QBLP670_series
PLCC2 LED
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QT-Brightek PLCC Series
PLCC2 LED
Part No.: QBLP670 Series
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 1 of 12
QBLP670_series
PLCC2 LED
----------------------------------------------------------------------------------------------------------------------------------------Tablet of Contents:
Introduction ........................................................................................................................................... 3
Electrical / Optical Characteristic (Ta=25 oC) ........................................................................................ 4
Absolute Maximum Rating .................................................................................................................... 4
Characteristic Curves ............................................................................................................................ 7
Solder Profile & Footprint ...................................................................................................................... 9
Packing ............................................................................................................................................... 10
Labeling .............................................................................................................................................. 11
Ordering Information ........................................................................................................................... 11
Revision History .................................................................................................................................. 12
Disclaimer ........................................................................................................................................... 12
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 2 of 12
QBLP670_series
PLCC2 LED
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Introduction
Feature:
Package in tape and reel
Ultra bright reflector type PLCC2 LED
InGaN technology for IB/IG/UV
AlInGaP technology for R/AG/Y/O/S
120 degree viewing angle
Application:
Status indication
Industrial equipment backlighting
Architecture lighting
Certification & Compliance:
Description:
These ultra bright reflector type PLCC2 LEDs have a
height profile of 1.90mm. Combination of high
brightness output and robust package, these LEDs are
ideal for architecture lighting, status indication, and
industrial equipment lighting applications.
TS16949
ISO9001
RoHS Compliant
Dimension:
1
2
Units: mm / tolerance = +/-0.2mm
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 3 of 12
QBLP670_series
PLCC2 LED
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Electrical / Optical Characteristic (Ta=25 oC)
Product
Color
λD (nm) / λP (nm) for UV
VF (V)
IF (mA)
Max.
3.7
Min.
465
Typ.
470
Max.
475
IV (mcd) / Ie
(mW/sr) for UV
Min.
Typ.
100
210
QBLP670-IB
Blue
20
Typ.
3.1
QBLP670-IG
True Green
20
3.1
3.7
520
525
530
500
900
QBLP670-UV
UV
20
3.2
3.7
400
405
410
2.1
3.5
QBLP670-R
Red
20
2.0
2.5
615
620
630
125
230
QBLP670-AG
Yellow Green
20
2.0
2.5
565
570
576
40
80
QBLP670-Y
Yellow
20
2.0
2.5
585
590
595
125
210
QBLP670-O
Orange
20
2.0
2.5
600
605
612
160
240
QBLP670-S
Deep Red
20
2.0
2.5
630
640
650
50
80
Absolute Maximum Rating
Material
Pd (mW) IF (mA)
IFP (mA)* VR (V)
InGaN (IB/IG/UV)
120
30
AlInGaP (R/AG/Y/O/S)
75
30
*Duty 1/8 @ 1KHz
**IR Reflow for no more than 10 sec @ 260 oC
100
125
5
5
TOP (oC)
TST (oC)
TSOL (oC)**
-40 ~ +85
-40 ~ +85
-40 ~ +100
-40 ~ +100
260
260
Forward Voltage VF for AlInGaP @ IF=20mA
Bin
□
Min.
1.7
Max.
2.5
Unit
V
Forward Voltage VF for InGaN @ IF=20mA
Bin
f
g
h
Product: QBLP670_series
Min.
2.8
3.1
3.4
Max.
3.1
3.4
3.7
Unit
V
Date: August 07, 2018
Version# 3.4
Page 4 of 12
QBLP670_series
PLCC2 LED
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Dominant Wavelength λD for Blue @ IF=20mA
Bin
G
H
I
J
Min.
465
467.5
470
472.5
Max.
467.5
470
472.5
475
Unit
nm
Dominant Wavelength λD for Green @ IF=20mA
Bin
U
V
W
X
Min.
520
522.5
525
527.5
Max.
522.5
525
527.5
530
Unit
nm
Dominant Wavelength λD for Red @ IF=20mA
Bin
s
t
u
Min.
615
620
625
Max.
620
625
630
Unit
nm
Dominant Wavelength λD for Yellow Green @ IF=20mA
Bin
h
i
j
Min.
565
568
572
Max.
568
572
576
Unit
nm
Dominant Wavelength λD for Yellow @ IF=20mA
Bin
m
n
Min.
585
590
Max.
590
595
Unit
nm
Dominant Wavelength λD for Orange @ IF=20mA
Bin
p
q
Min.
600
605
Max.
605
610
Unit
nm
Dominant Wavelength λD for Deep Red @ IF=20mA
Bin
v
w
Product: QBLP670_series
Min.
630
635
Max.
