ET-3528 0.06W Single Color Datasheet

PLCC Series
ET-3528 0.06W Single Color
Datasheet
Features :
■■
High luminous Intensity and high efficiency
■■
Based on Blue/Green : InGaN, Red : AlGaInP technology
■■
Wide viewing angle : 120°
■■
Excellent performance and visibility
■■
Suitable for all SMT assembly methods
■■
IR reflow process compatible
■■
Environmental friendly; RoHS compliance
Typical Applications :
■■
Signal and Symbol Luminaire
■■
Indoor and Outdoor Displays
■■
Backlighting (illuminated advertising, general lighting)
■■
Interior Automotive Lighting
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Table of Cotents
General Information..........................................................................................................................................................3
Absolute Maximum Ratings...........................................................................................................................................4
Characteristics.....................................................................................................................................................................4
Luminous Intensity Characteristic................................................................................................................................5
Voltage Bin Structure........................................................................................................................................................6
Wavelength Bin Structure...............................................................................................................................................6
Mechanical Dimensions...................................................................................................................................................7
Characteristic Curve..........................................................................................................................................................8
Reflow Profile.......................................................................................................................................................................11
Product Packaging Information....................................................................................................................................12
Revision History..................................................................................................................................................................13
About Edison Opto............................................................................................................................................................13
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General Information
Introduction
Ultra high luminous efficacy, combined with the flexibility in design due to its slim and
miniature size, PLCC LED Series are optimized to be used as lighting for signboard.
Ordering Code Format
2
T
xx
xx
xx
xx
000
xxx
X1
X2
X3-X4
X5-X6
X7-X8
X9-X10
X11-X13
X14-X16
X1
X2
X3-X4
X5-X6
X7-X8
Type
Component
Series
Wattage
Color
2
Emitter
T
PLCC
01
3014
01
1W
CW
Cool White
03
3528
X1
0.1W
NW
Neutral White
04
5050
X2
0.2W
WW
Warm White
05
5630
X5
0.5W
RX
Red
Y6
0.06W
TX
True Green
BX
Blue
AX
Amber
YX
Yellow
OX
Red Orange
M1
RGB
X9-X10
X11-X13
X14-X16
Internal code
PCB Board
Serial Number
-
-
000
-
-
-
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Absolute Maximum Ratings
Parameter
Symbol
Forward Current
Value
IF
Pulse Forward Current (tp<=100μs, Duty cycle=0.25)
Units
R/A/Y : 35
T/B : 30
R/A/Y : 80
T/B : 100
Ipulse
mA
mA
Reverse Current
IR
10
uA
Reverse Voltage
VR
5
V
LED Junction Temperature
TJ
115
°C
Operating Temperature
-
-40 ~ +85
°C
Storage Temperature
-
-40 ~ +125
°C
ESD Sensitivity (HBM)
VB
2,000
Soldering Temperature
Ts
V
o
Reflow Soldering : 255~260 C/10~30sec
Manual Soldering : 350oC/3sec
Absolute maximum ratings (Ta=25oC)
Notes:
1. Proper current derating must be observed to maintain junction temperature below the maximum at all time.
2. LEDs are not designed to be driven in reverse bias.
3. tp: Pulse width time
Characteristics
Parameter
Symbol
Value
Units
Viewing Angle
(Typ.)
2Θ1/2
120
Degree
Forward voltage
(Typ.)
VF
R/A/Y : 2.2
T/B : 3.2
V
Rjs
180
-
620-630
610-620
585-595
520-535
465-475
Thermal resistance
CCT/Wavelength
(Red)
(Amber)
(Yellow)
(True Green)
(Blue)
o
C/W
nm
Note:
2θ1/2 is the off-axis angle where the luminous intensity is half of the axial luminous intensity.
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Luminous Intensity Characteristic
Luminous Intensity Characteristics, IF=20mA and TJ=25˚C.
