SBT-90-R LUMINUS | Alldatasheet

Document overview

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Technical content

Applications

  • Fiber-coupled illumination
  • Architectural and Entertainment lighting
  • Projection and micro-display based
  • High-Brightness and large format LCD back-light units
  • Edge-illuminated lighting guides
  • High output, Etendue-limited lighting applications Features:
  • Extremely high optical output from a 9 mm2 square emitter:
  • Up to 2300 lumens at 13.5 A from a single chip (White)
  • Over 1,600 lumens at 13.5 A (Red)
  • Choice of 5700K or 6500K color point
  • High thermal conductivity package - junction to case thermal resistance of only 0.5°C/W
  • Large, monolithic chip with uniform emitting area of 9 mm2
  • Unencapsulated die with low profile protective window optimizes optical coupling in etendue-limited applications
  • Electrically isolated thermal path
  • Environmentally friendly: RoHS compliant Table of Contents Chromaticity Binning Output vs Temp ,Lifetime and Mechanical Dimensions .. 11 PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved

1145 Sonora Court • Sunnyvale, CA 94086

SBT-90-R/W Product Datasheet

Luminus surface mount LEDs are typically tested with a 20 msec input pulse and a junction temperature of 25°C. Expected flux values in real world operation can be extrapolated based on the information contained within this product data sheet. Multiple Operating Points The tables on the following pages provide typical optical and electrical characteristics. Since the LEDs can be operated over a wide range of drive conditions (currents from less than 1 A to

13.5 A, and duty cycle from <1% to 100%), multiple drive

are listed. SBT-90 White LEDs are production tested at 9.0 A. The values shown at other current conditions are for additional reference at other possible drive conditions. SBT-90 Red LEDs are productions tested of 13.5 A Understanding Luminus LED Test Specifications Every Luminus LED is fully tested to ensure that it meets the high quality standards expected from Luminus’ products. PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved Luminus’ technology enables large area LED chips with uniform brightness over the entire LED chip surface. The optical power and brightness produced by these large monolithic chips enable solutions which replace arc and halogen lamps where arrays of traditional high power LEDs cannot. Packaging Technology Thermal management is critical in high power LED applications. With a thermal resistance from junction to heat sink of 0.5º C/W, Luminus SBT-90 LEDs have the lowest thermal resistance of any LED on the market. This allows the LED to be driven at higher current densities while maintaining a low junction temperature, thereby resulting in brighter solutions and longer lifetimes. Reliability Designed from the ground up, Luminus LEDs are one of the most reliable light sources in the world today. They have passed a rigorous suite of environmental and mechanical stress tests, including mechanical shock, vibration, temperature cycling and humidity, and have been fully qualified for use in extreme high power and high current applications. With very low failure rates and median lifetimes that typically exceed 60,000 hours, Luminus LEDs are ready for even the most demanding applications. Environmental Benefits Luminus LEDs White help reduce power consumption and the amount of hazardous waste entering the environment. All Luminus LED products manufactured by Luminus are RoHS compliant and free of hazardous materials, including lead and mercury. Technology Overview Luminus LED benefit from a suite of innovations in the fields of chip technology, packaging and thermal management. These breakthroughs allow illumination engineers and designers to achieve solutions that are high brightness and high efficiency. SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved Product Family Chip Area Color Package Configuration Flux Bin Chromaticity Bin Surface Mount (window) 9.0 mm2 W: White <xx> Color Temperature 57: 5700K 65: 6500K <y> CRI Category Code S: CRI>65 Internal Code See page 3 for bins See page 3 for bins SBT 90 W<xxy> F71 FF WW

