AAA3528LSEEZGKQBKS
3.5 x 2.8 mm Surface Mount LED Lamp
PACKAGE DIMENSIONS
DESCRIPTIONS
The Hyper Red source color devices are made with
AlGaInP on GaAs substrate Light Emitting Diode
The Green source color devices are made with InGaN
on Sapphire Light Emitting Diode
The Blue source color devices are made with InGaN
Light Emitting Diode
Electrostatic discharge and power surge could
damage the LEDs
It is recommended to use a wrist band or
anti-electrostatic glove when handling the LEDs
All devices, equipments and machineries must be
electrically grounded
FEATURES
Suitable for all SMD assembly and solder process
Available on tape and reel
Package: 2000 pcs / reel
Moisture sensitivity level: 3
Halogen-free
RoHS compliant
RECOMMENDED SOLDERING PATTERN
(units : mm; tolerance : ± 0.1)
APPLICATIONS
Backlight
Status indicator
Home and smart appliances
Wearable and portable devices
Healthcare applications
ATTENTION
Observe precautions for handling
electrostatic discharge sensitive devices
Notes:
1. All dimensions are in millimeters (inches).
2. Tolerance is ±0.25(0.01") unless otherwise noted.
3. The specifications, 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.
SELECTION GUIDE
Part Number
Emitting Color
(Material)
Iv (mcd) @ 2mA [2]
Viewing Angle [1]
Lens Type
■ Hyper Red
Min.
Typ.
10
20
80
180
12
30
2θ1/2
(AlGaInP)
AAA3528LSEEZGKQBKS
■ Green (InGaN)
Water Clear
■ Blue (InGaN)
120°
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.
© 2021 Kingbright. All Rights Reserved. Spec No: DSAO4456 / 1201008965 Rev No: V.6B Date: 01/04/2021
Page 1 / 5
AAA3528LSEEZGKQBKS
ELECTRICAL / OPTICAL CHARACTERISTICS at TA=25°C
Value
Parameter
Symbol
Emitting Color
Unit
Typ.
Max.
λpeak
Hyper Red
Green
Blue
630
515
460
-
nm
λdom [1]
Hyper Red
Green
Blue
621
525
465
-
nm
Spectral Bandwidth at 50% Φ REL MAX
IF = 2mA
∆λ
Hyper Red
Green
Blue
20
35
25
-
nm
Capacitance
C
Hyper Red
Green
Blue
25
45
100
-
pF
Forward Voltage IF = 2mA
VF [2]
Hyper Red
Green
Blue
1.8
2.65
2.65
2.1
3.1
3.1
V
Reverse Current (VR = 5V)
IR
Hyper Red
Green
Blue
-
10
50
50
µA
Temperature Coefficient of λpeak
IF = 2mA, -10°C ≤ T ≤ 85°C
TCλpeak
Hyper Red
Green
Blue
0.13
0.05
0.04
-
nm/°C
Temperature Coefficient of λdom
IF = 2mA, -10°C ≤ T ≤ 85°C
TCλdom
Hyper Red
Green
Blue
0.06
0.03
0.03
-
nm/°C
Temperature Coefficient of VF
IF = 2mA, -10°C ≤ T ≤ 85°C
TCV
Hyper Red
Green
Blue
-1.9
-2.9
-2.9
-
mV/°C
Wavelength at Peak Emission IF = 2mA
Dominant Wavelength IF = 2mA
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.
ABSOLUTE MAXIMUM RATINGS at TA=25°C
Value
Parameter
Symbol
Unit
Hyper Red
Green
Blue
Power Dissipation
PD
125
123
120
mW
Reverse Voltage
VR
5
5
5
V
Junction Temperature
Tj
115
115
115
°C
Operating Temperature
Top
-40 to +85
°C
Storage Temperature
Tstg
-40 to +85
°C
DC Forward Current
IF
Peak Forward Current
IFM
[1]
50
30
30
mA
195
150
150
mA
3000
450
250
V
Electrostatic Discharge Threshold (HBM)
-
Thermal Resistance (Junction / Ambient)
Rth JA [2]
290
420
430
°C/W
[2]
120
250
270
°C/W
Thermal Resistance (Junction / Solder point)
Rth JS
Notes:
1. 1/10 Duty Cycle, 0.1ms Pulse Width.
