KB2620EW KINGBRIGHT | Alldatasheet

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Technical content

Features

UNIFORM LIGHT EMITTING AREA. LOW CURRENT OPERATION. EASILY MOUNTED ON P.C. BOARDS. FLUSH MOUNTABLE. EXCELLENT ON/OFF CONTRAST. CAN BE USED WITH PANELS AND LEGEND MOUNTS. CATEGORIZED FOR COLOR. RoHS COMPLIANT.

Description

The High Efficiency Red source color devices are made with Gallium Arsenide Phosphide on Gallium Phosphide Orange Light Emitting Diode. KB2620EW HIGH EFFICIENCY RE D Package Dimensions & Internal Circuit Diagram Notes: 1. All dimensions are in millimeters (inches), Tolerance is ±0 .25(0.01")unless otherwise noted. 2. Specifications are subject to change without notice.

SPEC NO: DSA D1458 REV NO: V.3 DATE: APR/22/2005 PAGE: 2 OF 3 APPROVED: J. Lu CHECKED: Joe Lee DRAWN: H.Q.YUAN ERP:1334000127 Selection Guid e Part No. Dice Lens Type Iv (mcd) @ 20mA Min. Typ. KB2620EW HIGH EFFICIENCY RED(GaAsP/GaP) WHITE DIFFUSED 10 50 Electrical / Optical Characteristics at T A =25 °C Absolute Maximum Ratings at T A =25 °C Notes: 1. 1/10 Duty Cycle, 0.1ms Pulse Width. 2. 5mm below package base. Parameter High Efficiency Red Units Power dissipation 105 mW DC Forward Current 30 mA Peak Forward Current [1] 160 mA Reverse Voltage 5 V Operating/Storage Temperature -40°C To +85°C Lead Solder Temperature [2] 260°C For 5 Seconds Symbol Parameter Device Typ. Max. Test Conditions Units λpeak Peak Wavelength High Efficiency Red 627 nm IF=20mA λD Dominant Wavelength High Efficiency Red 625 nm IF=20mA ∆λ 1/2 Spectral Line Half -width High Efficiency Red 45 nm IF=20mA C Capacitance High Efficiency Red 15 pF VF=0V;f=1MHz VF Forward Voltage High Efficiency Red 2.0 2.5 V IF=20mA IR Reverse Current High Efficiency Red 10 uA VR = 5V

SPEC NO: DSA D1458 REV NO: V.3 DATE: APR/22/2005 PAGE: 3 OF 3 APPROVED: J. Lu CHECKED: Joe Lee DRAWN: H.Q.YUAN ERP:1334000127 High Efficiency Red KB2620EW 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.