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Cree® XLamp® XP-G LEDs

Cree® XLamp® XP-G LEDs
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Cree® XLamp® XP-G LEDs

Product catalog summary
Product Overview
The XLamp® XP-G LED by Cree is designed for high light output and efficacy, suitable for various lighting applications including LED bulbs, outdoor, portable, indoor, and solar-powered lighting. It features a wide viewing angle, symmetrical package, unlimited floor life, and an electrically neutral thermal path.
Key Features
  • Available in multiple white color temperatures with CRI options of 80, 85, and 90.
  • ANSI-compatible chromaticity bins.
  • Maximum drive current of 1500 mA.
  • Low thermal resistance of 4 °C/W.
  • Wide viewing angle of 125°.
  • Reflow solderable and compliant with JEDEC J-STD-020C.
  • RoHS and REACh compliant, UL recognized component.
Technical Characteristics
Includes a thermal resistance of 4 °C/W, a viewing angle of 125 degrees, and a maximum forward current of 1500 mA. Forward voltage ranges from 2.9V at 350 mA to 3.25V at 1500 mA.
Flux and Electrical Characteristics
Details on flux characteristics for various chromaticity kits, with minimum luminous flux values for different current levels and CRI ratings. Forward current range up to 1500 mA and forward voltage range from 2.25V to 3.50V.
Thermal Design
Emphasizes the importance of thermal management to optimize lamp life and performance by minimizing thermal resistance from the solder point to ambient.
Performance Groups
Luminous flux performance groups range from P2 (67.2 lm) to S3 (164 lm). Chromaticity performance is detailed with specific x and y coordinates for various regions.
Chromaticity and Binning
Details chromaticity regions on the 1931 CIE curve for color temperatures from 2700K to 8000K. Lists chromaticity bins for Cool White, Neutral White, and Warm White LEDs, identified by specific codes for ordering.
Order and Bin Code Formats
Explains the format for XP-G bin codes and order codes, including internal code, chromaticity bin, color, series, color specification, and luminous flux group.
Reflow Soldering Characteristics
Compatible with JEDEC J-STD-020C standards, with a recommended soldering profile including parameters like ramp-up rate, preheat temperatures, and peak temperature.
Compliance and Safety
Complies with RoHS2 and REACh regulations, UL Recognized Component. Direct exposure to LED light can cause eye injury; refer to the LED Eye Safety application note.
Mechanical and Packaging Details
Provides mechanical dimensions with tolerances, and packaging specifications including carrier tape dimensions and labeling for automated systems. Packaging includes vacuum-sealed moisture barrier bags with labels indicating bin codes and quantities.
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Catalog excerpts

Cree® XLamp® XP-G LEDs-1

Product family data sheet Cree® XLamp® XP-G LEDs FEATURES delivers • Available in white, outdoor white and unprecedented levels of light output • ANSI-compatible chromaticity bins XLamp XP-G LED continues Cree’s • Maximum drive current: 1500 mA history of innovation in LEDs for lighting applications with wide viewing angle, • Wide viewing angle: 125° symmetrical package, unlimited floor life • Unlimited floor life at Relative Chromaticity vs Current and and electrically neutral thermal path. • Reflow solderable - JEDEC J‑STD‑020C XLamp XP-G LEDs are the ideal choice • Electrically neutral thermal path for lighting applications where high • RoHS and REACh compliant Performance Groups – Luminous Flux... 11 light output and maximum efficacy are required, such as LED light bulbs, outdoor Cree’s Standard Chromaticity Regions lighting, portable lighting, indoor lighting Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR logo are registered trademarks of UL LLC.

