ASDL-5880 AVAGO | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 5

Technical content

Features

  • Top View Package
  • Short Switching Time
  • High Sensitivity
  • Low Dark Current
  • Low Junction Capacitance
  • Wide viewing Angle
  • Lead Free & ROHS Compliant
  • Available in Tape & Reel

Applications

  • IR Remote Control for Consumer Device
  • IR Remote Control for Industrial Electronics & Equipment
  • High Speed IR data communication

Notes: 1. All dimensions are in millimeters (inches) 2. Tolerance is + 0.25mm (.010”) unless otherwise noted 3. Protuded resin under flange is 1.5mm (.059”) max 4. Lead spacing is measured where leads emerge from package 5. Active area: 49 x 49 mm2 6. Refractive index of epoxy: ή= 1.5. 7. Specifications are subject to change without notice.

Ordering Information

Part Number Lead Form Color Packaging Shipping Option ASDL-5880-C ASDL-5880-C3 Straight Clear Tape & Reel Bulk 4000pcs 8000pcs / Carton

Absolute Maximum Ratings at T A=25°C Parameter Symbol Min. Max Unit Power Dissipation PDISS 50 mW Reverse Voltage (Ir=00uA) VR 30 V Operating Temperature TO -40 85 °C Storage Temperature TS -55 00 °C Junction temperature TJ 0 °C Lead Soldering Temperature [ .6mm (0.063”) From Body ] 60°C for 5 seconds Electrical Characteristics at 25 °C Parameter Symbol Min. Typ. Max. Unit Condition Forward Voltage VF .3 V If = 50mA Breakdown Voltage VBR 30 V Ir= 00uA Ee = 0mW/cm Reverse Dark Current ID 30 nA VR=0V Ee=0mW/cm Diode Capacitance CO - 5 pF Vr = 3V F = MHZ Ee = 0mW/cm Open Circuit Voltage VOC 350 mV λ = 940nm Ee=0.5mW/cm Thermal Resistance, Junction to Pin RqJP - 375 °C/W Optical Characteristics at 25 °C Parameter Symbol Min. Typ. Max. Unit Condition Photocurrent IPH 3 uA Ee = 0.5mW/cm λ = 940nm Vr = 5V Radiant Sensitive Area A .55 mm Absolute Spectral Sensitivity S 0.6 A/W λ = 940nm Vr = 5V Viewing Angle θ/ 80 Deg Wavelength of Peak sensitivity λPK 900 nm Spectral BandWidth Δλ 700 900 00 nm Rise Time tr 5 ns VR = 0V λ = 850nm RL = K Ω Fall Time tf 5 ns VR = 0V λ = 850nm RL = K Ω