SFH4250_12 OSRAM | Alldatasheet
Document overview
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Technical content
Features
High Power Infrared LED High forward current allowed at high temperature Short switching times
Applications
Infrared Illumination for CMOS cameras IR Data Transmission Optical sensors Safety Advices Depending on the mode of operation, these devices emit highly concentrated non visible infrared light which can be hazardous to the human eye. Products which incorporate these devices have to follow the safety precautions given in IEC 60825-1 and IEC 62471.
Grenzwerte (TA = 25 °C) Maximum Ratings Bezeichnung Parameter Symbol Symbol Wert Value Einheit Unit Betriebs- und Lagertemperatur Operating and storage temperature range Top , Tstg – 40 … + 100 °C Sperrspannung Reverse voltage VR 5 V Vorwärtsgleichstrom Forward current IF 100 mA Stoßstrom, tp = 100 μs, D = 0 Surge current IFSM 1.5 A Verlustleistung Power dissipation Ptot 180 mW Wärmewiderstand Sperrschicht - Umgebung bei Montage auf FR4 Platine, Padgröße je 16 mm2 Thermal resistance junction - ambient mounted on PC-board (FR4), padsize 16 mm 2 each Wärmewiderstand Sperrschicht - Lötstelle bei Montage auf Metall-Block Thermal resistance junction - soldering point, mounted on metal block RthJA RthJS 300 140 K/W K/W Kennwerte (TA = 25 °C) Characteristics Bezeichnung Parameter Symbol Symbol Wert Value Einheit Unit Wellenlänge der Strahlung Wavelength at peak emission IF = 100 mA λpeak 860 nm Centroid-Wellenlänge der Strahlung Centroid wavelength IF = 100 mA λcentroid 850 nm Spektrale Bandbreite bei 50% von Imax Spectral bandwidth at 50% of Imax IF = 100 mA Δλ 42 nm Abstrahlwinkel Half angle ϕ ± 60 Grad deg. Aktive Chipfläche Active chip area A 0.09 mm2
Abmessungen der aktiven Chipfläche Dimension of the active chip area L × B L × W 0.3 × 0.3 mm² Schaltzeiten, Ie von 10% auf 90% und von 90% auf 10%, bei IF = 100 mA, RL = 50 Ω Switching times, Ιe from 10% to 90% and from 90% to 10%, IF = 100 mA, RL = 50 Ω tr, tf 12 ns Durchlassspannung Forward voltage IF = 100 mA, tp = 20 ms IF = 1 A, tp = 100 µs VF VF 1.5 (< 1.8) 2.4 (< 3.0) V V Sperrstrom Reverse current IR not designed for reverse operation μA Gesamtstrahlungsfluss Total radiant flux IF = 100 mA, tp = 20 ms Φe typ 45 mW Temperaturkoeffizient von Ie bzw. Φe, IF = 100 mA Temperature coefficient of Ie or Φe, IF = 100 mA TCI – 0.5 %/K Temperaturkoeffizient von VF, IF = 100 mA Temperature coefficient of VF, IF = 100 mA TCV – 0.7 mV/K Temperaturkoeffizient von λ, IF = 100 mA Temperature coefficient of λ, IF = 100 mA TCλ + 0.3 nm/K Kennwerte (TA = 25 °C) Characteristics (cont’d) Bezeichnung Parameter Symbol Symbol Wert Value Einheit Unit
Radiation Characteristics Irel = f (ϕ) Strahlstärke Ie in Achsrichtung1) gemessen bei einem Raumwinkel Ω = 0.01 sr Radiant Intensity Ie in Axial Direction at a solid angle of Ω = 0.01 sr Bezeichnung Parameter Symbol Werte Values Einheit Unit SFH 4250-R SFH 4250-S Strahlstärke Radiant intensity IF = 100 mA, tp = 20 ms Ie min Ie max mW/sr mW/sr Strahlstärke Radiant intensity IF = 1 A, tp = 100 μs Ie typ 100 140 mW/sr 1) Nur eine Gruppe in einer Verpackungseinheit (Streuung kleiner 2:1) / Only one group in one packing unit (variation lower 2:1) 0.2 0.4 1.0 0.8 0.6 ϕ 1.0 0.8 0.6 0.4 50˚ 60˚ 70˚ 80˚ 90˚ 100˚
