Sharp LT9600CU Datasheet

9.8
1.0
(2.0)(2.0)
3-0.5
1.1
(0.4)
(1.0)
1.0MAX
2.54 NOM
2.54
NOM
NOM
NOM
20.0MIN
13.2
±0.5
1 2
3
Above the tie-bar0.5
Below the tie-bar0.5
±0.2
+0.3
- 0.1
Pin connections 1 Cathode(Yellow-green) 2 Anode(Common) 3 Cathode(Red)
Unspecified tolerance:±0.2
Tie-bar cut
Sunken resin1.0MAX
Protruded resin 1.5MAX
Colorless transparency
LED Large Lamp
LT9600CU
LT9600CU
6.8 7.6mm, Oval Type(Flangeless), Colorless Transparency, High-luminosity, Wide Viewing Angle, Dichromatic Large LED Lamp for Outdoor Use
Outline Dimensions Radiation Diagram
(Unit : mm)
-40˚
-50˚
-60˚
-70˚
-80˚
(Long diameter)
(Short diameter)
-40˚
-50˚
-60˚
-70˚
-80˚
-20˚ +20˚
-30˚
Yellow-green
-20˚ +20˚
-30˚
Yellow-green
0˚
-10˚ +30˚
-10˚ +30˚
+10˚
100
80
60
40
Relative luminous intensity(%)
20
0
0˚
100
80
60
40
Relative luminous intensity(%)
20
Red
+10˚
Red
(Ta=25˚C)
+40˚
+50˚
+60˚
+70˚
+80˚
+90˚-90˚
+40˚
+50˚
+60˚
+70˚
+80˚
0
Absolute Maximum Ratings
Power dissipation
Model No.
LT9600CU
*1 The value is specified under the condition that either color is lightened separately. When the both diodes are lightened simultaneously, the power dissipation of each diode should be less than the half of the value specified in this table. *2 Duty ratio=1/10, Pulse width=0.1ms
Radiation color
Yellow-green Red(Super-luminosity)
Radiation material
GaP GaAlAs on GaAlAs8475
*1
P
(mW)
Forward current
IF
(mA)
30 30
Peak forward current
IFM
(mA)
100
*3 5s or less(At the position of 1.6mm or more from the bottom face of resin package)
Electro-optical Characteristics
Lens
Model No.
type Colorless
transparency
(Notice) ¡ (Internet) ¡Data for sharp's optoelectronic/power device is provided for internet.(Address http://www.sharp.co.jp/ecg/)
Forward voltage
TYP
1.85
Radiation
color
LT9600CU
Yellow-green Red
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that may occur in equipment using any SHARP devices shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device.
VF(V)
MAX
2.1
2.8
2.5
Peak emission wavelength
λp(nm)
TYP
(mA)
565 660
Luminous intensity
I
F
20 20
I
V(mcd)
TYP
100 300
*2
50
(mA)
Derating factor
(mA/˚C)
DC Pulse
0.40
0.40
Spectrum radiation bandwidth
F
I
λ(nm)
TYP 20 20
5 4
Operating temperature
Topr
(˚C)
-30 to +85 -30 to +100
Reverse voltage
VR
(V)
1.34
0.67
Reverse current
F
I
I
(mA)
30 20
20 20
R(µA)
MAX
10
100
V
(V)
4 3
Storage temperature
Terminal capacitance
R
C
TYP
35 25
t(pF)
Tstg
(˚C)
(MH
1 1
+90˚-90˚
(T
a=25˚C)
Soldering temperature
*3
Tsol
(˚C)
260
(Ta=25˚C)
Page for
characteristics
Z)
diagrams
→ →
85
EG series
0
10
20
30
40
50
60
-25 0 25 50 75 85 125100
Peak Forward Current Derating Curve
Ambient temperature Ta(˚C)
Peak forward current IFM(mA)
0
10
20
30
40
50
60
-25 0 25 50 75 85 125100
Forward Current Derating Curve
Ambient temperature Ta(˚C)
Forward current IF(mA)
0.1
0.5
1.0
5.0
10
50
100
1.0 1.2 1.4 1.6 1.8 2.0 2.4 2.62.2
Forward Current vs. Forward Voltage(Note)
Forward voltage VF(V)
Forward current IF(mA)
(Ta=25˚C)
1.0
5.0
10
50
100
500
1000
-20 0 20 40 60 80 120100
Luminous Intensity vs. Ambient Temperature(Note)
Ambient temperature Ta(˚C)
Relative luminous intensity(%)
(Ta=25˚C)
1.0
5.0
2.0
10
20
50
100
200
500
1000
0.1 0.2 0.5 1 2 5 10 20 50
Luminous Intensity vs. Forward Current(Note)
Forward current IF(mA)
Relative luminous intensity(%)
(Ta=25˚C)
1.0
5.0
2.0
10
20
50
100
200
500
1/50 1/20 1/10 1/5 1/2 1
Duty Ratio vs. Peak Forward Current
Duty ratio DR
Peak forward current IFM(mA)
(Ta=25˚C)
Note)Characteristics shown in diagrams are typical values. (not assurance value)
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