LBE67C OSRAM | Alldatasheet
Document overview
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Technical content
Features
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: 469 nm (blue), 503 nm (verde), 525 nm (true green) viewing angle: Lambertian Emitter (120°) technology: InGaN optical efficiency: 3 lm/W (blue), 10 lm/W (verde), 13 lm/W (true green) grouping parameter: luminous intensity, 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
Applications
traffic lights (verde) backlighting (LCD, switches, keys, displays, illuminated advertising, general lighting) interior automotive lighting (e.g. dashboard backlighting, etc.) substitution of micro incandescent lamps marker lights (e.g. steps, exit ways, etc.) signal and symbol luminaire scanners
LB E67C, LV E67C, LT E67C Anm.: -35 gesamter Farbbereich, 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. Note: -35 Total color tolerance range, delivery in single groups (please 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. Typ Type Emissions- farbe Color of Emission Farbe der Lichtaustritts- fläche Color of the Light Emitting Area Lichtstärke Luminous Intensity IF = 30 mA IV (mcd) Lichtstrom Luminous Flux IF = 30 mA ΦV (mlm) Bestellnummer Ordering Code LB E67C-P2Q2-35 LB E67C-Q2S1-35 blue colorless clear 56 ... 112 90 ... 224 250 (typ.) 470 (typ.) Q62703-Q6235 Q62703-Q6236 LV E67C-S2T2-35 LV E67C-T2V1-35 verde colorless clear 224 ... 450 355 ... 900 1000 (typ.) 1900 (typ.) Q62703-Q6286 Q65110-A0185 LT E67C-S2T2-35 LT E67C-T2V1-35 true green colorless clear 224 ... 450 355 ... 900 1000 (typ.) 1900 (typ.) Q65110-A0273 Q65110-A0274
LB E67C, LV E67C, LT E67C 2002-07-17 Grenzwerte Maximum Ratings Bezeichnung Parameter Symbol Symbol Werte Values Einheit Unit LB LV, LT Betriebstemperatur Operating temperature range Top – 40 … + 100 Lagertemperatur Storage temperature range Tstg – 40 … + 100 Sperrschichttemperatur Junction temperature Tj + 110 + 125 Durchlassstrom Forward current IF mA Stoßstrom Surge current t ≤ 10 µs, D = 0.005 IFM 200 250 mA Sperrspannung Reverse voltage VR V Leistungsaufnahme Power consumption Ptot 140 mW Wärmewiderstand Thermal resistance Sperrschicht/Umgebung Junction/ambient Sperrschicht/Lötpad Junction/solder point Montage auf PC-Board FR 4 (Padgröße ≥ 16 mm 2) mounted on PC board FR 4 (pad size ≥ 16 mm 2) Rth JA Rth JS 350 180 K/W K/W
LB E67C, LV E67C, LT E67C Kennwerte (TA = 25 °C) Characteristics Bezeichnung Parameter Symbol Symbol Werte Values Einheit Unit LB LV LT Wellenlänge des emittierten Lichtes (typ.) Wavelength at peak emission IF = 30 mA λpeak 464 501 520 nm Dominantwellenlänge 1) (typ.) Dominant wavelength IF = 30 mA λdom 469 ± 6 503 ± 6 525 ± 9 nm Spektrale Bandbreite bei 50 % Irel max (typ.) Spectral bandwidth at 50 % Irel max IF = 30 mA nm Abstrahlwinkel bei 50 % IV (Vollwinkel) (typ.) Viewing angle at 50 % IV 120 120 120 Grad deg. Durchlassspannung 2) (typ.) Forward voltage (max.) IF = 30 mA VF VF 4.1 4.6 3.8 4.6 3.8 4.6 V V Sperrstrom (typ.) Reverse current (max.) VR = 5 V IRIR 0.01 0.01 0.01 µA µA Temperaturkoeffizient von λpeak (typ.) Temperature coefficient of λpeak IF = 30 mA; –10°C ≤ T ≤ 100°C TCλpeak 0.05 0.03 0.04 nm/K Temperaturkoeffizient von λdom (typ.) Temperature coefficient of λdom IF = 30 mA; –10°C ≤ T ≤ 100°C TCλdom 0.04 0.02 0.03 nm/K Temperaturkoeffizient von VF (typ.) Temperature coefficient of VF IF = 30 mA; –10°C ≤ T ≤ 100°C TCV – 3.1 – 3.2 – 3.6 mV/K Optischer Wirkungsgrad (typ.) Optical efficiency IF = 30 mA ηopt lm/W Wellenlängengruppen werden mit einer Stromeinprägedauer von 25 ms und einer Genauigkeit von ±1 nm ermittelt. Wavelength groups are tested at a current pulse duration of 25 ms and a tolerance of ±1 nm. Spannungswerte werden mit einer Stromeinprägedauer 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.
