TSAL7300

Infrared Emitters High Power 940nm 5 Volt 35mW 22 Deg

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SeekIC No. : 0018857 Detail

TSAL7300: Infrared Emitters High Power 940nm 5 Volt 35mW 22 Deg

floor Price/Ceiling Price

US $ .18~.33 / Piece | Get Latest Price
Part Number:
TSAL7300
Mfg:
Vishay Semiconductors
Supply Ability:
5000

Price Break

  • Qty
  • 0~1
  • 1~10
  • 10~50
  • 50~100
  • Unit Price
  • $.33
  • $.26
  • $.2
  • $.18
  • Processing time
  • 15 Days
  • 15 Days
  • 15 Days
  • 15 Days
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Total Cost: $ 0.00

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Upload time: 2025/1/11

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Product Details

Quick Details

Wavelength : 950 nm Radiant Intensity : 350 mW/sr
Maximum Operating Temperature : + 100 C Minimum Operating Temperature : - 55 C
Package / Case : T-1 3/4 Packaging : Bulk    

Description

Beam Angle :
Packaging : Bulk
Package / Case : T-1 3/4
Maximum Operating Temperature : + 100 C
Minimum Operating Temperature : - 55 C
Wavelength : 950 nm
Radiant Intensity : 350 mW/sr


Features:

` Extra high radiant power and radiant intensity
` High reliability
` Low forward voltage
` Suitable for high pulse current operation
` Standard T13/4 (ø 5 mm) package
` Angle of half intensity = ± 22*
` Peak waveleng p = 940 nm
` Good spectral matching to Si photodetectors





Application

·Infrared remote control units with high power requirements
·Free air transmission systems
·Infrared source for optical counters and card readers
·IR source for smoke detectors





Specifications

Parameter Test Conditions Symbol Value Unit
Reverse Voltage VS 5 V
Forward Current IF 100 mA
Peak Forward Current tp/T = 0.5, tp = 100 s IFM 200 mA
Surge Forward Current tp = 100 s IFSM 1.5 A
Power Dissipation PV 210 mW
Junction Temperature Tj 100
Operating Temperature Range Tamb 55...100
Storage Temperature Range Tstg 55...100
Soldering Temperature Tsd 260
Thermal Resistance Junction/Ambient t 5sec, 2 mm from case RthJA 350 K/W





Description

TSAL7300 is a high efficiency infrared emitting diode in GaAlAs on GaAs technology, molded in clear, plastic packages.

In comparison with the standard GaAs on GaAs technology these emitters achieve more than 100 % radiant power improvement at a similar wavelength. The forward voltages at low current and at high pulse current roughly correspond to the low values of the standard technology. Therefore these emitters of the TSAL7300 are ideally suitable as high performance replacements of standard emitters.






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