Super Flux LEDS
LTL911QRKS / 912QRKS
LTL911QEKS / 912QEKS
LTL911QHKS / 912QHKS
LTL911QYKS / 912QYKS
Features
High current operation / High flux output.
Low thermal resistance / Low profile.
Widely viewing angle.
Meet SAE/ECE/JIS automotive color requirements.
Tube package for automatic insertion requirement.
Super Red
Red
Red Orange
Amber Yellow
Package Dimensions
Description
The source devices are made with AS AlInGaP Light
Emitting Diode.
This package design allows the lighting designer to
reduce the number of LEDs required and provide a
more uniform and unique illuminated appearance. This
is possible through the package’s efficient optical de-
sign and high-current capabilities. The low profile pack-
age can be easily coupled to reflectors or lenses to
efficiently distribute light and provide the desired illumi-
nated appearance.
Application
Automotive exterior lighting.
Electronic sign and signals.
Notes:
1. All dimensions are in millimeters (inches).
2. Protruded resin is 1.0mm (.04 ) max.
3. Lead spacing is measured where the leads emerge
from the package.
4. Specifications are subject to change without notice.
Devices
Part No.
LTL
911QRKS / 912QRKS
911QEKS / 912QEKS
911QHKS / 912QHKS
911QYKS / 912QYKS
Lens
Water Clear
Water Clear
Water Clear
Water Clear
Source Color
AlInGaP Super Red
AlInGaP Red
AlInGaP Red Orange
AlInGaP Amber Yellow
6-21
ULTRA BRIGHT
LAMPS & CLUSTER
& CHMSL
Absolute Maximum Ratings at Ta=25
Parameter
Power Dissipation
Peak Forward Current
(1/10 Duty Cycle, 0.1ms Pulse Width)
Continuous Forward Current
Derating Linear From 70
Reverse Voltage (I
R
=100
A)
Operating Temperature Range
Storage Temperature Range
Soldering Preheat Temperature
Lead Soldering Temperature
260
Super Red
190
160
70
1.17
10
Red
190
160
70
1.17
10
Red Orange
190
160
70
1.17
10
-40
-55
to + 100
to + 100
Amber Yellow
190
160
70
1.17
10
Unit
mW
mA
mA
mA/
v
100 for 30 Seconds
for 5 Seconds [1.5mm(.06 ) From Seating Plane]
Notes: Operation at currents below 10mA is not recommended.
6-22
Electrical / Optical Characteristics and Curves at Ta= 25
Parameter
Symbol
Part No.
LTL
911QRKS
911QEKS
911QHKS
Total Flux
V
Min.
600
600
600
600
600
600
600
600
Typ.
1350
1850
1850
1550
1350
1850
1850
1550
0.6
1.2
90
60
639
632
624
595
639
632
624
595
631
624
618
592
631
624
618
592
20
20
18
15
20
20
18
15
Max.
Unit
Test
Condition
911QYKS
912QRKS
912QEKS
912QHKS
912QYKS
mlm
IF=70mA
Note 1
Luminous lntensity
/ Total Flux
Viewing Angle
I
V
/
V
911QXKS
912QXKS
911QXKS
912QXKS
911QRKS
911QEKS
911QHKS
mcd /
mlm
deg
Note 2 (fig.5)
2
Peak Emission
wavelength
P
911QYKS
912QRKS
912QEKS
912QHKS
912QYKS
911QRKS
911QEKS
911QHKS
nm
Measurement
@ peak (Fig.1)
Dominant
Wavelength
d
911QYKS
912QRKS
912QEKS
912QHKS
912QYKS
911QRKS
911QEKS
911QHKS
nm
Note 3
912QEKS
912QHKS
912QYKS
Forward Voltage
Reverse Voltage
Capacitance
Thermal resistance
R
V
F
V
R
C
J-PIN
1.85
10
2.15
20
40
160
2.65
V
V
pF
/W
I
F
=70mA
I
R
=100
A
V
F
=0, f=1MHz
Notes:
1. v is the total luminous flux output as measured with an integrating sphere.
2.
is the off-axis angle at which the luminous intensity is half the axial luminous intensity.
3. The dominant wavelength, d is derived from the CIE chromaticity diagram and represents the single wavelength which defines
the color of the device.
6-23
ULTRA BRIGHT
LAMPS & CLUSTER
& CHMSL
Spectral Line
Half-Width
911QYKS
912QRKS
nm