LE-T-H3A [OSRAM]

compact lightsource in multi chip on board technology planar sealed;
LE-T-H3A
型号: LE-T-H3A
厂家: OSRAM GMBH    OSRAM GMBH
描述:

compact lightsource in multi chip on board technology planar sealed

文件: 总16页 (文件大小:460K)
中文:  中文翻译
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OSRAM OSTAR - Projection  
Lead (Pb) Free Product - RoHS Compliant  
LE T H3A, LE B H3A  
Vorläufige Daten / Preliminary Data  
Abgekündigt nach OS-PD-2008-008  
Obsolete acc. to OS-PD-2008-008  
Besondere Merkmale  
Features  
Gehäusetyp: Kompakte Lichtquelle in  
Multi-Chip on Board Technologie, plan  
vergossen  
package: compact lightsource in multi chip on  
board technology planar sealed  
feature of the device: outstanding brightness  
and luminance due to pure surface emission  
and low Rth  
Besonderheit des Bauteils: extrem hohe  
Helligkeit und Leuchtdichte dank  
Oberflächenemission und niedrigem Rth  
Vorbereitet für den Einsatz mit zus. Optik  
Wellenlänge: 520 nm (true green),  
464 nm (blau)  
prepared for additional optics  
wavelength: 520 nm (true green),  
464 nm (blue)  
viewing angle: Lambertian Emitter (120°)  
light emitting surface: typ. 3.2 x 2.1 mm²  
technology: ThInGaN®  
Abstrahlwinkel: Lambertscher Strahler (120°)  
Abstrahlende Fläche: typ. 3,2 x 2,1 mm²  
Technologie: ThInGaN®  
Luminance: 26.0*106 cd/m² (true green),  
6.7*106 cd/m² (blue)  
Leuchtdichte: 26,0*106 cd/m² (true green),  
6,7*106 cd/m² (blau)  
mounting methods: screw holes  
connector: 10 Pin JST SM 10B-SRSS-TB  
ESD-withstand voltage: up to 2 kV acc. to  
JESD22-A114-B  
Montierbarkeit: verschraubbar  
Stecker:10 Pin JST SM 10B-SRSS-TB  
ESD-Festigkeit: ESD-sicher bis 2 kV nach  
JESD22-A114-B  
method of packing: 50 pcs. per tray  
= packing unit  
Verpackungseinheit: 50 St. pro Box  
= Verpackungseinheit  
Anwendungen  
Applications  
Projektion  
projection  
Medizintechnik: Operationslampen  
Mikroskopbeleuchtung  
Strahler für die Allgemeinbeleuchtung  
Verkehrszeichen  
medical lighting: surgery light  
microscope illumination  
spotlights  
VMS (variable message signs)  
high end strobe light  
Hochwertige Blitzlichter  
2008-07-07  
1
LE T H3A, LE B H3A  
Bestellinformation  
Ordering Information  
Typ  
Emissionsfarbe  
Lichstärke1) Seite 16  
Color of Emission  
Type  
Luminous Intensity1) page 16  
IF = 1000 mA (T, B)  
ΙV (cd)  
true green  
blue  
min.  
typ.  
min.  
typ.  
LE T H3A  
LE B H3A  
true green  
blue  
90  
155  
18  
40  
Typ  
Emissionsfarbe  
Lichtfluss2)3) Seite 16  
Type  
Color of Emission  
Luminous2)3) page 16  
IF = 1000 mA (T, B)  
ΦV (lm)  
true green  
blue  
min.  
min.  
typ.  
typ.  
LE T H3A  
LE B H3A  
true green  
blue  
(270)  
(481)  
(54)  
(124)  
Bestellinformation  
Ordering Information  
Typ  
Type  
Bestellnummer  
Ordering Code  
„LE B H3A-GWJW-23  
„LE T H3A-KBMA-24  
Q65110A6273  
Q65110A6245  
LE_ACC_SHR_10V_SR  
Q65110A4679 (Connector)*  
„Abgekündigt nach OS-PD-2008-008 - wird durch LE B H3W, LE T H3W ersetzt werden  
Obsolete acc. to OS-PD-2008-008 - will be replaced by LE B H3W, LE T H3W  
Letzte Bestellung / Last Order: 2009-01-10  
Letzte Lieferung / Last Delivery: 2009-07-10  
Anm.: Die oben genannten Typbezeichnungen umfassen die bestellbaren Selektionen. Diese bestehen aus einer  
Helligkeitsgruppe. Es wird nur eine einzige Helligkeitsgruppe und Farbgruppe pro Verpackungsbox geliefert.  
