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 Micro SIDELED LG Y870
Vorlaufige Daten / Preliminary Data
Besondere Merkmale * Gehausetyp: weies SMT-Gehause * Besonderheit des Bauteils: kleine Bauform mit extrem breiter Abstrahlcharakteristik; ideal fur Hinterleuchtungen und Einkopplungen in Lichtleiter * Wellenlange: 570 nm * Abstrahlwinkel: Lambertscher Strahler (120) * Technologie: GaP * optischer Wirkungsgrad: 2 lm/W * Gruppierungsparameter: Lichtstarke * Verarbeitungsmethode: fur alle SMT-Bestucktechniken geeignet * Lotmethode: IR Reflow Loten und Wellenloten (TTW) * Vorbehandlung: nach JEDEC Level 2 * Gurtung: 8 mm Gurt mit 3000/Rolle, o180 mm oder 10000/Rolle, o330 mm Anwendungen * optimale Einkopplung in Lichtleiter * Hinterleuchtung (LCD, Mobiltelefone, Tasten, Allgemeinbeleuchtung, Werbebeleuchtung) * Signal- und Symbolleuchten * Automobilbereich (z. B. Instrumentenbeleuchtung) Features * package: white SMT package * feature of the device: small package with extremely wide viewing angle; ideal for backlighting and coupling in light guides * wavelength: 570 nm * viewing angle: Lambertian Emitter (120) * technology: GaP * optical efficiency: 2 lm/W * grouping parameter: luminous intensity * 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 3000/reel, o180 mm or 10000/reel, o330 mm
Applications * optimized coupling into light guides * backlighting (LCD, cellular phones, keys, general lightning, illuminated advertising) * signal and symbol luminaire * automotive (e. g. car radio backlighting)
2001-06-26
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LG Y870
Typ Emissionsfarbe Color of Emission Farbe der Lichtaustrittsflache Color of the Light Emitting Area colorless clear Lichtstarke Lichtstrom Bestellnummer
Type
Luminous Intensity IF = 10 mA IV (mcd) 5.6 ... 11.2 9.0 ... 22.4
Luminous Flux IF = 10 mA V (mlm) 25 (typ.) 45 (typ.)
Ordering Code
LG Y870-J2K2-1 LG Y870-K2M1-1
green
Q62703-Q6189 Q62703-Q6190
Anm.: -1 gesamter Farbbereich Die Standardlieferform von Serientypen beinhaltet eine untere bzw. eine obere Familiengruppe, die aus nur 3 bzw. 4 Halbgruppen besteht. Einzelne Halbgruppen sind nicht erhaltlich. In einer Verpackungseinheit / Gurt ist immer nur eine Halbgruppe enthalten. Note: -1 Total color tolerance range 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.
2001-06-26
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LG Y870
Grenzwerte Maximum Ratings Bezeichnung Parameter Betriebstemperatur Operating temperature range Lagertemperatur Storage temperature range Sperrschichttemperatur Junction temperature Durchlassstrom Forward current Stostrom Surge current t 10 s, D = 0.005 Sperrspannung Reverse voltage Leistungsaufnahme Power consumption Symbol Symbol Wert Value - 40 ... + 100 - 40 ... + 100 + 100 30 t.b.d. Einheit Unit C C C mA A
Top Tstg Tj IF IFM
VR Ptot
5 95
V mW
Warmewiderstand Thermal resistance Sperrschicht/Umgebung Rth JA Junction/air Sperrschicht/Lotpad Rth JS Junction/soldering point Montage auf PC-Board FR 4 (Padgroe 16 mm 2) mounted on PC board FR 4 (pad size 16 mm 2)
530 300
K/W K/W
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LG Y870
Kennwerte (TA = 25 C) Characteristics Bezeichnung Parameter Wellenlange des emittierten Lichtes Wavelength at peak emission IF = 10 mA Dominantwellenlange 1) Dominant wavelength 1) IF = 10 mA Spektrale Bandbreite bei 50 % Irel max Spectral bandwidth at 50 % Irel max IF = 10 mA Abstrahlwinkel bei 50 % IV (Vollwinkel) Viewing angle at 50 % IV Durchlassspannung 2) Forward voltage 2) IF = 10 mA Sperrstrom Reverse current VR = 5 V Temperaturkoeffizient von peak Temperature coefficient of peak IF = 10 mA; -10C T 100C Temperaturkoeffizient von dom Temperature coefficient of dom IF = 10 mA; -10C T 100C Temperaturkoeffizient von VF Temperature coefficient of VF IF = 10 mA; -10C T 100C Optischer Wirkungsgrad Optical efficiency IF = 10 mA
1)
Symbol Symbol (typ.)
Wert Value 572
Einheit Unit nm
peak dom
(typ.)
570 6 25
nm
(typ.)
nm
(typ.) (typ.) (max.) (typ.) (max.) (typ.)
2
120 2.0 2.5 0.01 10 0.11
Grad deg. V V
VF VF IR IR TCpeak
A A
nm/K
(typ.)
TCdom
0.07
nm/K
(typ.)
TCV
- 1.4
mV/K
(typ.)
opt
2
lm/W
Wellenlangen werden mit einer Stromeinpragedauer 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. Spannungswerte werden mit einer Stromeinpragedauer von 1 ms und einer Genauigkeit von 0.1 V ermittelt. Voltages are tested at a current pulse duration of 1 ms and a tolerance of 0.1 V.
