CHA0612-PRO9 CREELED | Alldatasheet

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© 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 1 XLamp® CHA0612 Pro9™ LED PRODUCT DESCRIPTION The XLamp ® CHA LED family delivers an industry-leading combination of lumen density and efficacy in LES sizes as small as 3.3 mm. CHA family LEDs deliver 50% higher lumen density than the existing XLamp CMU family LEDs for significant improvements in beam angle and intensity. The XLamp CHA family LEDs are also compatible with the available ecosystem of holders and optics designed for high-intensity COBs. Pro9™ version LEDs deliver up to 15% higher efficacy for 90 and 95 color rendering index (CRI) over standard version LEDs without sacrificing color rendering quality. Pro9 LEDs feature the industry’s highest operating temperature rating of 105 °C and the same maximum current as the standard versions. In addition, all Pro9 LEDs share the same mechanical and electrical characteristics as the standard versions. XLamp CHA LEDs are optimized for premium indoor lighting applications, including track, spot and downlight, as well as outdoor lighting.

FEATURES

  • 6-mm optical source
  • Available in 90 and 95 CRI minimum options
  • EasyWhite® 2- and 3-step binning
  • Premium Color 3-step binning
  • Forward voltage option: 18-V class & 36-V class
  • 85 °C binning and characterization
  • Maximum drive current: 1200 mA (18 V), 600 mA (36 V)
  • 114° viewing angle, uniform chromaticity profile
  • Top-side solder connections
  • RoHS and REACH compliant
  • UL® recognized component (E349212)

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 2 TABLE OF CONTENTS

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 3 CHARACTERISTICS Characteristics Unit Minimum Typical Maximum Viewing angle (FWHM) degrees 114 ESD withstand voltage (JEDEC JS-001-2012) V Class 3A DC forward current (18 V) mA 1200* DC forward current (36 V) mA 600* Reverse current mA 0.1 Forward voltage (18 V, 700 mA, 85 °C) V 18.0 19.5 Forward voltage (36 V, 350 mA, 85 °C) V 36.0 39.0 * Refer to the Operating Limits section.

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 4 OPERATING LIMITS The maximum current rating of the CHA0612 Pro9 LED depends on the case temperature (Tc) when the LED has reached thermal equilibrium under steady-state operation. The graphs shown below assume that the system design employs good thermal management (thermal interface material and heat sink) and may vary when poor thermal management is employed. Either solder pad shown in the Mechanical Dimensions section on page 17 can be used as the Tc measurement point. Another important factor in good thermal management is the temperature of the Light Emitting Surface (LES). Cree LED recommends a maximum LES temperature of 140 °C to ensure optimal LED lifetime. Please refer to the Thermal Design section on page 18 for more information on LES temperature measurement.CHA0612 18V Pro9 100 200 300 400 500 600 700 800 900 1000 1100 1200 1300 0 25 50 75 100 125 If (mA) Case Temperature (°C) 105 °C, 1200 mA 18 V CHA0612 36V Pro9 100 150 200 250 300 350 400 450 500 550 600 650 0 25 50 75 100 125 If (mA) Case Temperature (°C) 105 °C, 600 mA 36 V