Ordering Information

All SBT-90 products are packaged and labeled with their respective bin as outlined in the tables on pages 3 & 4. When shipped, each package will only contain one bin. The part number designation is as follows: SBT 90 R F75 FF WW Product Family Chip Area Color Package Configuration Flux Bin Wavelength Bin Surface Mount (window) 9.0 mm2 R: Red Internal Code See bins page See bins page Example: The part number SBT-90-R-F75-BK-R4 refers to a red part, with a flux range of 600 - 770 lumens and a wavelength range of 619 nm to 623 nm. SBT-90-R/W Product Datasheet SBT-90-White SBT-90-Red Note 1: NA100 - denotes a bin kit comprising of all flux bins with a minimum flux of 1,590 lumens and chromaticity bins at the 6500K color point. Note 2: For ordering information on all available bin kits, please see PDS-001788: SBT-90 Binning & Labeling document. Note 3: Some flux and chromaticity bins may have limited availability. Application specific bin kits, consisting of multiple bins, may be available. Ordering Part Number 1,2 Color Description SBT-90-W57S-F71-NA100 5700K White White SBT-90 consisting of a 9mm2 LED on ceramic substrate SBT-90-W65S-F71-NA100 6500K White SBR-90-W57S-R71-NA100 5700K White SBR-90 evaluation module consisting of a SBT-90 surface mount device mounted on an aluminum star boardSBR-90-W65S-R71-NA100 6500K White Ordering Part Number 2 Color Description SBT-90-R-F75-HN100 Red Red SBT-90 consisting of a 9 mm2 LED on a ceramic substrate SBR-90-R-R75-HN100 Red SBR-90 evaluation module consisting of a SBT-90 surface mount device mounted on an aluminum star board

PDS-001540 Rev 16 © 2020 Luminus Devices, Inc. - All Rights Reserved SBT-90 LEDs are tested for luminous flux and chromaticity of the drive current specified below and placed into one of the following luminous flux (FF) and chromaticity (WW) bins: Chromaticity Bins Luminus’ Standard Chromaticity Bins: 1931 CIE Curve Red Flux Bin (FF) Minimum Flux (lm) @ 13.5 A Maximum Flux (lm) @ 13.5 A BM 770 970 BN 970 1150 BP 1150 1350 BQ 1350 1570 BR 1570 1850 BS 1850 2170 Color Wavelength Bin (WW) Minimum Wavelength @ 13.5 A Maximum Wavelength @ 13.5 A Red R3 615 619 R4 619 623 R5 623 627 *Note: Luminus maintains a +/- 6% tolerance on flux measurements. Luminus maintains a +/- 2% tolerance on CRI measurements. SBT-90-R/W Product Datasheet Color Flux Bin (FF) Minimum Flux (lm) @ 9.0 A Maximum Flux (lm) @ 9.0 A W57S / W65S 5700K / 6500K, Standard CRI (typ. 70) NA 1,590 1,710 NB 1,710 1,830 PA 1830 1966 PB 1966 2100 QA 2100 2260 QB 2260 2420 RA 2420 2600

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved *Sub-bins within ANSI defined quadrangles per ANSI C78.377-2008 5700K Chromaticity Bins Bin Code (WW) CIEx CIEy DJ 0.322 0.324 0.337 0.337 0.336 0.326 0.323 0.314 H3* 0.321 0.335 0.329 0.342 0.329 0.331 0.322 0.324 H4* 0.321 0.346 0.329 0.354 0.329 0.342 0.321 0.335 J3* 0.329 0.342 0.337 0.349 0.337 0.337 0.330 0.331 J4* 0.329 0.354 0.338 0.362 0.337 0.349 0.329 0.342 EH 0.320 0.352 0.338 0.368 0.338 0.362 0.321 0.346 SBT-90-R/W Product Datasheet 6500K Chromaticity Bins Bin Code (WW) CIEx CIEy DG 0.307 0.311 0.322 0.326 0.323 0.316 0.309 0.302 F3* 0.305 0.321 0.313 0.329 0.315 0.319 0.307 0.311 F4* 0.303 0.330 0.312 0.339 0.313 0.329 0.305 0.321 G3* 0.313 0.329 0.321 0.337 0.322 0.326 0.315 0.319 G4* 0.312 0.339 0.321 0.348 0.321 0.337 0.313 0.329 EF 0.302 0.335 0.320 0.354 0.321 0.348 0.303 0.330 DE 0.283 0.304 0.303 0.330 0.307 0.311 0.289 0.293 DF 0.289 0.293 0.307 0.311 0.309 0.302 0.293 0.285 Chromaticity Binning Coordinates The following tables describe the four chromaticity points that bound each chromaticity bin. Chromaticity bins are grouped together based on the color temperature.