2. Rt h JA ,Rt h 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.
© 2021 Kingbright. All Rights Reserved. Spec No: DSAO4456 / 1201008965 Rev No: V.6B Date: 01/04/2021
Page 2 / 5
AAA3528LSEEZGKQBKS
TECHNICAL DATA
SPATIAL DISTRIBUTION
RELATIVE INTENSITY vs. WAVELENGTH
Blue
Green
Red
Relative Intensity (a. u.)
100%
Ta = 25 °C
Ta = 25 °C
80%
0°
-15°
15°
30°
-30°
45°
-45°
60%
60°
-60°
40%
20%
75°
-75°
0%
350
400
450
500
550
600
Wavelength (nm)
650
700
750
800
-90°
1.0
0.5
0.0
90°
1.0
0.5
HYPER RED
Forward Current vs.
Forward Voltage
8
6
4
2
0
1.5
1.7
1.9
2.1
2.3
Forward voltage (V)
Ta = 25 °C
4.0
3.0
2.0
1.0
0.0
2.5
0
2
4
6
8
Forward current (mA)
Luminous Intensity vs.
Ambient Temperature
2.5
60
Luminous intensity normalised
at T a = 25 °C
Luminous intensity normalised
at 2 mA
Ta = 25 °C
Permissible forward current (mA)
5.0
10
Forward current (mA)
Forward Current Derating Curve
Luminous Intensity vs.
Forward Current
50
40
30
20
10
0
2.0
1.5
1.0
0.5
0.0
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
10
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
GREEN
Ta = 25 °C
8
6
4
2
0
2.0
2.4
2.8
3.2
3.6
Forward voltage (V)
Permissible forward current (mA)
5.0
Luminous intensity normalised
at 2 mA
10
Forward current (mA)
Forward Current Derating Curve
Luminous Intensity vs.
Forward Current
Ta = 25 °C
4.0
3.0
2.0
1.0
0.0
4.0
0
2
4
6
8
Forward current (mA)
Luminous Intensity vs.
Ambient Temperature
50
2.5
Luminous intensity normalised
at T a = 25 °C
Forward Current vs.
Forward Voltage
40
30
20
10
0
10
2.0
1.5
1.0
0.5
0.0
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
BLUE
Forward current (mA)
Ta = 25 °C
8
6
4
2
2.2
2.4 2.6 2.8 3.0
Forward voltage (V)
3.2
5.0
Permissible forward current (mA)
Luminous intensity normalised
at 2 mA
10
0
2.0
Forward Current Derating Curve
Luminous Intensity vs.
Forward Current
Ta = 25 °C
4.0
3.0
2.0
1.0
0.0
0
2
4
6
8
Forward current (mA)
10
© 2021 Kingbright. All Rights Reserved. Spec No: DSAO4456 / 1201008965 Rev No: V.6B Date: 01/04/2021
Luminous Intensity vs.
Ambient Temperature
50
2.5
Luminous intensity normalised
at T a = 25 °C
Forward Current vs.
Forward Voltage
40
30
20
10
0
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
2.0
1.5
1.0
0.5
0.0
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
Page 3 / 5
AAA3528LSEEZGKQBKS
REFLOW SOLDERING PROFILE for LEAD-FREE SMD PROCESS
TAPE SPECIFICATIONS (units : mm)
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.
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.
1. Handle the component along the
side surfaces by using forceps or
appropriate tools.
2. Do not directly touch or handle the silicone lens
surface. It may damage the internal circuitry.
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 H2S 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.
© 2021 Kingbright. All Rights Reserved. Spec No: DSAO4456 / 1201008965 Rev No: V.6B Date: 01/04/2021
Page 4 / 5
AAA3528LSEEZGKQBKS
PACKING & LABEL SPECIFICATIONS
PRECAUTIONARY NOTES
1. The information included in this document reflects representative usage scenarios and is intended 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 https://www.KingbrightUSA.com/ApplicationNotes
© 2021 Kingbright. All Rights Reserved. Spec No: DSAO4456 / 1201008965 Rev No: V.6B Date: 01/04/2021
Page 5 / 5
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