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LYE675-T1U1-26-1

型号:

LYE675-T1U1-26-1

品牌:

INFINEON[ Infineon ]

页数:

14 页

PDF大小:

129 K

Power TOPLED®  
High-optical Power LED (HOP)  
LS E675, LA E675, LY E675  
Besondere Merkmale  
Features  
Gehäusetyp: weißes P-LCC-4 Gehäuse  
Besonderheit des Bauteils: mehr Licht durch  
erhöhten optischen Wirkungsgrad; höhere  
Umgebungstemperatur bei gleichem Strom im  
Vergleich zur TOPLED®  
Wellenlänge: 633 nm (super-rot),  
617 nm (amber), 587 nm (gelb)  
Abstrahlwinkel: Lambertscher Strahler (120°)  
Technologie: InGaAlP  
optischer Wirkungsgrad: 12 lm/W (super-rot),  
16 lm/W (amber, gelb)  
Gruppierungsparameter: Lichtstärke,  
Durchflussspannung, Wellenlänge  
Verarbeitungsmethode: für alle  
SMT-Bestücktechniken geeignet  
Lötmethode: IR Reflow Löten und  
Wellenlöten (TTW)  
Vorbehandlung: nach JEDEC Level 2  
Gurtung: 8 mm Gurt mit 2000/Rolle, ø180 mm  
oder 8000/Rolle, ø330 mm  
package: white P-LCC-4 package  
feature of the device: more light due to higher  
optical efficiency, higher ambient temperature at  
the same current possible compared to TOPLED®  
wavelength: 633 nm (super-red),  
617 nm (amber), 587 nm (yellow)  
viewing angle: Lambertian Emitter (120°)  
technology: InGaAlP  
optical efficiency: 12 lm/W (super-red),  
16 lm/W (amber, yellow)  
grouping parameter: luminous intensity, forward  
voltage, wavelength  
assembly methods: suitable for all  
SMT assembly methods  
soldering methods: IR reflow soldering and TTW  
soldering  
preconditioning: acc. to JEDEC Level 2  
taping: 8 mm tape with 2000/reel, ø180 mm or  
8000/reel, ø330 mm  
ESD-withstand voltage: up to 2 kV acc. to  
EOS/ESD-5.1-1993  
ESD-Festigkeit: ESD-sicher bis 2 kV nach  
EOS/ESD-5.1-1993  
Applications  
Anwendungen  
traffic lights  
Ampelanwendung  
Hinterleuchtung (LCD, Schalter, Tasten, Displays,  
Werbebeleuchtung)  
Innen- und Außenbeleuchtung im Auto-  
mobilbereich (z.B. Instrumentenbeleuchtung,  
Blinker, seitl. Begrenzungsleuchten, Bremslichter)  
Ersatz von Kleinst-Glühlampen  
Markierungsbeleuchtung (z.B. Stufen,  
Fluchtwege, u.ä.)  
backlighting (LCD, switches, keys, displays,  
illuminated advertising)  
interior and exterior automotive lighting  
(e.g. dashboard backlighting, turn signal lamps,  
sidemarkers, brake lights)  
substitution of micro incandescent lamps  
marker lights (e.g. steps, exit ways, etc.)  
signal and symbol luminaire  
Signal- und Symbolleuchten  
2002-04-26  
1
LS E675, LA E675, LY E675  
Typ  
Emissions- Farbe der  
Lichtstärke  
Lichtstrom  
Bestellnummer  
Ordering Code  
farbe  
Lichtaustritts-  
fläche  
Type  
Color of  
Color of the  
Luminous  
Luminous  
Flux  
Emission  
LightEmitting Intensity  
Area  
IF = 50 mA  
IV (mcd)  
IF = 50 mA  
ΦV (mlm)  
LS E675-S1T1-1-1  
LS E675-T1U2-1-1  
super-red  
amber  
colorless clear  
colorless clear  
colorless clear  
180 ... 355  
280 ... 710  
770 (typ.) Q62703-Q6103  
1400 (typ.) Q62703-Q6104  
LA E675-T1U1-1-1  
LA E675-U1V1-1-1  
280 ... 560  
450 ... 900  
1260 (typ.) Q62703-Q4976  