635
650
Unit
nm
Date: August 07, 2018
Version# 3.4
Page 5 of 12
QBLP670_series
PLCC2 LED
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Peak Wavelength λP for UV @ IF=20mA
Bin
G
H
Min.
400
405
Max.
405
410
Unit
Max.
50
63
80
100
125
160
200
250
320
400
500
630
800
1000
1250
1600
Unit
nm
Luminous Intensity IV @ IF=20mA
Bin
F
G
H
I
J
K
L
M
N
O
P
Q
R
S
T
U
Min.
40
50
63
80
100
125
160
200
250
320
400
500
630
800
1000
1250
mcd
Radiant Intensity Ie for UV @ IF=20mA
Bin
E
F
G
H
I
Product: QBLP670_series
Min.
2.10
2.60
3.10
3.60
4.10
Max.
2.60
3.10
3.60
4.10
4.60
Unit
mW/sr
Date: August 07, 2018
Version# 3.4
Page 6 of 12
QBLP670_series
PLCC2 LED
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Characteristic Curves
AlInGaP (R/AG/Y/O/S)
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 7 of 12
QBLP670_series
PLCC2 LED
----------------------------------------------------------------------------------------------------------------------------------------InGaN (IB/IG/UV)
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 8 of 12
QBLP670_series
PLCC2 LED
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Solder Profile & Footprint
-Recommended tin solder specifications: melting temperature in the range of 178~192 °C
-The recommended lead free reflow soldering profile is as follows (temperatures indicated are as
measured on the surface of the LED resin):
Units: mm
Product: QBLP670_series
tolerance: +/- 0.1mm
Date: August 07, 2018
Version# 3.4
Page 9 of 12
QBLP670_series
PLCC2 LED
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Packing
Reel Dimension:
Unit: mm
Tape Dimension:
A
SEC.A-A
A
Unit: mm
Arrangement of Tape:
Packaging Specification:
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 10 of 12
QBLP670_series
PLCC2 LED
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Labeling
Ordering Information
Part #
Orderable Part #
QBLP670-IB
QBLP670-IB
QBLP670-IG
QBLP670-IG
QBLP670-UV
QBLP670-UV
QBLP670-R
QBLP670-R
QBLP670-AG
QBLP670-AG
QBLP670-Y
QBLP670-Y
QBLP670-O
QBLP670-O
QBLP670-S
QBLP670-S
Product: QBLP670_series
Spec Range
Iv=210mcd typ. @ 20mA/
λD=465nm to 475nm
Iv=900mcd typ. @ 20mA/
λD =520nm to 530nm
Iv=3.5mW/sr typ. @ 20mA/
λP=400nm to 410nm
Iv=230mcd typ. @ 20mA/
λD=615nm to 630nm
Iv=80mcd typ. @ 20mA/
λD= 565nm to 576nm
Iv=210mcd typ. @ 20mA/
λD=585nm to 595nm
Iv=240mcd typ. @ 20mA/
λD= 600nm to 612nm
Iv=80mcd typ. @ 20mA/
λD=630nm to 650nm
Date: August 07, 2018
Version# 3.4
Quantity per reel
2,000 units
2,000 units
2,000 units
2,000 units
2,000 units
2,000 units
2,000 units
2,000 units
Page 11 of 12
QBLP670_series
PLCC2 LED
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Revision History
Description:
New Release of QBLP670_series
Specification Updates
Amend specification
Green Brightness Updates
Specification Updates
Update Format
Spec updates/ label updates
Add Deep Red Wavelength Bin
Update and add bin info for UV / Update orange min. brightness
Update operating and storage temperature
Update logo and the optical output power to mW/sr for UV
Revision #
V1.0
V2.0
V2.1
V2.2
V2.3
V2.4
V3.0
V3.1
V3.2
V3.3
V3.4
Revision Date
09/20/2010
02/03/2011
06/01/2011
07/19/2011
01/05/2012
03/19/2012
01/30/2013
09/30/2013
02/09/2015
03/09/2016
08/07/2018
Disclaimer
QT-BRIGHTEK reserves the right to make changes without further notice to any products herein to
improve reliability, function or design. QT-BRIGHTEK does not assume any liability arising out of the
application or use of any product or circuit described herein; neither does it convey any license under
its patent rights, nor the rights of others.
Life Support Policy
QT-BRIGHTEK’s products are not authorized for use as critical components in life support devices or
systems without the express written approval of QT-BRIGHTEK. As used herein:
1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant
into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in
accordance with instructions for use provided in the labeling, can be reasonably expected to result in
a significant injury of the user.
2. A critical component in any component of a life support device or system whose failure to perform
can be reasonably expected to cause the failure of the life support device or system, or to affect its
safety or effectiveness.
Product: QBLP670_series
Date: August 07, 2018
Version# 3.4
Page 12 of 12
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