=100mA |
0.7 |
1.4 |
V |
Radiant Power(1150nm) |
l=100mA |
20 |
40 |
mW |
Radiant Power(1250nm) |
l=100mA |
20 |
40 |
mW |
Radiant Power(1350nm) |
lf=100mA |
20 |
40 |
mW |
Radiant Power(1450nm) |
l=100mA |
10 |
30 |
mW |
Radiant Power(1550nm) |
lf=100mA |
10 |
30 |
mW |
Radiant Power(1650nm) |
lf=100mA |
5 |
20 |
mW |
Radiant Power(1750nm) |
lf=100mA |
5 |
20 |
mW |
Viewing Angle |
l=100mA |
60 |
deg |
|
Thermal resistance, |
---- |
10 |
℃/W |
|
LEDjunction temperature |
---- |
105 |
℃ |
|
|
| ||||
Fire Safety Solution
01
Internal Defect Detection
01
Internal Defect Detection
01
Material Identification
01
SWIR LED
01
Weather Solution
01
Sorting and Inspection
01
Medical & Health
01SWIR LED (1000–1900nm)
-
Q: What are the main application scenarios of SWIR LEDs (1000–1900nm)?
-
Q: Can the wavelength range of SWIR LEDs be precisely customized? For example, 1300nm or 1550nm?
-
Q: My machine vision equipment requires high-power SWIR light sources. What is the maximum power limit of these LEDs?
-
Q: Do SWIR LEDs comply with international optoelectronic equipment standards? What certifications are required for export?
-
Q: Can you provide spectral test reports for SWIR LEDs to match my spectral analysis equipment?








