Technical documents
Specifications
Brand
VishayPeak Wavelength
870nm
Package Type
5mm (T-1 3/4)
Radiant Flux
50mW
Radiant Intensity
700mW/sr
Mounting Type
Through Hole
Number of LEDs
1
Number of Pins
2
Dimensions
5mm
Lens Shape
Round
LED Material
GaAlAs
Product details
Vishay TSFF Series IR Emitting Diodes
The TSFF family, from Vishay Semiconductors, are high speed Infrared (IR) emitting diodes. With a peak wavelength of 870nm, these IREDs use double hetero (DH) technology.
Suitable applications for the TSFF family of IREDs includes; IR video data transmission, free air data transmission and smoke automatic fire detectors.
Features of the TSFF family of IR emitting diodes:
T-1 3/4 (5mm) through-hole packages
High reliability
High radiant power
High radiant intensity
Low forward voltage
Peak wavelength: 870nm
Infrared (IR) Light Emitters, Vishay
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₪ 9.229
Each (In a Pack of 5) (ex VAT)
₪ 10.798
Each (In a Pack of 5) (inc VAT)
5
₪ 9.229
Each (In a Pack of 5) (ex VAT)
₪ 10.798
Each (In a Pack of 5) (inc VAT)
5
Buy in bulk
quantity | Unit price | Per Pack |
---|---|---|
5 - 45 | ₪ 9.229 | ₪ 46.15 |
50 - 120 | ₪ 6.586 | ₪ 32.93 |
125 - 245 | ₪ 5.258 | ₪ 26.29 |
250 - 495 | ₪ 5.062 | ₪ 25.31 |
500+ | ₪ 4.069 | ₪ 20.35 |
Technical documents
Specifications
Brand
VishayPeak Wavelength
870nm
Package Type
5mm (T-1 3/4)
Radiant Flux
50mW
Radiant Intensity
700mW/sr
Mounting Type
Through Hole
Number of LEDs
1
Number of Pins
2
Dimensions
5mm
Lens Shape
Round
LED Material
GaAlAs
Product details
Vishay TSFF Series IR Emitting Diodes
The TSFF family, from Vishay Semiconductors, are high speed Infrared (IR) emitting diodes. With a peak wavelength of 870nm, these IREDs use double hetero (DH) technology.
Suitable applications for the TSFF family of IREDs includes; IR video data transmission, free air data transmission and smoke automatic fire detectors.
Features of the TSFF family of IR emitting diodes:
T-1 3/4 (5mm) through-hole packages
High reliability
High radiant power
High radiant intensity
Low forward voltage
Peak wavelength: 870nm