* Zum Zweck der Bemusterung kann in kleinen Stückzahlen der konfektionierte JST-Gegenstecker mit Kabel  
angefordert werden.  
Note: The above Type Numbers represent the order groups which includes only one brightness group per color and tray. Only  
one group will be shipped on each tray.  
*In small amounts for the purpose of sampling the corrsponding connector assembled with cable can be ordered  
2008-07-07  
2
LE T H3A, LE B H3A  
Grenzwerte  
Maximum Ratings  
Bezeichnung  
Parameter  
Symbol  
Symbol  
Werte  
Values  
Einheit  
Unit  
true green  
blau  
Betriebstemperatur*  
Operating temperature range*  
Tboard, op  
Tboard, stg  
Tj  
– 40 … + 85  
– 40 … + 85  
125  
°C  
°C  
°C  
Lagertemperatur  
Storage temperature range  
Sperrschichttemperatur  
Junction temperature  
Durchlassstrom pro Chip DC  
Forward current per chip DC  
(Tboard =25°C)  
IF  
1000  
2000  
mA  
mA  
Stoßstrom pro Chip DC  
Surge current per chip DC  
t 10 μs, D = 0.1; TA=25°C  
IFM  
Sperrspannung pro Chip DC  
Reverse voltage per chip DC  
(Tboard=25°C)  
VR  
0.5  
10  
V
Sperrstrom  
IR  
mA  
Reverse current  
VR = 0.5 V  
Leistungsaufnahme pro Farbe  
Power consumption per Color  
(Tboard=25°C)  
Ptot  
30  
W
* Eine Betauung des Moduls muss vermieden werden.  
Condensation on the module has to be avoided.  
Kennwerte  
Charakteristics  
Bezeichnung  
Parameter  
Symbol  
Symbol  
Werte  
Values  
Einheit  
Unit  
Wärmewiderstand des gesamten Moduls  
Thermal resistance of the module  
Sperrschicht / Bodenplatte  
Rth JB  
2.0 (typ.)  
K/W  
Junction / base plate  
2008-07-07  
3
LE T H3A, LE B H3A  
Kennwerte  
Characteristics  
(Tboard = 25 °C)  
Bezeichnung  
Parameter  
Symbol  
Symbol  
Werte  
Values  
Einheit  
Unit  
true green  
blue  
Wellenlänge des emittierten Lichtes  
Wavelength at peak emission  
IF = 1000 mA (T, B)  
(typ.) λpeak  
516  
460  
nm  
Dominantwellenlänge4) Seite 16  
Dominant wavelength4) page 16  
IF = 1000 mA (T, B)  
(min.) λdom  
(typ.) λdom  
(max.) λdom  
509  
520  
527  
456  
464  
469  
nm  
nm  
nm  
Spektrale Bandbreite bei 50 % ΙVrel max  
Spectral bandwidth at 50 % ΙVrel max  
IF = 1000 mA (T, B)  
(typ.) Δλ  
(typ.) 2ϕ  
44  
30  
nm  
Abstrahlwinkel bei 50 % ΙV (Vollwinkel)  
Viewing angle at 50 % ΙV  
120  
120  
Grad  
deg.  
