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XLamp-XHP50 2

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0% found this document useful (0 votes)
36 views31 pages

XLamp-XHP50 2

Uploaded by

numero159
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
Available Formats
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PRODUCT FAMILY DATA SHEET

XLamp® XHP50.2 LEDs

PRODUCT DESCRIPTION FEATURES TABLE OF CONTENTS


The XLamp® XHP50.2 LED is the next • Available in white, configurable to 3 V, Characteristics................................................ 2
generation of Extreme High Power LEDs 6 V or 12 V by PCB layout Flux Characteristics, EasyWhite® Order
that delivers the lowest system cost • Available in 5-step EasyWhite® bins Codes and Bins............................................... 3
through the best lumen density, reliability at 3000 K to 5000 K CCT, 3-step Flux Characteristics, ANSI White Order
and color consistency. Built on Cree LED’s EasyWhite bins at 2700 K to 5000 K Codes and Bins............................................... 5
latest high‑power LED technology, the and 2-step EasyWhite bins at 2700 K to Flux Characteristics - Broadcast Order
XHP50.2 LED improves the lumen density, 4000 K CCT Codes and Bins............................................... 8
voltage characteristics, reliability and • Available in ANSI white bins at 3000 K Relative Spectral Power Distribution............. 9
optical performance of the XHP50 LED in to 7000 K CCT Relative Flux vs. Junction Temperature......... 9
the same 5.0 mm x 5.0 mm footprint. The • Available in standard, 70-, 80-, and Electrical Characteristics.............................. 10
new XHP50.2 LED provides an easy drop‑in 90‑minimum CRI options Relative Flux vs. Current............................... 11
upgrade to achieve higher system LPW • Broadcast color option at 5700 K Relative Chromaticity vs Current.................. 13
for lighting manufacturers with existing provides maximum performance for TV Relative Chromaticity vs Temperature......... 14
XHP50 designs, eliminating redesign costs. events that require extremely high TLCI Typical Spatial Distribution........................... 15
Its unparalleled lumen density and longer • Binned at 85 °C Thermal Design............................................. 15
lifetime at higher operating temperatures • Maximum drive current: 6000 mA (3 V), Performance Groups – Luminous Flux....... 17
also enables new and innovative lighting 3000 mA (6 V), 1500 mA (12 V) Performance Groups – Chromaticity........... 17
designs at lower system costs. • Low thermal resistance: 0.6 °C/W EasyWhite® Chromaticity Regions Plotted
• Wide viewing angle: 120° on the 1931 CIE Curve.................................. 20
• Unlimited floor life at ≤ 30 ºC/85% RH ANSI Cool White Kits Plotted on ANSI
• Reflow solderable - JEDEC J‑STD‑020C Standard Chromaticity Regions................... 21
• RoHS and REACH compliant ANSI Warm and Neutral White Kits Plotted
• UL® recognized component (E349212) on ANSI Standard Chromaticity Regions..... 22
Bin and Order Code Formats........................ 23
Reflow Soldering Characteristics................. 24
Notes............................................................. 25
Mechanical Dimensions............................... 27
Electrical Configuration................................ 28
Tape and Reel................................................ 29
Packaging...................................................... 31

Cree LED / 4400 Silicon Drive / Durham, NC 27703 USA / +1.919.313.5330 / www.cree-led.com

1
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
1
XLAMP ® XHP50.2 LED

CHARACTERISTICS

XLamp XHP50.2 LEDs are tested and binned in production in the 12‑V configuration. See the Mechanical Dimensions section on page
27 for pad layout options.

Characteristics Unit Minimum Typical Maximum

Thermal resistance, junction to solder point ◊


°C/W 0.6

Viewing angle (FWHM) degrees 120

Temperature coefficient of voltage (3 V)* mV/°C -1.5

Temperature coefficient of voltage (6 V)* mV/°C -3

Temperature coefficient of voltage (12 V) mV/°C -6

ESD withstand voltage (HBM per Mil-Std-883D) V 8000

DC forward current (3 V)* mA 6000

DC forward current (6 V)* mA 3000

DC forward current (12 V) mA 1500

Reverse voltage (6V) V 1

Forward voltage (3 V, @ 2800 mA, 85 °C)* V 2.8 3.1

Forward voltage (6 V, @ 1400 mA, 85 °C)* V 5.6 6.2

Forward voltage (12 V, @ 700 mA, 85 °C) V 11.2 12.4

LED junction temperature °C 150

Note:
◊ Thermal resistance measurement was performed per the JEDEC JESD51-14 standard. See the Thermal Resistance Measurement
application note for more details.
* Data for the 3‑V and 6‑V configurations are calculated and for reference only.

2
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
2
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS, EASYWHITE® ORDER CODES AND BINS

The following table provides order codes for XLamp XHP50.2 LEDs. For a complete description of how the flux and chromaticity groups
are reflected in the bin code and order code nomenclature, please see the Bin and Order Code Formats section (page 23).

Binning condition: TJ = 85 °C; 12 V, IF = 700 mA


Reference condition: TJ = 85 °C; 6 V, IF = 1400 mA

CRI Minimum Luminous Flux 2-Step 3-Step 5-Step

Nominal
CCT Flux (lm) Flux (lm)
Min Typ Group Group Order Code Group Order Code Group Order Code
@ 85 °C @ 25 °C*

XHP50B-00-0000-
K2 1200 1328
0D0BK250E
70 50E
XHP50B-00-0000-
J4 1120 1239
0D0BJ450E
XHP50B-00-0000-
J4 1120 1239
0D0HJ450G
5000 K 80 50G
XHP50B-00-0000-
J2 1040 1151
0D0HJ250G
XHP50B-00-0000-
H4 970 1073
0D0UH450G
90 50G
XHP50B-00-0000-
H2 900 996
0D0UH250G
XHP50B-00-0000-
K2 1200 1328
0D0BK245E
70 45E
XHP50B-00-0000-
J4 1120 1239
0D0BJ445E
XHP50B-00-0000-
J4 1120 1239
0D0HJ445G
4500 K 80 45G
XHP50B-00-0000-
J2 1040 1151
0D0HJ245G
XHP50B-00-0000-
H4 970 1073
0D0UH445G
90 45G
XHP50B-00-0000-
H2 900 996
0D0UH245G
XHP50B-00-0000-
K2 1200 1328
0D0BK240E
70 40E
XHP50B-00-0000-
J4 1120 1239
0D0BJ440E
XHP50B-00-0000- XHP50B-00-0000-
J4 1120 1239
0D0HJ440H 0D0HJ440G
4000 K 80 40H 40G
XHP50B-00-0000- XHP50B-00-0000-
J2 1040 1151
0D0HJ240H 0D0HJ240G
XHP50B-00-0000- XHP50B-00-0000-
H4 970 1073
0D0UH440H 0D0UH440G
90 40H 40G
XHP50B-00-0000- XHP50B-00-0000-
H2 900 996
0D0UH240H 0D0UH240G

