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Technical content
Features
/g120/g3Compact form factor /g120/g3High brightness material /g120/g3Available in Red, Amber, Green and Blue color /g120/g3Red AlInGaP 626nm /g120/g3Amber AlInGaP 590nm /g120/g3Green InGaN 525nm /g120/g3Blue InGaN 470nm /g120/g3Jedec MSL 2A /g120/g3Compatible with industrial reflow soldering process /g120/g3Typical Viewing angle: 30° /g120/g3Tinted, non-diffused
Applications
/g120/g3Variable Message Signs Notes: 1. All dimensions in millimeters (inches). 2. Tolerance is ± 0.20 mm unless other specified. AA CC A: Anode C: Cathode 4.20 ±0.20 4.20 ±0.20 4.75 ±0.50 6.50 ±0.50 2.50 ±0.20 3.40 ±0.50 AC1.4 (4x) 1.0
Description
The new Avago ALMD-xx3D LED series has the same or just slightly less luminous intensity than conventional high brightness, through-hole LEDs. The new LED lamps can be assembled using common SMT assembly processes and are compatible with indus- trial reflow soldering processes. The LEDs are made with an advanced optical grade epoxy for superior performance in outdoor sign applications. For easy pick and place assembly, the LEDs are shipped in EIA-compliant tape and reel. Every reel is shipped from a single intensity and color bin– except the red color–for better uniformity. Package Dimensions
Part Number Color and Dominant Wavelength /g79d (nm) Typ [3] Luminous Intensity Iv (mcd) [1,2,5] Viewing Angle Typ (°) [4]Min Max ALMD-EG3D-VX002 Red 626 4200 9300 30° ALMD-EL3D-VX002 Amber 590 4200 9300 ALMD-CM3D-WY002 Green 525 5500 12000 ALMD-CB3D-RT002 Blue 470 1500 3200 Notes: 1. The luminous intensity is measured on the mechanical axis of the lamp package and it is tested with pulsing condition. 2. The optical axis is closely aligned with the package mechanical axis. 3. Dominant wavelength, /g79d, is derived from the CIE Chromaticity Diagram and represents the color of the lamp. 4. /g84½ is the off-axis angle where the luminous intensity is half the on-axis intensity. 5. Tolerance for each bin limit is ± 15% Part Numbering System Packaging Option 02: tested 20mA, 13 inch carrier tape, 8mm pitch, 16mm carrier width Color Bin Selection 0: Full Distribution Maximum Intensity Bin Refer to Device Selection Guide Minimum Intensity Bin Refer to Device Selection Guide Untinted/Tinted Lens D: Tinted Viewing Angle 3: 30° Color B: Blue G: Red L: Amber M: Green Package C: SMT Round Lamp InGaN E: SMT Round Lamp AlInGaP SMT Lamps ALMD – X X 3D – x x x xx
Absolute Maximum Rating, TJ = 25°C Parameter Red and Amber Blue and Green Unit DC Forward Current [1] 50 30 mA Peak Forward Current 100 [2] 100 [3] mA Power Dissipation 120 114 mW Reverse Voltage 5 (I R = 100 /g80A) 5 (I R = 10 /g80A) V LED Junction Temperature 130 110 °C Operating Temperature Range -40 to +85 °C Storage Temperature Range -40 to +100 °C Notes: 1. Derate linearly as shown in Figure 4 and Figure 9 2. Duty Factor 30%, frequency 1KHz. 3. Duty Factor 10%, frequency 1KHz. Electrical / Optical Characteristics, TJ = 25°C Parameter Symbol Min. Typ. Max. Units Test Conditions Forward Voltage Red Amber Green Blue V F 1.8 1.8 2.8 2.8 2.1 2.1 3.2 3.2 2.4 2.4 3.8 3.8 VI F = 20 mA Reverse Voltage Red & Amber Green & blue V R VI F = 100 /g80A IF = 10 /g80A Dominant Wavelength [1] Red Amber Green Blue /g79 d 618.0 584.5 519.0 460.0 626.0 590.0 525.0 470.0 630.0 594.5 539.0 480.0 I F = 20 mA Peak Wavelength Red Amber Green Blue /g79 PEAK 634 594 516 464 nm Peak of Wavelength of Spectral Distribution at I F = 20 mA Thermal Resistance R /g84J-PIN 130 °C/W LED Junction-to-Pin Luminous Efficacy [2] Red Amber Green Blue /g75 V 200 520 530 lm/W Emitted Luminous Power/Emitted Radiant Power Thermal coefficient of /g79 d Red Amber Green Blue 0.059 0.103 0.028 0.024 nm/°C I Notes: 1. The dominant wavelength is derived from the chromaticity Diagram and represents the color of the lamp. 2. The radiant intensity, I e in watts per steradian, may be found from the equation I e = IV//g75V where IV is the luminous intensity in candelas and /g75V is the luminous efficacy in lumens/watt.
