BTP3-99XXCG-XX-X DBLECTRO | Alldatasheet

Document overview

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  • PDF pages: 10

Technical content

Features

ƒ Highest Lumen Per Watt ƒ Long Operational Life ƒ White Housing ƒ Superior ESD Protection ƒ Instant Light (less than 100ns) ƒ Compatible to Luxeon’s “Lambertian” ƒ True SMD Emitter ƒ IR Reflow Soldering Process

Applications

ƒ Accent Light/Down Light/Spot Light ƒ Automotive Exterior/Interior Light ƒ Large Area LCD Backlights ƒ Marine/Miner’s Lighting ƒ Portable Flashlight/ General Lighting Note: Lens is low dome profile Tolerance: ± see spec Unit: mm Optical Characteristics at TJ=25ºC, IF=700mA Wavelength (nm) CCT (K) Range Drive Voltage @ 700mA Luminous Flux (lm) @700mA PART NUMBER Emitting Color LED Chip Material Lens Color Min Max Typ. Typ. VIEW ANGLE 2θ1/2 (deg) BTP3-99NRCG-XX-X/W Normal Red Water Clear 620 635 2.40V 60 lm BTP3-99AMCG-XX-X/W Amber Water Clear 610 620 2.40V 72 lm BTP3-99YECG-XX-X/W Yellow AlInGaP Water Clear 585 595 2.40V 60 lm BTP3-99BLCG-XX-X/W Blue Water Clear 460 475 3.50V 20 lm BTP3-99PGCG-XX-X/W Green Water Clear 520 540 3.50V 60 lm BTP3-99WWCG-XX-X/W Warm White Water Clear 2800K 3800K 3.50V 40 lm BTP3-99WHCG-XX-X/W White AlInGaN Water Clear 5000K 8000K 3.50V 60 lm 140 Notes: 1) Picture for illustration purpose only. Please refer to outline dimension for actual package size. 2) Flux is measured with the accuracy of ±15%. Please refer to Flux Selection Guide 3) CCT is measured with the accuracy of ± 400K. Please refer to CCT Selection Guide 4) V F is measured with the accuracy of ± 0.15V. Please refer to VF Selection Guide

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 2 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Absolute Maximum Ratings at TJ=25ºC Parameter Red/Amber/Yellow White/Blue/Green Power Dissipation (W) 2.17 2.80 DC Forward Current (mA)[1] 700 700 Peak Pulsed Forward Current (mA) [4] 1000 1000 Average Forward Current (mA) 700 700 Reverse Voltage (V) 5 5 Reverse Current (uA) 50 50 ESD Sensitivity (V) [2] 16,000 16,000 LED Junction Temperature at 350mA (°C) [3] 120 135 Thermal Resistance Junction to Board (°C/W) 13 13 Temperature Coefficient of VF (mV/°C) -2 -2 Storage Temperature (°C) -40 to +105 -40 to +105 Operating Temperature (°C) -40 to +105 -40 to +105 Lead Soldering Temperature (°C)[4] 260°C for 5 seconds max 260°C for 5 seconds max Application Notes: 1. Proper forward current must be observed to ma intain the junction temperature below maximum rating 2. Although all products listed are class one ESD pr otection (+/- 16KV by HBM mode), care must be fully taken when handling products 3. Specification is subjected to ch ange for improvements without notice. 4. Test conditions: tp ≤10us, duty cycle = 0.005 5. CAUTION: When lighting up, the emitter will become very hot if it is not attached to a heat sink. Please provide proper heat management to prevent damage to the emitter.