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

3
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
3
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS, EASYWHITE® ORDER CODES AND BINS - CONTINUED

CRI Minimum Luminous Flux 2-Step 3-Step 5-Step

Nominal
CCT Flux (lm) Flux (lm)
Min Typ Group Group Order Code Group Order Code Group Order Code
@ 85 °C @ 25 °C*

XHP50B-00-0000-
K2 1200 1328
0D0BK235E
70 35E
XHP50B-00-0000-
J4 1120 1239
0D0BJ435E
XHP50B-00-0000- XHP50B-00-0000-
J2 1040 1151
0D0HJ235H 0D0HJ235G
3500 K 80 35H 35G
XHP50B-00-0000- XHP50B-00-0000-
H4 970 1073
0D0HH435H 0D0HH435G
XHP50B-00-0000- XHP50B-00-0000-
H4 970 1073
0D0UH435H 0D0UH435G
90 35H 35G
XHP50B-00-0000- XHP50B-00-0000-
H2 900 996
0D0UH235H 0D0UH235G
XHP50B-00-0000-
J4 1120 1239
0D0BJ430E
70 30E
XHP50B-00-0000-
J2 1040 1151
0D0BJ230E
XHP50B-00-0000- XHP50B-00-0000-
J2 1040 1151
0D0HJ230H 0D0HJ230G
3000 K 80 30H 30G
XHP50B-00-0000- XHP50B-00-0000-
H4 970 1073
0D0HH430H 0D0HH430G
XHP50B-00-0000- XHP50B-00-0000-
H2 900 996
0D0UH230H 0D0UH230G
90 30H 30G
XHP50B-00-0000- XHP50B-00-0000-
G4 840 930
0D0UG430H 0D0UG430G
XHP50B-00-0000- XHP50B-00-0000-
H4 970 1073
0D0HH427H 0D0HH427G
80 27H 27G
XHP50B-00-0000- XHP50B-00-0000-
H2 900 996
0D0HH227H 0D0HH227G
2700 K
XHP50B-00-0000- XHP50B-00-0000-
G4 840 930
0D0UG427H 0D0UG427G
90 27H 27G
XHP50B-00-0000- XHP50B-00-0000-
G2 780 863
0D0UG227H 0D0UG227G

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

4
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
4
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS, ANSI WHITE ORDER CODES AND BINS

The following table provides order codes for XLamp XHP50.2 LEDs. For a complete description of how the flux and chromaticity groups
are reflected in the bin code and order code nomenclature, please see the Bin and Order Code Formats section (page 23).

Binning condition: TJ = 85 °C; 12 V, IF = 700 mA


Reference condition: TJ = 85 °C; 6 V, IF = 1400 mA
Reference condition: TJ = 85 °C; 3 V, IF = 2800 mA

3‑V XHP50.2 LEDs


CRI Minimum Luminous Flux
Nominal
Chromaticity Regions Order Code
CCT Flux l(m) Flux (lm)
Min Typ Group
@ 85 °C @ 25 °C*

0A, 0B, 0C, 0D,


0R, 0S, 0T, 0U,
7000 K 0 68 K2 1200 1328 XHP50B-00-0000-0A00K20DT
1A, 1B, 1C, 1D,
1R, 1S, 1T, 1U
0A, 0B, 0C, 0D,
0R, 0S, 0T, 0U,
1A, 1B, 1C, 1D,
6200 K 1R, 1S, 1T, 1U, 0 68 K2 1200 1328 XHP50B-00-0000-0A00K2051
2A, 2B, 2C, 2D,
2R, 2S, 2T, 2U,
3A, 3B, 3R, 3S

6-V & 12‑V XHP50.2 LEDs


CRI Minimum Luminous Flux
Nominal
Chromaticity Regions Order Code
CCT Flux l(m) Flux (lm)
Min Typ Group
@ 85 °C @ 25 °C*

K2 1200 1328 XHP50B-00-0000-0D00K20DT


0 68
J4 1120 1239 XHP50B-00-0000-0D00J40DT
0A, 0B, 0C, 0D,
0R, 0S, 0T, 0U, K2 1200 1328 XHP50B-00-0000-0D0BK20DT
7000 K 70
1A, 1B, 1C, 1D, J4 1120 1239 XHP50B-00-0000-0D0BJ40DT
1R, 1S, 1T, 1U
J4 1120 1239 XHP50B-00-0000-0D0HJ40DT
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20DT
K2 1200 1328 XHP50B-00-0000-0D00K20CB
0 68
0A, 0B, 0C, 0D, J4 1120 1239 XHP50B-00-0000-0D00J40CB
0R, 0S, 0T, 0U,
1A, 1B, 1C, 1D, K2 1200 1328 XHP50B-00-0000-0D0BK20CB
6500 K 70
1R, 1S, 1T, 1U, J4 1120 1239 XHP50B-00-0000-0D0BJ40CB
2A, 2B, 2C, 2D,
2R, 2S, 2T, 2U J4 1120 1239 XHP50B-00-0000-0D0HJ40CB
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20CB

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

5
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
5
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS, ANSI WHITE ORDER CODES AND BINS - CONTINUED

CRI Minimum Luminous Flux


Nominal
Chromaticity Regions Order Code
CCT Flux l(m) Flux (lm)
Min Typ Group
@ 85 °C @ 25 °C*

