APHB1608LSYKSURKC 1.6 x 0.8 x 0.5 mm Bi-Color Surface Mount LED DESCRIPTIONS PACKAGE DIMENSIONS The Super Bright Yellow device is made with AlGaInP (on GaAs substrate) light emitting diode chip The Hyper Red source color devices are made with AlGaInP on GaAs substrate Light Emitting Diode Electrostatic discharge and power surge could damage the LEDs It is recommended to use a wrist band or anti-electrostatic glove when handling the LEDs All devices, equipments and machineries must be electrically grounded FEATURES 1.6 x 0.8 mm SMD LED, 0.5 mm thickness Compatible with reflow soldering Available in various color combination Package: 2000 pcs / reel Moisture sensitivity level: 3 Tinned pads for improved solderability Halogen-free RoHS compliant APPLICATIONS RECOMMENDED SOLDERING PATTERN (units : mm tolerance : 0.1) Backlight Status indicator Home and smart appliances Wearable and portable devices Healthcare applications ATTENTION Observe precautions for handling electrostatic discharge sensitive devices Notes: 1. All dimensions are in millimeters (inches). 2. Tolerance is 0.15(0.006 ) unless otherwise noted. 3. The specifications, characteristics and technical data described in the datasheet are subject to change without prior notice. 4. The device has a single mounting surface. The device must be mounted according to the specifications. SELECTION GUIDE 2 1 Iv (mcd) 2mA Viewin g Angle Emitting Color Part Number Lens Type (Material) Min. Typ. 21/2 6 10 Super Bright Yellow (AlGaInP) *6 *10 APHB1608LSYKSURKC Water Clear 130 10 20 Hyper Red (AlGaInP) *2 *8 Notes: 1. 1/2 is the angle from optical centerline where the luminous intensity is 1/2 of the optical peak value. 2. Luminous intensity / luminous flux: +/-15%. * Luminous intensity value is traceable to CIE127-2007 standards. Page 1 / 4 2021 Kingbright. All Rights Reserved. Spec No: DSAO5241 / 1203015222 Rev No: V.4A Date: 04/24/2021 APHB1608LSYKSURKC ELECTRICAL / OPTICAL CHARACTERISTICS at T =25C A Value Parameter Symbol Emitting Color Unit Min. Typ. Max. Super Bright Yellow 590 Wavelength at Peak Emission I = 2mA - - nm F peak Hyper Red 645 Super Bright Yellow 590 1 Dominant Wavelength I = 2mA - - nm F dom Hyper Red 630 Spectral Bandwidth at 50% REL MAX Super Bright Yellow 20 - - nm I = 2mA Hyper Red 28 F Super Bright Yellow 20 Capacitance C - - pF Hyper Red 35 Super Bright Yellow 1.5 1.85 2.1 2 Forward Voltage I = 2mA V V F F Hyper Red 1.5 1.75 2.1 Super Bright Yellow 10 Reverse Current (V = 5V) I - - A R R Hyper Red 10 Temperature Coefficient of Super Bright Yellow 0.12 peak TC - - nm/C peak I = 2mA, -10C T 85C Hyper Red 0.14 F Temperature Coefficient of Super Bright Yellow 0.07 dom TC - - nm/C dom I = 2mA, -10C T 85C Hyper Red 0.05 F Temperature Coefficient of V Super Bright Yellow -1.9 F TC - - mV/C V I = 2mA, -10C T 85C Hyper Red -1.9 F Notes: 1. The dominant wavelength (d) above is the setup value of the sorting machine. (Tolerance d : 1nm. ) 2. Forward voltage: 0.1V. 3. Wavelength value is traceable to CIE127-2007 standards. 4. Excess driving current and / or operating temperature higher than recommended conditions may result in severe light degradation or premature failure. ABSOLUTE MAXIMUM RATINGS at T =25C A Value Parameter Symbol Unit Super Bright Yellow Hyper Red Power Dissipation P 75 75 mW D Reverse Voltage V 5 5 V R Junction Temperature T 115 115 C j Operating Temperature T -40 to +85 C op Storage Temperature T -40 to +85 C stg DC Forward Current I 30 30 mA F 1 Peak Forward Current I 175 185 mA FM Electrostatic Discharge Threshold (HBM) 3000 3000 V - 2 Thermal Resistance (Junction / Ambient) R 710 640 C/W th JA 2 Thermal Resistance (Junction / Solder point) R 520 490 C/W th JS Notes: 1. 1/10 Duty Cycle, 0.1ms Pulse Width. 2 2. R ,R Results from mounting on PC board FR4 (pad size 16 mm per pad). th JA th JS 3. Relative humidity levels maintained between 40% and 60% in production area are recommended to avoid the build-up of static electricity Ref JEDEC/JESD625-A and JEDEC/J-STD-033. Page 2 / 4 2021 Kingbright. All Rights Reserved. Spec No: DSAO5241 / 1203015222 Rev No: V.4A Date: 04/24/2021