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Transcription:

Features. High Flux Output.. Designed for High Current Operation.. Low Thermal Resistance Rth(junction to lead):120 C/W. Packaged in Tubes for Use with Automatic Insertion Equipment..The product itself will remain within RoHS compliant version.. Viewing angle 38 85degree Descriptions This revolutionary package design allows the light designer to reduce the number of LEDs required and provide a more uniform and unique illuminated appearance than with other LED solutions. This is possible through the efficient optical package design and high-current capabilities. The low profile package can be easily coupled with reflectors or lenses to efficiently distribute light and provide the desired light appearance. Applications. Automotive Lighting. Electronic Signs and Signals. Special Lighting application Device Selection Guide Chip PART NO. Lens Color Material Emitted Color AlInGaP Brilliant Red Water Clear Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 1 of 9

Package Dimensions C1.25 R0.7±0.2 LED chip A :ANODE /C :CATHODE C C C(-) C(-) 7.62±0.5 A A A(+) A(+) 7.62±0.5 3.9 3.15±0.2 3.9±0.2 3.15±0.2 1.55±0.2 0.5 4.4±0.2 2.15 5.0 TYP 7.5±0.5 2.5±0.5 0.75±0.2 0.4±0.1 2.54±0.15 2.54±0.1 5.08±0.3 5.08±0.2 Notes: 1.All dimensions are in millimeters 2.An epoxy meniscus may extend about 1.5mm(0.059") down the leads 3.Tolerances unless dimensions ±0.25mm Absolute Maximum Ratings (Ta=25 ) Parameter Symbol Rating Units Continuous Forward Current I F 70 ma Peak Forward Current(Duty 1/10 @ 1KHZ) I FP 160 ma Reverse Voltage V R 5 V Operating Temperature T opr -40 ~ +100 Storage Temperature T stg -40 ~ +100 Soldering Temperature(T=5 sec) T sol 260 LED Junction Temperature T j 120 Power Dissipation P d 220 mw Electrostatic Discharge ESD 2K V Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 2 of 9

Electro-Optical Characteristics (Ta=25 ) Parameter Symbol Min. Typ. Max. Condition Unit Total Flux Φv 4500 ---- 9000 IF=70mA mlm Viewing Angle 2θ1/2 ---- 38 85 ---- IF=70mA deg Peak Wavelength λp ---- 632 ---- IF=70mA nm Dominant Wavelength λd 620 ---- 632 IF=70mA nm Spectrum Radiation Bandwidth λ ---- 20 ---- IF=70mA nm Forward Voltage VF 1.9 2.4 3.1 IF=70mA V Reverse Current IR ---- ---- 10 VR=5V µa Rank (1) (2) (3) (1) VF(V) (2) λd(nm) (3)Φv(mlm) Bin Min Max Bin Min Max Bin Min Max 2 1.9 2.1 2 620 624 R 4500 5650 3 2.1 2.3 3 624 628 S 5650 7150 4 2.3 2.5 4 628 632 T 7150 9000 5 2.5 2.7 6 2.7 2.9 7 2.9 3.1 *Measurement Uncertainty of Forward Voltage: ±0.1V *Measurement Uncertainty of Total Flux: ±11% *Measurement Uncertainty of Dominant Wavelength: ±1.0nm Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 3 of 9

Typical Electro-Optical Characteristics Curves Relative Intensity vs. Wavelength Forward Current vs. Forward Voltage 1.00 80 RELATIVE INTENSITY 0.50 FORWARD CURRENT (ma) 60 40 20 0.00 580 600 620 640 660 680 WAVELENGTH (nm) Relative Intensity vs. Forward Current RELATIVE INTENSITY 1.00 0.80 0.60 0.40 0.20 0.00 0 10 20 30 40 50 60 70 FORWARD CURRENT (ma) Forward Current vs. Ambient Temp. MAXMUM DC CURRENT(mA) 80 70 60 50 40 30 20 10 0 1.40 1.60 1.80 2.00 2.20 2.40 2.60 2.80 3.00 3.20 FORWARD VOLTAGE (V) 0 0 20 40 60 80 100 120 140 AMBIENT TEMPERATURE (C) Relative Intensity vs. Angle Displacement Relative Intensity (a.u.) 1.0 0.8 0.6 0.4 0.2 0 0 10 0 20 0 30 0 40 0 50 0 60 0 70 0 80 0 0.0 90 0-90 0-70 0-50 0-30 0-10 0 Viewing angle (degree) Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 4 of 9

Packing Specification 1. Tube Cross section image of tube Unit: mm Whole image of tube Tube Label ANTISTATIC 485±2mm 2. Inner Box Box Label Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 5 of 9