K2 1200 1328 XHP50B-00-0000-0D00K20E1


0 68
J4 1120 1239 XHP50B-00-0000-0D00J40E1
K2 1200 1328 XHP50B-00-0000-0D0BK20E1
6500 K 1A, 1B, 1C, 1D 70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E1
J4 1120 1239 XHP50B-00-0000-0D0HJ40E1
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20E1
K2 1200 1328 XHP50B-00-0000-0D00K20DV
0 68
J4 1120 1239 XHP50B-00-0000-0D00J40DV
K2 1200 1328 XHP50B-00-0000-0D0BK20DV
1A, 1B, 1C, 1D, 70
1R, 1S, 1T, 1U, J4 1120 1239 XHP50B-00-0000-0D0BJ40DV
6000 K
2A, 2B, 2C, 2D, J4 1120 1239 XHP50B-00-0000-0D0HJ40DV
2R, 2S, 2T, 2U 80
J2 1040 1151 XHP50B-00-0000-0D0HJ20DV
J2 1040 1151 XHP50B-00-0000-0D0UJ20DV
90
H4 970 1073 XHP50B-00-0000-0D0UH40DV
K2 1200 1328 XHP50B-00-0000-0D00K20E2
0 68
J4 1120 1239 XHP50B-00-0000-0D00J40E2
K2 1200 1328 XHP50B-00-0000-0D0BK20E2
70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E2
5700 K 2A, 2B, 2C, 2D
J4 1120 1239 XHP50B-00-0000-0D0HJ40E2
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20E2
J2 1040 1151 XHP50B-00-0000-0D0UJ20E2
90
H4 970 1073 XHP50B-00-0000-0D0UH40E2
K2 1200 1328 XHP50B-00-0000-0D00K20E3
0 68
J4 1120 1239 XHP50B-00-0000-0D00J40E3
K2 1200 1328 XHP50B-00-0000-0D0BK20E3
70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E3
5000 K 3A, 3B, 3C, 3D
J4 1120 1239 XHP50B-00-0000-0D0HJ40E3
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20E3
J2 1040 1151 XHP50B-00-0000-0D0UJ20E3
90
H4 970 1073 XHP50B-00-0000-0D0UH40E3

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

6
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
6
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS, ANSI WHITE ORDER CODES AND BINS - CONTINUED

CRI Minimum Luminous Flux


Nominal
Chromaticity Regions Order Code
CCT Flux l(m) Flux (lm)
Min Typ Group
@ 85 °C @ 25 °C*

K2 1200 1328 XHP50B-00-0000-0D00K20E4


0 68
J4 1120 1239 XHP50B-00-0000-0D00J40E4
K2 1200 1328 XHP50B-00-0000-0D0BK20E4
70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E4
4500 K 4A, 4B, 4C, 4D
J4 1120 1239 XHP50B-00-0000-0D0HJ40E4
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20E4
H4 970 1073 XHP50B-00-0000-0D0UH40E4
90
H2 900 996 XHP50B-00-0000-0D0UH20E4
K2 1200 1328 XHP50B-00-0000-0D00K20E5
0 68
J4 1120 1239 XHP50B-00-0000-0D00J40E5
K2 1200 1328 XHP50B-00-0000-0D0BK20E5
70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E5
4000 K 5A, 5B, 5C, 5D
J4 1120 1239 XHP50B-00-0000-0D0HJ40E5
80
J2 1040 1151 XHP50B-00-0000-0D0HJ20E5
H4 970 1073 XHP50B-00-0000-0D0UH40E5
90
H2 900 996 XHP50B-00-0000-0D0UH20E5
K2 1200 1328 XHP50B-00-0000-0D0BK20E6
3500 K 6A, 6B, 6C, 6D 70
J4 1120 1239 XHP50B-00-0000-0D0BJ40E6
J4 1120 1239 XHP50B-00-0000-0D0BJ40E7
3000 K 7A, 7B, 7C, 7D 70
J2 1040 1151 XHP50B-00-0000-0D0BJ20E7

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

7
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
7
XLAMP ® XHP50.2 LED

FLUX CHARACTERISTICS - BROADCAST ORDER CODES AND BINS

The following table provides order codes for XLamp XHP50.2 Broadcast LEDs. For a complete description of the order code nomenclature,
please see the Bin and Order Code Formats section (page 23).

Binning condition: TJ = 85 °C; 12 V, IF = 700 mA


Reference condition: TJ = 85 °C; 6 V, IF = 1400 mA

Minimum Luminous Flux (lm)


Chromaticity Order Codes
@ 1050 mA

Flux (lm) Flux (lm) 90 CRI Minimum 95 CRI Minimum


Kit CCT Flux Bin
@ 85 °C @ 25 °C* 90 TLCI Minimum 95 TLCI Minimum

H2 900 996 XHP50B-00-B001-AD0UH20E2


E2 5700 K
G4 840 930 XHP50B-00-B001-AD0ZG40E2

Notes
• Cree LED 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 25).
• XLamp XHP50.2 LED order codes specify only a minimum flux bin and not a maximum. Cree LED 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.
* Flux values @ 25 °C are calculated and for reference only.

8
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
8
XLAMP ® XHP50.2 LED

Relative Spectral Power

RELATIVE SPECTRAL POWER DISTRIBUTION

100%

80%
Relative Radiant Power

60%
6500 K, 68 CRI

3000 K, 80 CRI
40%

20%

0%
380 430 480 530 580 630 680 730 780

Wavelength (nm)

RELATIVE FLUX VS. JUNCTION TEMPERATURE


Relative Flux Output vs. Junction Temperature
Reference condition: 3‑V, IF = 2800 mA; 6 V, IF = 1400 mA; 12 V, IF = 700 mA

120%

100%
Relative Luminous Flux

80%

60%

40%

20%

0%
25 50 75 100 125 150

Junction Temperature (ºC)

9
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
9
XLAMP ® XHP50.2 LED

ELECTRICAL CHARACTERISTICS (TJ = 85 °C)

6000

5500

5000

4500
Forward Current (mA)

4000

3500

3000 3V
2500

2000

1500

1000

500

0
2.55 2.60 2.65 2.70 2.75 2.80 2.85 2.90 2.95

Forward Voltage (V)

3000

2750

2500

2250
Forward Current (mA)

2000

1750

1500 6V
1250

1000

750

500

250

0
5.15 5.25 5.35 5.45 5.55 5.65 5.75 5.85

Forward Voltage (V)

10
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
10
XLAMP ® XHP50.2 LED

Electrical Characteristics (Tj = 85°C)

