OSRAM SFH 2400, SFH 2400FA Technical data

Silizium-PIN-Fotodiode mit sehr kurzer Schaltzeit Silicon PIN Photodiode with Very Short Switching Time
Lead (Pb) Free Product - RoHS Compliant
SFH 2400 SFH 2400FA
SFH 2400 SFH 2400FA
Speziell geeignet für Anwendungen im Bereich von 400 nm bis 1100 nm (SFH 2400) und bei 880 nm (SFH 2400FA)
Kurze Schaltzeit (typ. 5 ns)
SMT-Bauform, geeignet für Vapor Phase-Löten und IR-Reflow-Löten
Nur gegurtet lieferbar
Anwendungen
Industrieelektronik
„Messen/Steuern/Regeln“
Schnelle Lichtschranken für Gleich- und Wechsellichtbetrieb
Typ Type
SFH 2400 Q65110A2628 SFH 2400FA Q65110A2638
Bestellnummer Ordering Code
Features
Especially suitable for applications from 400 nm to 1100 nm (SFH 2400) and of 880 nm (SFH 2400FA)
Short switching time (typ. 5 ns)
SMT package, suitable for vapor phase and IR reflow soldering
Available only on tape and reel
Applications
Industrial electronics
For control and drive circuits
Photointerrupters
2005-04-06 1
Grenzwerte Maximum Ratings
SFH 2400, SFH 2400FA
Bezeichnung Parameter
Betriebs- und Lagertemperatur Operating and storage temperature range
Sperrspannung Reverse voltage
Sperrspannung Reverse voltage
t <2min
t <2min
Verlustleistung Total power dissipation
Wärmewiderstand für Montage auf PC-Board Thermal resistance for mounting on pcb
Kennwerte
(T
= 25 ° C)
A
Characteristics Bezeichnung
Parameter
Symbol Symbol
T
; T
op
stg
V
R
V
R
P
tot
R
450 K/W
thJA
Symbol Symbol
Wert Value
– 40 … + 100 ° C
20 V
50 V
120 mW
Wert
Value
SFH 2400 SFH 2400FA
Einheit Unit
Einheit Unit
Fotostrom Photocurrent
V
= 5 V, Normlicht/standard light A,
R
T = 2856 K, E V
= 5 V, λ = 870 nm, Ee = 1 mW/cm
R
= 1000 lx
V
2
Wellenlänge der max. Fotoempfindlichkeit Wavelength of max. sensitivity
Spektraler Bereich der Fotoempfindlichkeit
S = 10% von S
max
Spectral range of sensitivity
S = 10% of S
max
Bestrahlungsempfindliche Fläche Radiant sensitive area
Abmessung der bestrahlungsempfindlichen Fläche Dimensions of radiant sensitive area
Halbwinkel Half angle
I
P
I
P
λ
S max
10 (> 6)
6.5
6.2 ( 3.6)
µA
µA
850 900 nm
λ 400 … 1100 750 … 1100 nm
A 11 mm
L × B
× W
L
1 × 11× 1mm× mm
2
ϕ±60 ± 60 Grad
deg.
2005-04-06 2
Kennwerte (TA = 25 ° C) Characteristics (cont’d)
SFH 2400, SFH 2400FA
Bezeichnung Parameter
Dunkelstrom, VR = 20 V Dark current
Leerlaufspannung Open-circuit voltage
E
= 1000 Ix, Normlicht/standard light A,
v
T = 2856 K E
= 1 mW/cm2, λ = 870 nm
e
Kurzschlußstrom Short-circuit current
E
= 1000 Ix, Normlicht/standard light A,
v
T = 2856 K E
= 1 mW/cm2, λ = 870 nm
e
Anstiegs- und Abfallzeit des Fotostromes Rise and fall time of the photocurrent
R
= 50 Ω; VR = 20 V; λ = 850 nm; Ip = 800 µA
L
Durchlaßspannung, Forward voltage
I
= 80 mA, E = 0
F
Symbol Symbol
Wert
Value
SFH 2400 SFH 2400FA
I
1 (< 5) 1 (< 5) nA
R
V
O
V
O
I
SC
I
SC
t
, t
r
f
V
F
320
10
320
6.0
55 ns
1.3 1.3 V
Einheit Unit
mV
mV
µA
µA
Kapazität,
V
= 0 V, f = 1 MHz, E = 0
R
Capacitance Temperaturkoeffizient von
Temperature coefficient of V Temperaturkoeffizient von
Temperature coefficient of I
V
O O
I
SC SC
Normlicht/standard light A λ = 870 nm
Rauschäquivalente Strahlungsleistung Noise equivalent power
V
= 20 V, λ = 870 nm
R
Nachweisgrenze, VR = 20 V, λ = 870 nm Detection limit
C
TC
TC
0
V
I
11 11 pF
– 2.6 – 2.6 mV/K
0.18 –
NEP
2.9 × 10
D* 3.5 × 10
– 14
12
0.2
2.9 × 10
3.5 × 10
– 14
12
%/K
W
----------- ­Hz
cm Hz×
--------------------------­W