Color
Red
Amber
Yellow
Green
Blue
Group
Min. Luminous Intensity
(mcd)@20mA
Max. Luminous
Intensity(mcd)@20mA
B0
400
500
B1
500
600
B2
600
700
C0
700
850
C1
850
1000
C2
1000
1150
C0
700
850
C1
850
1000
C2
1000
1150
C3
1150
1300
C0
700
850
C1
850
1000
C2
1000
1150
C3
1150
1300
C3
1150
1300
C4
1300
1450
C5
1450
1600
C6
1600
1750
C7
1750
1900
A5
250
300
A6
300
350
A7
350
400
B0
400
500
Order Code
2T03Y6RX00000002
2T03Y6AX00000002
2T03Y6YX00000002
2T03Y6TX00000002
2T03Y6BX00000002
Note:
The luminous intensity performance is guaranteed within published operating conditions. Edison Opto maintains a tolerance of ±10%
on intensity measurements.
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Voltage Bin Structure
Group
Min. Voltage (V)
Max. Voltage (V)
U03
1.6
1.9
U04
1.9
2.2
U05
2.2
2.5
V00
2.5
2.8
V01
2.8
3.1
V02
3.1
3.4
V03
3.4
3.7
V04
3.7
4.0
Note:
Forward voltage measurement allowance is ± 0.1V.
Wavelength Bin Structure
Color
Group
Min. Wd (nm)
Max. Wd (nm)
Red
RX0
620
630
OX1
610
615
OX2
615
620
YW0
585
588
YX0
588
591
YY0
591
595
TW0
520
525
TX0
525
530
TY0
530
535
BW0
460
465
BX0
465
470
BY0
470
475
Amber
Yellow
Green
Blue
Note:
Dominant wavelength Measurement Allowance is ± 0.5nm
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Mechanical Dimensions
Emitter Type Dimension
Polarity mark
Housing
Lead frame
Unit: mm
Tolerance: ±0.2mm
Circuit
+
Solder Pad
Polarity
-
Notes:
1. All dimensions are measured in mm.
2. Tolerance : ± 0.20 mm
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Characteristic Curve
Color Spectrum
Normalized Relative Intensity
1.0
True Green
Amber
0.8
Yellow
0.6
Blue
Red
0.4
0.2
0.0
400
420
440
460
480
500
520
540
560
580
600
Wavelength (nm)
620
640
660
680
700
Color Spectrum at a typical CCT
Normalized Relative Intensity
Beam Pattern
0° 10°
1.0
Ta=25°C
20°
30°
0.5
40°
50°
60°
70°
80°
0
-90°
-60°
-30°
0.5
0°
1.0
90°
Radiation Angle
Beam pattern diagram for PLCC 3528 series
Forward Voltage vs. Forward Current
Luminous Flux vs. Forward Current
Red
Amber
Yellow
40
True Green
Normalized Relative Intensity
Forward Current IF(mA)
50
Blue
30
20
10
0
1.6
2.0
2.4
2.8
3.2
3.6
4.0
Red
Amber
Yellow
True Green
4.4
Forward Voltage VF(V)
Forward current vs. forward voltage for PLCC 3528 series
Forward Current IF (mA)
Forward current vs. relative luminous at Ta=25oC for PLCC
3528 series
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Blue
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Luminous Flux vs. Junction Temperature
Normalized Luminous Flux
Normalized Forward Voltage (V)
Forward Voltage vs. Junction Temperature
Blue
True Green
Red/Amber/Yellow
Blue
True Green
Red
Amber
Junction Temperature (oC)
Junction Temperature (oC)
Forward voltage vs. Junction temperaturefor PLCC series
Forward current vs. luminous flux for PLCC series
Wavelength vs. Forward Current
471.5
540
471
538
470
Wavelength (nm)
Wavelength (nm)
470.5
469.5
469
468.5
468
467.5
467
536
534
532
530
528
526
466.5
466
524
0
20
40
60
80
Forward Current (mA)
100
120
0
20
40
60
80
Forward Current (mA)
100
120
Wavelength vs. forward current for PLCC True Green
Wavelength vs. forward current for PLCC Blue
627
Wavelength (nm)
626.5
626
625.5
625
624.5
624
0
20
40
60
80
100
120
Forward Current (mA)
Wavelength vs. forward current for PLCC Red, Amber, Yellow
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Wavelength vs. Junction Temperature
476
538.5
538
475
537.5
Wavelength (nm)
Wavelength (nm)
474
473
472
471
470
537
536.5
536
535.5
535
534.5
469
534
468
533.5
10