ELECTRICAL CHARACTERISTICS (TJ = 85 °C) - CONTINUED

1500

1375

1250

1125
Forward Current (mA)

1000

875

750 12 V
625

500

375

250

125

0
10.3 10.5 10.7 10.9 11.1 11.3 11.5 11.7

Forward Voltage (V)

RELATIVE FLUX VS. CURRENT (TJ = 85 °C)

200%

180%

160%
Relative Luminous Flux

140%

120%

100% 3V

80%

60%

40%

20%

0%
0 500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000

Forward Current (mA)

11
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
11
XLAMP ® XHP50.2 LED

RELATIVE FLUX VS. CURRENT (TJ = 85 °C) - CONTINUED

200%

180%

160%
Relative Luminous Flux

140%

120%

100% 6V

80%

60%

40%

20%

0%

Relative Intensity vs. Current (Tj = 85°C)


0 250 500 750 1000 1250 1500 1750 2000 2250 2500 2750 3000

Forward Current (mA)

200%

180%

160%
Relative Luminous Flux

140%

120%

100% 12 V

80%

60%

40%

20%

0%
0 125 250 375 500 625 750 875 1000 1125 1250 1375 1500

Forward Current (mA)

12
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
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XLAMP ® XHP50.2 LED

RELATIVE CHROMATICITY VS CURRENT (WARM WHITE)

0.020

0.016

0.012 3V
0.008

0.004
ΔCCx
0.000
ΔCCy
-0.004

-0.008

-0.012

-0.016

-0.020
0 500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000

Current (mA)

0.020

0.016

0.012 6V
0.008

0.004
ΔCCx
0.000
ΔCCy
-0.004

-0.008

-0.012

-0.016

-0.020
0 250 500 750 1000 1250 1500 1750 2000 2250 2500 2750 3000

Current (mA)

13
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
13
XLAMP ® XHP50.2 LED

RELATIVE CHROMATICITY VS CURRENT


Relative Chromaticity Vs. Current,(WARM
WW WHITE) - CONTINUED

0.020

0.016

0.012 12 V
0.008

0.004
ΔCCx
0.000
ΔCCy
-0.004

-0.008

-0.012

-0.016

-0.020
0 125 250 375 500 625 750 875 1000 1125 1250 1375 1500

Current (mA)

RELATIVE CHROMATICITY VS TEMPERATURE (WARM WHITE)

Relative Chromaticity Vs. Temperature WW


Reference condition: 3 V, IF = 2800 mA; 6 V, IF = 1400 mA; 12 V, IF = 700 mA

0.020

0.016

0.012

0.008

0.004
ΔCCx
0.000
ΔCCy
-0.004

-0.008

-0.012

-0.016

-0.020
25 50 75 100 125 150
Tj (°C)

14
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XLAMP ® XHP50.2 LED

TYPICAL SPATIAL DISTRIBUTION


Typical Spatial Radiation Pattern
Reference condition: TJ = 85 °C; 3 V, IF = 2800 mA; 6 V, IF = 1400 mA; 12 V, IF = 700 mA

100%
Relative Luminous Intensity

80%

60%

40%

20%

0%
-90 -70 -50 -30 -10 10 30 50 70 90

Angle (º)

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 be designed in a manner that minimizes the thermal resistance from the solder point to ambient in order to optimize lamp life
and optical characteristics.

6400

5600
3V
4800
Maximum Current (mA)

4000

3200

2400
Rj-a = 2°C/W
Rj-a = 4°C/W
1600
Rj-a = 6°C/W
800 Rj-a = 8°C/W

0
0 20 40 60 80 100 120 140 160
Ambient Temperature (ºC)

15
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XLAMP ® XHP50.2 LED

THERMAL DESIGN - CONTINUED

3200

2800
6V
2400
Maximum Current (mA)

2000

1600

1200
Rj-a = 2°C/W
Rj-a = 4°C/W
800
Rj-a = 6°C/W
400 Rj-a = 8°C/W

0
Thermal
0
Design
20 40 60 80 100 120 140 160
Ambient Temperature (ºC)

1600

1400
12 V
Maximum Current (mA)

1200

1000

800

600
Rj-a = 2°C/W
Rj-a = 4°C/W
400
Rj-a = 6°C/W
200 Rj-a = 8°C/W

0
0 20 40 60 80 100 120 140 160
Ambient Temperature (ºC)

16
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XLAMP ® XHP50.2 LED

PERFORMANCE GROUPS – LUMINOUS FLUX (TJ = 85 °C)

XLamp XHP50.2 LEDs are tested for luminous flux and placed into one of the following luminous-flux groups.

Minimum Luminous Maximum Luminous


Group Code
Flux Flux

G2 780 840
G4 840 900
H2 900 970
H4 970 1040
J2 1040 1120
J4 1120 1200
K2 1200 1290
K4 1290 1380

PERFORMANCE GROUPS – CHROMATICITY

XLamp XHP50.2 LEDs are tested for chromaticity and placed into one of the regions defined by the following bounding coordinates.

EasyWhite Color Temperatures – 2-Step

Bin Code CCT x y

0.3777 0.3739
0.3797 0.3816
40H 4000 K
0.3861 0.3855
0.3838 0.3777
0.4022 0.3858
0.4053 0.3942
35H 3500 K
0.4125 0.3977
0.4091 0.3891
0.4287 0.3975
0.4328 0.4064
30H 3000 K
0.4390 0.4086
0.4347 0.3996
0.4524 0.4048
0.4574 0.4140
27H 2700 K
0.4633 0.4154
0.4581 0.4062

17
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XLAMP ® XHP50.2 LED

PERFORMANCE GROUPS – CHROMATICITY (CONTINUED)

EasyWhite Color Temperatures – 3-Step Ellipse

Center Point Major Axis Minor Axis


Rotation Angle
Bin Code CCT
(°)
x y a b

50G 5000 K 0.3447 0.3553 0.00840 0.00312 65.0


45G 4500 K 0.3611 0.3658 0.00852 0.00330 61.5
40G 4000 K 0.3818 0.3797 0.00939 0.00402 53.7
35G 3500 K 0.4073 0.3917 0.00927 0.00414 54.0
30G 3000 K 0.4338 0.4030 0.00834 0.00408 53.2
27G 2700 K 0.4577 0.4099 0.00834 0.00420 48.5

