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1Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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SMD MID POWER LED
62-217D/XK2C-SXXXXXXXXXXXZ15/2T
Features
˙PLCC-2 Package
˙Top view white LED
˙High luminous flux output
˙High current capability
˙Wide viewing angle
˙Pb-free
˙RoHS compliant
˙ANSI Binning
Description
The Everlight 0.5W 62-217D package has high efficacy, high CRI, low power consumption, wide viewing angle and a
compact form factor. These features make this package an ideal LED for all lighting application.
Applications
˙Decorative and Entertainment Lighting
˙Light pipe application
˙Indicator and backlight in office and family equipment
˙General use
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DATASHEET
SMD MID POWER LED
62-217D/XK2C-SXXXXXXXXXXXZ15/2T
2Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Product Number Explanation
62–217D / XK 2 C - S XX XX XX XX XX Z15/ 2T
Table of Color Rendering Index
Symbol Description
M CRI(Min.) : 60
N CRI(Min.) : 65
L CRI(Min.) : 70
Q CRI(Min.) : 75
K CRI(Min.) : 80
H CRI(Min.) : 90
Notes:
Tolerance of Color Rendering Index: ±2
Table of Forward Current Index
Symbol Description
Z15 IF:150mA
Example:
62-217D/QK2C-S5757R1R3B42Z15/2T
CRI 75(Min.)
CCT 5700K
Flux 50~65lm
VF2.8V~3.5V
IF150mA
Bin Group of Forward Voltage
Bin Group of Max. Color temperature
Bin Grou
p
of
Max.
Luminous
Flux
Bin Group of Min. Luminous Flux
Bin Group of Min. Color temperature
Bin Code of Color Rendering Index
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3Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Mass Production List for CRI>80
Product
CRI
Min.(1)
CCT(K)
Φ(lm)
Min. (2)
Φ(lm)
Max. (2)
62-217D/KK2C-S2727PBR1B42Z15/2T 80 2700K 40 55
62-217D/KK2C-S3030QAR2B42Z15/2T 80 3000K 45 60
62-217D/KK2C-S3535QAR2B42Z15/2T 80 3500K 45 60
62-217D/KK2C-S4040QAR2B42Z15/2T 80 4000K 45 60
62-217D/KK2C-S4545QAR2B42Z15/2T 80 4500K 45 60
62-217D/KK2C-S5050R1R3B42Z15/2T 80 5000K 50 65
62-217D/KK2C-S5757R1R3B42Z15/2T 80 5700K 50 65
62-217D/KK2C-S6565R1R3B42Z15/2T 80 6500K 50 65
Mass Production List for CRI>75
Product
CRI
Min.(1)
CCT(K)
Φ(lm)
Min. (2)
Φ(lm)
Max. (2)
62-217D/QK2C-S5050R1R3B42Z15/2T 75 5000K 50 65
62-217D/QK2C-S5757R1R3B42Z15/2T 75 5700K 50 65
62-217D/QK2C-S6565R1R3B42Z15/2T 75 6500K 50 65
Notes:
1. Tolerance of Color Rendering Index: ±2
2. Tolerance of Luminous flux: ±11%.
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62-217D/XK2C-SXXXXXXXXXXXZ15/2T
4Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Device Selection Guide
Chip
Materials
Emitted Color Resin Color
InGaN
Cool White
Neutral White
Warm White
Water Clear
Absolute Maximum Ratings (TSoldering=25)
Parameter Symbol Rating Unit
Forward Current IF180 mA
Peak Forward Current (Duty 1/10 @10ms) IFP 300 mA
Power Dissipation Pd630 mW
Operating Temperature Topr -40 ~ +85
Storage Temperature Tstg -40 ~ +100
Thermal Resistance (Junction / Soldering point) Rth J-S 21 /W
Junction Temperature T j 115
Soldering Temperature Tsol
Reflow Soldering : 260 for 10 sec.