2000 (typ.) Q62703-Q4977  
LY E675-T1U1-26-1 yellow  
LY E675-U1V2-26-1  
280 ... 560  
450 ... 1120  
1260 (typ.) Q62703-Q6026  
2300 (typ.) Q62703-Q6298  
Anm.: -1-1 gesamter Farbbereich (siehe Seite 4)  
-26-1 gesamter Farbbereich, Lieferung in Einzelgruppen (siehe Seite 5)  
-1-1 gesamter Durchlassspannungsbereich, Lieferung in Einzelgruppen (siehe Seite 5)  
-26-1 gesamter Durchlassspannungsbereich, Lieferung in Einzelgruppen (siehe Seite 5)  
Die Standardlieferform von Serientypen beinhaltet eine untere bzw. eine obere Familiengruppe,  
die aus nur 3 bzw. 4 Halbgruppen besteht. Einzelne Halbgruppen sind nicht erhältlich.  
In einer Verpackungseinheit / Gurt ist immer nur eine Halbgruppe enthalten.  
Dimmverhältnis im Gleichstrom-Betrieb max. 5:1  
Note: -1-1 Total color tolerance range (please see page 4)  
-26-1 Total color tolerance range, delivery in single groups (please see page 5)  
-1-1 Total forward voltage tolerance, delivery in single groups (see page 5)  
-26-1 Total forward voltage tolerance, delivery in single groups (see page 5)  
The standard shipping format for serial types includes a lower or upper family group of 3 or 4  
individual groups. Individual half groups are not available.  
No packing unit / tape ever contains more than one luminous intensity half group.  
Dimming range for direct current mode max. 5:1  
2002-04-26  
2
LS E675, LA E675, LY E675  
Grenzwerte  
Maximum Ratings  
Bezeichnung  
Parameter  
Symbol  
Symbol  
Wert  
Value  
Einheit  
Unit  
Betriebstemperatur  
Operating temperature range  
Top  
Tstg  
Tj  
40 + 100  
40 + 100  
+ 125  
°C  
°C  
°C  
mA  
A
Lagertemperatur  
Storage temperature range  
Sperrschichttemperatur  
Junction temperature  
Durchlassstrom  
Forward current  
IF  
70  
Stoßstrom  
IFM  
0.1  
Surge current  
t 10 µs, D = 0.1  
Sperrspannung  
Reverse voltage  
VR  
5
V
Leistungsaufnahme  
Power consumption  
TA 25 °C  
Ptot  
180  
mW  
Wärmewiderstand  
Thermal resistance  
Sperrschicht/Umgebung  
Junction/ambient  
Sperrschicht/Lötpad  
Rth JA  
Rth JS  
300  
130  
K/W  
K/W  
Junction/soldering point  
Montage auf PC-Board FR 4 (Padgröße 16 mm2)  
mounted on PC board FR 4 (pad size 16 mm 2)  
2002-04-26  
3
LS E675, LA E675, LY E675  
Kennwerte (TA = 25 °C)  
Characteristics  
Bezeichnung  
Parameter  
Symbol  
Symbol  
Werte  
Values  
Einheit  
Unit  
LS  
LA  
LY  
Wellenlänge des emittierten Lichtes  
Wavelength at peak emission  
IF = 50 mA  
Dominantwellenlänge 1)  
Dominant wavelength  
IF = 50 mA  
(typ.) λpeak  
645  
624  
594  
nm  
nm  
nm  
(typ.) λdom  
(typ.) ∆λ  
(typ.) 2ϕ  
633  
± 6  
617  
+7/-5  
587  
+8/7  
Spektrale Bandbreite bei 50 % Irel max  
Spectral bandwidth at 50 % Irel max  
IF = 50 mA  
18  
18  
15  
Abstrahlwinkel bei 50 % IV (Vollwinkel)  
Viewing angle at 50 % IV  
120  
120  
120  
Grad  
deg.  
Durchlassspannung 2)  
Forward voltage  
IF = 50 mA  
(min.) VF  
(typ.) VF  
(max.) VF  
1.9 3)  
2.1  
2.5  
1.9 4)  
2.1  
2.5  
1.9 3)  
2.1  
2.5  
V
V
V
Sperrstrom  
Reverse current  
VR = 5 V  
(typ.) IR  
(max.) IR  
0.01  
10  