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Cree® XLamp® XP-G LEDs-2

Characteristics Characteristics Thermal resistance, junction to solder point Viewing angle (FWHM) Temperature coefficient of voltage ESD withstand voltage (HBM per Mil-Std-883D) Reverse voltage Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR logo are registered tradema

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Cree® XLamp® XP-G LEDs-3

Flux Characteristics (TJ = 25 °C) The following table provides order codes for XLamp XP-G LEDs. For a complete description of the order code nomenclature, please see the Bin and Order Code Formats section (page 21). For definitions of the chromaticity kits, please see the Cree’s Standard Chromaticity Kits section (page 20). Minimum Luminous Flux (lm) @ 350 mA Order Codes Notes • Cree maintains a tolerance of ±7% on flux and power measurements, ±0.005 on chromaticity (CCx, CCy) measurements and a tolerance of ±2 on CRI measurements. See the Measurements section (page 23). • Cree XLamp XP-G LED...

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Cree® XLamp® XP-G LEDs-4

Flux Characteristics - Continued Chromaticity Kit Order Codes Minimum Luminous Flux (lm) @ 350 mA Notes • Cree maintains a tolerance of ±7% on flux and power measurements, ±0.005 on chromaticity (CCx, CCy) measurements and a tolerance of ±2 on CRI measurements. See the Measurements section (page 23). • Cree XLamp XP-G LED order codes specify only a minimum flux bin and not a maximum. Cree may ship reels in flux bins higher than the minimum specified by the order code without advance notice. Shipments will always adhere to the chromaticity bin restrictions specified by the order code. Copyright...

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Cree® XLamp® XP-G LEDs-5

Flux Characteristics - Continued Chromaticity Minimum Luminous Flux (lm) @ 350 mA Code Order Codes Notes • Cree maintains a tolerance of ±7% on flux and power measurements, ±0.005 on chromaticity (CCx, CCy) measurements and a tolerance of ±2 on CRI measurements. See the Measurements section (page 23). • Cree XLamp XP-G LED order codes specify only a minimum flux bin and not a maximum. Cree may ship reels in flux bins higher than the minimum specified by the order code without advance notice. Shipments will always adhere to the chromaticity bin restrictions specified by the order code. Copyright...

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Cree® XLamp® XP-G LEDs-6

Flux Characteristics - Continued Chromaticity Minimum Luminous Flux (lm) @ 350 mA Order Codes Notes • Cree maintains a tolerance of ±7% on flux and power measurements, ±0.005 on chromaticity (CCx, CCy) measurements and a tolerance of ±2 on CRI measurements. See the Measurements section (page 23). • Cree XLamp XP-G LED order codes specify only a minimum flux bin and not a maximum. Cree may ship reels in flux bins higher than the minimum specified by the order code without advance notice. Shipments will always adhere to the chromaticity bin restrictions specified by the order code. Copyright ©...

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Cree® XLamp® XP-G LEDs-7

Relative Spectral Power Distribution Relative Radiant Power (%) 100 Relative Spectral Power Relative Flux vs. Junction Temperature (IF = 350 mA) 100% 90% Relative Luminous Flux Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR logo are registered trademarks of UL LLC

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Cree® XLamp® XP-G LEDs-8

Relative Flux vs. Current (TJ = 25 °C) 350% Relative Luminous Flux (%) Typical Spatial Radiation Pattern 50% 0% Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR logo are registered trademarks of UL L

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Cree® XLamp® XP-G LEDs-9

Delta CCT vs. Current XLamp ® XP-G LED Relative Chromaticity vs Current and Temperature (Warm White*) 0.020 * Warm White XLamp XP-G LEDs have a typical CRI of 80. Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR logo are registered trademarks of UL

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Cree® XLamp® XP-G LEDs-10

Typical Spatial Distribution Relative Luminous Intensity (%) Thermal Design The maximum forward current is determined by the thermal resistance between the LED junction and ambient. It is crucial for the end product to Cool Whitebe designed in a manner that minimizes the thermal resistance from the solder point to ambient in order to optimize lamp life and optical characteristics. 1600 Copyright © 2009-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo and XLamp® are registered trademarks of Cree, Inc. UL® and the UR...

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All Cree catalogs and technical brochures

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