Model: | UC-160 |
---|---|
Brand: | FLEDA |
Origin: | Made In Taiwan, China |
Category: | Industrial Supplies / Electrical & Electronic Product Equipment |
Label: | COB uv led , uv led , high power uv led |
Price: |
US $140
/ pc
|
Min. Order: | 10 pc |
WHY Choose US
Amazing heat dissipation structure
In Ultraviolet LEDs The operation capacity is decided by the temperature of the board, the amazing copper substrate with a sophisticated heat sink is the best solution for high power operation.
The Unique Surface technology with copper base, supporting high wattage, and high reliability. While Copper lasts longer than Aluminum, it not only improves heat dissipation, also preventing oxidation which results in blackening and light intensity degradation.
Chip on board and Seamless Technology
The reason that made our product flexible, gaps between multiple arrays equal to any other chips on the board. While suiting for the length of your device, high power Boards can be combined without diminishing returns, and ready for traditional Mercury UV replacement.
Low Thermal Resistance< 0.16°c/W, High Thermal Conductivity 401W/(m.k)
LED Chip combined with Cu base greatly increases its thermal conductivity. Longer lifetime of LED chip and also better effective energy transit.
Customization and Warranty
We seek for environmental care, Mercury free, lower polution, Also with ROHS Compliant. Providing 2 years of warranty, Customization inquiries are welcomed.
UC-160W COB LED p1
UC-160 UV LEDs
Features:
• Supply wide UV-A wavelength from 365nm to 430nm
• Over 5W/cm2 of Optical power typical from 390nm to 430nm
• High thermal conductivity package:
> Junction to heat sink thermal resistance of < 0.3℃/W
• High radiometric efficiency
• Environmentally friendly: RoHS compliant, mercury-free
• Variable drive currents: less than 4.5A through 6A
• Easy use for Linear UV light source
Optical Characteristics (Ta=25℃)
Parameter |
Symbol |
Wavelength |
Conditions |
Min. |
Typ. |
Max. |
Unit |
Irradiance Note[1] |
Ee |
365-370 nm |
IF=6000mA |
0.25 |
0.5 |
- |
W/cm2 |
370-380 nm |
0.5 |
0.75 |
- |
||||
380-390 nm |
3 |
3.4 |
- |
||||
390-410 nm |
4 |
5.5 |
- |
||||
View Angle |
2 (Theta)1/2 |
X-Axis |
IF=6000mA |
140 |
150 |
160 |
Degree |
Y-Axis |
120 |
130 |
140 |
Note: [1] Irradiance measured by DYMAX ACCU-CAL 50-LED Meter, and the distance of test is 5 mm.
UC160W- COB LED p2
UC160W- COB LED p2
Electric Characteristics (Ta=25℃)
Parameter |
Symbol |
Conditions |
Min. |
Typ. |
Max. |
Unit |
Forward Voltage |
VF |
IF=6000mA |
26 |
- |
30 |
V |
Reverse Current Note[1] |
Ir |
VR=5V |
|
|
10 |
uA |
Thermal Resistance Junction to Board |
RthJ-B |
IF=6000mA |
|
0.1 |
|
℃/W |
Temperature Coefficient fo Forward Voltage |
ΔVF/ΔT |
IF=6000mA |
- |
-64 |
- |
mV/℃ |
Note: [1] Singe chip VR
Absolute Maximum Rating (Ta=25℃)
Parameter |
Symbol |
Ratings |
Unit |
Power Dissipation |
PD |
200 |
W |
Continuous Forward Current |
IF |
7000 |
mA |
Peak Forward Current Note[1] |
IF(Peak) |
10,000 |
mA |
LED Junction Temperature |
Tj |
120 |
℃ |
Operating Temperature Range |
Topr |
30℃ To +80℃ |
|
Storage Temperature Range |
Tstg |
-40℃ To +100℃ |
|
Manual Soldering Temperature |
Tsol |
260℃±20℃ For 3-5 Seconds |
|
ESD Sensitivity Note[2] |
ESD |
500V HBM |
Note: [1] Condition for IFP is pulse of 10% duty cycle @ 1kHz
[2]Singe chip ESD
UC160W COB LED p3
UC160W COB LED p3
Mechanical Dimensions
LED Array: 8s20p
Typical Voltage: 28V
Operating Current: 6000mA
Notes:
(1) All dimensions are in millimeters.
(2) Tolerance is ±0.25mm
Ordering Information
Color |
Order Code |
Peak Wavelength (nm) |
Light Intensity (W/cm2) |
||
Min |
Max |
Min |
Max |
||
UV |
UC-160-415 |
410 |
420 |
4 |
6 |
UC-160-405 |
400 |
410 |
4 |
6 |
|
UC-160-395 |
390 |
400 |
4 |
6 |
|
UC-160-385 |
380 |
390 |
3 |
4 |
|
UC-160-375 |
370 |
380 |
0.5 |
0.75 |
|
UC-160-365 |
365 |
370 |
0.25 |
0.5
|
Payment Terms: | TT |
---|---|
FLEDA Technology corporation | |
---|---|
Country/Region: | Taiwan, China |
Business Nature: | Manufacturer |
Phone: | 22748535 |
Contact: | Lu Yang (Sales Manager) |
Last Online: | 10 Aug, 2015 |