0.01  
10  
0.01  
10  
µA  
µA  
Temperaturkoeffizient von λpeak  
Temperature coefficient of λpeak  
IF = 50 mA; 10°C T 100°C  
(typ.) TCλpeak  
(typ.) TCλdom  
(typ.) TCV  
0.15  
0.04  
3.4  
12  
0.15  
0.08  
1.7  
16  
0.13  
0.10  
1.8  
16  
nm/K  
nm/K  
mV/K  
lm/W  
Temperaturkoeffizient von λdom  
Temperature coefficient of λdom  
IF = 50 mA; 10°C T 100°C  
Temperaturkoeffizient von VF  
Temperature coefficient of VF  
IF = 50 mA; 10°C T 100°C  
Optischer Wirkungsgrad  
Optical efficiency  
IF = 50 mA  
(typ.) ηopt  
1)  
Wellenlängen werden mit einer Stromeinprägedauer von 25 ms und einer Genauigkeit von ±1 nm ermittelt.  
Wavelengths are tested at a current pulse duration of 25 ms and a tolerance of ±1 nm.  
2)  
Durchlassspannungsgruppen werden mit einer Stromeinprägedauer von 1 ms und einer Genauigkeit von ±0,05 V  
ermittelt.  
Forward voltage groups are tested at a current pulse duration of 1 ms and a tolerance of ±0.05 V.  
2002-04-26  
4
LS E675, LA E675, LY E675  
1) Wellenlängengruppen  
Wavelength groups  
Gruppe  
Group  
yellow  
Einheit  
Unit  
min.  
max.  
583  
586  
589  
592  
595  
2
3
4
5
6
580  
583  
586  
589  
592  
nm  
nm  
nm  
nm  
nm  
3) Durchlassspannungsgruppen für super-rot / gelb  
4) Durchlassspannungsgruppen für amber  
Forward voltage groups for super-red / yellow  
Forward voltage groups for amber  
Gruppe  
Group  
Durchlassspannung  
Forward voltage  
Einheit  
Unit  
Gruppe  
Group  
Durchlassspannung  
Forward voltage  
Einheit  
Unit  
min.  
max.  
2.2  
min.  
max.  
2.05  
2.20  
2.35  
2.50  
3
4
1.9  
2.2  
V
V
3A  
3B  
4A  
4B  
1.90  
2.05  
2.20  
2.35  
V
V
V
V
2.5  
Helligkeits-Gruppierungsschema  
Luminous Intensity Groups  
Lichtgruppe  
Luminous Intensity Group  
Lichtstärke  
Luminous Intensity  
IV (mcd)  
Lichtstrom  
Luminous Flux  
ΦV (mlm)  
S1  
S2  
T1  
T2  
U1  
U2  
V1  
V2  
180 ... 224  
224 280  
280 ... 355  
355 ... 450  
450 ... 560  
560 ... 710  
710 ... 900  
900 ... 1120  
600 (typ.)  
760 (typ.)  
950 (typ.)  
1200 (typ.)  
1500 (typ.)  
1900 (typ.)  
2400 (typ.)  
3000 (typ.)  
Helligkeitswerte werden mit einer Stromeinprägedauer von 25 ms und einer Genauigkeit von ±11 % ermittelt.  
Luminous intensity is tested at a current pulse duration of 25 ms and a tolerance of ±11 %.  
Gruppenbezeichnung auf Etikett  
Group Name on Label  
Beispiel: T2-23  
Example: T2-23  
Lichtgruppe  
Luminous Intensity Group  
Halbgruppe  
Half Group  
Wellenlänge  
Wavelength  
Durchlassspannung  
Forward Voltage  
T
2
2
3
2002-04-26  
5
LS E675, LA E675, LY E675  
Relative spektrale Emission Irel = f (λ), TA = 25 °C, IF = 50 mA  
Relative Spectral Emission  
V(λ) = spektrale Augenempfindlichkeit  
Standard eye response curve  
OHL00585  
100  
%
Ιrel  
80  
V
λ
60  
yellow  
amber  
super-red  
40  
20  
0
400  
450  
500  
550  
600  
650  
nm  
700  
λ
Abstrahlcharakteristik Irel = f (ϕ)  
Radiation Characteristic  
OHL01660  
40˚  
30˚  
20˚  
10˚  
0˚  
1.0  
ϕ
50˚  
0.8  
0.6  
0.4  
0.2  
0
60˚  
70˚  
80˚  
90˚  
100˚  
1.0  
0.8  
0.6  
0.4  
0˚  
20˚  