Relative Spectral Emission Irel = f (λ) Forward Current IF = f (VF) Single pulse, tp = 20 μs 700 nm OHF04135 100 950750 800 850 Irel λ OHL01713 FI 10-4 0.5 1 1.5 2 2.5 V3 100 A FV -110 10-2 Radiant Intensity Single pulse, tp = 20 μs Permissible Pulse Handling Capability IF = f (τ), TA = 25 °C, duty cycle D = parameter Ie Ie 100 mA = f (IF) OHL01715 10-3 mA 101 010 10-1 e e (100 mA) I I IF 010 110 210 31055 0.05 210-1-2-3-4-5 1010 1010 10 tp 10 10 s10 0.1 0.005 0.02 0.01 D = T tAIF D = IP T F Pt OHF02505 0.2 0.5 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0.033 Max. Permissible Forward Current IF = f (TA), RthJA = 300 K/W 00 ˚C T IF mA OHL01716 A 100 120 20 40 60 80 120
Maßzeichnung Package Outlines Maße in mm (inch) / Dimensions in mm (inch). Gehäuse / Package Power TOPLED®, klarer Verguss / Power TOPLED®, clear resin Anschlussbelegung Pin configuration Kathode: abgeschrägte Ecke Cathode: beveled edge GPLY6084 0.7 (0.028) 0.9 (0.035) 1.7 (0.067) 2.1 (0.083) 0.12 (0.005) 0.18 (0.007) 0.5 (0.020) 3.7 (0.146) 0.4 (0.016) 0.6 (0.024) 2.6 (0.102) 3.0 (0.118) 2.1 (0.083) 2.3 (0.091) Package marking 3.0 (0.118) 3.4 (0.134) (2.4) (0.095) 0.1 (0.004) (typ.) 4˚±1 0.6 (0.024) 0.8 (0.031) AA CA AC A A
Empfohlenes Lötpaddesign Reflow Löten Recommended Solder Pad Design Reflow Soldering Empfohlenes Lötpaddesign Wellenlöten TTW Recommended Solder Pad Design TTW Soldering OHFP3021 Padgeometrie für verbesserte Wärmeableitung improved heat dissipation Paddesign for Lötstoplack Solder resist 0.8 (0.031) 3.7 (0.146) 1.1 (0.043) 2.3 (0.091) 3.3 (0.130) 1.5 (0.059) 11.1 (0.437) Cu Fläche / 16 mm per pad2 Cu-area 3.3 (0.130) 0.7 (0.028) OHPY3040 6.1 (0.240) 2.8 (0.110) 2 (0.079) 3 (0.118) 6 (0.236) 2 (0.079) 1 (0.039) Solder resist Lötstoplack PCB-direction Bewegungsrichtung der Platine 2 (0.079) Padgeometrie für improved heat dissipation verbesserte Wärmeableitung Paddesign for 2Cu Fläche / > 16 mm per pad Cu-area
Lötbedingungen Vorbehandlung nach JEDEC Level 2 Soldering Conditions Preconditioning acc. to JEDEC Level 2 Reflow Lötprofil für bleifreies Löten (nach J-STD-020C) Reflow Soldering Profile for lead free soldering (acc. to J-STD-020C) Wellenlöten (TTW) (nach CECC 00802) TTW Soldering (acc. to CECC 00802) OHLA0687 T t s 120 s max 100 150 200 250 300 Ramp Up 100 s max 50 100 150 200 250 300 Ramp Down
6 K/s (max)
3 K/s (max)
25 ˚C 30 s max 260 ˚C+0 ˚C -5 ˚C 245 ˚C±5 ˚C 240 ˚C 255 ˚C 217 ˚C Maximum Solder Profile Recommended Solder Profile 235 ˚C-0 ˚C +5 ˚C Minimum Solder Profile 10 s min OHLY0598 50 100 150 200 250 100 150 200 250 300 T t C s 235 C 10 s C... 260 1. Welle 1. wave 2. Welle 2. wave
5 K/s 2 K/sca 200 K/s
CC... 130100
2 K/s
Zwangskühlung forced cooling Normalkurve standard curve Grenzkurven limit curves
OSRAM Opto Semiconductors GmbH Leibnizstraße 4, D-93055 Regensburg www.osram-os.com © All Rights Reserved. The information describes the type of component and shall not be considered as assured characteristics. Terms of delivery and rights to change design reserv ed. Due to technical requirements components may contain dangerous substances. For information on the types in question please contact our Sales Organization. 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 tr ansport. 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 system s 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 usedin 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 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.
720-SFH4250-Z - Osram Opto Semiconductor SFH 4250-Z