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 5 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 20).
  • For 90 CRI minimum LEDs, CRI R9 typical is 60. FLUX CHARACTERISTICS, ORDER CODES & BINS - 18 V (I F = 700 mA, TJ = 85 °C) The following tables provide order codes for XLamp CHA0612 Pro9 LEDs. For a complete description of the order code nomenclature, please see the Bin and Order Code Formats section (page 16). Nominal CCT CRI Minimum Luminous Flux (lm) Typical Luminous Flux (lm) 2-Step 3-Step Min. Typ Group Order Code Group Order Code 4000 K 90 92 1613 1735 40H CHA0612-0000-00PF0U0A40H 40G CHA0612-0000-00PF0U0A40G 95 98 1526 1641 40H CHA0612-0000-00PF0Z0A40H 40G 3500 K 90 92 1575 1693 35H CHA0612-0000-00PF0U0A35H 35G CHA0612-0000-00PF0U0A35G 95 98 1573 1692 35H CHA0612-0000-00PF0Z0A35H 35G 3000 K 90 92 1510 1623 30H CHA0612-0000-00PF0U0A30H 30G CHA0612-0000-00PF0U0A30G 95 98 1436 1544 30H CHA0612-0000-00PF0Z0A30H 30G 2700 K 90 92 1429 1536 27H CHA0612-0000-00PF0U0A27H 27G CHA0612-0000-00PF0U0A27G 95 98 1366 1469 27H CHA0612-0000-00PF0Z0A27H 27G FLUX CHARACTERISTICS, ORDER CODES & BINS, PREMIUM COLOR- 18 V (I F = 700 mA, TJ = 85 °C) Specialty Nominal CCT CRI Minimum Luminous Flux (lm) Typical Luminous Flux (lm) 3-Step Min. Typ Group Order Code Group Order Code

3100 K 90 92 1415 1521 31Q CHA0612-0000-00PF0U0A31Q

3000 K 90 92

1393 1497 30U CHA0612-0000-00PF0U0A30U 1452 1561 30Q CHA0612-0000-00PF0U0A30Q

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 6 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 20).
  • For 90 CRI minimum LEDs, CRI R9 typical is 60. FLUX CHARACTERISTICS, ORDER CODES & BINS - 36 V (I F = 350 mA, TJ = 85 °C) The following tables provide order codes for XLamp CHA0612 Pro9 LEDs. For a complete description of the order code nomenclature, please see the Bin and Order Code Formats section (page 16). Nominal CCT CRI Minimum Luminous Flux (lm) Typical Luminous Flux (lm) 2-Step 3-Step Min. Typ Group Order Code Group Order Code 4000 K 90 92 1613 1735 40H CHA0612-0000-00PN0U0A40H 40G CHA0612-0000-00PN0U0A40G 95 98 1526 1641 40H CHA0612-0000-00PN0Z0A40H 40G 3500 K 90 92 1575 1693 35H CHA0612-0000-00PN0U0A35H 35G CHA0612-0000-00PN0U0A35G 95 98 1573 1692 35H CHA0612-0000-00PN0Z0A35H 35G 3000 K 90 92 1510 1623 30H CHA0612-0000-00PN0U0A30H 30G CHA0612-0000-00PN0U0A30G 95 98 1436 1544 30H CHA0612-0000-00PN0Z0A30H 30G 2700 K 90 92 1429 1536 27H CHA0612-0000-00PN0U0A27H 27G CHA0612-0000-00PN0U0A27G 95 98 1366 1469 27H CHA0612-0000-00PN0Z0A27H 27G FLUX CHARACTERISTICS, ORDER CODES & BINS, PREMIUM COLOR - 36 V (I F = 350 mA, TJ = 85 °C) Specialty Nominal CCT CRI Minimum Luminous Flux (lm) Typical Luminous Flux (lm) 3-Step Min. Typ Group Order Code Group Order Code

3100 K 90 92 1415 1521 31Q CHA0612-0000-00PN0U0A31Q

1393 1497 30U CHA0612-0000-00PN0U0A30U 1452 1561 30Q CHA0612-0000-00PN0U0A30Q

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 7 RELATIVE SPECTRAL POWER DISTRIBUTION The following graphs are the result of a series of pulsed measurements at 700 mA for the 18-V CHA0612 LED and 350 mA for the 36-V CHA0612 LED and TJ = 85 °C. eTone 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 380 430 480 530 580 630 680 730 780 Relative Spectral Power Wavelength (nm)

4000 K, 90 CRI

3500 K, 90 CRI

3000 K, 90 CRI

2700 K, 90 CRI

10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 380 430 480 530 580 630 680 730 780 Relative Spectral Power Wavelength (nm)