Durchlassspannung pro Chip5) Seite 16  
Forward voltage per chip5) page 16  
IF = 1000 mA (T, B)  
(min.) VF  
(typ.) VF  
(max.) VF  
3.2  
4.0  
5.0  
3.2  
4.0  
5.0  
V
V
V
Temperaturkoeffizient von λpeak  
Temperature coefficient of λpeak  
IF = 1000 mA (T, B); –10°C T 100°C  
(typ.) TCλpeak  
(typ.) TCλdom  
(typ.) TCV  
0.05  
0.02  
– 4.5  
nm/K  
nm/K  
mV/K  
0.05  
0.02  
– 4.5  
Temperaturkoeffizient von λdom  
Temperature coefficient of λdom  
IF = 1000 mA (T, B); –10°C T 100°C  
Temperaturkoeffizient von VF pro Chip  
Temperature coefficient of VF per chip  
IF = 1000 mA (T, B); –10°C T 100°C  
Optischer Wirkungsgrad ohne Linse  
Optical efficiency without Lens  
IF = 1000 mA (T, B)  
(typ.) ηopt  
20  
5.2  
lm/W  
mm²  
Abstrahlende Fläche  
Radiating Surface  
(typ.) AColor  
3.2 x 2.1  
3.2 x 2.1  
Leuchtdichte  
Luminance  
(typ.) LV  
26.0*106  
6.7*106  
cd/m²  
IF = 1000 mA (T, B)  
2008-07-07  
4
LE T H3A, LE B H3A  
SMD NTC Thermistors  
SMD NTC Thermistors  
R25  
No. of R/T  
characteristic  
s*  
B25/50  
B25/85  
Resistance B value  
PNTC,max,25  
Tolerance  
Δ RN/RN  
Tolerance  
Δ B/B  
[Ω]  
[K]  
[K]  
[mW]  
180  
10k  
EPCOS 8502  
3940  
3980  
5%  
3%  
* for further information please visit www.epcos.com  
Seite 16  
Typische Thermistor Kennlinie2) 7)  
Typical Thermistor Graph2) 7) page 16  
IF = f (VF); Tboard = 25 °C  
1
T
1
TN  
B --- – ------  
RT = RN e  
OHL02609  
10000  
RT = NTC resistance in Ω at temperature T in K  
RN = NTC resistance in Ω at rated temperature TN in K (TN  
= 298 K for test condition)  
Ω
R
T, TN = temperature in K  
e = base of the natural logarithm (e = 2.71828)  
7000  
6000  
5000  
4000  
3000  
2000  
1000  
0
B = B value, material specific constant of the NTC  
thermistor  
T TN  
----------------  
T TN  
RN  
ln-------  
RT  
B = BN T  
=
0
10 20 30 40 50 60 70 ˚C 90  
TNTC  
2008-07-07  
5
LE T H3A, LE B H3A  
Helligkeits-Gruppierungsschema  
Brightness Groups  
Helligkeitsgruppe  
Brightness Group  
Lichtstärke1) Seite 16  
Luminous Intensity1) page 16  
IV (cd)  
Lichtstrom2) 3) Seite 16  
Luminous Flux2) 3) page 16  
ΦV (lm)  
blue  
true  
GW  
HW  
JW  
18 ...  
28 ...  
45 ...  
28  
45  
71  
70 (typ.)  
110 (typ.)  
175 (typ.)  
KB  
90 ... 112  
112 ... 140  
140 ... 180  
180 ... 224  
300 (typ.)  
380 (typ.)  
480 (typ.)  
600 (typ.)  
green LA  
LB  
MA  
Anm.: Die Standardlieferform von Serientypen beinhaltet eine Familiengruppe. Diese besteht aus nur  
wenigen Helligkeitsgruppen. Einzelne Helligkeitsgruppen sind nicht bestellbar.  
Note: The standard shipping format for serial types includes a family group of only a few individual  
brightness groups. Individual brightness groups cannot be ordered.  
Wellenlängengruppen (Dominantwellenlänge)4) Seite 16  
Wavelength Groups (Dominant Wavelength)4) page 16  
Gruppe  
Group  
true green  
max. [nm]  
Gruppe  
Group  
blue  
max. [nm]  
min. [nm]  
509  
min. [nm]  
456  
2
3
4
515  
521  
527  
2
3
462  
469  
515  
462  
521  
Gruppenbezeichnung auf Etikett  
Group Name on Label  
Beispiel: GW-3  
Example: GW-3  
Helligkeitsgruppe  
Brightness Group  
Wellenlänge  
Wavelength  
GW  
3
Anm.: In einer Verpackungseinheit ist immer nur eine Gruppe für jede Selektion enthalten.  
Note: No packing unit ever contains more than one group for each selection.  