Hand Soldering : 350 for 3 sec.
Electro-Optical Characteristics (TSoldering=25)
Parameter Symbol Min. Typ. Max. Unit Condition
Luminous Flux(1) Φ40 ----- 65 lm IF=150mA
Forward Voltage(2) VF2.8 ----- 3.5 V IF=150mA
Color Rendering Index(3) Ra 75 ----- ----- IF=150mA
Viewing Angle 1/2 ----- 120 ----- deg IF=150mA
Reverse Current IR----- ----- 50 μA VR =5V
Notes:
1. Tolerance of Luminous flux: ±11%.
2. Tolerance of Forward Voltage : ±0.1V.
3. Tolerance of Color Rendering Index: ±2.
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5Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Bin Range of Luminous Flux
Bin Code Min. Max. Unit Condition
PB 40 45
QA 45 50
R1 50 55
R2 55 60
R3 60 65
lm IF=150mA
Notes:
Tolerance of Luminous flux: ±11%
Bin Range of Forward Voltage
Group Bin Code Min. Max. Unit Condition
35 2.8 2.9
36 2.9 3.0
37 3.0 3.1
38 3.1 3.2
39 3.2 3.3
40 3.3 3.4
B42
41 3.4 3.5
V IF=150mA
Notes:
Tolerance of Forward Voltage : ±0.1V.
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6Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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The C.I.E. 1931 Chromaticity Diagram
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7Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Bin Range of Chromaticity Coordinate
CCT Bin Code CIE_x CIE_y Bin Code CIE_x CIE_y
0.4813 0.4319 0.4688 0.4290
0.4688 0.4290 0.4562 0.4260
0.4585 0.4104 0.4468 0.4077
27K-1
0.4703 0.4132
27K-2
0.4585 0.4104
0.4703 0.4132 0.4585 0.4104
0.4585 0.4104 0.4468 0.4077
0.4483 0.3919 0.4373 0.3893
27K-4
0.4593 0.3944
27K-3
0.4483 0.3919
2700K
Reference Range: 2580K~2700K Reference Range: 2700K~2870K
0.4562 0.4260 0.4431 0.4213
0.4431 0.4213 0.4299 0.4165
0.4345 0.4033 0.4223 0.3990
30K-1
0.4468 0.4077
30K-2
0.4345 0.4033
0.4468 0.4077 0.4345 0.4033
0.4345 0.4033 0.4223 0.3990
0.4260 0.3854 0.4147 0.3814
30K-4
0.4373 0.3893
30K-3
0.4260 0.3854
3000K
Reference Range: 2870K~3000K Reference Range: 3000K~3220K
0.430 0.417 0.415 0.409
0.415 0.409 0.400 0.402
0.408 0.392 0.394 0.385
35K-1
0.422 0.399
35K-2
0.408 0.392
0.422 0.399 0.408 0.392
0.408 0.392 0.394 0.385
0.402 0.375 0.389 0.369
35K-4
0.415 0.381
35K-3
0.402 0.375
3500K
Reference Range: 3220K~3500K Reference Range: 3500K~3710K
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8Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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CCT Bin Code CIE_x CIE_y Bin Code CIE_x CIE_y
0.4006 0.4044 0.3871 0.3959
0.3871 0.3959 0.3736 0.3874
0.3828 0.3803 0.3703 0.3726
40K-1
0.3952 0.3880
40K-2
0.3828 0.3803
0.3952 0.3880 0.3828 0.3803
0.3828 0.3803 0.3703 0.3726
0.3784 0.3647 0.3670 0.3578
40K-4
0.3898 0.3716
40K-3
0.3784 0.3647
4000K
Reference Range: 3710K~3970K Reference Range:3970K~4260K
0.374 0.387 0.364 0.381
0.364 0.381 0.355 0.374