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SFH 2400, SFH 2400FA
Relative Spectral Sensitivity SFH 2400,
100
S
rel
%
80
60
40
20
0
400
S
= f (λ)
rel
600 800 1000 1200
OHF01129
nm
Relative Spectr. Sensitivity SFH 2400FA,
100
S
rel
%
80
60
40
20
0
400
S
= f (λ)
rel
600 800 1000 1200
λ
I
Photocurrent Open-Circuit Voltage SFH 2400FA
24
10
µ
AmV
Ι
P
1
10
= f (Ee), VR = 5 V
P
V
= f (Ee)
O
OHF01765
10
10
V
O
Photocurrent Open-Circuit Voltage SFH 2400
2
10 10
µ
V
O
3
AmV
Ι
P
1
10
I
= f (Ev), VR = 5 V
P
V
V
O
OHF01773
nm
λ
= f (Ev)
O
OHF01025
Total Power Dissipation
P
= f (TA)
tot
140
mW
P
tot
120
100
80
60
OHFD0228
40
20
0
0
20 40 60 80 C 100
T
A
Dark Current
I
= f (VR), E = 0
R
3
V
O
2
10
4
10
pA
Ι
R
3
10
OHF01026
0
10
Ι
P
-1
10
-2
10
0
10
10110
2
W/cm
µ
2
E
e
Directional Characteristics
S
= f (ϕ)
rel
40 30 20 10
50
60
70
80
90
2
10
0
1
10
0
10
4
10
10
-1
10
0
10
10110
Ι
P
1
10
0
2
103lx
10
4
10
E
V
2
10
1
10
0
20 V 3010
V
R
Capacitance
C = f (V
0
ϕ
1.0
0.8
0.6
0.4
0.2
0
OHF01402
), f = 1 MHz, E = 0
R
100
20 40 60 80 100 1200.40.60.81.0
0
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Maßzeichnung Package Outlines
1.1 (0.043)
1.0 (0.039)
4.8 (0.189)
4.4 (0.173)
1 x 1
0.9 (0.035)
0.6 (0.024) Cathode
Chip position
0.2 (0.008)
0.3 (0.012)
notActive area connected
Anode
0.0 (0.000)
0.1 (0.004)
0.5 (0.020)
0.3 (0.012)
2.1 (0.083)
SFH 2400, SFH 2400FA
1.9 (0.075)
0.8 (0.031)
0.6 (0.024)
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).
2.7 (0.106)
2.5 (0.098)
1.1 (0.043)
0.9 (0.035)
GEOY6972
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SFH 2400, SFH 2400FA
Lötbedingungen Vorbehandlung nach JEDEC Level 4 Soldering Conditions Preconditioning acc. to JEDEC Level 4 IR-Reflow Lötprofil für bleifreies Löten (nach J-STD-020B) IR Reflow Soldering Profile for lead free soldering (acc. to J-STD-020B)
300
˚C
250
T
200
255 ˚C 240 ˚C
217 ˚C
Maximum Solder Profile
Recommended Solder Profile
Minimum Solder Profile
10 s min
30 s max
OHLA0687
260 ˚C 245 ˚C 235 ˚C
+0 ˚C
-5 ˚C ±5 ˚C
+5 ˚C
-0 ˚C
150
100
Ramp Up
0
3 K/s (max)
25 ˚C
50 100 150 200 250 300
50
0
Empfohlenes Lötpaddesign Recommended Solderpad Design
1.3
1.8 2.4
Ramp Down 6 K/s (max)
120 s max
100 s max
min. condition for IR Reflow Soldering: solder point temperature 235 °C for at least 10 sec.
t
Padgeometrie für
1
verbesserte Wärmeableitung
0.3
1.8
Paddesign for improved heat dissipation
OHF02393
s
Maße werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).
2005-04-06 6
SFH 2400, SFH 2400FA
Published by OSRAM Opto Semiconductors GmbH
Wernerwerkstrasse 2, D-93049 Regensburg
www.osram-os.com
© All Rights Reserved.
The information describes the type of component and shall not be considered as assured chara cteristics. 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.
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 wh ich we are not obliged to accept, we shall hav e 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
A critical component is a component used in a life-support device or sys tem whose failure can reasonably be expected
to cause the failure of that life-support device or system, or to affec t its safety or e ffectiveness of that dev ice 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.
1
, may only be used in life-support devices or systems 2 with the express written approval of OSRAM OS.
2005-04-06 7
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