4000 K, Z CRI

3500 K, Z CRI

3000 K, Z CRI

2700 K, Z CRI

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 8 RELATIVE SPECTRAL POWER DISTRIBUTION, PREMIUM COLOR The following graph is the result of a series of pulsed measurements at 700 mA for the 18-V CHA0612 LED and 350 mA for the 36-V CHA0612 LED and TJ = 85 °C. Specialty 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 380 430 480 530 580 630 680 730 780 Relative Spectral Power Wavelength (nm) 31Q, 3100 K, 90 CRI 30Q, 3000 K, 90 CRI 30U, 3000 K, 90 CRI

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 9

ELECTRICAL CHARACTERISTICS

The following graphs are the result of a series of steady-state measurements. 15.5 16.0 16.5 17.0 17.5 18.0 18.5 19.0 19.5 20.0 150 300 450 600 750 900 1050 1200 Voltage (V) Current (mA) Tc = 25 °C Tc = 55 °C Tc = 85 °C Tc = 105 °C 18 V 75 150 225 300 375 450 525 600 Voltage (V) Current (mA) Tc = 25 °C Tc = 55 °C Tc = 85 °C Tc = 105 °C 36 V

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 10 RELATIVE LUMINOUS FLUX The relative luminous flux values provided below are the ratio of:

  • Measurements of the CHA0612 Pro9 LED at steady-state operation at the given conditions, divided by
  • Flux measured during binning, which is a pulsed measurement at 700 mA at TJ = 85 °C for the 18-V CHA0612 Pro9 LED. Using the 18-V CHA0612 Pro9 LED as an example, at steady-state operation of Tc = 55 °C, IF = 900 mA, the relative luminous flux ratio is 125% in the chart below. A CHA0612 Pro9 LED that measures 1501 lm during binning will deliver 1876 lm (1501 * 1.25) at steady-state operation of Tc = 55 °C, IF = 900 mA. 25% 50% 75% 100% 125% 150% 175% 150 300 450 600 750 900 1050 1200 Relative Luminous Flux Current (mA) Tc = 25 °C Tc = 55 °C Tc = 85 °C Tc = 105 °C 18 V

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 11 RELATIVE LUMINOUS FLUX - CONTINUED The relative luminous flux values provided below are the ratio of:

  • Measurements of the CHA0612 Pro9 LED at steady-state operation at the given conditions, divided by
  • Flux measured during binning, which is a pulsed measurement at 350 mA at TJ = 85 °C for the 36-V CHA0612 Pro9 LED. Using the 36-V CHA0612 Pro9 LED as an example, at steady-state operation of Tc = 55 °C, IF = 450 mA, the relative luminous flux ratio is 125% in the chart below. A CHA0612 Pro9 LED that measures 1501 lm during binning will deliver 1876 lm (1501 * 1.25) at steady-state operation of Tc = 55 °C, IF = 450 mA. TYPICAL SPATIAL DISTRIBUTION 25% 50% 75% 100% 125% 150% 175% 75 150 225 300 375 450 525 600 Relative Luminous Flux Current (mA) Tc = 25 °C Tc = 55 °C Tc = 85 °C Tc = 105 °C 36 V Far Field 20% 40% 60% 80% 100% -90 -70 -50 -30 -10 10 30 50 70 90 Relative Luminous Intensity Angle (º)

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 12 EASYWHITE ® PERFORMANCE GROUPS - CHROMATICITY (T J = 85 °C) XLamp CHA0612 Pro9 LEDs are tested for chromaticity and placed into one of the regions defined by the following bounding coordinates. EasyWhite Color Temperatures – 2-Step Code CCT x y 40H 4000 K 0.3777 0.3739 0.3797 0.3816 0.3861 0.3855 0.3838 0.3777 35H 3500 K 0.4022 0.3858 0.4053 0.3942 0.4125 0.3977 0.4091 0.3891 30H 3000 K 0.4287 0.3975 0.4328 0.4064 0.4390 0.4086 0.4347 0.3996 27H 2700 K 0.4524 0.4048 0.4574 0.4140 0.4633 0.4154 0.4581 0.4062 EasyWhite Color Temperatures – 3-Step Ellipse Bin Code CCT Center Point Major Axis Minor Axis Rotation Angle (°)x y a b