40˚  
60˚  
80˚  
100˚  
120˚  
2002-04-26  
6
LS E675, LA E675, LY E675  
Durchlassstrom IF = f (VF)  
Forward Current  
TA = 25 °C  
Relative Lichtstärke IV/IV(50 mA) = f (IF)  
Relative Luminous Intensity  
TA = 25 °C  
OHL00444  
OHL00584  
10 2  
10 1  
mA  
IV  
IF  
IV (50 mA)  
10 1  
5
10 0  
5
10 0  
5
10-1  
5
10 -1  
5
10-2  
5
super-red,  
amber  
yellow  
10 -2  
10-3  
10 -1  
5
10 0  
5
10 1  
10 2  
mA  
1.4  
1.6  
1.8  
2.0  
2.2  
V 2.4  
VF  
I
Maximal zulässiger Durchlassstrom IF = f (T)  
Max. Permissible Forward Current  
Relative Lichtstärke IV/IV(25 °C) = f (TA)  
Relative Luminous Intensity  
IF = 50 mA  
OHL00740  
OHL01413  
2.0  
80  
IV  
mA  
IF  
70  
60  
V(25 ˚C)  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0
T
T
S
A
50  
40  
30  
20  
10  
0
ΤA temp. ambient  
ΤS temp. solder point  
0
20  
40  
60  
80 ˚C 100  
-40 -20  
0
20 40 60  
˚C 100  
T
T
2002-04-26  
7
LS E675, LA E675, LY E675  
Zulässige Impulsbelastbarkeit IF = f (tp)  
Permissible Pulse Handling Capability  
Duty cycle D = parameter, TA = 25 °C  
Zulässige Impulsbelastbarkeit IF = f (tp)  
Permissible Pulse Handling Capability  
Duty cycle D = parameter, TA = 85 °C  
OHL01505  
OHL01506  
0.12  
0.12  
A
A
F 0.10  
IF  
I
0.1  
0.005  
0.05  
0.5  
0.08  
0.06  
0.04  
0.02  
0
0.08  
0.005  
0.05  
0.5  
0.06  
0.04  
0.02  
0
10-5 10-4 10-3 10-2 10-1 100 101 s 102  
10-5 10-4 10-3 10-2 10-1 100 101 s 102  
tp  
tp  
2002-04-26  
8
LS E675, LA E675, LY E675  
Maßzeichnung  
Package Outlines  
3.0 (0.118)  
2.6 (0.102)  
2.3 (0.091)  
2.1 (0.083)  
1.7 (0.067)  
0.9 (0.035)  
2.1 (0.083)  
0.8 (0.031)  
0.6 (0.024)  
C
0.7 (0.028)  
A
0.1 (0.004) typ  
C
C
0.6 (0.024)  
0.4 (0.016)  
Package  
marking  
0.18 (0.007)  
0.12 (0.005)  
GPLY6991  
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).  
Gewicht / Approx. weight: 31 mg  
2002-04-26  
9
LS E675, LA E675, LY E675  
Lötbedingungen  
Vorbehandlung nach JEDEC Level 2  
Soldering Conditions Preconditioning acc. to JEDEC Level 2  
IR-Reflow Lötprofil  
(nach IPC 9501)  
IR Reflow Soldering Profile (acc. to IPC 9501)  
OHLY0597  
300  
˚C  
250  
200  
150  
100  
50  
T
240-245 ˚C  
10-40 s  
183 ˚C  
120 to 180 s  
Ramp-down rate up to 6 K/s  
Defined for Preconditioning: up to 6 K/s  
Ramp-up rate up to 6 K/s  
Defined for Preconditioning: 2-3 K/s  
0
0
50  
100  
150  
200  
s
250  
t
2002-04-26  
10  
LS E675, LA E675, LY E675  
Wellenlöten (TTW) (nach CECC 00802)  
TTW Soldering  
(acc. to CECC 00802)  
OHLY0598  
300  
C
10 s  
Normalkurve  
standard curve  
250  
200  
150  
100  
50  
T
235 C ... 260 C  
Grenzkurven  
limit curves  
2. Welle  
2. wave  
1. Welle  
1. wave  
ca 200 K/s  
2 K/s  
5 K/s  
100 C ... 130 C  
Zwangskühlung  
2 K/s  
forced cooling  
0
0
50  
100  
150  
200  
s
250  
t
2002-04-26  
11  
LS E675, LA E675, LY E675  
Empfohlenes Lötpaddesign IR Reflow Löten  
Recommended Solder Pad  
IR Reflow Soldering  
3.3 (0.130)  
3.3 (0.130)  
0.4 (0.016)  
2.6 (0.102)  
1.1 (0.043)  
Padgeometrie für  
verbesserte Wärmeableitung  
_
<
Kathoden Markierung /  
