CBM-160X-UV LUMINUS | Alldatasheet

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Optical & Electrical Mechanical Dimensions . . 10 Shipping Tray Outline . . . . 11 CBM-160X-UV Ultraviolet Chip On Board LED PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved

1145 Sonora Court, Sunnyvale, CA 94086 USA

  • 3D printing and Additive Manufacturing
  • Machine Vision
  • Maskless Lithography
  • Curing
  • Inks
  • Coatings
  • Adhesives
  • Medical and Scientific Instrumentation Features:
  • Mosaic Array UV LED chipset with surface emitting area of 16 mm2, 4:3 aspect ratio
  • Latest UVX technology enables ultra-high power density operation up to 4 A/mm2
  • Electrically Isolated, high thermal conductivity copper coreboard package
  • Available in wide range of UVA wavelengths: 365 nm - 410 nm
  • Low-profile window for efficient coupling into small-etendue systems
  • Environmentally friendly: REACH, RoHS and Halogen compliant
  • Over 60 Watts of optical power at maximum rated drive conditions CBM-160X-UV Product Datasheet Applications:

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Binning Structure CBM-160X-UV LEDs are specified for flux and peak wavelength at a drive current of 3 A with a 20 ms pulse at 25°C and placed into one of the following Power Bins and Wavelength Bins . Flux Bins Color Flux Bin (FF) Binning @ 3A, 20ms pulse, Tc= 25°C3 Minimum Flux (W) Maximum Flux (W) UV Q 17.7 19.5 R 19.5 21 .0 S 21.0 22 .5 T 22.5 24 .0 U 24.0 25 .1 Peak Wavelength Bins Color Wavelength Bin (WWW) Binning @ 3A, 20ms pulse, Tc= 25°C3 Minimum Wavelength (nm) Maximum Wavelength (nm) UV 365 365 370 370 370 375 380 380 385 385 385 390 400 400 405 405 405 410 Note 1: Luminus maintains a +/- 6% tolerance on flux measurements . Note 2: Products are production tested then sorted and packed by bin . Note 3: Ratings are based on operation at a constant temperature of Tc = 25 °C . Note 4: Luminus maintains a +/- 1nm tolerance on wavelength measurements .

Ordering Information

Product Ordering Part Number Description CBM-160X-UV CBM-160X-UV-Y32-FWWW-2# CBM-160X-UV Mosaic Array chipset consisting of 12 UV chips, a thermistor, and a connector on a copper-core PCB . Note 1: A Bin Kit represents a group of flux and wavelength bins that are shippable for a given ordering part number . Individual bins are not always orderable-contact Luminus for special requests . Note 2: Flux Bin listed is minimum bin shipped - higher bins may be included at Luminus’ discretion Part Number Nomenclature Product Family Chip Area Color Package Configuration Bin Kit CBM: Copper-core PCB, Mosiac Array 160X:16 mm2 UV: Ultraviolet Y32: 32 mm x 32 mm See Mechanical Drawing section See ordering part numbers table below for complete bin definition CBM 160X UV Y32 FWWW-2# CBM-160X-UV Product Datasheet PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Ordering Part Numbers Wavelength Range Radiometric Flux Wavelength Bins Ordering Part Number1,2 Min . Flux Bin Min . Flux (W) 365-375 Q 17 .7 365, 370 CBM-160X-UV-Y32-Q365-22 380-390 Q 17 .7 380, 385 CBM-160X-UV-Y32-Q380-22 400-410 Q 17 .7 400, 405 CBM-160X-UV-Y32-Q400-22