Drive Condition2 9.0 A Parameter Symbol Values at Test Currents Unit Current Density j 1.0 A/mm2 Forward Voltage VF 3.5 V Note 1: All ratings are based on operation at room temperature. Note 2: Listed drive conditions are typical for common applications. SBT-90 devices can be driven at currents ranging from 1 A to 13.5 A and at duty cycles ranging from 1% to 100%. Drive current and duty cycle should be adjusted as necessary to maintain the junction temperature desired to meet application lifetime requirements. Note 3: Forward voltage temperature coefficient at current density of 1 A/mm2 and heat sink temperature of 40°C. Contact Luminus for value at other drive conditions. Note 4: Luminus SBT-90 LEDs are designed for operation to an absolute maximum forward drive current density of 1.5 A/mm2. Product lifetime data is specified at recommended forward drive currents. Sustained operation at absolute maximum currents will result in a reduction of device lifetime compared to recommended forward drive currents. Actual device lifetimes will also depend on junction temperature. Refer to the lifetime derating curves for further information. In pulsed operation, rise time from 10-90% of forward current should be larger than 0.5 microseconds. Note 5: Lifetime is dependent on LED junction temperature . Thermal calculations based on input power and thermal management system should be performed to ensure Tj is maintained below Tj-max rating or life will be reduced. Refer to lifetime plots on page 9 and lifetime and reliability application note for further information. Absolute Maximum Ratings Parameter Symbol White Red Unit Absolute Minimum Operating Current 0.2 0.2 A Maximum Current4 13.5 13.5 A Maximum Junction Temperature5 Tj-max 150 125 °C Storage Temperature Range -40/+100 -40/+100 °C Common Characteristics Parameter Symbol White Red Unit Emitting Area 9.0 9.0 mm2 Emitting Area Dimensions 3 x 3 3 x 3 mm Forward Voltage Temperature Coefficient3 -2.45 -1.3 mV/C Thermal Coefficient of Photometric Flux -0.96 %/C Device Characteristics - SBT-90-W1 PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved Device Characteristics - SBT-90-R Red Drive Condition2 13.5 A Parameter Symbol Values3 Unit Current Density j 1.5 A/mm2 Forward Voltage VF min 2.3 V VF 2.7 V VF max 3.6 V Luminous Flux4 ΦV typ 1350 lm Dominant Wavelength5 λd 620 nm FWHM Δλ1/2 18 nm Chromaticity Coordinates6,7 x 0.695 - y 0.305 - Relative Luminous Flux vs. Forward Current1 Forward Current vs. Forward Voltage Note 1: All ratings are based on a junction test temperature Tj = 25°C. See Thermal Resistance section for Tj definition. Note 2: Listed drive conditions are typical for common applications. SBT-90 devices can be driven at currents ranging from <1 A to 13.5 A and at duty cycles ranging from 1% to 100%. Drive current and duty cycle should be adjusted as necessary to maintain the junction temperature desired to meet application lifetime requirements. Note 3: Unless otherwise noted, values listed are typical. Devices are production tested and specified at 13.5 A. Other values are for reference only. Note 4: Total flux from emitting area at listed dominant wavelength. Reported performance is included to show trends for a selected power level. For specific minimum and maximum values, use bin tables. For product roadmap and future performance of devices, contact Luminus. Note 5: Minimum and Maximum Dominant Wavelengths are based on typical values +/- 5nm for Red. Note 6: In CIE 1931 chromaticity diagram coordinates, normalized to X+Y+Z=1. Note 7: For reference only. SBT-90-R/W Product Datasheet