EasyWhite Color Temperatures – 5-Step Ellipse

Center Point Major Axis Minor Axis


Rotation Angle
Bin Code CCT
(°)
x y a b

50E 5000 K 0.3447 0.3553 0.01400 0.00520 65.0


45E 4500 K 0.3611 0.3658 0.01420 0.00550 61.5
40E 4000 K 0.3818 0.3797 0.01565 0.00670 53.7
35E 3500 K 0.4073 0.3917 0.01545 0.00690 54.0
30E 3000 K 0.4338 0.4030 0.01390 0.00680 53.2

ANSI White Bins ANSI White Bins ANSI White Bins

CCT Bin Code x y CCT Bin Code x y CCT Bin Code x y

0.2950 0.2970 0.2980 0.2880 0.3048 0.3207


0.2920 0.3060 0.2950 0.2970 0.3130 0.3290
0A0 0R0 1A0
0.2984 0.3133 0.3009 0.3042 0.3144 0.3186
0.3009 0.3042 0.3037 0.2937 0.3068 0.3113
0.2920 0.3060 0.2895 0.3135 0.3028 0.3304
0.2895 0.3135 0.2870 0.3210 0.3115 0.3391
0B0 0S0 1B0
0.2962 0.3220 0.2937 0.3312 0.3130 0.3290
0.2984 0.3133 0.2962 0.3220 0.3048 0.3207
7000 K 7000 K 7000 K
0.2984 0.3133 0.2962 0.3220 0.3115 0.3391
0.2962 0.3220 0.2937 0.3312 0.3205 0.3481
0C0 0T0 1C0
0.3028 0.3304 0.3005 0.3415 0.3213 0.3373
0.3048 0.3207 0.3028 0.3304 0.3130 0.3290
0.2984 0.3133 0.3037 0.2937 0.3130 0.3290
0.3048 0.3207 0.3009 0.3042 0.3213 0.3373
0D0 0U0 1D0
0.3068 0.3113 0.3068 0.3113 0.3221 0.3261
0.3009 0.3042 0.3093 0.2993 0.3144 0.3186

18
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XLAMP ® XHP50.2 LED

PERFORMANCE GROUPS – CHROMATICITY (CONTINUED)

ANSI White Bins ANSI White Bins ANSI White Bins

CCT Bin Code x y CCT Bin Code x y CCT Bin Code x y

0.3068 0.3113 0.3215 0.3350 0.3222 0.3243


0.3144 0.3186 0.3290 0.3417 0.3290 0.3300
1R0 2A0 2R0
0.3161 0.3059 0.3290 0.3300 0.3290 0.3180
0.3093 0.2993 0.3222 0.3243 0.3231 0.3120
0.3005 0.3415 0.3207 0.3462 0.3196 0.3602
0.3099 0.3509 0.3290 0.3538 0.3290 0.3690
1S0 2B0 2S0
0.3115 0.3391 0.3290 0.3417 0.3290 0.3538
0.3028 0.3304 0.3215 0.3350 0.3207 0.3462
7000 K 6000 K 6000 K
0.3099 0.3509 0.3290 0.3538 0.3290 0.3690
0.3196 0.3602 0.3376 0.3616 0.3381 0.3762
1T0 2C0 2T0
0.3205 0.3481 0.3371 0.3490 0.3376 0.3616
0.3115 0.3391 0.3290 0.3417 0.3290 0.3538
0.3144 0.3186 0.3290 0.3417 0.3290 0.3300
0.3221 0.3261 0.3371 0.3490 0.3366 0.3369
1U0 2D0 2U0
0.3231 0.3120 0.3366 0.3369 0.3361 0.3245
0.3161 0.3059 0.3290 0.3300 0.3290 0.3180

ANSI White Bins ANSI White Bins

CCT Bin Code x y CCT Bin Code x y

0.3371 0.3490 0.3530 0.3597


0.3451 0.3554 0.3615 0.3659
3A0 4A0
0.3440 0.3427 0.3512 0.3465
0.3366 0.3369 0.3515 0.3487
0.3376 0.3616 0.3548 0.3736
0.3463 0.3687 0.3641 0.3804
3B0 4B0
0.3451 0.3554 0.3530 0.3597
0.3371 0.3490 0.3533 0.362
5000 K 4500 K
0.3463 0.3687 0.3641 0.3804
0.3551 0.3760 0.3736 0.3874
3C0 4C0
0.3533 0.3620 0.3702 0.3722
0.3451 0.3554 0.3615 0.3659
0.3451 0.3554 0.3615 0.3659
0.3533 0.3620 0.3702 0.3722
3D0 4D0
0.3515 0.3487 0.3670 0.3578
0.3440 0.3427 0.3590 0.3521

19
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XLAMP ® XHP50.2 LED

PERFORMANCE GROUPS – CHROMATICITY (CONTINUED)

ANSI White Bins ANSI White Bins ANSI White Bins

CCT Bin Code x y CCT Bin Code x y CCT Bin Code x y

0.3670 0.3578 0.3889 0.3690 0.4147 0.3814


0.3702 0.3722 0.3941 0.3848 0.4221 0.3984
5A0 6A0 7A0
0.3825 0.3798 0.4080 0.3916 0.4342 0.4028
0.3783 0.3646 0.4017 0.3751 0.4259 0.3853
0.3702 0.3722 0.3941 0.3848 0.4221 0.3984
0.3736 0.3874 0.3996 0.4015 0.4299 0.4165
5B0 6B0 7B0
0.3869 0.3958 0.4146 0.4089 0.4430 0.4212
0.3825 0.3798 0.4080 0.3916 0.4342 0.4028
4000 K 3500 K 3000 K
0.3825 0.3798 0.4080 0.3916 0.4342 0.4028
0.3869 0.3958 0.4146 0.4089 0.4430 0.4212
5C0 6C0 7C0
0.4006 0.4044 0.4299 0.4165 0.4562 0.4260
0.3950 0.3875 0.4221 0.3984 0.4465 0.4071
0.3783 0.3646 0.4017 0.3751 0.4259 0.3853
0.3825 0.3798 0.4080 0.3916 0.4342 0.4028
5D0 6D0 7D0
0.3950 0.3875 0.4221 0.3984 0.4465 0.4071
0.3898 0.3716 0.4147 0.3814 0.4373 0.3893