Typical Device Performance (Tc = 25°C) Parameter Symbol Value Unit Peak Wavelength Range λ 365-375 380-390 400-410 nm Test Current for binning 3 I 3 .0 3 .0 3 .0 A Peak Wavelength Typ . λp 365 385 405 nm Forward Voltage VF min 12 .8 12 .4 12 .8 V VF 14 .8 13 .8 14 .8 V VF max 17.0 16.4 16.8 V Radiometric Flux 4 Φtyp 21.6 19.2 18.0 W FWHM at 50% of Φ Δλ1/2 15 15 15 nm Parameter Symbol Value Unit Absolute Minimum Current (CW or Pulsed) 5 Imin 0 .6 A Absolute Maximum Current (CW) 6 for 365-375 nm Imax 7 .5 A Absolute Maximum Current (CW) 6 for 385-405 nm Imax 12 A Absolute Maximum Surge Current 6 for 365-375 nm Is 11 .25 A Absolute Maximum Surge Current 6 for 385-405 nm Is 18 A Maximum Junction Temperature 6 Tjmax 125 °C Storage Temperature Range T s -40 to +100 °C ESD Sensitivity (HBM) Vb 8 kV Note 3: Unless otherwise noted, values listed are typical. Devices are production tested and specified at 3 A with a 20 ms pulse at 25°C. Note 4: Typical radiometric flux is for reference only. Minimum flux values are guaranteed based on the bin kit ordered. For product roadmap and future performance of devices, contact Luminus. Note 5: Special design considerations must be observed for operation under 1 A. Please contact Luminus for further information. Note 6: CBM-160X-UV LEDs are designed for operation to an absolute maximum current as specified above. Product lifetime data is specified at or below maximum drive current. Sustained operation beyond absolute maximum currents will result in a reduction of device life time . Actual device lifetimes will also depend on junction temperature and operation beyond maximum junction temperature is not recommended. Contact Luminus for lifetime derating curves and for further information. PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Absolute Maximum Ratings

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Relative Radiometric Flux vs. Forward Current Relative Radiometric Flux vs. Forward Current φ/φ(3A), 20ms pulse, Tc = 25°C Optical & Electrical Characteristics - 365 nm Relative Relative Radiometric Flux Radiometric Flux vs. Temperature vs. Temperature φ/φ(25°C), 20ms pulse, If = 3A Forward Voltage Shift Forward Voltage Shift vs. Forward Currentvs. Forward Current ΔVf = Vf (Tc) - Vf (3A), 20 ms pulse, Tc = 25°C Forward VForward Voltage Shift oltage Shift vs. Temperaturevs. Temperature ΔVf = Vf (Tc) - Vf (25°C), 20 ms pulse, If = 3A Peak Wavelength Shift Peak Wavelength Shift vs. Forward Current vs. Forward Current Δλp= λp(IF) - λp(3A), 20ms pulse, Tc = 25°C Peak WavelengthPeak Wavelength Shift Shift vs. Temperaturevs. Temperature Δλp= λp(Tc) - λp(25°C), 20ms pulse, If = 3A CBM-160X-UV Product Datasheet

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Relative Radiometric Flux vs. Forward Current Relative Radiometric Flux vs. Forward Current φ/φ(3A), 20ms pulse, Tc = 25°C Optical & Electrical Characteristics - 385 nm Relative Relative Radiometric Flux Radiometric Flux vs. Temperature vs. Temperature φ/φ(25°C), 20ms pulse, If = 3A Forward Voltage Shift Forward Voltage Shift vs. Forward Currentvs. Forward Current ΔVf = Vf (Tc) - Vf (3A), 20 ms pulse, Tc = 25°C Forward VForward Voltage Shift oltage Shift vs. Temperaturevs. Temperature ΔVf = Vf (Tc) - Vf (25°C), 20 ms pulse, If = 3A Peak Wavelength Shift Peak Wavelength Shift vs. Forward Current vs. Forward Current Δλp= λp(IF) - λp(3A), 20ms pulse, Tc = 25°C Peak WavelengthPeak Wavelength Shift Shift vs. Temperaturevs. Temperature Δλp= λp(Tc) - λp(25°C), 20ms pulse, If = 3A CBM-160X-UV Product Datasheet

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Relative Radiometric Flux vs. Forward Current Relative Radiometric Flux vs. Forward Current φ/φ(3A), 20ms pulse, Tc = 25°C Optical & Electrical Characteristics - 405 nm Relative Relative Radiometric Flux Radiometric Flux vs. Temperature vs. Temperature φ/φ(25°C), 20ms pulse, If = 3A Forward Voltage Shift Forward Voltage Shift vs. Forward Currentvs. Forward Current ΔVf = Vf (Tc) - Vf (3A), 20 ms pulse, Tc = 25°C Forward VForward Voltage Shift oltage Shift vs. Temperaturevs. Temperature ΔVf = Vf (Tc) - Vf (25°C), 20 ms pulse, If = 3A Peak Wavelength Shift Peak Wavelength Shift vs. Forward Current vs. Forward Current Δλp= λp(IF) - λp(3A), 20ms pulse, Tc = 25°C Peak WavelengthPeak Wavelength Shift Shift vs. Temperaturevs. Temperature Δλp= λp(Tc) - λp(25°C), 20ms pulse, If = 3A CBM-160X-UV Product Datasheet