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 13 PREMIUM COLOR PERFORMANCE GROUPS - CHROMATICITY (T J = 85 °C) XLamp CHA0612 Pro9 LEDs are tested for chromaticity and placed into one of the regions defined by the following bounding coordinates. Specialty EasyWhite Color Temperatures – 3-Step Ellipse Bin Code CCT Center Point Major Axis Minor Axis Rotation Angle (°)x y a b

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 14 EASYWHITE ® BINS PLOTTED ON THE 1931 CIE COLOR SPACE (T J = 85 °C) 2700 K 3000 K 3500 K 4000 K 4500 K 5000 K 5700 K 6500 K 7000K 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 0.29 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 CCy CCx ANSI C78.377 Quadrangle EasyWhite 3-step EasyWhite 2-step

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 15 PREMIUM COLOR BINS PLOTTED ON THE 1931 CIE COLOR SPACE (T J = 85 °C) Specialty (3-step) 3000K 3500K 30Q 30U 31Q 0.37 0.38 0.39 0.40 0.41 0.42 0.43 0.44 0.41 0.42 0.43 0.44 0.45 0.46 CCy CCx ANSI C78.377 Quadrangle

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 16 BIN AND ORDER CODE FORMATS Bin codes and order codes are configured as follows: Order Code Bin Code SSSSSCC-HHHH-HHEGGRNNNNN Series = CHA06 Internal code Version P = Pro9 CRI Specification U = 90 CRI minimum Z = 95 CRI minimum Kit code Vf class F0 = 18-V class N0 = 36-V class Performance class SSSSSCC-WWW-FF-GGR-EAAAA Series = CHA06 Chromaticity bin Vf class F0 = 18-V class N0 = 36-V class Version P = Pro9 Internal code CRI Specification U = 90 CRI minimum Z = 95 CRI minimum Flux bin 0A = Not binned into flux bins Performance class order code and bin code headings and diagrams are in a table