0.362 0.366 0.353 0.360
45K-1
0.370 0.373
45K-2
0.362 0.366
0.370 0.373 0.362 0.366
0.362 0.366 0.353 0.360
0.359 0.352 0.351 0.347
45K-4
0.367 0.358
45K-3
0.359 0.352
4500K
Reference Range: 4260K~4500K Reference Range: 4500K~4745K
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9Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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CCT Bin Code CIE_x CIE_y Bin Code CIE_x CIE_y
0.3551 0.3760 0.3464 0.3688
0.3464 0.3688 0.3376 0.3616
0.3452 0.3558 0.3371 0.3493
50K-1
0.3533 0.3624
50K-2
0.3452 0.3558
0.3533 0.3624 0.3452 0.3558
0.3452 0.3558 0.3371 0.3493
0.3441 0.3428 0.3366 0.3369
50K-4
0.3515 0.3487
50K-3
0.3441 0.3428
5000K
Reference Range: 4745K~5000K Reference Range: 5000K~5310K
0.3376 0.3616 0.3292 0.3539
0.3292 0.3539 0.3207 0.3462
0.3293 0.3423 0.3215 0.3353
57K-1
0.3371 0.3493
57K-2
0.3293 0.3423
0.3371 0.3493 0.3293 0.3423
0.3293 0.3423 0.3215 0.3353
0.3294 0.3306 0.3222 0.3243
57K-4
0.3366 0.3369
57K-3
0.3294 0.3306
5700K
Reference Range: 5310K~5700K Reference Range: 5700K~6020K
0.3205 0.3481 0.3117 0.3393
0.3117 0.3393 0.3028 0.3304
0.3131 0.3290 0.3048 0.3209
65K-1
0.3213 0.3371
65K-2
0.3131 0.3290
0.3213 0.3371 0.3131 0.3290
0.3131 0.3290 0.3048 0.3209
0.3145 0.3187 0.3068 0.3113
65K-4
0.3221 0.3261
65K-3
0.3145 0.3187
6500K
Reference Range: 6020K~6500K Reference Range: 6500K~7050K
Notes:
1. The value are based on driving current by 150mA.
2. Tolerance of Chromaticity Coordinates : ±0.01.
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Spectrum Distribution
Typical Electro-Optical Characteristics Curves
25 35 45 55 65 75 85 95 105 115
-0.25
-0.20
-0.15
-0.10
-0.05
0.00
0.05
0.10
Forward Voltage Shift (V)
Tj - Junction Temperature (oC)
0 30 60 90 120 150 180
0.0
0.2
0.4
0.6
0.8
1.0
1.2
Relative Luminous Intensity
Forward Current(mA)
Fig.1 Forward Voltage Shift vs.
Junction Temperature
Fig.2 - Relative Luminous Intensity
vs. Forward Current
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11 Copyright © 2013, Everlight All Rights Reserved. Release Date : 22.Jul.2013. Issue No: V5
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Typical Electro-Optical Characteristics Curves
25 35 45 55 65 75 85 95 105 115
0.0
0.2
0.4
0.6
0.8
1.0
1.2
Junction Temperature( oC )
Relative Luminous Flux
2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4
30
60
90
120
150
180
TS=25oC
IF-Forward Current(mA)
VF- Forward Voltage (V)
0 20 40 60 80 100
0
30
60
90
120
150
180
210
Forward Current (mA)
Soldering Temperature (oC)
0.7
0.8
0.9
1.0
0.10.30.5 0.2 0.4
80°
90°
0.6
50°
60°
70°
40°
20° 10°
30°
Fig.3 - Relative Luminous Intensity vs.
Junction Temperature
Fig.4 - Forward Current vs. Forward
Voltage
Fig.5 – Max. Driving Forward Current vs.
Soldering Temperature
Rth j
-
s=
21
C/W
Fig.