2008-07-07  
6
LE T H3A, LE B H3A  
Seite 16  
Relative spektrale Emission pro Chip2)  
Relative Spectral Emission per Chip2) page 16  
V(λ) = spektrale Augenempfindlichkeit / Standard eye response curve  
I
rel = f (λ), Tboard = 25 °C, IF = 1000 mA (T, B)  
OHL02571  
100  
%
Irel  
80  
60  
40  
20  
0
Vλ  
blue  
true green  
400  
450  
500  
550  
600  
650  
nm  
700  
λ
Seite 16  
Abstrahlcharakteristik2)  
Radiation Characteristic2) page 16  
Φ
rel = f (ϕ); Tboard = 25 °C  
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˚  
2008-07-07  
7
LE T H3A, LE B H3A  
Seite 16  
Seite 16  
Durchlassstrom2)  
Relative Lichtstärke2) 8)  
Forward Current2) page 16  
Relative Luminous Intensity) 8) page 16  
IF = f (VF); Tboard = 25 °C  
ΙV/ΙV(1000 mA (T, B)) = f (IF); Tboard = 25 °C; tP=1ms, D=0,0003  
OHL03034  
OHL03033  
101  
101  
IV  
IV(1 A)  
A
IF  
100  
5
100  
5
10-1  
5
10-1  
5
10-2  
10-2  
10-2  
5
10-1  
5
100  
101  
A
2
2.5  
3
3.5  
4
4.5 5 V 5.5  
IF  
VF  
Seite 16  
Seite 16  
Relative Vorwärtsspannung2)  
Relative Lichtstärke2) 8)  
Relative Forward Voltage2) page 16  
Relative Luminous Intensity) 8) page 16  
ΔVF = VF - VF(25 °C) = f(Tj); IF= 1000 mA (T, B)  
ΙV/ΙV(1000 mA (T, B)) = f (IF); Tboard = 25 °C; tP=1ms, D=0,0003  
IV(1 A)  
OHL02808  
0.4  
V
1.30  
1.25  
1.20  
1.15  
1.10  
1.05  
1.00  
ΔVF  
0.2  
0.1  
0
-0.1  
-0.2  
-0.3  
1
1.5  
2
A
2.5  
IF  
-60 -40 -20  
0
20 40 60 ˚C 100  
Tj  
2008-07-07  
8
LE T H3A, LE B H3A  
Seite 16  
Seite 16  
Relative Lichtstärke2)  
Dominante Wellenlänge2)  
Relative Luminous Intensity) page 16  
Dominant Wavelength2) page 16  
ΙV/ΙV(25 °C) = f (Tj); IF = 1000 mA (T, B)  
LT, λdom = f (IF); Tboard = 25 °C  
OHL02584  
OHL03031  
1.4  
25  
nm  
IV  
IV (25 ˚C)  
Δλdom  
blue  
20  
15  
10  
5
true green  
1.0  
0.8  
0.6  
0.4  
0.2  
0
0
-5  
-10  
0
0.5  
1
1.5  
2
A 2.5  
-60 -40 -20  
0
20 40 60 ˚C 100  
Tj  
IF  
Seite 16  
Dominante Wellenlänge2)  
Seite 16  
Dominante Wellenlänge2)  
Dominant Wavelength2) page 16  
Dominant Wavelength2) page 16  
LB, λdom = f (Tj); IF = 1000 mA (T, B)  
LB, λdom = f (IF); Tboard = 25 °C  
OHL02673  
OHL03032  
2.0  
nm  
8
nm  
Δλdom  
Δλdom  
6
5
1.0  
0.5  
4
blue  
0
3
2
-0.5  
-1.0  
-1.5  
-2.0  
1
0
-1  
-2  
-60 -40 -20  
0
20 40 60 ˚C 100  
0
0.25 0.5 0.75  
1
1.25 1.5  
A 2  
Tj  
IF  
2008-07-07  
9
LE T H3A, LE B H3A  
Seite 16  
Dominante Wellenlänge2)  
Transient Thermal resistance  
Zth*(frequency,DC) for 6Chips operated  
6 Chips operated; IF = f (TS)  
Dominant Wavelength2) page 16  
LT, λdom = f (Tj); IF = 1000 mA (T, B)  
OHL02582  
OHL03895  
2.0  
nm  
2.5  
K/W  
Δλdom  
Zth*  
1.5  
2.0  
1.5  
1.0  
0.5  
0
1.0  
0.5  
true green  
0
-0.5  
-1.0  
240 Hz  
360 Hz  
2880 Hz  