LB E67C, LV E67C, LT E67C 2002-07-17 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%. 1) Wellenlängengruppen / Wavelength groups Gruppe Group blue verde true green Einheit Unit min. max. min. max. min. max. 463 467 497 501 516 522 nm 467 471 501 505 522 528 nm 471 475 505 509 528 534 nm Helligkeits-Gruppierungsschema Luminous Intensity Groups Lichtgruppe Luminous Intensity Group Lichtstärke Luminous Intensity IV (mcd) Lichtstrom Luminous Flux ΦV (mlm) 56 … 71 … 90 … 112 112 … 140 140 … 180 180 … 224 224 … 280 280 … 355 355 … 450 450 … 560 560 … 710 710 … 900 190 (typ.) 240 (typ.) 300 (typ.) 380 (typ.) 480 (typ.) 600 (typ.) 760 (typ.) 950 (typ.) 1200 (typ.) 1500 (typ.) 1900 (typ.) 2400 (typ.) Gruppenbezeichnung auf Etikett Group Name on Label Beispiel: S2-3 Example: S2-3 Lichtgruppe Luminous Intensity Group Halbgruppe Half Group Wellenlänge Wavelength S
LB E67C, LV E67C, LT E67C Relative spektrale Emission Irel = f (λ), TA = 25 °C, IF = 30 mA Relative Spectral Emission V(λ) = spektrale Augenempfindlichkeit Standard eye response curve Abstrahlcharakteristik Irel = f (ϕ) Radiation Characteristic 400 true green 550 450 500 600 650 nm λ 700 OHL00492 I 100 rel verde blue λ V 0.2 0.4 1.0 0.8 0.6 ϕ 1.0 0.8 0.6 0.4 10˚ 20˚ 40˚ 30˚ OHL01660 50˚ 60˚ 70˚ 80˚ 90˚ 100˚ 20˚ 40˚ 60˚ 80˚ 100˚ 120˚
LB E67C, LV E67C, LT E67C 2002-07-17 Durchlassstrom IF = f (VF) Forward Current TA = 25 °C Maximal zulässiger Durchlassstrom IF = f (T) Max. Permissible Forward Current Relative Lichtstärke IV/IV(30 mA) = f (IF) Relative Luminous Intensity TA = 25 °C Maximal zulässiger Durchlassstrom IF = f (T) Max. Permissible Forward Current V OHL01619 1.5 verde, 10-3 10-2 10-1 100 101 mA 102 IF 2.5 3.5 4.5 5.5 V 6.5 true green blue F OHL01488 IF T mA A T temp. ambient 80 ˚C 100 Estimated average degradation = -50% V 5000 h 10000 h MTTF MTTF 10-3 IF mA V IV (30 mA) I OHL00036 verde true green blue OHL11489 IF T T temp. solder point S ˚C 100 mA S > 5000 h > 10000 h
LB E67C, LV E67C, LT E67C 2002-07-17 Relative Lichtstärke IV/IV(25 °C) = f (TA) Relative Luminous Intensity IF = 30 mA Dominante Wellenlänge λdom = f (IF) Dominant Wavelength LV, TA = 25 °C Dominante Wellenlänge λdom = f (IF) Dominant Wavelength LB, TA = 25 °C Dominante Wellenlänge λdom = f (IF) Dominant Wavelength LT, TA = 25 °C OHL01637 -20 V(25 ˚C) A T 0.2 0.4 0.6 0.8 1.0 1.2 1.4 ˚C 100 IV I OHL10198 498 dom λ mA nm 120 500 502 504 506 508 510 512 I OHL10196 467 dom λ mA nm 120 468 469 470 471 472 473 474 I OHL00199 521 dom λ F 40 mA 50 523 525 527 529 531 533 535 537 nm 541 true green 539
LB E67C, LV E67C, LT E67C 2002-07-17 Zulässige Impulsbelastbarkeit IF = f (tp) Permissible Pulse Handling Capability Duty cycle D = parameter, TA= 25 °C LB Zulässige Impulsbelastbarkeit IF = f (tp) Permissible Pulse Handling Capability Duty cycle D = parameter, TA= 25 °C LT / LV Zulässige Impulsbelastbarkeit IF = f (tp) Permissible Pulse Handling Capability Duty cycle D = parameter, TA= 85 °C LB Zulässige Impulsbelastbarkeit IF = f (tp) Permissible Pulse Handling Capability Duty cycle D = parameter, TA= 85 °C LT / LV OHL01578 10-5 FI T Pt D Pt T pt FI 0.005 0.01 0.02 0.05 D = 10-4 10-3 10-2 10-1 100 101 A s 0.5 0.2 0.05 0.10 0.15 0.20 0.30 0.1 0.25 OHL01583 10-5 FI Pt T pt FI 0.005 0.01 0.02 0.05 D = 10-4 10-3 10-2 10-1 100 101 A s 0.5 0.05 0.10 0.15 0.20 0.30 0.2 0.1 D = T tP 0.25 OHL01579 10-5 FI T Pt D Pt T pt FI 0.005 0.01 0.02 0.05 0.1 D = 10-4 10-3 10-2 10-1 100 101 A s 0.5 0.05 0.10 0.15 0.20 0.30 0.2 0.25 OHL01584 10-5 FI T Pt D Pt T FI 0.005 0.01 0.02 0.05 D = 10-4 10-3 10-2 10-1 100 101 A s 0.5 0.05 0.10 0.15 0.20 0.30 0.2 0.1 0.25
