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KRTB EKLP42.32

KRTB EKLP42.32
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KRTB EKLP42.32

Product catalog summary
Overview: The KRTB EKLP42.32 is a semiconductor component optimized for high contrast full-color indoor video walls. It features a common anode pin-out for independent chip control, facilitating additive color mixing. Its mini LED size is suitable for high-resolution, narrow-pitch video walls.
Specifications:
  • Package Type: SMT package with epoxy resin
  • Colors: Red (621 nm), True Green (526 nm), Blue (469 nm)
  • Viewing Angle: 120° Lambertian Emitter
  • Chip Technology: InGaAlP for red, InGaN for true green and blue
  • Soldering Method: Reflow solderable
  • Preconditioning: JEDEC Level 3
  • ESD Withstand Voltage: 500V according to ANSI/ESDA/JEDEC JS-001 (HBM, Class 1B)
Applications: Suitable for indoor video walls and full-color displays.
Ordering Information: Available in red, true green, and blue with specific luminous intensities at given forward currents.
Maximum Ratings:
  • Operating Temperature: -40 to +85 °C
  • Storage Temperature: -40 to +85 °C
  • Junction Temperature: +100 °C
  • Forward Current: 10 mA for red, 5 mA for true green and blue
  • Pulsed Forward Current: 30 mA for red, 15 mA for true green and blue
  • Reverse Voltage: 10 V
Characteristics: Includes peak and dominant wavelengths, spectral bandwidth, viewing angle, forward voltage, reverse current, and thermal resistance.
Chromaticity and Wavelength Groups: Provides chromaticity coordinate groups and dominant wavelength groups for each color.
Soldering and Packaging: Recommended reflow soldering under nitrogen atmosphere. Not suitable for ultrasonic cleaning. Supplied in tape and reel packaging with specific dimensions and dry packing processes.
Specifications: Details on OSRAM Opto Semiconductors' packaging, moisture sensitivity, and safety standards, including transportation box dimensions and moisture levels.
Procedures: Instructions for handling and storing LEDs, including shelf life in sealed bags, baking devices before mounting, and guidelines for humidity and temperature exposure.
Standards: References IEC 62471:2008 for photobiological safety, classifying LEDs in the Exempt group, and compliance with IPC/JEDEC J-STD-033 for baking procedures.
Recommendations: Advises against exposure to aggressive atmospheres to prevent corrosion and degradation of LED performance. Recommends recycling packaging materials and outlines conditions for using components in life-support systems.
Warnings: Highlights risks of intense light sources causing temporary visual impairment and the need for careful handling to avoid exposure to corrosive gases.
Glossary: Explains testing conditions for brightness, wavelength, and voltage, noting that typical data may not reflect individual product parameters due to manufacturing variations.
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Catalog excerpts

KRTB EKLP42.32-1

DISPLIX E0808 Data Sheet Das Bauteil ist speziell für den Einsatz in Vollfarb-Videowänden mit hohem Kontrast im Innenbereich entwickelt worden. Das common anode pin-out lässt eine unabhängige Ansteuerung aller Chips zu und bietet dadurch eine additive Farbmischung. Durch die Mini-LED-Gehäusemaße eignet sich das Bauteil bestens für den Einsatz in Videowänden mit hoher Auflösung und sehr geringem Pixelabstand. This device is especially designed for high contrast full color indoor video walls. The common anode pin-out allows for an additive mixture of color stimuli by independent driving of each chip. The mini LED component size fits best for high resolution narrow pitch video walls. • Gehäusetyp: SMT Gehäuse, Harzverguss • Farbe: 621 nm (rot), 526 nm (true grün), 469 nm (blau) • Abstrahlwinkel: Lambertscher Strahler (120°) • Chiptechnologie: InGaAlP (rot), InGaN (true grün, blau) • Lötmethode: Reflow lötbar • Vorbehandlung: nach JEDEC Level 3 • ESD-Festigkeit: 500V gemäß ANSI/ESDA/JEDEC JS-001 (HBM, Klasse 1B) • package: SMT package, epoxy resin • color: 621 nm (red), 526 nm (true green), 469 nm (blue) • viewing angle: Lambertian Emitter (120°) • chip technology: InGaAlP(red), InGaN (true green, blue) • soldering methods: reflow solderable • preconditioning: acc. to JEDEC Level 3 • ESD-withstand voltage: 500V acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 1B) • Videoleinwände im Innenbereich • Vollfarb-Displays

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KRTB EKLP42.32-2

KRTB EKLP42.32 Bestellinformation Ordering Information Typ red true green blue Bestellinformation Ordering Information Typ Type Bestellnummer Ordering Code

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KRTB EKLP42.32-3

KRTB EKLP42.32 Grenzwerte Maximum Ratings Bezeichnung Parameter Symbol Symbol true green Einheit Unit blue Betriebstemperatur Operating temperature range Lagertemperatur Storage temperature range Sperrschichttemperatur Junction temperature Durchlassstrom Forward current TS = 25°C Durchlassstrom gepulst Forward current pulsed tp = 10s, D = 0.005, TS = 25°C Sperrspannung Reverse voltage TS = 25°C

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KRTB EKLP42.32-4

KRTB EKLP42.32 Kennwerte Characteristics TS = 25 °C; IF = 10mA (red), 5mA (true green), 5mA (blue) Bezeichnung Parameter Symbol Symbol Werte Values Einheit Unit true green Spektrale Bandbreite bei 50 % Irel max Spectral bandwidth at 50 % Irel max Abstrahlwinkel bei 50 % IV (Vollwinkel) Viewing angle at 50 % IV Sperrstrom2) Seite 27 Reverse current2) page 27 VR = 5V (blue/ true green); 10V (red) Wellenlänge des emittierten Lichtes Wavelength at peak emission Dominantwellenlänge3) Seite 27 Dominant wavelength3) page 27 Wärmewiderstand Thermal resistance Sperrschicht/Lötpad Junction/solder point...