-60 -40 -20  
0
20 40 60 ˚C 100  
0
0.1 0.2 0.3 0.4 0.5 0.6 0.7  
Duty Cycle  
Tj  
Zulässige Impulsbelastbarkeit IF = f (tp)  
Permissible Pulse Handling Capability  
blue, true green Duty cycle D = parameter, Tboard = 55 °C  
6 chips operated simultaneously in series;  
Zulässige Impulsbelastbarkeit IF = f (tp)  
Permissible Pulse Handling Capability  
blue, true green Duty cycle D = parameter, Tboard = 85 °C  
6 chips operated simultaneously in series  
OHL03891  
OHL03892  
2.0  
Imax  
A
2.0  
Imax  
A
Imax  
Imax  
1.7  
1.6  
1.5  
1.7  
1.6  
1.5  
240 Hz  
1.4  
240 Hz  
360 Hz  
1.4  
360 Hz  
1.3  
1.3  
2880 Hz  
2880 Hz  
1.2  
1.1  
1.0  
0.9  
1.2  
1.1  
1.0  
0.9  
T
T
Δ
Board = 55 ˚C  
j = 125 ˚C  
T = 70 K  
T
T
Δ
Board = 85 ˚C  
j = 125 ˚C  
T = 40 K  
0.8  
0.7  
0.6  
0.5  
0.8  
0.7  
0.6  
0.5  
0
0.2  
0.4  
Duty Cycle  
0.6  
0.8  
1
0
0.2  
0.4  
0.6  
0.8  
1
Duty Cycle  
2008-07-07  
10  
LE T H3A, LE B H3A  
Seite 16  
Maßzeichnung9)  
Package Outlines9) page 16  
Chip-Position: LE T H3A  
Pin-Assignment:  
1:Green  
2:Green  
3:Green  
4:Green  
5:Green  
6:Green  
1: Anode; Chip 5, 6  
2: Cathode; Chip 5, 6  
3: Anode; Chip 4  
4: Cathode; Chip 4  
5: NTC  
6: NTC  
Chip-Position: LE B H3A  
7: Anode; Chip 3  
8: Cathode; Chip 3  
9: Anode; Chip 1, 2  
10: Cathode; Chip 1, 2  
1: Blue  
2: Blue  
3: Blue  
4: Blue  
5: Blue  
6: Blue  
Verwendeter Stecker / Used male connector on board:  
Empfohlene Gegenstecker /  
Recommended female connector for power supply:  
Kontakt - Pins:  
JST SM10B-SRSS-TB (www.jst.com)  
JST SHR-10V-S (www.jst.com)  
JST SHR-10V-S-B (www.jst.com)  
SSH-003T-P0.2 (www.jst.com)  
Gewicht / Approx. weight:  
5.3 g  
2008-07-07  
11  
LE T H3A, LE B H3A  
Connecting and disconnecting OSRAM OS Ostar Projection modules  
When connecting or disconnecting an Ostar Projection module care has to be taken in order to prevent  
a damage of the module. The module is equipped with a male connector socket (JST SM 10B-SR  
SS-TB). As a female connector for power supply a JST SHR-10V-S (without protrusions) or a JST  
SHR-10V-S-B (with protrusions) with SSH-003T-P0.2 pins is recommended.  
When disconnecting the connector the applied pull force must not exceed 17 N * (footnote * A force of  
17 N can only be applied dynamically during disconnecting. No constant force must be applied to the  
connector.) Disconnection of the module during operation or at high temperatures can damage the  
module. The board temperature must not exceed 40°C during disconnection. During mating operation,  
mate connectors while holding wires in a bundle on the same axis to the mating axis. For unmating wires  
must be held in a bundle within 20 degrees to the mating axis (see Fig. for explanation).  