LB E67C, LV E67C, LT E67C Maßzeichnung Package Outlines Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). Gewicht / Approx. weight: 31 mg marking Package 4˚±1 GPLY6991 A C C C 0.8 (0.031) 0.6 (0.024) 2.6 (0.102) 2.1 (0.083) 2.3 (0.091) 3.0 (0.118) 3.4 (0.134) 3.0 (0.118) (2.4 (0.094)) 0.5 (0.020) 1.1 (0.043) 3.7 (0.146) 3.3 (0.130) 0.12 (0.005) 0.18 (0.007) 0.1 (0.004) typ 0.4 (0.016) 0.6 (0.024) 0.9 (0.035) 0.7 (0.028) 2.1 (0.083) 1.7 (0.067)
LB E67C, LV E67C, LT E67C 2002-07-17 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 100 150 200 250 100 150 200 250 300 T t s 240-245 ˚C 10-40 s 183 ˚C 120 to 180 s Defined for Preconditioning: up to 6 K/s Ramp-down rate up to 6 K/s Ramp-up rate up to 6 K/s Defined for Preconditioning: 2-3 K/s
LB E67C, LV E67C, LT E67C Wellenlöten (TTW) (nach CECC 00802) TTW Soldering (acc. to CECC 00802) OHLY0598 100 150 200 250 100 150 200 250 300 T t C s 235 C 10 s C ... 260 1. Welle 1. wave 2. Welle 2. wave
5 K/s
2 K/s
C C ... 130 100 Zwangskühlung forced cooling Normalkurve standard curve Grenzkurven limit curves
LB E67C, LV E67C, LT E67C 2002-07-17 Empfohlenes Lötpaddesign IR Reflow Löten Recommended Solder Pad IR Reflow Soldering Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). OHLPY439 Padgeometrie für verbesserte Wärmeableitung improved heat dissipation Paddesign for Lötstoplack Solder resist 1.1 (0.043) 4.5 (0.177) 1.5 (0.059) 2.6 (0.102) 3.3 (0.130) 0.5 (0.020) 7.5 (0.295) 0.4 (0.016) Cathode marking Kathoden Markierung / Cu Fläche / 12 mm per pad Cu-area 3.3 (0.130)
LB E67C, LV E67C, LT E67C Empfohlenes Lötpaddesign Wellenlöten (TTW) Recommended Solder Pad TTW Soldering Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). Gurtung / Polarität und Lage Verpackungseinheit 2000/Rolle, ø180 mm oder 8000/Rolle, ø330 mm Method of Taping / Polarity and Orientation Packing unit 2000/reel, ø180 mm or 8000/reel, ø330 mm Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch). OHAY0583 6.1 (0.240) 2.8 (0.110) 2 (0.079) 3 (0.118) 6 (0.236) 3.5 (0.138) 1.5 (0.059) 2 (0.079) 3.5 (0.138) 1 (0.039) 8 (0.315) 2.8 (0.110) 0.5 (0.020) 7.5 (0.295) Solder resist Lötstoplack PCB-direction Bewegungsrichtung der Platine 2 (0.079) Padgeometrie für improved heat dissipation verbesserte Wärmeableitung Paddesign for Cu Fläche / > 12 mm per pad Cu-area OHAY0536 C C C A 4 (0.157) 2.9 (0.114) 1.5 (0.059) 4 (0.157) 3.6 (0.142) 3.5 (0.138) 2 (0.079) 1.75 (0.069) 8 (0.315)
LB E67C, LV E67C, LT E67C 2002-07-17 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. Revision History: 2002-07-17 Date of change Previous Version: 2002-07-02 Page Subjects (major changes since last revision) value (forward voltage) diagram OHL01569/01570 to OHL01488/11489 diagram OHL01620/01627/01621 to OHL10196/10198/00199 wavelength grouping for blue, true green and verde brightness grouping for LV E63C 2002-07-17