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 17 MECHANICAL DIMENSIONS Dimensions are in mm. Tolerances unless otherwise specified: ±.13 x° ± 1° Meaning of LED marking A0612F = 18-V CHA0612 Pro9 A0612N = 36-V CHA0612 Pro9 P-X1 X2 X3 X4 X5 X1 CCT 5 = 4000 K 6 = 3500 K 7 = 3000 K 8 = 2700 K M = EasyWhite LED on the black-body line Q = Specialty LED below the black-body line U = Specialty LED below the black-body line Flux bin 0A = Not binned into flux bins X5 CRI U = 90 CRI min Z = 95 CRI min Tc measurement point: either the anode or cathode solder pad 0.6 ±0.1 0.9 ±0.1 OPTICAL MODEL ORIGIN 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0410N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0612N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0304F 19.009819.013118.9969 P-XXXXX R2.00 A0825N Ø10.3 ±0.3 19.009819.013118.9969 19.0 ±0.2 19.0 ±0.2 7.05 7.05 1.6 3.2 1.6 3.2 5.5 5.5 5.0 ±0.2 5.0 ±0.2 4.2 ± 0.5 4.2 ±0.5 5.0 ±0.2 5.0 ±0.2 6.9 ±0.5 6.9 ±0.5 OPTICAL MODEL ORIGIN Ø8.5 ±0.2 OPTICAL MODEL ORIGIN Ø6.0 ±0.2 Ø7.8 ±0.3 Ø4.2 ±0.2 Ø5.8 ±0.3 OPTICAL MODEL ORIGIN OPTICAL MODEL ORIGIN Ø3.3 ±0.2 Ø4.9 ±0.3 0.6 ±0.1 0.9 ±0.1 OPTICAL MODEL ORIGIN 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0410N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0612N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0304F 19.009819.013118.9969 P-XXXXX R2.00 A0825N Ø10.3 ±0.3 19.009819.013118.9969 19.0 ±0.2 19.0 ±0.2 7.05 7.05 1.6 3.2 1.6 3.2 5.5 5.5 5.0 ±0.2 5.0 ±0.2 4.2 ± 0.5 4.2 ±0.5 5.0 ±0.2 5.0 ±0.2 6.9 ±0.5 6.9 ±0.5 OPTICAL MODEL ORIGIN Ø8.5 ±0.2 OPTICAL MODEL ORIGIN Ø6.0 ±0.2 Ø7.8 ±0.3 Ø4.2 ±0.2 Ø5.8 ±0.3 OPTICAL MODEL ORIGIN OPTICAL MODEL ORIGIN Ø3.3 ±0.2 Ø4.9 ±0.3 0.6 ±0.1 0.9 ±0.1 OPTICAL MODEL ORIGIN 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0410N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0612N 13.5 ±0.2 13.5 ±0.2 R2.00 R0.3 4.00 4.00 4.00 4.00 1.9 1.9 1.9 1.9 R0.3 P-XXXXX A0304F 19.009819.013118.9969 P-XXXXX R2.00 A0825N Ø10.3 ±0.3 19.009819.013118.9969 19.0 ±0.2 19.0 ±0.2 7.05 7.05 1.6 3.2 1.6 3.2 5.5 5.5 5.0 ±0.2 5.0 ±0.2 4.2 ± 0.5 4.2 ±0.5 5.0 ±0.2 5.0 ±0.2 6.9 ±0.5 6.9 ±0.5 OPTICAL MODEL ORIGIN Ø8.5 ±0.2 OPTICAL MODEL ORIGIN Ø6.0 ±0.2 Ø7.8 ±0.3 Ø4.2 ±0.2 Ø5.8 ±0.3 OPTICAL MODEL ORIGIN OPTICAL MODEL ORIGIN Ø3.3 ±0.2 Ø4.9 ±0.3 To assist in identifying the LED, CHA0612 Pro9 LEDs provide a 2D barcode, positioned on the back of the LED, as shown in the following diagram. For a complete description of the bar code format, please refer to the XLamp CHA Family LEDs soldering and handling document.

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 18 THERMAL DESIGN The CHA family of LED arrays can include over a hundred different LED die inside one package, and thus over a hundred different junction temperatures (TJ). Cree LED has intentionally removed junction-temperature-based operating limits and replaced the commonplace maximum TJ calculations with maximum ratings based on forward current (I F) and case temperature (Tc). No additional calculations are required to ensure the CHA LED is being operated within its designed limits. LES temperature measurement provides additional verification of good thermal design. Please refer to page 4 for the Operating Limits specification. There is no need to calculate for TJ inside the package, as the thermal management design process, specifically from solder point (TSP) to ambient (Ta), remains identical to any other LED component. For more information on thermal management of XLamp LEDs, please refer to the Thermal Management application note. For CHA soldering recommendations and more information on thermal interface materials (TIM), LES temperature measurement, and connection methods, please refer to the XLamp CHA Family LEDs soldering and handling document. To keep the CHA0612 Pro9 LED at or below the maximum rated Tc, the case to ambient temperature thermal resistance (R_c-a) must be at or below the maximum R_c-a value shown on the following graphs, depending on the operating environment. The y-axis in the graphs is a base 10 logarithmic scale. As the figure at right shows, the R_c-a value is the sum of the thermal resistance of the TIM (R_tim) plus the thermal resistance of the heat sink (R_hs). R_j-c Tc R_tim R_hs Ta R_j-c Tc R_c-a Ta CHA0612 18V Pro9 0.01 0.10 1.00 10.00 100.00 150 300 450 600 750 900 1050 1200 Maximum R_c-a Current (mA) Ta = 25 °C Ta = 55 °C Ta = 85 °C 18 V

