Plastic Fiber Optic Phototransistor Detector Plastic Connector Housing - Infineon Technologies AG
Description
Fiber Optics
Plastic Fiber Optic Phototransistor Detector Plastic Connector Housing
SFH350 SFH350V
Features • 2.
2 mm Aperture holds Standard 1000 Micron Plastic Fiber • No Fiber Stripping Required • Good Linearity • Sensitive in visible and near IR Range • Molded Microlens for Efficient Coupling Plastic Connector Housing • Mounting Screw Attached to the Connector • Interference Free Transmission from light-Tight Housing • Transmitter and Receiver can be flexibly positioned • No Cross Talk • Auto insertable and Wave solderable • Supplied in Tubes Applications • • • • Household Electronics Power Electronics Optical Networks Light Barriers
Type SFH350 SFH350V
Data Sheet 1
Ordering Code Q62702-P1033 Q62702-P0264
2004-03-19
SFH350 SFH350V
Technical Data Technical Data Absolute Maximum Ratings Parameter Operating Temperature Range Storage Temperature Range Soldering Temperature (2 mm from case bottom, t ≤ 5 s) Collector-Emitter Voltage Collector Current Collector Peak Current (t ≤ 10 s) Emitter-Bias Voltage Reverse Voltage Power Dissipation TA = 25°C Thermal Resistance, Junction/Air Symbol Limit Values min.
max.
+85 +100 260 50 50 100 7 30 200 375 °C °C °C V mA mA V V mW K/W –40 –40 Unit
TOP TSTG TS VCE IC ICP VEB VR PTOT RthJA
Data Sheet
2
2004-03-19
SFH350 SFH350V
Technical Data Characteristics (TA = 25°C) Parameter Maximum Photosensitivity Wavelength Symbol min.
λSmax 400 1 (≤ 10) Values typ.
850 1100 max.
nm nm nA Unit
Photosensitivity Spectral Range λ (S = 10% Smax) Dark Current (VR = 20 V) Capacitance (f = 1 MHz, without light) (VCE = 0 V) (VCB = 0 V) (VEB = 0 V) Rise and Fall Times of Photo Current (RL = 1 kΩ, VCE = 5 V, IC = 1.
0 mA, λ = 959 nm) 10% to 90% 90% to 10% Current Gain Collector Dark Current (VCE = 5 V) Photo Current (VCE = 5 V, ΦIN = 10 µW coupled from the end of a plastic fiber, λ = 660 nm) Temperature Coefficient HFE Temperature Coefficient ICE λ = 560 to 660 nm Temperature Coefficient ICE λ = 830 nm Temperature Coefficient ICE λ = 950 nm
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