3. Outside Box Box Label 4. Packing Quantity (1) 60 pcs/1 tube, 30 tubes/1 small inside box, 12 small inside boxes/1 outside box (2) 60 pcs/1 tube, 105 tubes/1 big inside box, 4 big inside boxes/1 outside box Label Form Specification (1)Tube Label Form PART NO: QTY: 60 LOT NO: CAT: (2)Box Label Form CPN: P/N: EVERLIGHT QTY: LOT NO: MADE IN TAIWAN CAT: HUE: REF: RoHS PART NO: Everlgiht s Production Number QTY: Packing Quantity LOT NO: Lot Number CAT: Ranks of Forward Voltage, Dominant Wavelength and Total Flux CPN: Customer s Production Number P/N : Production Number HUE: Reference REF: Reference MADE IN TAIWAN: Production Place Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 6 of 9

Notes 1. Lead Forming During lead formation, the leads should be bent at a point at least 3mm from the base of the epoxy bulb. Lead forming should be done before soldering. Avoid stressing the LED package during leads forming. The stress to the base may damage the LED s characteristics or it may break the LEDs. Cut the LED leadframes at room temperature. Cutting the leadframes at high temperatures may cause failure of the LEDs. When mounting the LEDs onto a PCB, the PCB holes must be aligned exactly with the lead 2. Storage position of the LED. If the LEDs are mounted with stress at the leads, it causes deterioration of the epoxy resin and this will degrade the LEDs. The LEDs should be stored at 30 C or less and 70%RH or less after being shipped from Everlight and the storage life limits are 3 months. If the LEDs are stored for 3 months or more, they can be stored for a year in a sealed container with a nitrogen atmosphere and moisture absorbent material. Please avoid rapid transitions in ambient temperature, especially, in high humidity 3. Soldering environments where condensation can occur. Careful attention should be paid during soldering. Solder the LED no lower than 1.6mm from the base of stopper is recommended. Avoiding applying any stress to the lead frame while the LEDs are at high temperature particularly when soldering. Recommended soldering conditions: Hand Soldering DIP Soldering Temp. at tip of iron 300 Max. (30W Max.) Preheat temp. 100 Max. (60 sec Max.) Soldering time 3 sec Max. Bath temp. 260 Max. Distance No lower than 1.6mm from the base of stopper Bath time. Distance 5 sec Max. No lower than 1.6mm from the base of stopper Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 7 of 9

Dip and hand soldering should not be done more than one time. After soldering the LEDs, the epoxy bulb should be protected from mechanical shock or vibration until the LEDs return to room temperature. A rapid-rate process is not recommended for cooling the LEDs down from the peak temperature. Although the recommended soldering conditions are specified in the above table, dip or handsoldering at the lowest possible temperature is desirable for the LEDs. Wave soldering parameter must be set and maintain according to recommended 4. Cleaning temperature and dwell time in the solder wave. When necessary, cleaning should occur only with isopropyl alcohol at room temperature for a duration of no more than one minute. Dry at room temperature before use. Do not clean the LEDs by the ultrasonic. When it is absolutely necessary, the influence of ultrasonic cleaning on the LEDs depends on factors such as ultrasonic power and the assembled condition. Ultrasonic cleaning shall be pre-qualified to ensure this will not cause damage to the LED 5. Circuit Protection Below the zener reference voltage Vz, all the current flows through LED and as the voltage rises to Vz, the zener diode breakdown." If the voltage tries to rise above Vz current flows through the zener branch to keep the voltage at exactly Vz. When the LED is connected using serial circuit, if either piece of LED is no light up but current can t flow through causing others to light down. In new design, the LED is parallel with zener diode. if either piece of LED is no light up but current can flow through causing others to light up. 6. Heat Management Heat management of LEDs must be taken into consideration during the design stage of LED application. The current should be de-rated appropriately by referring to the de-rating curve found in each product specification. The temperature surrounding the LED in the application should be controlled. Please refer to the data sheet de-rating curve. 7. ESD (Electrostatic Discharge) Electrostatic discharge (ESD) or surge current (EOS) can damage LEDs. An ESD wrist strap, ESD shoe strap or antistatic gloves must be worn whenever handling Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 8 of 9

8. Other LEDs. All devices, equipment and machinery must be properly grounded. Use ion blower to neutralize the static charge which might have built up on surface of the LEDs plastic lens as a result of friction between LEDs during storage and handing. Above specification may be changed without notice. EVERLIGHT will reserve authority on material change for above specification. When using this product, please observe the absolute maximum ratings and the instructions for using outlined in these specification sheets. EVERLIGHT assumes no responsibility for any damage resulting from use of the product which does not comply with the absolute maximum ratings and the instructions included in these specification sheets. These specification sheets include materials protected under copyright of EVERLIGHT corporation. Please don t reproduce or cause anyone to reproduce them without EVERLIGHT s consent. EVERLIGHT ELECTRONICS CO., LTD. Tel: 886-2-2267-2000, 2267-9936 Office: No 25, Lane 76, Sec 3, Chung Yang Rd, Fax: 886-2267-6244, 2267-6189, 2267-6306 Tucheng, Taipei 236, Taiwan, R.O.C http://www.everlight.com Everlight Electronics Co., Ltd. http://www.everlight.com Rev. 1 Page: 9 of 9