30
50
70
90
110
130
0
20
Junction Temperature (oC)
Wavelength vs. Junction temperature for PLCC Blue
60
80
100
120
140
Forward current vs. luminous flux for PLCC True Green
626
622
625
621
Wavelength (nm)
Wavelength (nm)
40
Junction Temperature (oC)
624
623
622
621
620
619
620
619
618
617
616
615
614
618
613
617
612
10
30
50
70
90
110
0
130
Wavelength length vs. forward current for PLCC Red &
Yellow
20
40
60
80
100
120
140
Junction Temperature (oC)
Forward Current (mA)
Forward current vs. luminous flux for PLCC Amber
Forward Current(mA)
Forward Current(mA)
Forward Current vs. Ambient Temperature
Ambient Temperature (oC)
Forward Current vs. Ambient temperature for PLCC Red,
Amber, Yellow
Ambient Temperature (oC)
Forward Current vs. Ambient temperature for PLCC True
Green, Blue
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Reflow Profile
The following reflow profile is from IPC/JEDEC J-STD-020D which provided here for reference.
Reflow Profiles
Classification Reflow Profiles
Profile Feature
Preheat & Soak
Temperature min (Tsmin)
Temperature max (Tsmax)
Time (Tsmin to Tsmax) (ts)
Average ramp-up rate
(Tsmax to Tp)
Liquidous temperature (TL)
Time at liquidous (tL)
Pb-Free Assembly
150 °C
200 °C
60-120 seconds
3 °C/second max.
217 °C
60-150 seconds
Peak package body temperature (Tp)*
255 °C ~260 °C *
Classification temperature (Tc)
260 °C
Time (tp)** within 5 °C of the specified classification temperature (Tc)
30** seconds
Average ramp-down rate (Tp to Tsmax)
6°C/second max.
Time 25oC to peak temperature
8 minutes max.
Notes:
1. * Tolerance for peak profile temperature (Tp) is defined as a supplier minimum and a user maximum.
2. ** Tolerance for time at peak profile temperature (tp) is defined as a supplier minimum and a user maximum.
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Product Packaging Information
(-)
(+)
Seal
Label
Reel
Label
Taping reel dimensions
Moisture absorbent
material
Moisture
proof bag
Package & label
Item
Quantity
Total
Dimensions(mm)
Reel
2,000pcs
2,000pcs
R=178
Box
5 Reels
10,000pcs
240*235*67
Carton
5 boxes
50,000pcs
353*254*256
Starting with 50pcs empty,and 50pcs empty at the last
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Revision History
Versions
Description
Release Date
1
Establish order code information
2013/01/04
2
1. Add the Characteristic curve
2. Luminous Intensity Characteristic : Add Bin Group (Red)
2013/10/16
3
Revise Dominant wavelength Measurement Allowance
2013/12/06
About Edison Opto
Edison Opto is a leading manufacturer of high power LED and a solution provider experienced
in LDMS. LDMS is an integrated program derived from the four essential technologies in LED
lighting applications- Thermal Management, Electrical Scheme, Mechanical Refinement, Optical
Optimization, to provide customer with various LED components and modules. More Information
about the company and our products can be found at www.edison-opto.com
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part of publication may be reproduced or transmitted
in any form or by any means, electronic or mechanical,
including photo copy, recording or any other
information storage and retrieval system, without
prior permission in writing from the publisher. The
information in this publication are subject to change
without notice.
www.edison-opto.com
For general assistance please contact:
service@edison-opto.com.tw
For technical assistance please contact:
LED.Detective@edison-opto.com.tw
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