EASYWHITE® CHROMATICITY REGIONS PLOTTED ON THE 1931 CIE CURVE

0.44
2700 K
ANSI C78.377 Quadrangle
0.43 3000 K
EasyWhite 5-Step
0.42 EasyWhite 3-Step
3500 K
EasyWhite 2-Step
0.41
4000 K
0.40
4500 K
0.39

0.38 5000 K

0.37
5700 K
CCy

0.36
6500 K
0.35

0.34
8000 K
0.33

0.32

0.31

0.30

0.29

0.28
0.27

0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36

0.37

0.38

0.39

0.40

0.41

0.42

0.43

0.44

0.45

0.46

0.47

0.48

0.49

CCx

20
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
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XLAMP ® XHP50.2 LED

ANSI COOL WHITE KITS PLOTTED ON ANSI STANDARD CHROMATICITY REGIONS


0.40 0.40
5000 K 5000 K
0.39 0.39

0.38 5700 K 0.38 5700 K

0.37 0.37
6500 K 2T 6500 K 2T
0.36 0.36

CB
2S 2S

DT
0.35 2C 2C
1T 0.35 1T
8000 K 2B 8000 K 2B
CCy

CCy
0.34 1S 2D 0.34 1S 2D
1C 1C
2A 2A
0.33 0T 0T
1B 0.33 1B
1D 2U 1D 2U
0S 0C 2R ANSI 0S 0C 2R ANSI
0.32 1A 0.32 1A
1U C78.377A 1U C78.377A
0B 0D 0B
0.31 0.31 0D
1R 1R
0A 0A
0U 0U
0.30 0.30
0R 0R
0.29 0.29

0.28 0.28

0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36
0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36

CCx CCx

0.40 0.40
5000 K 5000 K
0.39 0.39

0.38 5700 K 0.38 5700 K

3S 3S
0.37
51
0.37
6500 K 2T 6500 K 2T
0.36 0.36
E1 2S 3B 3B
2S

0.35 2C 0.35 2C
1T 1T
8000 K 3A 8000 K 3A
2B 2B
CCy

0.34
CCy

0.34 1S 2D 1S 2D
1C 1C

2A 3R 2A 3R
0T 0.33 0T
0.33 1B 1B
1D 2U 1D 2U

0S ANSI 0S 0C ANSI
0.32 0C
1A
2R 0.32 1A
2R
C78.377A 1U C78.377A
1U 0B
0B 0D 0.31 0D
0.31 1R 1R
0A 0A
0U 0U
0.30 0.30
0R 0R

0.29 0.29

0.28 0.28
0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36
0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36

CCx CCx

0.40 0.40
5000 K 5000 K
0.39 0.39

0.38 5700 K 0.38 5700 K

0.37 DV 0.37 E2 3S

6500 K 6500 K 2T
2T
0.36 0.36 3B
2S 2S

2C 0.35 2C
0.35 1T 1T
8000 K 3A
8000 K 2B 2B
CCy
CCy

0.34 1S 2D
0.34 1S 2D
1C 1C
2A 3R
2A 0T
0.33 0T
1B 0.33 1B
1D 2U 1D 2U

0S 0S 0C 2R ANSI
0.32 0C
1A 2R ANSI 0.32 1A
C78.377A 1U C78.377A
1U 0B
0B 0D 0D
0.31 0.31 1R
1R
0A 0A
0U 0U
0.30 0.30
0R 0R

0.29 0.29

0.28 0.28
0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36
0.28

0.29

0.30

0.31

0.32

0.33

0.34

0.35

0.36

CCx CCx

21
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
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XLAMP ® XHP50.2 LED

ANSI WARM AND NEUTRAL WHITE KITS PLOTTED ON ANSI STANDARD CHROMATICITY REGIONS

0.45

0.44
2700 K

0.43 3000 K

0.42
E7
3500 K
7C
0.41 E6 7B
4000 K
6C
0.40
E5 6B 7D
4500 K 5C 7A
CCy

0.39 5000 K
6D

0.38
E4 5B
6A
ANSI
4C 5D C78.377A

0.37 E3 4B 5A
3C
4D
0.36 3B
4A
3D
0.35
3A
0.34

0.33
0.33

0.36

0.40

0.43

0.46

0.50
0.32

0.34

0.35

0.37

0.38

0.39

0.41

0.42

0.44

0.45

0.47

0.48

0.49
CCx

22
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
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XLAMP ® XHP50.2 LED

BIN AND ORDER CODE FORMATS

Bin codes and order codes for XHP50.2 LEDs are configured in the following manner:

Order Code Bin Code

Series Series
XHP50B = XHP50.2 XHP50B = XHP50.2

Internal code Chromaticity group

Minimum luminous flux group Vf Class


A = 3-V
SSSSSS-BD-GGGG-HJKLMMNNN D = 6-V/12-V configurable
Chromaticity group
CRI specification
CRI specification 0 = No minimum CRI
0 = No Minimum CRI B = 70 CRI minimum
B = 70 CRI Minimum H = 80 CRI minimum
H = 80 CRI Minimum U = 90 CRI minimum
U = 90 CRI Minimum SSSSSS-E-NNN-MMM-JK-L-PP
Vf Class Internal code
A = 3-V
D = 6-V/12-V configurable Voltage performance group

Configuration Luminous flux group


B = Internal code
D = Reel size Internal code

23
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XLAMP ® XHP50.2 LED

REFLOW SOLDERING CHARACTERISTICS

In testing, Cree LED has found XLamp XHP50.2 LEDs to be compatible with JEDEC J‑STD‑020C, using the parameters listed below. As a
general guideline, Cree LED recommends that users follow the recommended soldering profile provided by the manufacturer of the solder
paste used, and therefore it is the lamp or luminaire manufacturer’s responsibility to determine applicable soldering requirements.

Note that this general guideline may not apply to all PCB designs and configurations of reflow soldering equipment.

tP
TP Critical Zone
TL to TP
Ramp-up

TL tS
Temperature

Tsmax

Tsmin

ts Ramp-down
Preheat

25
t 25˚C to Peak
Time

Profile Feature Lead-Free Solder

Average Ramp-Up Rate (Tsmax to Tp) 1.2 °C/second

Preheat: Temperature Min (Tsmin) 120 °C

Preheat: Temperature Max (Tsmax) 170 °C

Preheat: Time (tsmin to tsmax) 65-150 seconds

Time Maintained Above: Temperature (TL) 217 °C

Time Maintained Above: Time (tL) 45-90 seconds

Peak/Classification Temperature (Tp) 235 - 245 °C

Time Within 5 °C of Actual Peak Temperature (tp) 20-40 seconds

Ramp-Down Rate 1 - 6 °C/second

Time 25 °C to Peak Temperature 4 minutes max.

