SMT720 ROITHNER | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 4

Technical content

16.06.2011 SMT720 1 of 4

Visible LED, SMT AlGaAs SMT720 is a AlGaAs LED mounted on the lead frame as TOP LED package and sealed with epoxy resin for damp proof. On forward bias, it emits a radiation of typical 8 mW at a peak wavelength of 720 nm. Specifications

  • Structure: AlGaAs
  • Peak Wavelength: typ. 720 nm
  • Optical Output Power: typ. 8 mW
  • Package: PPA resin, epoxy resin Absolute Maximum Ratings (Ta=25°C) Item Symbol Value Unit Power Dissipation PD 100 mW Forward Current IF 50 mA Pulse Forward Current** IFP 200 mA Reverse Voltage VR 5 V Operating Temperature Topr -20 … +80 °C Storage Temperature Tstg -30 … +80 °C Soldering Temperature * Tsol 240 °C * must be completed within 5 seconds ** max duty cycle 1%, max puls width 10µs (Unit: mm) Electro-Optical Characteristics Item Symbol Condition Min. Typ. Max. Unit Forward Voltage VF I F = 50 mA - 1.90 2.30 V Reverse Current IR V R = 5 V - - 10 µA Total Radiated Power* PO I F = 50 mA 4.0 8.0 - mW Radiation Intensity IE I F = 50 mA 2.0 5.0 - mW/sr Peak Wavelength λP I F = 50 mA - 720 - nm Half Width Δλ I F = 50 mA - 20 - nm Viewing Half Angle Θ1/2 I F = 50 mA - ±55 - deg. Rise Time tR I F = 50 mA 80 ns Fall Time tF I F = 50 mA 80 ns Total Radiated Power is measured by Photodyne #500 Radiant Intensity is measured by Tektronix J-6512 Notes
  • Do not view directly into the emitting area of the LED during operation!
  • The above specifications are for reference purpose only and subjected to change without prior notice.

16.06.2011 SMT720 2 of 4

Typical Performance Curves Forward Current – Forward Voltage Relative Radiant Intensity – Pulsed Forward Current Forward Current – Pulse Duration Forward Voltage – Ambient Temperature

16.06.2011 SMT720 3 of 4

Relative Radiant Intensity – Ambient Temperature Allowable Forward Current – Ambient Temperature Peak Wavelength Peak Wavelength – Ambient Temperature

16.06.2011 SMT720 4 of 4

  • DO NOT apply any stress to the lead particularly when heat.
  • After soldering the LEDs should be protected from mechanical shock or vibration until the LEDs return to room temperature.
  • When it is necessary to clamp the LEDs to prevent soldering failure, it is important to minimize the mechanical stress on the LEDs. Temperature Profile PCB Footprint Layout (Unit: mm) Static Electricity
  • LEDs are very sensitive to Static Electricity and surge voltage. It is recommended to always wear a wrist band or an anti-electrostatic glove when handling the LEDs.
  • All devices, equipment and machinery must be grounded properly. It is recommended that precautions should be taken against surge voltage to the equipment that mounts the LEDs.