Document
LIGITEK ELECTRONICS CO.,LTD. www.DataSheet4U.com Property of Ligitek Only
SURFACE MOUNT TAPE AND REEL
Pb
Lead-Free Parts
LUR9033/TR3
DATA SHEET
DOC. NO REV. DATE
: : :
QW0905-LUR9033/TR3 A 30 - Jul - 2005
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PART NO. : LUR9033/TR3
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Page 1/7
Package Dimensions
Cathode
0.4¡Ó 0.1 2.5
0.5¡Ó 0.1 2.0
£r 1.9
1.4
0.76MAX
2.8
0.31TYP 0.61TYP 1.07TYP 7.62MAX 0.13TYP
Note : 1.All dimension are in millimeter tolerance is ¡Ó 0.2mm unless otherwise noted. 2.Specifications are subject to change without notice.
Carrier Type Dimensions
4.0
2.52
t
9.3 12.0±0.3
7.84 5.5
Polarity
1.75 2.0 4.0
£r 1.5
3.37
Note : The tolerances unless mentioned is ¡Ó 0.2mm,Angle Ó¡ 0.5. Unit=mm.
LIGITEK ELECTRONICS CO.,LTD. Property of Ligitek Only
PART NO. LUR9033/TR3
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Reel Dimensions
16.0¡Ó 1.0
178¡Ó 2.0
14.2¡Ó 1.0
74.0¡Ó 1.5
Part No. LUR9033/TR3
Description 12.0mm tape,7"reel
Quantity/Reel 1500 devices
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PART NO. LUR9033/TR3
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Page 3/7
Absolute Maximum Ratings at Ta=25 ¢J
Ratings Parameter Symbol UR Forward Current Peak Forward Current Duty 1/10@10KHz Power Dissipation Reverse Current @5V Operating Temperature Storage Temperature Soldering Temperature IF IFP PD Ir Topr Tstg Tsol 40 120 120 10 -40 ~ +85 -40 ~ +100 Max 260 ¢J for 5 sec Max (2mm from body) mA mA mW UNIT
£g A ¢J ¢J
Typical Electrical & Optical Characteristics (Ta=25 ¢J )
PART NO
MATERIAL Emitted
COLOR
Peak wave length £f Pnm
Luminous Viewing Spectral Forward intensity angle halfwidth voltage @20 mA(V) @20mA(mcd) 2 £c 1/2 ¡µ£f nm (deg)
Lens Water Clear 660 20
Min. Max. Min. 1.5 2.4 350
Typ. 650 20
LUR9033/TR3
GaAlAs
Red
Note : 1.The forward voltage data did not including ¡Ó 0.1V testing tolerance. 2. The luminous intensity data did not including ¡Ó 15% testing tolerance.
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PART NO. LUR9033/TR3
Page4/7
Typical Electro-Optical Characteristics Curve
UR CHIP
Fig.1 Forward current vs. Forward Voltage Fig.2 Relative Intensity vs. Forward Current
Forward Current(mA)
1000 100 10 1 01 1.0 2.0 3.0 4.0 5.0
3.0
Relative Intensity Normalize @20mA
2.5 2.0 1.5 1.0 0.5 0.0 1 10 100 1000
Forward Voltage(V) Fig.3 Forward Voltage vs. Temperature
1.2
Forward Current(mA) Fig.4 Relative Intensity vs. Temperature
Forward Voltage@20mA Normalize @25 ¢J
Relative Intensity@20mA Normalize @25 ¢J
-40 -20 0 20 40 60 80 100
3.0 2.5 2.0 1.5 1.0 0.5 0.0 -40 -20 0 20 40 60 80 100
1.1
1.0
0.9
0.8
Ambient Temperature( ¢J )
Ambient Temperature(¢J )
Fig.5 Relative Intensity vs. Wavelength
Relative Intensity@20mA
1.0
0.5
0.0 600 650 700 750
Wavelength (nm)
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PART NO. LUR9033/TR3 Recommended Soldering Conditions
1. Hand Solder Basic spec is ¡Ø 280¢J 3 sec one time only.
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2. Wave Solder
Soldering heat Max. 260 ¢J 245¡Ó 5¢J within 5 sec Preheat
120 ~ 150¢J
120 ~ 180 sec
3-1. LEAD Reflow Solder
Temp. (¢J ) 240
Rising +5 ¢J /sec Cooling -5¢J /sec
150 120
Preheat
60 ~ 120 sec
5sec
Time
3-2 PB-Free Reflow Solder
1~5° C/sec 260° C MaX. 10sec.Max
Preheat 180~200° C 1~5° C/sec
Above 220° C 60 sec.Max.
120 sec.Max.
Reflow Soldering should not be done more than two times.
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PART NO. LUR9033/TR3 Precautions For Use: Storage time:
1.The operation of Temperatures and RH are : 5 ¢J ~35¢J ,RH60%. 2.Once the package is opened, the products should be used within a week. Otherwise, they should be kept in a damp proof box with descanting agent. Considering the tape life, we suggest our customers to use our products within a year(from production date). 3.If opened more than one week in an atmosphere 5 ¢J ~ 35¢J ,RH60%, they should be treated at 60 ¢J¡Ó 5 ¢J fo r 15hrs.
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Drive Method:
LED is a current operated device, and therefore, requirer some kind of current limiting incorporated into the driver circuit. This current limiting typically takes the form of a current limiting resistor placed in series with the LED. Consider worst case voltage variations than could occur across the current limiting resistor. The forwrd current should not be allowed to change by more than 40 % of its desired value.
Circuit model A LED
Circuit model B LED
(A) Recommended circuit. (B) The difference of brightness between LED could be found due to the VF-IF characteristics of LED.
Cleaning:
Use alcohol-based cleaning solvents such as isopropyl alcohol to clean the LED.
ESD(Electrostatic Discharge):
Static Electricity or power surge will damage the LED. Use of a conductive wrist band or anti-electrosatic glove is recommended when handing these LED. All devices, equipment and machinery must be properly grounded.
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