6
R
adiation Diagram
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Package Dimension

Note:
Tolerance unless mentioned is ±0.1mm; Unit = mm
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Moisture Resistant Packing Materials
Label Explanation
CPN: Customers Product Number
P/N: Product Number
QTY: Packing Quantity
CAT: Luminous Intensity Rank
HUE: Dom. Wavelength Rank
REF: Forward Voltage Rank
LOT No: Lot Number
Reel Dimensions
Note:
Tolerances unless mentioned ±0.1mm. Unit = mm
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Carrier Tape Dimensions: Loaded Quantity 250 up/500/1000/2000 pcs. Per Reel
Polarity
1
2
Note:
1.Tolerance unless mentioned is ±0.1mm; Unit = mm
Moisture Resistant Packing Process
Label Aluminum moisture-proof bag Desiccant Label
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Reliability Test Items and Conditions
The reliability of products shall be satisfied with items listed below.
Confidence level90%
LTPD10%
No. Items Test Condition Test Hours/Cycles Sample Size Ac/Re
1 Reflow Soldering Temp. : 260/10sec. 6 Min. 22 PCS. 0/1
2 Thermal Shock
H : +10020min
10 sec
L : -1020min
500 Cycles 22 PCS. 0/1
3 Temperature Cycle
H : +10030min
5 min
L : -4030min
500 Cycles 22 PCS. 0/1
4High Temperature/Humidity
Storage Ta=85,85%RH 1000 Hrs. 22 PCS. 0/1
5High Temperature/Humidity
Operation
Ta=85,85%RH,
IF = 100 mA 1000 Hrs. 22 PCS. 0/1
6 Low Temperature Storage Ta=-401000 Hrs. 22 PCS. 0/1
7 High Temperature Storage Ta=851000 Hrs. 22 PCS. 0/1
8Low Temperature
Operation Life
Ta=-40,
IF = 150 mA 1000 Hrs. 22 PCS. 0/1
9High Temperature
Operation/ Life#1
Ta=25,
IF = 150 mA 1000 Hrs. 22 PCS. 0/1
10 High Temperature
Operation/ Life#2
Ta=55,
IF =150 mA 1000 Hrs. 22 PCS. 0/1
11 High Temperature
Operation/ Life#3
Ta=85,
IF = 100 mA 1000 Hrs. 22 PCS. 0/1
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Precautions for Use
1. Over-current-proof
Customer must apply resistors for protection; otherwise slight voltage shift will cause big current change (Burn out
will happen).
2. Storage
2.1 Do not open moisture proof bag before the products are ready to use.
2.2 Before opening the package: The LEDs should be kept at 30 or less and 90%RH or less.
2.3 After opening the package: The LED's floor life is 168 Hrs under 30 or less and 60% RH or less. If unused
LEDs remain, it should be stored in moisture proof packages.
2.4 If the moisture absorbent material (silica gel) has faded away or the LEDs have exceeded the storage time,
baking treatment should be performed using the following conditions.
Baking treatment: 60±5 for 24 hours.
3. Soldering Condition
3.1 Pb-free solder temperature profile
260 Max.
10sec. Max.
6 C/sec.Max.
Above255 C
30sec.Max.
C
Above 217
60~150 sec.
3 C/sec.Max.
Pre-heating
150~200 C
60~120sec.
3.2 Reflow soldering should not be done more than two times.
3.3 When soldering, do not put stress on the LEDs during heating.
3.4 After soldering, do not warp the circuit board.
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4. Soldering Iron
Each terminal is to go to the tip of soldering iron temperature less than 350 for 3 seconds within once in less
than the soldering iron capacity 25W. Leave two seconds and more intervals, and do soldering of each terminal. Be
careful because the damage of the product is often started at the time of the hand solder.
5. Repairing
Repair should not be done after the LEDs have been soldered. When repairing is unavoidable, a double-head
soldering iron should be used (as below figure). It should be confirmed beforehand whether the characteristics of
the LEDs will or will not be damaged by repairing.