c450tr5050-0209 Cree, Inc., c450tr5050-0209 Datasheet

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c450tr5050-0209

Manufacturer Part Number
c450tr5050-0209
Description
Manufacturer
Cree, Inc.
Datasheet
TR5050™ LEDs
CxxxTR5050-Sxx000
Data Sheet
Cree’s TR5050 LEDs are the next generation of solid-state LED emitters that combine highly efficient InGaN materials
with Cree’s proprietary device technology and silicon-carbide substrates to deliver superior value for the TV-backlighting
and general-illumination markets. The TR5050 LEDs are among the brightest in the top-view market while delivering a
low forward voltage, resulting in a very bright and highly efficient solution. The design is optimally suited for industry-
standard top-view packages.
FEATURES
CxxxTR5050-Sxx000 Chip Diagram
Rectangular LED RF Performance
– 450 & 460 nm – 180 mW min
Adhesive Die Attach
Low Forward Voltage – 3.3 V Typical at 120 mA
Maximum DC Forward Current - 180 mA
Class 2 ESD Rating
InGaN Junction on Thermally Conductive SiC
Substrate
Top View
Cathode (-)
98-μm diameter
Anode (+)
90-μm diameter
Subject to change without notice.
Die Cross Section
www.cree.com
t = 175 μm
APPLICATIONS
TR5050 LED
500 x 500 μm
Bottom Surface
327 x 327 μm
Large LCD Backlighting
– Television
General Illumination
Medium LCD Backlighting
– Portable PCs
– Monitors
LED Video Displays
White LEDs
Bottom View
1

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c450tr5050-0209 Summary of contents

Page 1

TR5050™ LEDs CxxxTR5050-Sxx000 Data Sheet Cree’s TR5050 LEDs are the next generation of solid-state LED emitters that combine highly efficient InGaN materials with Cree’s proprietary device technology and silicon-carbide substrates to deliver superior value for the TV-backlighting and general-illumination markets. The TR5050 LEDs are among the brightest in the top-view market while delivering a low forward voltage, resulting in a very bright and highly efficient solution. The design is optimally suited for industry- standard top-view packages. FEATURES • Rectangular LED RF Performance – 450 & 460 nm – 180 mW min • Adhesive Die Attach • Low Forward Voltage – 3.3 V Typical at 120 mA • Maximum DC Forward Current - 180 mA • Class 2 ESD Rating • InGaN Junction on Thermally Conductive SiC Substrate CxxxTR5050-Sxx000 Chip Diagram Top View Cathode (-) 98-μm diameter Anode (+) 90-μm diameter APPLICATIONS • Large LCD Backlighting – ...

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... Note 4 Peak Forward Current (1/10 duty cycle @ 1 kHz) LED Junction Temperature Reverse Voltage Operating Temperature Range Storage Temperature Range Electrostatic Discharge Threshold (HBM) Note 2 Electrostatic Discharge Classification (MIL-STD-883E) Typical Electrical/Optical Characteristics at T Part Number Forward Voltage (V Min. C450TR5050-Sxx000 2.7 C460TR5050-Sxx000 2.7 Mechanical Specifications Description P-N Junction Area (μm) Chip Area (μm) Chip Thickness (μm) Au Bond Pad Diameter Anode (μm) Au Bond Pad Thicknesses (μm) Au Bond Pad Diamater Cathode (μm) Bottom Area (μm) Notes: 1 ...

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... Standard Bins for CxxxTR5050-Sxx000 LED chips are sorted to the radiant flux and dominant wavelength bins shown. A sorted die sheet contains die from only one bin. Sorted die kit (CxxxTR5050-Sxxxx) orders may be filled with any or all bins (CxxxTR5050-xxxx) contained in the kit. All radiant flux and dominant wavelength values shown and specified are 120 mA. C450TR5050-0209 220.0 C450TR5050-0205 200.0 C450TR5050-0201 180.0 445 Note: The radiant-flux values above are representative of the die in a Cree 5-mm lamp. Copyright © 2011 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and the Cree logo are registered trademarks, and TR and TR5050 are trademarks of Cree, Inc ...

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Characteristic Curves These are representative measurements for the TR5050 LED product. Actual curves will vary slightly for the various radiant flux and dominant wavelength bins. Forward Current vs. Forward Voltage 180 160 140 120 100 0 (V) Forward Current vs. Forward Voltage Relative Intensity ...

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... Far Fields – TR500 Radiation Pattern This is a representative radiation pattern for the TR5050 LED product. Actual patterns will vary slightly for each chip. Copyright © 2010, Cree, Inc. (Confidential) Copyright © 2011 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and the Cree logo are registered trademarks, and TR and TR5050 are trademarks of Cree, Inc. 5 CPR3ER Rev. - pg. 2 4600 Silicon Drive Durham, NC 27703 USA Tel: +1.919.313.5300 Cree, Inc. www.cree.com ...

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