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 3 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W CCT, Flux and VF Selection Guide (@TJ=25ºC, IF=700mA) BTP3-99XXCG-XX-X/W White Housing Wavelength Ranks Selection Flux Ranks Selection λD(nm) Color Bin Min Max B5 460 465 B6 465 470 B7 470 475 Blue XX 460 – 475 G6 515 520 G7 520 525 G8 525 530 G9 530 535 Green XX 515 – 535 Red XX 620 – 630 Amber XX 610 – 620 Yellow XX 585 – 595 CCT Ranks Selection V F Ranks Selection CCT(K) Color Temp Bin Min Max 00 2800 3300 01 3300 3800 Warm White XX 2800K – 3800K 02 5000 6000 03 6000 7000 04 7000 8000 White XX 5000K – 8000K (Please specify on order, otherwise, default full range of VF) Color Bin Flux (lumens) K 8~10 L 10~14 M 14~18 Blue X Default Full Range Q 30~39 R 39~50 S 50~65 T 65~85 U 85~111 Red Amber Yellow Green White X Default Full Range VF (V) Color Bin Min Max V04 2.0 2.2 V05 2.2 2.4 V06 2.4 2.6 V07 2.6 2.8 Red Amber Yellow VXX(Full) 2.0~2.8 V08 2.8 3.0 V09 3.0 3.2 V10 3.2 3.4 V11 3.4 3.6 V12 3.6 3.8 White Blue Green VXX(Full) 2.8~3.8

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 4 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Typical Electro-Optical Characteristics Curves Fig. 1 Forward Current vs Ambient Temperature (Green, Blue and White) Fig. 2 Forward Current vs Ambient Temperature (Red, Amber and Yellow)

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 5 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 6 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Typical Electro-Optical Characteristics Curves Fig. 5a Relative Light Output vs Junction Temperature Fig. 5b Relative Light Output vs Junction Temperature

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 7 of 10 100 -100 -80 -60 -40 -20 0 20 40 60 80 100 Angular Displacement(Degree) Relative Intensity(% ) ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Typical Electro-Optical Characteristics Curves Fig. 6 Typical Radiation Pattern Recommended Solder Pad Layout Fig. 7 Recommended Solder Pads Dimension

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 8 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Tape and Reel Packaging Dimension

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 9 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W Recommended IR Reflow Conditions Reflow Soldering Lead Solder Lead-Free Solder Pre-heat 120~150ºC 180~200ºC Pre-heat time 120 sec Max 120 sec Max Peak Temperature 240ºC Max 260ºC Max Soldering Time 10 sec Max 10 sec Max Conditions Refer to Temperature profile A Refer to Temperature profile B (N2 reflow is recommended) Temperature Profile A (Surface of MCPCB) Temperature Profile B (Surface of MCPCB)

Part No.: BTP3-99XXCG-XX-X/W Rev1.2005 Page 10 of 10 ProLite 3W SMD Emitter BTP3-99XXCG-XX-X/W IR Reflow Process Notes z Occasionally there is a brightness decrease due to the influence of heat or ambient during air reflow. It is recommended that customer use nitrogen reflow method. z Repairing should not be done after the LEDs have been soldered. When repairing is required, double-head soldering iron should be used. Customer should confirm whether the characteristics of the LEDs will or will not damaged before carrying out the repair. z Reflow soldering should not be done more than two times z When soldering, do not put stress on the LEDs during heating. z After soldering, do not warp the circuit board. Manual Hand Soldering Notes z For prototype builds or small production runs, it is possible to place and solder the emitters. z It is recommended to hand solder the leads and slug with a solder tip temperature of 230ºC for less than 10seconds. This profile ensures a junction temperature below the maximum of 120ºC, avoiding damage to the emitter or to the MCPCB dielectric layer. Damage dielectric layer can cause a short circuit in the array. Other Important Notes: z The information contained herein is presented only as a Guide for the application of our products. Brilliance Technologies assumes no responsibility for any infringement of intellectual property or other rights of the third parties which may result from its use. z Brilliance Technologies continually improves the quality of our products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsible of the customer, when using Brilliance Technologies products, to comply with the standard of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such Brilliance Technologies products cause loss of human life, bodily injury or damage to property. z Brilliance Technologies products listed in this data sheet are intended for usage in general electronics and/or non-commercial or industrial lighting products. These products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or bodily injury. z In developing your design, please ensure that Brilliance Technologies products are used within specified operating ranges as set forth in the most recent Brilliance Technologies data sheets. BT-Rev. 1.0A20050119 Specifications are subject to change for improvement without notice. Copyright © 2003 Brilliance Technologies Co., Ltd. All rights reserved.