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 Photodetektor mit Spannungsausgang Light to Voltage Converter Lead (Pb) Free Product - RoHS Compliant SFH 5130
Wesentliche Merkmale * Integrierter Fotodetektor mit linearem Spannungsausgang * Transparentes Plastikgehause mit 3 Pins * Hohe Empfindlichkeit von 350 nm bis 1100 nm * Runde Fotodiode Anwendungen * Lichtschranken Typ Type SFH 5130 Bestellnummer Ordering Code on request
Features * Integrated photodiode with linear voltage output * Transparent sidelooker package with 3 pins * High sensitivity from 350 nm to 1100 nm * Circular photodiode Applications * Photointerrupter Gehause Package Sidelooker Gehause Sidelooker Package
2004-12-20
1
SFH 5130
Grenzwerte Maximum Ratings Bezeichnung Parameter Lagertemperatur Storage temperature range Versorgungsspannung Supply Voltage Ausgangsspannung Output voltage Symbol Symbol Wert Value - 40 ... + 85 6 < VDD 2 Einheit Unit C V V kV
Tstg VDD
VOUT
Elektrostatische Entladung ESD Electrostatic Discharge Human Body Model according to EOS/ESD-5.1-1993
Empfohlener Arbeitsbereich Recommended Operating Conditions Bezeichnung Parameter Funktionstemperatur Operating Temperature Betriebsspannung Supply Voltage Kapazitive Ausgangslast Output load capacitance Symbol Symbol min. Wert Value typ. + 25 5 max. + 75 5.5 30 C V nF - 40 4.5 Einheit Unit
Top VDD CL
Kennwerte (TA = 25 C, VDD = 5 V, RL = 10 k) Characteristics Bezeichnung Parameter Stromaufnahme, Ee = 0 Current consumption Dunkelspannung Dark Voltage Spektraler Bereich der Fotoempfindlichkeit Spectral range of sensitivity Symbol Symbol min. Wert Value typ. 1.5 1.2 - max. 4.5 15 1100 mA mV nm - - 350 Einheit Unit
IDD VD
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2
SFH 5130
Kennwerte (TA = 25 C, VDD = 5 V, RL = 10 k) Characteristics Bezeichnung Parameter Wellenlange der max. Fotoempfindlichkeit Wavelength of max. photosensitivity Durchmesser der aktiven Flache Diameter of active area Empfindlichkeit1), = 428 nm Irradiance responsivity Ausgangsspannung1) Output Voltage, Ee=1.69 W/cm2, = 428 nm Symbol Symbol min. s max - - - 1.0 4 - - - - 100 Wert Value typ. 770 0.75 1180 - 4.47 50 70 90 8 max. - - - 3.2 - 250 250 - + 100 nm mm mV/W/cm2 V V s s s V/K Einheit Unit
D Ne VO
Sattigungsspannung, VDD = 4.5V, Ee 7 W/cm2 Vsat Maximum output voltage swing Anstiegszeit2), Ee = 0 to Ee = 1.69 W/cm2 Rise time Abfallzeit, Ee =1.69 to 0 W/cm2 Fall time Einschwingzeit, to 99% of nominal Settling time Temperaturkoeffizient der Dunkelspannung, T = 5 to 45 C Temperature coefficient of dark voltage Temperaturkoeffizient der Ausgangsspannung Temperature coefficient of output voltage Ee = 1.69 W/cm2, = 428 nm, T = 5 to 45 C Power supply rejection ratio fac = 100 Hz fac = 1 kHz Output noise voltage f = 0 to 1 kHz f = 10 Hz f = 100 Hz f = 1 kHz
1)
tr tf ts
d
o
-3 - 0.15
1
+3
mV/K
+ 0.15 %/K 45 45 - - dB dB V RMS V/Hz(1/2) V/Hz(1/2) V/Hz(1/2)
3)
PSRR PSRR
- -
- - -
<1 <1 <1
- - -
The sensitivity is characterized using 428 nm LEDs as light source. A constant irradiance over the whole lens area is created.
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SFH 5130
2)
The light source used is a 428 nm LED with following characteristics: tr > 1 s, tf < 1 s. The output waveform is monitored on an osciloscope with tr > 100 ns, Zi = 1 M, Ci < 20 pF. The rise time is defined as the time from the 10% to the 90% value, the fall time is defined as the time from the 90% to the 10% value. PSRR is defined as 20 log (VDD(f) / VO(f)) with VDD(0 Hz) = 4.5 V and VO(0 Hz) = 2 V
3)
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SFH 5130
Spectral Sensitivity Srel = f ()
100
OHF01328
Current Consumption IDD = f (VDD)
1.8
OHF01346
Dark Voltage VD = f (VDD)
2
OHF01336
Srel
% 80
I DD
mA 1.7
VD mV
1.6
60
1.6
1.2
40
1.5
20
1.4
0.8
0 400
600
800
1000 nm 1200
1.3
4
4.5
5
5.5 V
6
0.4
4
4.5
5
5.5 V
6
VDD
VDD
Output Voltage, VO = f (TA), Ee = 1.69 W/cm2, =428nm
1.1
OHF01348
Current Consumption IDD = f (TA)
1.8
OHF01347
Dark Voltage VD = f (TA)
2
OHF01345
VO VO (25 C)
I DD
mA 1.7
VD mV
1.6
1.0
1.6
0.95
1.2
1.5
0.9
0.8
0.85
1.4
0.8 -25
0
25
50 C 75
1.3 -25
0
25
50 C 75
0.4 -25
0
25
50 C 75
TA
TA
TA
Linearity VO = f (Ee)
5 V
OHF01379
Directional Characteristics VO = f ()
100 %
OHF01349
VO
4
VO /VOmax
80
3
60
2
40
1
20
0
0
1
2
W/cm 2 4
0 -75
-50
-25
0
25
50 [] 75
Ee
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SFH 5130
Mazeichnung Package Outlines
R0.9 (0.035)
5
0.63 (0.025)
5 4.7 (0.185) 0.1 (0.004) 15.3 (0.602) 0.25 (0.010) 1.7 (0.067) 0.1 (0.004) 0.95 (0.037) 0.05 (0.002)
2.5 (0.098)
4.6 (0.181)
4.1 (0.161)
o1.77 (0.070)
0.5 (0.020) GND VDD VOUT (4 (0.157))
0.5 (0.020)
2 (0.079)
2 (0.079)
0.4 (0.016)
2.54 (0.100)
GEOY6061
Mae werden wie folgt angegeben: mm (inch) / Dimensions are specified as follows: mm (inch).
2004-12-20
6
0.9 (0.035)
SFH 5130
Lotbedingungen Soldering Conditions Wellenloten (TTW) TTW Soldering
(nach CECC 00802) (acc. to CECC 00802)
OHLY0598
300 C T 250 235 C ... 260 C
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
Published by OSRAM Opto Semiconductors GmbH Wernerwerkstrasse 2, D-93049 Regensburg www.osram-os.com (c) 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 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 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 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.
2004-12-20
7


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