Note: All temperatures refer to the topside of the package, measured on the package body surface.

24
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XLAMP ® XHP50.2 LED

NOTES

Measurements
The luminous flux, radiant power, chromaticity, forward voltage and CRI measurements in this document are binning specifications only
and solely represent product measurements as of the date of shipment. These measurements will change over time based on a number
of factors that are not within Cree LED’s control and are not intended or provided as operational specifications for the products. Calculated
values are provided for informational purposes only and are not intended or provided as specifications.

Pre‑Release Qualification Testing


Please read the LED Reliability Overview for details of the qualification process Cree LED applies to ensure long-term reliability for XLamp
LEDs and details of Cree LED’s pre-release qualification testing for XLamp LEDs. Cree LED did not perform Room Temperature Operating
Life (RTOL) testing on the XHP50.2 LED.

Lumen Maintenance
Cree LED now uses standardized IES LM-80-08 and TM-21-11 methods for collecting long-term data and extrapolating LED lumen
maintenance. For information on the specific LM-80 data sets available for this LED, refer to the public LM-80 results document.

Please read the Long-Term Lumen Maintenance application note for more details on Cree LED’s lumen maintenance testing and
forecasting. Please read the Thermal Management application note for details on how thermal design, ambient temperature, and drive
current affect the LED junction temperature.

Moisture Sensitivity
Cree LED recommends keeping XLamp LEDs in the provided, resealable moisture-barrier packaging (MBP) until immediately prior to
soldering. Unopened MBPs that contain XLamp LEDs do not need special storage for moisture sensitivity.

Once the MBP is opened, XLamp XHP50.2 LEDs may be stored as MSL 1 per JEDEC J-STD-033, meaning they have unlimited floor life
in conditions of ≤ 30 ºC/85% relative humidity (RH). Regardless of the storage condition, Cree LED recommends sealing any unsoldered
LEDs in the original MBP.

RoHS Compliance
The levels of RoHS restricted materials in this product are below the maximum concentration values (also referred to as the threshold
limits) permitted for such substances, or are used in an exempted application, in accordance with EU Directive 2011/65/EC (RoHS2), as
implemented January 2, 2013. RoHS Declarations for this product can be obtained from your Cree LED representative or from the Product
Ecology section of the Cree LED website.

REACH Compliance
REACH substances of very high concern (SVHCs) information is available for this product. Since the European Chemical Agency
(ECHA) has published notice of their intent to frequently revise the SVHC listing for the foreseeable future, please contact a Cree LED
representative to insure you get the most up-to-date REACH SVHC Declaration. REACH banned substance information (REACH Article 67)
is also available upon request.

25
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registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
25
XLAMP ® XHP50.2 LED

NOTES - CONTINUED
UL® Recognized Component
This product meets the requirements to be considered a UL Recognized Component with Level 4 enclosure consideration. The LED
package or a portion thereof has been investigated as a fire and electrical enclosure per ANSI/UL 8750.

Vision Advisory
WARNING: Do not look at an exposed lamp in operation. Eye injury can result. For more information about LEDs and eye safety, please
refer to the LED Eye Safety application note.

26
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
26
XLAMP ® XHP50.2 LED

MECHANICAL DIMENSIONS

Thermal vias, if present, are not shown on these drawings.


All dimensions are ±.13 mm unless otherwise indicated.
8 7 6 5 4 3 2 1 .
3.58 4.78
5.00 2.78
0.56
0.50
F
F

ANODE

0.50
SIDE
5.00

E E

4.78
CATHODE
SIDE

2.14
R2.85

OPTICAL MODEL ORIGIN OPTICAL MODEL ORIGIN SOLDERMASK MAY BE PRESENT CENTER PAD IS ELECTRICALLY ISOLATED
D D

TOP VIEW SIDE VIEW BOTTOM VIEW


Top View Side View Bottom View

8 7 6 5 4 3 2 1

4.78 4.78
C C

2.78 0.50
F
F
2.14

0.50
B B
4.78
4.78

E E

A
2.14

UNLESS OTHERWISE SPECIFIED: NAME DATE CreeLED, Inc.


4400 SILICON DR

2610-500005 XHP50 HD
DIMENSIONS ARE IN MILLIMETERS
TOLERANCES: DRAWN TLING 24NOV21 DURHAM, NC 27703
• ANGULAR: MACH 0.5° BEND 1°
• ONE PLACE DECIMAL 0.5 CHECKED TITLE:
• TWO PLACE DECIMAL 0.05
A
2610-500006
• INSIDE BEND RADII EQUAL ENG APPR.
MATERIAL
• MACHINE/CASTING RADII 0.50

XHP50.3 HD
• RADII AND DIA: 0.10 MFG APPR.

INTERPRET GEOMETRIC Q.A.

0.50 0.50 PROPRIETARY AND CONFIDENTIAL B UPDATE TO MODEL ORIGIN TOLERANCING PER:

DRAWING FILENAME
THIRD ANGLE PROJECTION
THE INFORMATION CONTAINED IN THIS
DRAWING IS THE SOLE PROPERTY OF
MATERIAL
SIZE DWG. NO. REV

C B
A INITIAL DRAWING RELEASED
CREE LED. ANY REPRODUCTION IN MATERIAL
PART OR AS A WHOLE WITHOUT FINISH
WRITTEN PERMISSION OF CREE LED
REV DESCRIPTION
D IS PROHIBITED. FINISH
© 2021 CreeLED, Inc. a subsidiary D
SCALE: 50:1 WEIGHT: SHEET 1 OF 2
3V AND 6V PCB FOOTPRINT 12V PCB FOOTPRINT2
of SMART Global Holdings, Inc. APPLICATION

3‑V and 6‑V PCB Footprint 12‑V PCB Footprint


8 7 6 5 4 2 3 1 1

4.78 4.78
Depending2.78
on Vf Class (Thermal pad is connected
0.50 to anode and cathode
0.76
0.50 and is not electrically
(Thermal pad is electrically isolated) 0.25 isolated)
1.26

C C
0.50

0.52
0.29
0.76

0.25
4.78

4.78

0.50

B B
0.25

0.76

0.50
0.76 A

3V, 6V AND 12V PCB SOLDER MASK OPENING RECOMMENDED STENCIL OPENING
UNLESS OTHERWISE SPECIFIED: NAME DATE CreeLED, Inc.
4400 SILICON DR
2610-500005 XHP50 HD

DIMENSIONS ARE IN MILLIMETERS


TOLERANCES: DRAWN TLING 24NOV21 DURHAM, NC 27703
• ANGULAR: MACH 0.5° BEND 1°
• ONE PLACE DECIMAL 0.5 CHECKED TITLE:
• TWO PLACE DECIMAL 0.05
A
2610-500006
• INSIDE BEND RADII EQUAL ENG APPR.
MATERIAL
• MACHINE/CASTING RADII 0.50

XHP50 HD
• RADII AND DIA: 0.10 MFG APPR.

