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Details for BPV23NF by Vishay Intertechnology
Electronic & Electrical Components > Optoelectronics LEDs & Displays > Photo Diodes
PHOTODIODE 0.05A 1.3V
BPV23NF image

BPV23NF by Vishay Intertechnology

PHOTODIODE 0.05A 1.3V
Features
- Package type: leaded - Package form: side view - Dimensions (in mm): 4.5 x 5 x 6 - Radiant sensitive area (in mm2): 4.4 - High radiant sensitivity - Daylight blocking filter matched with 870 nm to 950 nm emitters - Fast response times - Angle of half sensitivity: u03d5 = u00b1 60u00b0 - Compliant to RoHS Directive 2002/95/EC and in accordance to WEEE 2002/96/EC
Part Information
BPV23NF image
RoHS Compliant
Description
BPV23NF is a PIN photodiode with high speed and high radiant sensitivity in a black, plastic package with side view lens and daylight blocking filter. Filter bandwidth is matched with 870 nm to 950 nm IR emitters. The lens achieves 80 % of sensitivity improvement in comparison with flat package. BPV23NFL has long leads, other specifications like BPV23NF.
Specifications
No. of Pins:
2Pins
Diode Case Style:
Radial Leaded
Wavelength of Peak Sensitivity:
940nm
Angle of Half Sensitivity ±:
60°
Dark Current:
2000pA
Operating Temperature Min:
-40°C
Operating Temperature Max:
100°C
Product Range:
-
Automotive Qualification Standard:
-
MSL:
-
SVHC:
No SVHC (15-Jan-2019)
Active Area:
5.7mm²
Breakdown Voltage Vbr:
60V
Operating Temperature Range:
-40°C to +100°C
Peak Wavelength:
940nm
Reverse Voltage Vr Max:
60V
Rise Time:
70ns
Sensitivity:
0.6A/W
Wavelength Typ:
940nm
Alternate Descriptions
PIN Photodiode 950nm Filtered Side View RS Components
DIODE, PHOTO, 940NM, 60°, SIDE LOOKING; No. of Pins:2Pins; Diode Case Style:Radial Leaded; Wavelength of Peak Sensitivity:940nm; Angle of Half Sensitivity ±:60°; Dark Current:2000pA; Operating Temperature Min:-40°C; Product Range:- RoHS Compliant: Yes Newark Electronics
Photodiode PIN Chip 940nm 0.6A/W Sensitivity 2-Pin Avnet America
Photodiode PIN Chip 940nm 0.6A/W Sensitivity 2-Pin Avnet Europe
940 nm 70 ns ▒ 60░ Wide Angle High Speed Silicon PIN Photodiode Future Electronics