Figure 18. Carrier Tape Dimension Figure 19. Reel Dimension Figure 20. Unit Orientation from reel
1.5 MIN
Min Dom Max Dom X min Y Min X max Y max 0.6690 0.3149 0.7080 0.2920 Tolerance for each bin limit is ± 0.5nm Amber Color Range Bin Min Dom Max Dom Xmin Ymin Xmax Ymax 0.5370 0.4550 0.5570 0.4420 0.5530 0.4400 0.5720 0.4270 0.5670 0.4250 0.5870 0.4130 0.5820 0.4110 0.6000 0.3990 Tolerance for each bin limit is ± 0.5nm Intensity Bin Limit Table (1.3:1 Iv bin ratio) Bin Intensity (mcd) at 20mA Min Max R 1500 1900 S 1900 2500 T 2500 3200 U 3200 4200 V 4200 5500 W 5500 7200 X 7200 9300 Y 9300 12000 Z 12000 16000 Tolerance for each bin limit is ± 15% VF Bin Table (V at 20mA) for Red&Amber Bin ID Min Max VD 1.8 2.0 VA 2.0 2.2 VB 2.2 2.4 Tolerance for each bin limit is ± 0.05V
Bin Min Dom Max Dom Xmin Ymin Xmax Ymax 0.1200 0.7375 0.0979 0.8316 0.1450 0.7319 0.1305 0.8189 0.1711 0.7218 0.1625 0.8012 0.1967 0.7077 0.1929 0.7816 0.2210 0.6920 0.2233 0.7600 Tolerance for each bin limit is ± 0.5nm Blue Color Range Bin Min Dom Max Dom Xmin Ymin Xmax Ymax 0.1818 0.0904 0.1374 0.0374 0.1766 0.0966 0.1291 0.0495 0.1699 0.1062 0.1187 0.0671 0.1616 0.1209 0.1063 0.0945 0.1517 0.1423 0.0913 0.1327 Tolerance for each bin limit is ± 0.5nm
For product information and a complete list of distributors, please go to our web site: www.avagotech.com Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2010 Avago Technologies. All rights reserved. AV02-2372EN - March 22, 2010 DISCLAIMER: Avago’s products and software are not specifically designed, manufactured or authorized for sale as parts, components or assemblies for the planning, construction, maintenenace or direct operation of a nuclear facility or for use in medical devices or applications. Customer is solely responsible, and waives all rights to make claims against avago or its suppliers, for all loss, damage, expense or liability in connection with such use. Moisture Sensitivity and Handling The ALMD-xx3D series oval package has a Moisture Sensitive Level 2a rating per JEDEC J-STD-020. Refer to Avago Application Note AN5305, Handling of Moisture Sensitive Surface Mount Devices, for additional details and a review of proper handling procedures. A. Storage before use /g120 An unopened moisture barrier bag (MBB) can be stored at < 40° C/90% RH for 12 months. If the actual shelf life has exceeded 12 months and the humidity indicator card (HIC) indicates that baking is not required then it is safe to reflow solder the LEDs per the original MSL rating. /g120 It is recommended that the MBB not be opened prior to assembly (e.g. for IQC). B. Control after opening the MBB /g120 The humidity indicator card (HIC) shall be read immediately upon opening of the MBB. /g120 The LEDs must be kept at < 30° C/60% RH at all times, and all high temperature related processes including soldering, curing or rework need to be completed within 672 hours. C. Control for unfinished tape and reel parts /g120 Unused LEDs must be stored in a sealed MBB with a desiccant or desiccator at < 5% RH. D. Control of assembled boards /g120 If the PCB soldered with the LEDs is to be subjected to other high temperature processes, the PCB needs to be stored in a sealed MBB with desiccant or desiccator at < 5% RH to ensure that all LEDs have not exceeded their floor life of 672 hours E. Baking is required if: /g120 The HIC indicator is not BROWN at 10% and is AZURE at 5% /g120 The LEDs are exposed to a condition of > 30° C/60% RH at any time. /g120 The LED floor life exceeded 672 hours. The recommended baking condition is: 60 ± 5° C for 20 hours.