Connector  
20˚  
Wire  
PCB  
20˚  
20˚  
Wire  
Connector  
PCB  
OHO03020  
2008-07-07  
12  
LE T H3A, LE B H3A  
Seite 16  
Verpackung 9)  
50 St. pro Box = Verpackungseinheit  
50 pcs. per tray = packing unit  
Method of Packing 9) page 16  
Elektrisches Ersatzschaltbild  
Equivalent Circuit Diagram  
Pin 1  
Pin 7  
Chip 6  
Chip 5  
ESD-  
Protection  
ESD-  
Protection  
Chip 3  
Pin 2  
Pin 3  
Pin 8  
Pin 9  
Chip 1  
Chip 2  
ESD-  
Protection  
ESD-  
Protection  
Chip 4  
Pin 4  
Pin 10  
OHEE2946  
2008-07-07  
13  
LE T H3A, LE B H3A  
Barcode-Tray-Etikett (BTL)  
Barcode-Tray-Label (BTL)  
LE xxx xxx  
Group: xxxx-xxxx-xxxx  
DC: Date Code  
Data  
Matrix  
Code  
Bar Code  
MATERIAL: Material Number  
Batch Batch Number  
OHA02684  
Kartonverpackung und Materialien  
Transportation Packing and Materials  
Box  
Barcode label  
20  
0
1-  
Q
-2  
1
:
P-  
2:  
n3  
Bi  
-1  
B
in  
in  
:
p
S
T
R
C
D
L
2
40  
2
C
T
EX  
D
E
MY  
6
B
Tem  
2
R
T
7
T6  
0
C
R
M
2
0
Y
2
6
l
T
S
2a  
18  
: R  
L
O
na  
tio  
di  
Ad  
3
-1  
Q
+
-1  
P: P  
i
T
lt  
AR  
KV  
u
0
R
PA  
77  
M
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(G  
4
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1
:
0
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to  
to  
s
98  
p
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D
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0
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0
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0
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23  
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Original packing label  
OHA02886  
2008-07-07  
14  
LE T H3A, LE B H3A  
Revision History: 2008-07-07  
Previous Version: 2007-01-29  
Page  
Subjects (major changes since last revision)  
Product Discontinuation OS-PD-2008-008  
Date of change  
all  
2008-07-07  
Anm.: Gemäß IEC 60825-1 (EN 60825-1) gilt für true green:  
Note: According IEC 60825-1 (EN 60825-1) for true green:  
LED STRAHLUNG  
LED RADIATION  
NICHT DIREKT MIT OPTISCHEN  
INSTRUMENTEN BETRACHTEN  
LED KLASSE 1M  
DO NOT VIEW DIRECTLY  
WITH OPTICAL INSTRUMENTS  
CLASS 1M LED PRODUCT  
OHW02884  
OHW12884  
Anm.: Gemäß IEC 60825-1 (EN 60825-1) gilt für blau:  
Note: According IEC 60825-1 (EN 60825-1) for blue:  
LED STRAHLUNG  
NICHT DIREKT IN  
DEN STRAHL BLICKEN  
LED KLASSE 2  
LED RADIATION  
DO NOT STARE INTO BEAM  
CLASS 2 LED PRODUCT  
OHW12885  
OHW02885  
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  
components10) page 16 may only be used in life-support devices or systems11) page 16 with the express written approval of  
OSRAM OS.  
2008-07-07  
15  
LE T H3A, LE B H3A  
Fußnoten:  
Remarks:  
1)  
1)  
Brightness groups are tested at a current pulse duration  
of 25 ms and a tolerance of ± 11%. Condition for  
luminous intensity measurement acc. to CIE127  
condition A  
Helligkeitswerte werden mit einer Stromeinprägedauer  
von 25 ms und einer Genauigkeit von ± 11% ermittelt.  
Messbedingung für Lichtstärkemessung nach CIE127  
Condition A.  
2)  
2)  
Due to the special conditions of the manufacturing  
processes of LED, the typical data or calculated  
correlations of technical parameters can only reflect  
statistical figures. These do not necessarily correspond  
to the actual parameters of each single product, which  
could differ from the typical data and calculated  
correlations or the typical characeristic line.  
If requested, e.g. because of technical improvements,  
these typ. data will be changed without any further  
notice.  