Cathode marking  
Cu Fläche / 12 mm2 per pad  
Cu-area  
Paddesign for  
improved heat dissipation  
Lötstoplack  
Solder resist  
OHLPY439  
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).  
2002-04-26  
12  
LS E675, LA E675, LY E675  
Empfohlenes Lötpaddesign Wellenlöten (TTW)  
Recommended Solder Pad  
TTW Soldering  
3.5 (0.138)  
6.1 (0.240)  
2.8 (0.110)  
2.8 (0.110)  
0.5 (0.020)  
7.5 (0.295)  
Padgeometrie für  
verbesserte Wärmeableitung  
Paddesign for  
improved heat dissipation  
Cu Fläche / > 12 mm2 per pad  
Cu-area  
Lötstoplack  
Solder resist  
OHAY0583  
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).  
Gurtung / Polarität und Lage  
Verpackungseinheit 2000/Rolle, ø330 mm  
Method of Taping / Polarity and Orientation Packing unit 2000/reel, ø330 mm  
1.5 (0.059)  
4 (0.157)  
2 (0.079)  
C
C
C
A
4 (0.157)  
2.9 (0.114)  
OHAY0536  
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).  
2002-04-26  
13  
LS E675, LA E675, LY E675  
Revision History: 2002-04-26  
Previous Version: 2002-04-05  
Page  
Subjects (major changes)  
wavelength grouping for yellow  
Date  
2
2002-04-03  
2
forward voltage grouping for yellow, super-red and amber  
optical efficiency from 15 lm/W to 16 lm/W for amber  
2002-04-03  
2002-04-05  
2002-04-26  
1, 4  
7
change of diagram rel. lum. intensity (TA) from OHL00576 to OHL00740  
Published by OSRAM Opto Semiconductors GmbH & Co. OHG  
Wernerwerkstrasse 2, D-93049 Regensburg  
© All Rights Reserved.  
Attention please!  
The information describes the type of component and shall not be considered as assured characteristics.  
Terms of delivery and rights to change design reserved. Due to technical requirements components may contain  
dangerous substances. For information on the types in question please contact our Sales Organization.  
If printed or downloaded, please find the latest version in the Internet.  
Packing  
Please use the recycling operators known to you. We can also help you get in touch with your nearest sales office.  
By agreement we will take packing material back, if it is sorted. You must bear the costs of transport. For packing  
material that is returned to us unsorted or which we are not obliged to accept, we shall have to invoice you for any costs  
incurred.  
Components used in life-support devices or systems must be expressly authorized for such purpose! Critical  
components 1 may only be used in life-support devices or systems 2 with the express written approval of OSRAM OS.  
1 A critical component is a component used in a life-support device or system whose failure can reasonably be expected  
to cause the failure of that life-support device or system, or to affect its safety or the effectiveness of that device or  
system.  
2 Life support devices or systems are intended (a) to be implanted in the human body, or (b) to support and/or maintain  
and sustain human life. If they fail, it is reasonable to assume that the health of the user may be endangered.  
2002-04-26  
14  
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