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KRTB EKLP42.32-5

KRTB EKLP42.32 Farbortgruppen Chromaticity Coordinate Groups KRTB EKLP42.32

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KRTB EKLP42.32-6

KRTB EKLP42.32 Gruppe Group Gruppe Group Wellenlängengruppen (Dominantwellenlänge)3) Seite 27 Wavelength Groups (Dominant Wavelength)3) page 27 Group

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KRTB EKLP42.32-7

KRTB EKLP42.32 Floating Bins Luminous Intensity 1) page 27 IF = 10mA IV (mcd) Luminous Intensity 1) page 27 IF = 5mA IV (mcd) true green Luminous Intensity 1) page 27 IF = 5mA IV (mcd)

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KRTB EKLP42.32-8

KRTB EKLP42.32 Relative spektrale Emission5) Seite 27 Relative Spectral Emission5) page 27 V() = spektrale Augenempfindlichkeit / Standard eye response curve Irel = f (); TS = 25 °C; IF = 10 mA (red), 5 mA (true green), 5 mA (blue) Irel : Vλ : red : true green : blue

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KRTB EKLP42.32-9

KRTB EKLP42.32 Abstrahlcharakteristik (horizontal)5) Seite 27 Radiation Characteristic (horizontal)5) page 27 Irel = f (); TS = 25°C, IF = 10 mA (red), 5 mA (true green), 5 mA (blue) 2 3. 2 4 P L K E B T R K Abstrahlcharakteristik (vertikal)5) Seite 27 Radiation Characteristic (vertical)5) page 27 Irel = f (); TS = 25°C, IF = 10 mA (red), 5 mA (true green), 5 mA (blue) Irel : red : true green : blue

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KRTB EKLP42.32-10

KRTB EKLP42.32 Durchlassstrom5) Seite 27 Forward Current5) page 27 IF = f (VF); TS = 25°C; red IF / mA Durchlassstrom5) Seite 27 Forward Current5) page 27 IF = f (VF); TS = 25°C; true green KRTBEKLP42.32 : true green Durchlassstrom5) Seite 27 Forward Current5) page 27 IF = f (VF); TS = 25°C; blue IF / mA

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KRTB EKLP42.32-11

KRTB EKLP42.32 Relative Lichtstärke5) 6) Seite 27 Relative Luminous Intensity5) 6) page 27 IV/IV(10 mA) = f (IF); TS = 25°C; red IV Relative Lichtstärke5) 6) Seite 27 Relative Luminous Intensity5) 6) page 27 IV/IV(5 mA) = f (IF); TS = 25°C; true green : true green Relative Lichtstärke5) 6) Seite 27 Relative Luminous Intensity5) 6) page 27 IV/IV(5 mA) = f (IF); TS = 25°C; blue KRTBEKLP42.32

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KRTB EKLP42.32-12

KRTB EKLP42.32 Dominante Wellenlänge5) Seite 27 Dominant Wavelength5) page 27 dom = f (IF); TS = 25 °C; true green KRTBEKLP42.32 : true green Dominante Wellenlänge5) Seite 27 Dominant Wavelength5) page 27 dom = f (IF); TS = 25 °C; blue

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KRTB EKLP42.32-13

KRTB EKLP42.32 Relative Vorwärtsspannung5) Seite 27 Relative Forward Voltage5) page 27 VF = VF - VF(25 °C) = f (Tj); IF = 10 mA; red ΔVF / V Relative Vorwärtsspannung5) Seite 27 Relative Forward Voltage5) page 27 VF = VF - VF(25 °C) = f (Tj); IF = 5 mA; true green KRTBEKLP42.32 Relative Vorwärtsspannung5) Seite 27 Relative Forward Voltage5) page 27 VF = VF - VF(25 °C) = f (Tj); IF = 5 mA; blue ΔVF / V

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KRTB EKLP42.32-14

KRTB EKLP42.32 Relative Lichtstärke5) Seite 27 Relative Luminous Intensity5) page 27 IV/IV(25 °C) = f (TS); IF = 10 mA; red Iv Relative Lichtstärke5) Seite 27 Relative Luminous Intensity5) page 27 IV/IV(25 °C) = f (TS); IF = 5 mA; true green : true green Relative Lichtstärke5) Seite 27 Relative Luminous Intensity5) page 27 IV/IV(25 °C) = f (TS); IF = 5 mA; blue Iv

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KRTB EKLP42.32-15

KRTB EKLP42.32 Dominante Wellenlänge5) Seite 29 Dominant Wavelength5) page 27 dom = f (Tj); IF = 10 mA; red Δλ dom / nm Dominante Wellenlänge5) Seite 27 Dominant Wavelength5) page 27 dom = f (Tj); IF = 5 mA; true green KRTBEKLP42.32 : true green Dominante Wellenlänge5) Seite 27 Dominant Wavelength5) page 27 dom = f (Tj); IF = 5 mA; blue Δλ dom / nm

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