Min. ΦV values are calculated from Iv values.  
Brightness values stated on page 2 are measured  
without primary optics.  
Wavelengths are tested at a current pulse duration of 25  
ms and a tolerance of 1 nm.  
Wegen der besonderen Prozessbedingungen bei der  
Herstellung von LED können typische oder abgeleitete  
technische Parameter nur aufgrund statistischer Werte  
wiedergegeben werden. Diese stimmen nicht  
notwendigerweise mit den Werten jedes einzelnen  
Produktes überein, dessen Werte sich von typischen  
und abgeleiteten Werten oder typischen Kennlinien  
unterscheiden können. Falls erforderlich, z.B. aufgrund  
technischer Verbesserungen, werden diese typischen  
Werte ohne weitere Ankündigung geändert.  
3)  
3)  
Min. ΦV Werte werden aus den Iv - Werten berechnet.  
Die Helligkeitswerte auf Seite  
Primäroptik gemessen.  
2
wurden ohne  
4)  
5)  
6)  
4)  
5)  
6)  
Wellenlängen werden mit einer Stromeinprägedauer  
von 25 ms und einer Genauigkeit von 1 nm ermittelt.  
Spannungswerte werden mit einer Stromeinprägedauer  
von 1 ms und einer Genauigkeit von 0,1 V ermittelt.  
Für den Fall, dass eine Optik wie z. B. eine  
Halbsphärenlinse als Primäroptik verwendet wird, kann  
der Lichtfluss bis zu 40% für rot und grün und 36% für  
blau erhöht werden.  
Die R-T-Kurve eines NTC läßt sich in einem engen  
Bereich um den spezifizierten Wert herum in erster  
Näherung durch einen exponentialen Zusammenhang  
beschreiben. Sofern eine detailliertere Beschreibung  
der R-T-Kurve für die Praxis nötig ist, können eine  
ganauere Formel und entsprechende tabellierte Werte  
bei EPCOS gefunden werden.  
Forward voltages are tested at a current pulse duration  
of 1 ms and a tolerance of 0.1 V.  
If an optic, such as a hemispherical lens is added, the  
luminous flux values can be increased up to 40% for red  
and green and 36% for blue.  
7)  
7)  
The R-T-Curve of an NTC thermistor can be roughly  
described in  
a restricted range around the rated  
temperautre. If a more precise desciption of the R/T  
curve is required for practical applications a refined  
formular and the corresponding tabulated values can be  
found at EPCOS  
8)  
8)  
In the range where the line of the graph is broken, you  
must expect higher brightness differences between  
single LEDs within one packing unit.  
Im gestrichelten Bereich der Kennlinien muss mit  
erhöhten  
Helligkeitsunterschieden  
zwischen  
Leuchtdioden innerhalb einer Verpackungseinheit  
gerechnet werden.  
Maße werden wie folgt angegeben: mm (inch).  
Ein kritisches Bauteil ist ein Bauteil, das in  
9)  
9)  
Dimensions are specified as follows: mm (inch).  
10)  
10)  
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.  
lebenserhaltenden  
Apparaten  
oder  
Systemen  
eingesetzt wird und dessen Defekt voraussichtlich zu  
einer Fehlfunktion dieses lebenserhaltenden Apparates  
oder Systems führen wird oder die Sicherheit oder  
Effektivität  
dieses  
Apparates  
oder  
Systems  
beeinträchtigt.  
11)  
11)  
Life support devices or systems are intended  
(a) to be implanted in the human body,  
or  
Lebenserhaltende Apparate oder Systeme sind für (a)  
die Implantierung in den menschlichen Körper  
oder  
(b) to support and/or maintain and sustain human life. If  
they fail, it is reasonable to assume that the health and  
the life of the user may be endangered.  
(b) für die Lebenserhaltung bestimmt.  
Falls sie versagen, kann davon ausgegangen werden,  
dass die Gesundheit und das Leben des Patienten in  
Gefahr ist.  
Published by  
OSRAM Opto Semiconductors GmbH  
Leibnizstrasse 4, D-93055 Regensburg  
www.osram-os.com  
© All Rights Reserved.  
2008-07-07  
16  

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