Note 8 : Typical spectrum at 3 A drive current . Note 9: Detailed information on radiation pattern including ray trace files can be found at: http://www .luminus .com Typical Spectrum 8 PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved

Unit: °C/W Electrical Real Rθj-b 0.21 0 .30 Rθj-ref 0 .21 0 .30 Thermistor Information PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Important note: The CBM-160X-UV copper PCB is electrically isolated and not active. For more about calculating thermistor temperature, please see https://luminusdevices .zendesk .com/hc/en-us/articles/4412023747341-How- do-I-determine-the-temperature-from-Luminus-on-board-Thermistor- CBM-160X-UV Product Datasheet Note 1: Drive current 9A .

Mechanical Dimensions and Electrical Pin Out Connector: Tarng Yu, P/N TU1503WGR-10SD-GO-NL-A GCT P/N WTB08-021S-F Recommended Female: Tarng Yu, P/N HTQ001002-190429-01 CBM-160X-UV Product Datasheet PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Note1: The coreboards and windows of LEDs may have minor cosmetic differences, for e .g . slightly different hues, because of different supply sources . These differences are only cosmetic and do not affect form, fit or function of the LED . Note2: Back of the coreboard is electrically neutral .

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Shipping Tray Outline CBM-160X-UV Product Datasheet

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Label Fields:

  • CPN: Customer ordering part number
  • MPN: Luminus part number
  • Bin Title: Bin as defined on page 3
  • QTY: Quantity of devices in pack
  • Box ID: Package identification Shipping Label Packing Configuration:
  • Maximum stack of 5 trays per pack with 6 devices per tray
  • Partial pack or tray may be shipped
  • Each pack is enclosed in anti-static bag
  • Shipping label is placed on top of each pack CBM-160X-UV Product Datasheet

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved 1. UV Light CBM-160X-UV LEDs are short wavelength, UV LEDs . During operation, the LED emits high intensity UVA radiation, which is harmful to skin and eyes, and may cause cancer . Avoid exposure to UV light when LED is operational . 2. Static Electricity (ESD) While CBM-160X LEDs are robust in nature, they are particularly sensitive to ESD (Electrostatic Discharge) . Static electricity and surge voltages seriously damage UV LEDs and can result in complete failure of the device . Anti-electrostatic wristband or gloves are recommended when handling the LEDs . All devices, equipment and machinery must be properly grounded and precautions must be taken against surge voltages . Reference: APN-002815 Electrical Stress Damage to LEDs and How to Prevent It 3. Operating Conditions In order to ensure the correct functioning of these LEDs, compliance to maximum allowed specifications is important . UV LEDs are particularly sensitive to drive currents that exceed the max operating specifications and may be damaged by such drive curents . The use of current regulated drive circuits is strongly recommended when operating these devices . Customers should also provide adequate thermal management to ensure LEDs do not exceed maximum recommended temperatures . Operating LEDs at temperatures in excess of specification will result in damage and possibly complete failure of the device . Precautions for storage, handling and use of UV LEDs

Revision History

PDS-003119 Rev 03 © 2024 Luminus Devices, Inc. - All Rights Reserved Rev Date Description of Change 01 02/01/2023 Initial Release 02 07/17/2023 Editorial changes 03 05/20/2024 Added 365 nm The products, their specifications and other information appearing in this document are subject to change by Luminus Devices without notice . Luminus Devices assumes no liability for errors that may appear in this document, and no liability otherwise arising from the application or use of the product or information contained herein . None of the information provided herein should be considered to be a representation of the fitness or suitability of the product for any particular application or as any other form of warranty . Luminus Devices’ product warranties are limited to only such warranties as accompany a purchase contract or purchase order for such products . Nothing herein is to be construed as constituting an additional warranty . No information contained in this publication may be considered as a waiver by Luminus Devices of any intellectual property rights that Luminus Devices may have in such information . This product is protected by U .S . Patents 6,831,302; 7,074,631; 7,083,993; 7,084,434; 7,098,589; 7,105,861; 7,138,666; 7,166,870; 7,166,871; 7,170,100; 7,196,354; 7,211,831; 7,262,550; 7,274,043; 7,301,271; 7,341,880; 7,344,903; 7,345,416; 7,348,603; 7,388,233; 7,391,059 Patents Pending in the U .S . and other countries .