Display Surface-mount EADSS050GA2

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Transcription:

Features Industrial standard size. Packaged in tape and reel for SMT manufacturing. The thickness is thinness than tradition display. Low power consumption. Categorized for luminous intensity. Pb free and RoHS compliant. Description The is a 3.0mm (0.5") digit height seven-segment display. The display provides excellent reliability in bright ambient light. The device is made with white segments and gray surface. Applications Home appliances. Instrument panels. Digital readout displays. Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Device Selection Guide Chip Materials Emitted Color Resin Color AlGaInP Brilliant Yellow Green White Diffusion Absolute Maximum Ratings (Ta=25 ) Parameter Symbol Rating Unit Reverse Voltage V R 5 V Forward Current I F 25 ma Peak Forward Current (Duty /0 @KHz) I FP 60 ma Power Dissipation Pd 60 mw Operating Temperature T opr -40 ~ +85 Storage Temperature T stg -40 ~ +00 Soldering Temperature (Soldering time 5 seconds) T sol 260 Electro-Optical Characteristics (Ta=25 ) Parameter Symbol Min. Typ. Max. Unit Condition Luminous Intensity * Iv 5.6 2.5 ----- mcd I F =0mA Peak Wavelength λp ----- 575 ----- nm I F =20mA Dominant Wavelength λd ----- 573 ----- nm I F =20mA Spectrum Radiation Bandwidth λ ----- 20 ----- nm I F =20mA Forward Voltage V F ----- 2.0 2.4 V I F =20mA Reverse Current I R ----- ----- 0 µa V R =5V Note:. Luminous Intensity is a average value which is measured one 7-segment. 2. Tolerance of Luminous Intensity: ± 0 % 3. Tolerance of Forward Voltage: ± 0.V 2 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Bin Range of Luminous Intensity Bin Code Min. Max. Unit Condition P 5.6 8.9 Q 7.8 2.5 R.0 7.6 S 5.0 24.0 T 2.0 34.0 U 30.0 48.0 V 42.0 67.0 W 59.0 94.0 mcd I F =0mA 3 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Typical Electro-Optical Characteristics Curves Spectrum Distribution (Ta=25 ) Forward Current vs. Forward Voltage (Ta=25 ) (% Relative luminous intensity ) Forward Current (ma) Wavelength λp (nm) Forward Current Derating Curve Forward Voltage (V) Forward Current (ma) Ambient Temperature ( C ) 4 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Package Dimension & Internal Circuit Diagram EADXXX Date Bin Note: Tolerances unless mentioned ±0.25mm. Unit = mm 5 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

8 7 6 5 4 3 2 2 3 4 2 0 9 8 5 6 7 P S 03 03 3 0 0 3 3 0 30 DATASHEET Packing Materials Label Explanation CPN: Customer s Product Number P/N: Product Number QTY: Packing Quantity CAT: Luminous Intensity Rank HUE: Reference REF: Reference LOT No: Lot Number DC: Year and Weekly REFERENCE: Volume Label code Reel Dimensions 2.30 32.50 B" A" 330 20 0 90 R202 00 6 2.3 5 7. 0 R 6.75 R Carrier Tape Dimensions: Loaded Quantity 800 PCS Per Reel 6 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Note: Tolerances unless mentioned ±0.25mm. Unit = mm Packing Process 800 PCS/Roll Roll/Bag Bag/Small box 6 Small boxes/box Precautions for Use. Soldering Condition. (A) Maximum Body Case Temperature Profile for evaluation of Reflow Profile Note: Reference: IPC/JEDEC J-STD-020D Preheat Temperature min (T smin ) 50 C Temperature max (T smax ) 200 C Time (T smin to T smax ) (t s ) 60-20 seconds Average ramp-up rate (T smax to T p ) 3 C/second max. Other Liquidus Temperature (T L ) 27 C 7 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Time above Liquidus Temperature (t L ) 60-50 seconds Peak Temperature (T P ) 260 C Time within 5 C of Actual Peak Temperature: T P - 5 C 30 seconds Ramp- Down Rate from Peak Temperature 6 C/second max. Time 25 C to peak temperature 8 minutes max. Reflow times time All parameters are maximum body case temperature values and cannot be considered as a soldering profile. The body case temperature was measured by soldering a thermal couple to the soldering point of LEDs..2 (B) Recommend soldering pad Note: Suggested pad dimension is just for reference only. Please modify the pad dimension based on individual need Application Restrictions. specification described in this document. Above specification may be changed without notice. EVERLIGHT Americas will reserve authority on material change for above specification. 2. When using this product, please observe the absolute maximum ratings and the instructions for using outlined in these specification sheets. EVERLIGHT Americas 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. 3. These specification sheets include materials protected under copyright of EVERLIGHT Americas Corporation. Please don t reproduce or cause anyone to reproduce them without EVERLIGHT Americas consent. 4. ESD (Electrostatic Discharge) The products are sensitive to static electricity or surge voltage. ESD can damage a die and its reliability. When handling the products, the following measures against electrostatic discharge are strongly recommended: Eliminating the charge Grounded wrist strap, ESD footwear, clothes, and floors 8 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

Grounded workstation equipment and tools ESD table/shelf mat made of conductive materials Proper grounding is required for all devices, equipment, and machinery used in product assembly. Surge protection should be considered when designing of commercial products. If tools or equipment contain insulating materials such as glass or plastic, the following measures against electrostatic discharge are strongly recommended: Dissipating static charge with conductive materials Preventing charge generation with moisture Neutralizing the charge with ionizers 5. The LEDs should be operated with forward bias. The driving circuit must be designed so that the LEDs are not subjected to forward or reverse voltage while it is off. If reverse voltage is continuously applied to the LEDs, it may cause migration resulting in LED damage. 9 Copyright 200, Everlight Americas Inc. All Rights Reserved. Release Date : May 22, 204

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