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 19 THERMAL DESIGN - CONTINUEDCHA0612 36V Pro9 0.01 0.10 1.00 10.00 100.00 75 150 225 300 375 450 525 600 Maximum R_c-a Current (mA) Ta = 25 °C Ta = 55 °C Ta = 85 °C 36 V

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 20 NOTES LED Use This LED may be used for general indoor and outdoor commercial lighting applications. Use of this LED in medical equipment, airfields, runways, aircraft, stage studios applications, information displays utilizing LCD Backlights and other emissive pixel display technology, or products intended for sale for residential end-use applications is prohibited (“Use Restrictions”). Purchaser of this LED must inform its downstream customers of the aforementioned Use Restrictions. If purchaser and/or customer of purchaser breaches the use restriction (“Breaching Party”), Cree LED must be timely notified of the breach and the Breaching Party must take reasonable measures to terminate the breach. Failure to timely cure such breach may result in Cree LED halting supply of LEDs to the breaching party. 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 CHA0612 Pro9 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. 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.

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 21 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.

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 22 PACKAGING CHA0612 Pro9 LEDs are packaged in trays of 80. Five trays are sealed in an anti-static bag and placed inside an inner box, for a total of 400 LEDs per box. Each box contains LEDs from the same performance bin. Eight boxes are placed inside a carton, for a total of 3,200 LEDs per carton. Load Tray Upper Tray Dimensions are in mm. Tolerances: ± 0.5 mm

XLAMP ® CHA0612 PRO9 ™ LED © 2023 Cree LED. The information in this document is subject to change without notice. Cree ®, the Cree logo, XLamp®, EasyWhite®, and the Cree LED logo are registered trademarks, and Pro9 is a trademark, of Cree LED. UL® and the UL logo are registered trademarks of UL LLC. CLD-DS310 REV 1 23 PACKAGING - CONTINUED CHA0612 Pro9 LEDs are packaged in trays of 80. Five trays are sealed in an anti-static bag and placed inside an inner box, for a total of 400 LEDs per box. Each box contains LEDs from the same performance bin. Eight boxes are placed inside a carton, for a total of 3,200 LEDs per carton. Inner Box Outer Carton Dimensions are in mm. Tolerances: ± 3 mm CREE CONFIDENTIAL & PROPRIETARY © 2018 Cree, Inc. All rights reserved. Cree®, the Cree logo, Wolfspeed®, and the Wolfspeed logo are registered trademarks of Cree, Inc.

  • Inner Box – Units in mm – All tolerances are +/- 3mm Inner Box Dimensions CREE CONFIDENTIAL & PROPRIETARY © 2018 Cree, Inc. All rights reserved. Cree®, the Cree logo, Wolfspeed®, and the Wolfspeed logo are registered trademarks of Cree, Inc.
  • Inner Box – Units in mm – All tolerances are +/- 3mm Inner Box Dimensions 260 mm 260 mm50 mm CREE CONFIDENTIAL & PROPRIETARY © 2018 Cree, Inc. All rights reserved. Cree®, the Cree logo, Wolfspeed®, and the Wolfspeed logo are registered trademarks of Cree, Inc.
  • Inner Box – Units in mm – All tolerances are +/- 3mm Inner Box Dimensions CREE CONFIDENTIAL & PROPRIETARY © 2018 Cree, Inc. All rights reserved. Cree®, the Cree logo, Wolfspeed®, and the Wolfspeed logo are registered trademarks of Cree, Inc.
  • Outer Box – Units in mm – All tolerances are +/- 3mm Outer Box Dimension FLO Outer Box Inner boxes (8 pcs) Outer carton (L) 610 mm* (W) 310 mm* (H) 250 mm