AAA3528QWDSYKS-AMT TO-GRACE | Alldatasheet

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© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 1 / 6 Part Number Emitting Color (Material) Iv (mcd) @ 20mA [2] Lens Type Viewing Angle [1] Code. Min. Max. 2θ1/2 AAA3528QWDSYKS-AMT White (InGaN) Q 300 400 Yellow Fluorescent 120° R 400 500 S 500 700 T 700 1000 ■ Super Bright Yellow (AlGaInP) M 80 120 N 120 200 P 200 300 Q 300 400 DESCRIPTIONS z The source color devices are made with InGaN Light Emitting Diode z The Super Bright Yellow device is made with AlGaInP (on GaAs substrate) light emitting diode chip z Electrostatic discharge and power surge could damage the LEDs z It is recommended to use a wrist band or anti-electrostatic glove when handling the LEDs z All devices, equipments and machineries must be electrically grounded

FEATURES

z Suitable for all SMD assembly and solder process z Available on tape and reel z Package: 2000pcs / reel z Moisture sensitivity level: 3 z RoHS compliant

APPLICATIONS

z Backlighting (illuminated advertising , general lighting) z Interior and exterior automotive lighting z Substitution of micro incandescent lamps z Reading lamps z Signal and symbol luminaire for orientation z Marker lights (e.g. Steps, exit ways, etc) z Decorative and entertainment lighting z Indoor and outdoor commercial and residential architectural lighting ATTENTION Observe precautions for handling electrostatic discharge sensitive devices SELECTION GUIDE AAA3528QWDSYKS-AMT 3.5 x 2.8 mm Surface Mount LED Lamp PACKAGE DIMENSIONS RECOMMENDED SOLDERING PATTERN Notes: 1. All dimensions are in millimeters (inches). 2. Tolerance is ±0.25(0.01") unless otherwise noted. 3. The s pecifications, characteristics and technical data described in the datasheet are subject to change without prior notice. 4. The device has a single mounting surface. The device must be mounted according to the specifications. Notes: 1. θ1/2 is the angle from optical centerline where the luminous intensity is 1/2 of the optical peak value. 2. Luminous intensity / luminous flux: +/-15%. 3. Luminous intensity value is traceable to CIE127-2007 standards. Yellow 香港至恩科技有限公司 www.to-grace.com 公司授权代理销售LITE-ON:光耦,贴片LED灯等 进口原装,现货供应,价格优势,技术支持 电话:0755-83464948 传真:0755-83464076 A ll data sheet.com

© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 2 / 6 ELECTRICAL / OPTICAL CHARACTERISTICS at TA=25°C (YELLOW) AAA3528QWDSYKS-AMT Notes: 1. The dominant wavelength (λd) above is the setup value of the sorting machine. (Tolerance λd : ±1nm. ) 2. Forward voltage: ±0.1V. 3. Wavelength value is traceable to CIE127-2007 standards. 4. Excess driving current and / or operating temperature higher than recommended conditions may result in severe light degradation or premature failure. ELECTRICAL / OPTICAL CHARACTERISTICS at TA=25°C (WHITE) Notes: 1. Measurement tolerance of the chromaticity coordinates is ±0.01. 2. Forward voltage: ±0.1V. 3. Excess driving current and / or operating temperature higher than recommended conditions may result in severe light degradation or premature failure. Parameter Symbol Emitting Color Value Unit Typ. Max. Chromaticity Coordinates x IF = 20mA x [1] White 0.31 - Chromaticity Coordinates y I F = 20mA y [1] White 0.31 - - Capacitance C White 100 - pF Forward Voltage IF = 20mA VF [2] White 3.3 4.0 V Reverse Current (VR = 5V) IR White - 50 uA Temperature Coefficient of x IF = 20mA, -10°C ≤ T ≤ 100°C TCx White -0.15 - 10-3/°C Temperature Coefficient of y I F = 20mA, -10°C ≤ T ≤ 100°C TCy White -0.20 - 10-3/°C Temperature Coefficient of VF IF = 20mA, -10°C ≤ T ≤ 100°C TCV White -2.9 - mV/°C Parameter Symbol Emitting Color Value Unit Min. Typ. Max. Wavelength at Peak Emission IF = 20mA λpeak Super Bright Yellow - 590 - nm Dominant Wavelength IF = 20mA λdom [1] Super Bright Yellow 586 - 588 588 - 590 590 - 592 592 - 594 Spectral Bandwidth at 50% Φ REL MAX IF = 20mA Δλ Super Bright Yellow - 20 - nm Capacitance C Super Bright Yellow - 20 - pF Forward Voltage IF = 20mA VF [2] Super Bright Yellow - 2.0 2.5 V Reverse Current (VR = 5V) IR Super Bright Yellow - - 10 uA Temperature Coefficient of λpeak IF = 20mA, -10°C ≤ T ≤ 100°C TCλpeak Super Bright Yellow - 0.12 - nm/°C Temperature Coefficient of λdom IF = 20mA, -10°C ≤ T ≤ 100°C TCλdom Super Bright Yellow - 0.08 - nm/°C Temperature Coefficient of VF IF = 20mA, -10°C ≤ T ≤ 100°C TCV Super Bright Yellow - -1.9 - mV/°C nm Code. A ll data sheet.com

© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 3 / 6 0.01 0.1 11 0 1 00 Ta = 25 °C Forward current (mA) Luminous intensity normalised at 20 mA - 4 0 - 2 0 0 2 04 06 08 0 1 0 0 Ambient temperature (°C) Permissible forward current (mA)0.1 100 Ta = 25 °C Forward voltage (V) Forward current (mA) 0.0 0.5 1.0 1.5 2.0 2.5 - 4 0 - 2 00 2 04 06 08 0 1 0 0 Ambient temperature (°C) Luminous intensity normalised at T a = 25 °C 20% 40% 60% 80% 100% 350 400 450 500 550 600 650 700 750 800 Ta = 25 °C Yellow Wavelength (nm) Relative Intensity (a. u.) AAA3528QWDSYKS-AMT ABSOLUTE MAXIMUM RATINGS at TA=25°C TECHNICAL DATA 0.5 0.50.0 -90° -75° -60° -45° -30° -15° 75° 60° 45° 30° 0° 15° 90° 1.0 1.0 Ta = 25 °C RELATIVE INTENSITY vs. WAVELENGTH SPATIAL DISTRIBUTION Parameter Symbol Value Unit White Super Bright Yellow Power Dissipation PD 80 mW Reverse Voltage VR 5 5 V Junction Temperature Tj 115 115 °C Operating Temperature Top -40 to +100 °C Storage Temperature Tstg °C DC Forward Current IF 20 30 mA Peak Forward Current IFM [1] 150 150 mA Electrostatic Discharge Threshold (HBM) - 3000 3000 V Thermal Resistance (Junction / Ambient) Rth JA [2] 290 300 °C/W Thermal Resistance (Junction / Solder point) Rth JS [2] 175 160 °C/W -40 to +110 Notes: 1. 1/10 Duty Cycle, 0.1ms Pulse Width. 2. R th JA ,Rth JS Results from mounting on PC board FR4 (pad size ≥ 16 mm 2 per pad). 3. Relative humidity levels maintained between 40% and 60% in production area are recommended to avoid the build-up of static electricity – Ref JEDEC/JESD625-A and JEDEC/J-STD-033. WHITE Forward Current vs. Forward Voltage Luminous Intensity vs. Forward Current Forward Current Derating Curve Luminous Intensity vs. Ambient Temperature A ll data sheet.com

© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 4 / 6 REEL DIMENSION (units : mm) Notes: 1. Don't cause stress to the LEDs while it is exposed to high temperature. 2. The maximum number of reflow soldering passes is 2 times. 3. Reflow soldering is recommended. Other soldering methods are not recommended as they might cause damage to the product. 0.1 100 Ta = 25 °C Forward voltage (V) Forward current (mA) 0.01 0.1 11 0 1 0 0 Ta = 25 °C Forward current (mA) Luminous intensity normalised at 20 mA - 4 0 - 2 0 0 2 04 06 08 0 1 0 0 Ambient temperature (°C) Permissible forward current (mA) 0.0 0.5 1.0 1.5 2.0 2.5 - 4 0 - 2 00 2 04 06 08 0 1 0 0 Ambient temperature (°C) Luminous intensity normalised at T a = 25 °C AAA3528QWDSYKS-AMT SUPER BRIGHT YELLOW Forward Current vs. Forward Voltage Luminous Intensity vs. Forward Current Forward Current Derating Curve Luminous Intensity vs. Ambient Temperature TECHNICAL DATA Notes: Shipment may contain more than one chromaticity regions. Orders for single chromaticity region are generally not accepted. Measurement tolerance of the chromaticity coordinates is ±0.01. 0.20 0.25 0.30 0.35 0.40 x y CIE CHROMATICITY DIAGRAM x y x y 0.263 0.213 0.282 0.245 0.282 0.245 0.298 0.271 0.265 0.265 0.286 0.299 0.242 0.226 0.265 0.265 0.298 0.271 0.313 0.296 0.313 0.296 0.329 0.325 0.306 0.332 0.329 0.371 0.286 0.299 0.306 0.332 0.329 0.325 0.358 0.372 0.363 0.400 0.329 0.371 REFLOW SOLDERING PROFILE for LEAD-FREE SMD PROCESS TAPE SPECIFICATIONS (units : mm) A ll data sheet.com

© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 5 / 6 AAA3528QWDSYKS-AMT RELIABILITY TEST ITEMS AND CONDITIONS The reliability of products shall be satisfied with items listed below LOT TOLERANCE PERCENT DEFECTIVE (LTPD) : 10% No. Test Item Standards Test Condition Test Times / Cycles Number of Damaged

1 Continuous operating test - Ta = 25°C, IF = maximum rated current * 1,000 h 0 / 22

2 High Temp. operating test EIAJ ED-4701/100(101) Ta = 100°C, IF = maximum rated current * 1,000 h 0 / 22 3 Low Temp. operating test - Ta = -40°C, IF = maximum rated current * 1,000 h 0 / 22 4 High temp. storage test EIAJ ED-4701/100(201) Ta = maximum rated storage temperature 1,000 h 0 / 22 5 Low temp. storage test EIAJ ED-4701/100(202) Ta = -40°C 1,000 h 0 / 22 6 High temp. & humidity storage test - Ta = 60°C, RH = 90% 500 h 0 / 22 7 High temp. & humidity operating test - Ta = 60°C, RH = 90% IF = maximum rated current * 500 h 0 / 22

8 Soldering reliability test EIAJ ED-4701/100(301)

Moisture soak: 30°C, 70% RH, 72h Preheat: 150~180°C (120s max.) Soldering temp: 260°C(10s) 2 times 0 / 18

9 Thermal shock operating test - Ta = -40°C(15min) ~ 100°C(15min)

IF = derated current at 100°C 1,000 cycles 0 / 22

10 Thermal shock test - Ta = -40°C(15min) ~ maximum rated

storage temperature(15min) 1,000 cycles 0 / 22 11 Electric Static Discharge (ESD) EIAJ ED-4701/100(304) C = 100pF, R2 = 1.5KΩ V = 250V (White) V = 3000V (Yellow) Once each Polarity 0 / 22

12 Vibration test - a = 196m/s², f = 100~2KHz, t = 48min for all xyz axes 4 times 0 / 22

  • : Refer to forward current vs. derating curve diagram CRITERIA FOR JUDGING DAMAGE Items Symbols Conditions Failure Criteria luminous Intensity lV IF = 20mA Testing Min. Value < Spec. Min. Value x 0.5 Forward Voltage VF IF = 20mA Testing Max. Value ≥ Spec. Max. Value x 1.2 Reverse Current IR VR = Maximum Rated Reverse Voltage Testing Max. Value ≥ Spec. Max. Value x 2.5 High temp. storage test - - Occurrence of notable decoloration, deformation and cracking A ll data sheet.com

© 2018 Kingbright. All Rights Reserved. Spec No: DSAL3628 / 1201007264 Rev No: V.5B Date: 09/10/2018 Page 6 / 6 PACKING & LABEL SPECIFICATIONS AAA3528QWDSYKS-AMT HANDLING PRECAUTIONS Compare to epoxy encapsulant that is hard and brittle, silicone is softer and flexible. Although its characteristic significantly reduces thermal stress, it is more susceptible to damage by external mechanical force. As a result, special handling precautions need to be observed during assembly using silicone encapsulated LED products. Failure to comply might lead to damage and premature failure of the LED. 2. Do not directly touch or handle the silicone lens surface. It may damage the internal circuitry. 1. Handle the component along the side surfaces by using forceps or appropriate tools. 3. Do not stack together assembled PCBs containing exposed LEDs. Impact may scratch the silicone lens or damage the internal circuitry. 4-1. The inner diameter of the SMD pickup nozzle should not exceed the size of the LED to prevent air leaks. 4-2. A pliable material is suggested for the nozzle tip to avoid scratching or damaging the LED surface during pickup. 4-3. The dimensions of the component must be accurately programmed in the pick-and-place machine to insure precise pickup and avoid damage during production. 5. As silicone encapsulation is permeable to gases, some corrosive substances such as H 2S might corrode silver plating of lead frame. Special care should be taken if an LED with silicone encapsulation is to be used near such substances. PRECAUTIONARY NOTES 1. The information included in this document reflects representative usage scenarios and is in tended for technical reference only. 2. The part number, type, and specifications mentioned in this document are subject to future change and improvement without notice. Before production usage customer should refer to the latest datasheet for the updated specifications. 3. When using the products referenced in this document, please make sure the product is being operated within the environmental and electrical limits specified in the datasheet. If customer usage exceeds the specified limits, Kingbright will not be responsible for any subsequent issues. 4. The information in this document applies to typical usage in consumer electronics applications. If customer's application has special reliability requirements or have life-threatening liabilities, such as automotive or medical usage, please consult with Kingbright representative for further assistance. 5. The contents and information of this document may not be reproduced or re-transmitted without permission by Kingbright. 6. All design applications should refer to Kingbright application notes available at http://www.KingbrightUSA.com/ApplicationNotes A ll data sheet.com