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UT2200-50 Datasheet(PDF) 2 Page - Marktech Corporate |
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UT2200-50 Datasheet(HTML) 2 Page - Marktech Corporate |
2 / 5 page Copyright © 2007 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo and G•SiC are registered trademarks, and UltraThin and UT are trademarks of Cree, Inc. 2 CPR3DP Rev. A Cree, Inc. 4600 Silicon Drive Durham, NC 27703 USA Tel: +1.919.313.5300 www.cree.com Maximum Ratings at T A = 25°C Notes &3 CxxxUT2200-Sxxxxx DC Forward Current 30 mA Peak Forward Current (1/10 duty cycle @ 1 kHz) 100 mA LED Junction Temperature 125°C Reverse Voltage 5 V Operating Temperature Range -40°C to +100°C Storage Temperature Range -40°C to +100°C Electrostatic Discharge Threshold (HBM) Note 2 500 V Typical Electrical/Optical Characteristics at T A = 25°C, If = 5 mA Note 3 Part Number Forward Voltage (V f, V) Reverse Current [I(Vr=5 V), μA] Full Width Half Max ( λ D, nm) Min. Typ. Max. Max. Typ. C460UT2200-Sxxxxx 2.7 2.9 3.1 2 21 C470UT2200-Sxxxxx 2.7 2.9 3.1 2 22 C527UT2200-Sxxxxx 2.7 3.0 3.2 2 35 Mechanical Specifications CxxxUT2200-Sxxxxx Description Dimension Tolerance P-N Junction Area (μm) 150 x 150 ± 25 Top Area (μm) 200 x 200 ± 25 Bottom Area (Substrate) (μm) 150 x 150 ± 25 Chip Thickness (μm) 50 ± 10 Au Bond Pad Diameter (μm) 90 -5, +15 Au Bond Pad Thickness (μm) 1.2 ± 0.5 Back Contact Metal Area (μm) 80 x 80 ± 25 Notes: Maximum ratings are package dependent. The above ratings were determined using a T-1 3/4 package (with Hysol OS4000 epoxy) for characterization. Ratings for other packages may differ. The forward currents (DC and Peak) are not limited by the die but by the effect of the LED junction temperature on the package. The junction temperature limit of 125°C is a limit of the T-1 3/4 package; junction temperature should be characterized in a specific package to determine limitations. Assembly processing temperature must not exceed 325°C (< 5 seconds). Product resistance to electrostatic discharge (ESD) according to the HBM is measured by simulating ESD using a rapid avalanche energy test (RAET). The RAET procedures are designed to approximate the ESD ratings shown. All products conform to the listed minimum and maximum specifications for electrical and optical characteristics when assembled and operated at 5 mA within the maximum ratings shown above. Efficiency decreases at higher currents. Typical values given are within the range of average values expected by manufacturer in large quantities and are provided for information only. All measurements were made using lamps in T-1 3/4 packages (with Hysol OS4000 epoxy). Optical characteristics measured in an integrating sphere using Illuminance E. Caution: To obtain optimum output efficiency, the amount of epoxy used should be characterized based upon the specific application. 1. 2. 3. 4. C460UT2200-S0550 C460UT2200-0201 C460UT2200-0202 C460UT2200-0203 C460UT2200-0204 8.0 mW 5.5 mW Dominant Wavelength 455 nm 460 nm 465 nm 462.5 nm 457.5 nm C460UT2200-S0800 C460UT2200-0205 C460UT2200-0206 C460UT2200-0207 C460UT2200-0208 8.0 mW Dominant Wavelength 455 nm 460 nm 465 nm 462.5 nm 457.5 nm C470UT2200-S0550 C470UT2200-0201 C470UT2200-0202 C470UT2200-0203 C470UT2200-0204 8.0 mW 5.5 mW Dominant Wavelength 465 nm 470 nm 472.5 nm 467.5 nm 475 nm C470UT2200-S0800 C470UT2200-0205 C470UT2200-0206 C470UT2200-0207 C470UT2200-0208 8.0 mW Dominant Wavelength 465 nm 470 nm 472.5 nm 467.5 nm 475 nm |
Similar Part No. - UT2200-50_15 |
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Similar Description - UT2200-50_15 |
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