INTERPRET GEOMETRIC Q.A.


PROPRIETARY AND CONFIDENTIAL TOLERANCING PER:
DRAWING FILENAME

THIRD ANGLE PROJECTION


THE INFORMATION CONTAINED IN THIS
DRAWING IS THE SOLE PROPERTY OF
MATERIAL
SIZE DWG. NO. REV

C A
A INITIAL DRAWING RELEASED
CREE LED. ANY REPRODUCTION IN MATERIAL
PART OR AS A WHOLE WITHOUT FINISH
WRITTEN PERMISSION OF CREE LED
REV DESCRIPTION
IS PROHIBITED. FINISH
© 2021 CreeLED, Inc. a subsidiary
of SMART Global Holdings, Inc. APPLICATION SCALE: 50:1 WEIGHT: SHEET 2 OF 2
8 7 6 5 4 2 3 2 1 1

27
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
27
F
F

2.14

0.50
XLAMP ® XHP50.2 LED

4.78
4.78
E E

2.14
MECHANICAL DIMENSIONS - CONTINUED
0.50 0.50
D D

3V AND 6V PCB FOOTPRINT 12V PCB FOOTPRINT

4.78 4.78
2.78 0.50
0.50 0.76
0.25

1.26
C C
0.50

0.52
0.29
0.76
12 V

0.25
4.78

4.78
SOLDER PAD LINK

0.50
B B

0.25

0.76
POSITIVE A
0.50
0.76 A

3V, 6V AND 12V PCB SOLDER MASK OPENING RECOMMENDED STENCIL OPENING
UNLESS OTHERWISE SPECIFIED: NAME DATE CreeLED, Inc.

NEGATIVE B 3‑V, 6‑V, and 12‑V PCB Soldermask Opening Recommended Stencil Opening
4400 SILICON DR

2610-500005 XHP50 HD
DIMENSIONS ARE IN MILLIMETERS
TOLERANCES: DRAWN TLING 24NOV21 DURHAM, NC 27703
• ANGULAR: MACH 0.5° BEND 1°
• ONE PLACE DECIMAL 0.5 CHECKED TITLE:
• TWO PLACE DECIMAL 0.05
A
2610-500006
• INSIDE BEND RADII EQUAL ENG APPR.
MATERIAL
• MACHINE/CASTING RADII 0.50

XHP50 HD
• RADII AND DIA: 0.10 MFG APPR.

INTERPRET GEOMETRIC Q.A.


PROPRIETARY AND CONFIDENTIAL TOLERANCING PER:

DRAWING FILENAME
THIRD ANGLE PROJECTION
THE INFORMATION CONTAINED IN THIS
DRAWING IS THE SOLE PROPERTY OF
MATERIAL
SIZE DWG. NO. REV

C A
A INITIAL DRAWING RELEASED
CREE LED. ANY REPRODUCTION IN MATERIAL
PART OR AS A WHOLE WITHOUT FINISH
WRITTEN PERMISSION OF CREE LED
REV DESCRIPTION
IS PROHIBITED. FINISH
© 2021 CreeLED, Inc. a subsidiary
of SMART Global Holdings, Inc. APPLICATION SCALE: 50:1 WEIGHT: SHEET 2 OF 2
8 7 6 5 4 2 3 2 1 1

ELECTRICAL CONFIGURATION

6V 12 V
SOLDER PAD LINK

NEGATIVE A POSITIVE A POSITIVE A

NEGATIVE B POSITIVE B
NEGATIVE B

6-V Configuration 12-V Configuration

6V

NEGATIVE A POSITIVE A

NEGATIVE B POSITIVE B

28
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
28
XLAMP ® XHP50.2 LED

TAPE AND REEL

All Cree LED carrier tapes conform to EIA-481D, Automated Component Handling Systems Standard.
All dimensions are ±.13 mm unless otherwise indicated.

T
Po P2 Do E

Bo

R
W

F
Anode side A A "H"
P1 D1 B Ko
B-B SECTION
Ao (on a place in the

bottom of the corner


Bo (on a place in the
bottom of the corner
radii)

radii)
"I"
Ao
A-A SECTION DETAIL"I" DETAIL"H"

ITEM Ao Bo Ko Po P1 P2 TDo E
Item Ao Bo Ko Po P1 P2 T E F D1 W R

Dim. Dim.
5.30 5.30 5.40 3.70 5.40 4.00 3.35
8.00 4.00
2.00 0.36 8.00 1.75 2.00 5.50 0.36
1.50 1.75
1.50 12.00 5°

ITEM F Do D1 W R
Dim. 5.50 1.50 1.50 12.00 3deg

NOTICE
1) All Cree LED carrier tapes conform to EIA-481D, Automated Component handling Systems Standard
2) Measurement tolerances unless indicated otherwise: .xx = ±.15 mm

2402-M022 XML3

29
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
29
XLAMP ® XHP50.2 LED

TAPE AND REEL - CONTINUED

Feed Direction
END START

Trailer Loaded Pockets Leader


Min. 160 mm empty pockets 500 Lamps Min. 400 mm empty pockets
sealed with tape with min. 100 mm sealed

Feed Direction

Cover Tape

Pocket Tape

13 mm
7”

30
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
30
XLAMP ® XHP50.2 LED

PACKAGING

31
© 2016-2022 Cree LED. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are CLD-DS150
registered trademarks, and the Cree LED logo is a trademark, of Cree LED. REV 5
31

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