AP3216SYCK_05 KINGBRIGHT | Alldatasheet
Document overview
- Manufacturer or author: tomsy@CN3088
- PDF pages: 4
Technical content
Features
3.2mmx1.6mm SMT LED, 1.1mm THICKNESS. LOW POWER CONSUMPTION. WIDE VIEWING ANGLE. IDEAL FOR BACKLIGHT AND INDICATOR. VARIOUS COLORS AND LENS TYPES AVAILABLE. PACKAGE : 2000PCS / REEL. UV RATED EPOXY. RoHS COMPLIANT. AP3216SYCK SUPER BRIGH T YELLOW
Description
The Super Bright Yellow source color devices are made with DH InGaAlP on GaAs substrate Light Emitting Diode .
SPEC NO: DSAA8437 REV NO: V.6 DATE: MAR/19/2005 PAGE: 2 OF 4 APPROVED: J. Lu CHECKED: Allen Liu DRAWN: W.J.ZHU ERP:1203000429 Selection Guid e Note: 1. θ1/2 is the angle from optical centerline where the luminous intensity is 1/2 the optical centerline value. Electrical / Optical Characteristics at T A =25 °C Absolute Maximum Ratings at T A =25 °C Note: 1. 1/10 Duty Cycle, 0.1ms Pulse Width. Part No. Dice Lens Type Iv (mcd) @ 20mA Viewing Angle Min. Typ. 2 θ θ θ θ 1/2 AP3216SYCK SUPER BRIGHT YELLOW (InGaAIP) WATER CLEAR 18 120 120 ° Symbol Parameter Device Typ. Max. Test Conditions Units λpeak Peak Wavelength Super Bright Yellow 590 nm IF=20mA λD Dominant Wavelength Super Bright Yellow 590 nm IF=20mA ∆λ 1/2 Spectral Line Half -width Super Bright Yellow 20 nm IF=20mA C Capacitance Super Bright Yellow 20 pF VF=0V;f=1MHz VF Forward Voltage Super Bright Yellow 2.0 2.5 V IF=20mA IR Reverse Current Super Bright Yellow 10 uA VR = 5V Parameter Super Bright Yellow Units Power dissipation 125 mW DC Forward Current 30 mA Peak Forward Current [1] 175 mA Reverse Voltage 5 V Operating/Storage Temperature -40°C To +85°C
SPEC NO: DSAA8437 REV NO: V.6 DATE: MAR/19/2005 PAGE: 3 OF 4 APPROVED: J. Lu CHECKED: Allen Liu DRAWN: W.J.ZHU ERP:1203000429 Super Bright Yellow AP3216SYCK
SPEC NO: DSAA8437 REV NO: V.6 DATE: MAR/19/2005 PAGE: 4 OF 4 APPROVED: J. Lu CHECKED: Allen Liu DRAWN: W.J.ZHU ERP:1203000429 AP3216SYCK Tape Specifications (Units : mm ) Recommended Soldering Pattern (Units : mm ) Remarks: If special sorting is required (e.g. binning based on forward voltage,luminous intensity, or wavelength), the typical accuracy of the sorting process is as follows: 1. Wavelength: +/ -1nm 2. Luminous Intensity: +/ -15% 3. Forward Voltage: +/ -0.1V Note: Accuracy may depend on the sorting parameters.