2)
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LG Y870
Helligkeits-Gruppierungsschema Luminous Intensity Groups Lichtgruppe Luminous Intensity Group J2 K1 K2 L1 L2 M1 Lichtstarke Luminous Intensity IV (mcd) 5.6 ... 7.1 ... 9.0 ... 11.2 ... 14.0 ... 18.0 ... 7.1 9.0 11.2 14.0 18.0 22.4 Lichtstrom Luminous Flux V (mlm) 19 (typ.) 24 (typ.) 30 (typ.) 40 (typ.) 50 (typ.) 60 (typ.)
Helligkeitswerte werden mit einer Stromeinpragedauer 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: L1 Example: L1 Lichtgruppe Halbgruppe Luminous Intensity Group Half Group L 1
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LG Y870
Relative spektrale Emission Irel = f (), TA = 25 C, IF = 10 mA Relative Spectral Emission V() = spektrale Augenempfindlichkeit Standard eye response curve
100 %
OHL01098
Irel
80
V
60
20
0 400
450
500
green
550
40
600
650
nm
700
Abstrahlcharakteristik Irel = f () Radiation Characteristic
40 30 20 10 0
OHL01660
1.0
50
0.8
0.6 60 0.4 70 0.2 80 90 100 1.0
2001-06-26
0
0.8
0.6
0.4
0
6
20
40
60
80
100
120
LG Y870
Durchlassstrom IF = f (VF) Forward Current TA = 25 C
10 2
OHL01263
Relative Lichtstarke IV/IV(10 mA) = f (IF) Relative Luminous Intensity TA = 25 C
10 1
OHL02313
I F mA
IV I V(10mA)
10 0
10 5
1
5 green
10 -1 5 10 5
0
10 -2 5
10 -1
1
1.4
1.8
2.2
2.6
3 V 3.4
10 -3 10
-1
5 10
0
5
10
1
mA 10
2
VF
IF
Maximal zulassiger Durchlassstrom IF = f (TA) Max. Permissible Forward Current
35 mA 30
OHL00091
Relative Lichtstarke IV / IV(25 C)= f (TA) Relative Luminous Intensity IF = 10 mA
2
OHL01101
IF
IV IV (25 C)
TS
1.6
25 20 15 10
TA
1.2 green 0.8
0.4
5 0
TS temp. solder point TA temp. ambient
0
20
40
60
80 C 100 T
0
0
20
40
60
80 C 100
TA
7
2001-06-26
LG Y870
Zulassige Impulsbelastbarkeit IF = f (tp) Permissible Pulse Handling Capability Duty cycle D = parameter, TA = 25 C
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LG Y870
Mazeichnung Package Outlines
0.25 (0.010) 0.20 (0.008) 0 ... 0.1 (0 ... 0.004) (0.4 (0.016)) (0.6 (0.024))
3.1 (0.122)
2.9 (0.114)
0.5 (0.020)
0.3 (0.012)
Light emitting area typ. 1.7 x 0.7
(15) 2.3 (0.091) 2.1 (0.083)
Cathode 1.2 (0.047) 1.0 (0.039)
0.7 (0.028) 0.5 (0.020)
1.3 (0.051) 1.1 (0.043)
GPLY6058
Mae werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).
Gewicht / Approx. weight: 6 mg
2001-06-26
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LG Y870
Lotbedingungen Vorbehandlung nach JEDEC Level 2 Soldering Conditions Preconditioning acc. to JEDEC Level 2
IR-Reflow Lotprofil IR Reflow Soldering Profile
(nach IPC 9501) (acc. to IPC 9501)
300 C
OHLY0597
T
250
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
200
150
100
50 Defined for Preconditioning: 2-3 K/s 0 0 50 100 150 200 s 250
t
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LG Y870
Wellenloten (TTW) TTW Soldering (nach CECC 00802) (acc. to CECC 00802)
300 C T 250 235 C ... 260 C
OHLY0598
10 s
Normalkurve standard curve 2. Welle 2. wave Grenzkurven limit curves
200 1. Welle 1. wave 150 100 C ... 130 C 100 2 K/s 50 Zwangskuhlung forced cooling ca 200 K/s 5 K/s 2 K/s
0 0 50 100 150 t 200 s 250
2001-06-26
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LG Y870
Empfohlenes Lotpaddesign Recommended Solder Pad IR Reflow Loten IR Reflow Soldering
Bauteil positioniert Component location on pad
0.8 (0.031)
0.7 (0.028)
2.2 (0.087)
Padgeometrie fur verbesserte Warmeableitung Paddesign for improved heat dissipation Lotstopplack Solder resist
OHPY1315
Mae werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). Gehause fur Wellenloten (TTW) geeignet / Package suitable for TTW-soldering
Gurtung / Polaritat und Lage
Verpackungseinheit 3000/Rolle, o180 mm oder 10000/Rolle, o330 mm Method of Taping / Polarity and Orientation Packing unit 3000/reel, o180 mm or 10000/reel, o330 mm
4 (0.157)
3.5 (0.138)
1.75 (0.069)
1.5 (0.059)
1.25 (0.049)
2.4 (0.094)
8.1 (0.319)
C
3.3 (0.130)
A
OHAY1515
2 (0.079)
0.9 (0.035) 1.4 (0.055) 0.3 (0.012) max.
Mae werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). 2001-06-26 12
LG Y870
Revision History: 2001-06-26 Previous Version: Page 2001-06-26 Subjects (major changes since last revision)
Published by OSRAM Opto Semiconductors GmbH & Co. OHG Wernerwerkstrasse 2, D-93049 Regensburg (c) 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.
2001-06-26
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