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VISHAY SFH620A-1X006 product image
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VISHAY SFH620A-1X006

Manufacturer
MPN
SFH620A-1X006
LCSC Part #
C17402196
Packaging
DIP-4
Customer #
Key Attributes
50mA 250mV@10mA,2.5mA 70V 1.25V AC,DC DIP-4 Transistor, Photovoltaic Output Optoisolators RoHS
DatasheetVISHAY SFH620A-1X006
RoHS Compliance1 documents available
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QtyUnit Price(Reference Only)Total Amount
1+$ 0.8422$ 0.84
200+$ 0.3363$ 67.26
500+$ 0.3257$ 162.85
1,000+$ 0.3196$ 319.60
Standard Packaging4000/Full Tube
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Products Specifications

All
TypeDescription
CategoryIsolators/Optocouplers, Optoisolators/Transistor, Photovoltaic Output Optoisolators
ManufacturerVISHAY
PackagingDIP-4
Rise time2us
Output Current50mA
Fall time2us
Vce Saturation(VCE(sat))250mV@10mA,2.5mA
Operating Temperature-55℃~+100℃
Load Voltage70V
Reverse Voltage-
Current transfer ratio40%;125%
Voltage - Forward(Vf)1.25V
Forward Current(If)60mA
Number of Channels1
Total Power Dissipation(Pd)250mW
Output TypePhototransistor
Input typeAC,DC
Isolation Voltage(Vrms)5.3kV
Features-

Introduction

AI Translation

The SFH620A (DIP) and SFH6206 (SMD) feature a high current transfer ratio, low coupling capacitance and high isolation voltage. These couplers have a GaAs infrared diode emitter, which is optically coupled to a silicon planar phototransistor detector, and is incorporated in a plastic DIP-4 or SMD package. The coupling devices are designed for signal transmission between two electrically separated circuits. The couplers are end-stackable with 2.54 mm lead spacing. Creepage and clearance distances of > 8 mm are achieved with option 6. This version complies with IEC 60950 (DIN VDE 0805) for reinforced insulation to an operation voltage of 400 VRMS or DC.

Features

AI Translation
  • Good CTR linearity depending on forward current
  • Isolation test voltage, 5300 VRMS
  • High collector emitter voltage, VCEO = 70 V
  • Low saturation voltage
  • Fast switching times
  • Low CTR degradation
  • Temperature stable
  • Low coupling capacitance
  • End-stackable, 0.100" (2.54 mm) spacing
  • High common-mode interference immunity