Note 1: Yellow squares indicate typical operating conditions. Note 2: Median expected lifetime in dependence of junction temperature at 0.35 A/mm2 in continuous operation. Lifetime defined as time to 70% of initial intensity. Based on lifetime test data of uncoated GaN devices at this time. Data can be used to model failure rate over typical product lifetime (contact Luminus for lifetime reliability test data for 1 A/mm2 condition). Note 3: Lumen maintenance in dependence of time at 0.35 A/mm2 in continuous operation with junction temperatures of 100°C. Lumen maintenance calculation doesn’t consider open and short circuit failure modes into account. Note 4: Typical spectrum at current density of 0.35 A/mm2 in continuous operation. PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved SBT-90-W Optical Characteristics SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved Typical Radiation Patterns Thermal Resistance Typical Thermal Resistance : Rj-c 1 0.5°C/W Rj-b 1 1.2°C/W Rj-hs 2 1.4°C/W Note 1: Thermal resistance values are based on FEA model results correlated to measured Rθj-hs data. Note 2: Thermal resistance is measured using a SAC305 solder, a Bergquist Al-clad MCPCB, and eGraf 1205 thermal interface material. Typical Polar Radiation Pattern for White Typical Angular Radiation Pattern for White SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved SBT-90-R Output vs. Temp., Lifetime and Spectrum Note 1. Median lifetime estimate as a function of junction temperature at 1.5 A/mm2 in continuous operation. Lifetime defined as time to 70% of initial intensity. Based on preliminary lifetime test data. Data can be used to model failure rate over typical product lifetime. Note 2. Lumen maintenance vs. time at 1.5 A/mm2 in continuous operation, junction temperature equal to 25°C. Note 3. Typical spectrum at current density of 1.5 A/mm2 in continuous operation. Median Lifetime Estimate vs. Tj1 Lumen Maintenance2 Typical Spectrum 3 Angular Distribution SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved Mechanical Dimensions – SBT-90 Emitter SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved

1145 Sonora Court • Sunnyvale, CA 94086 1145 Sonora Court

Mechanical Dimensions – SBT-90 Star Board Note 1: Tolerances per IPC-610, Class 2 Note 2: For detail drawing of SBT-90, please see DWG-001553 Note 3: Recommended mounting screw: M3 or #4 Note 4: All dimensions in millimeters Note 5: All anode pads on board are interconnected. All cathode pads on board are interconnected SBT-90-R/W Product Datasheet

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved SBT-90-R/W Product Datasheet Note 1: Product complies to Moisture Sensitivity Level 1 (MSL 1). Note 2: The numbers in the table are specific to SAC305. Luminus recommends using an SAC305 solder paste with a no-clean flux for RoHS compliant products. Note 3: During the pick and place process, axial forces on the dome (or window) should not exceed 0.5 Newtons (N). Note 4: Use of a multi-zone IR reflow oven with a nitrogen blanket is recommended. Note 5: Time-temperature profile of the reflow process showing the four functional profile zones are defined in IPC-7801. Temperature is referenced to the center of the PCB. Note 6: Luminus recommends to use the solder paste data sheet information as a starting point in time-temperature process development. Note 7: Vapor phase soldering is not recommended as the package is not hermetic. Note 8: These are general guidelines. Consult the solder paste manufacturer’s datasheet for guidelines specific to the alloy and flux combination used in your application. For more information, please refer to: https://luminusdevices.zendesk.com/hc/en-us/articles/360060306692-How-do-I-Reflow-Solder-Luminus-SMD-Components- Note 9: For any technical questions about soldering process, please contact Luminus at techsupport@luminus.com. SMT Rework Guideline Manual Hotplate Reflow Hot Air Gun Reflow Heating Time < 60 sec Hotplate Temperature < 245°C < 150°C Temperature Time Preheat RT to 150°C 1 - 2.5°C/sec Soak 150°C to 180°C 0.4 - 1°C/sec Reflow 180 to TL + 20°C 3 - 6°C/sec Cool down Peak to below 150°C 3 - 7°C/sec Liquidus Temperature, TL (SAC305 = 220°C) Peak Temperature (235 - 245°C) Time Above Liquidus (45 - 90 sec) 65 -> 200°C, 120 - 250 sec max

Revision History

PDS-001540 Rev 17 © 2022 Luminus Devices, Inc. - All Rights Reserved SBT-90-R/W Product Datasheet Rev Date Description of Change 17 12/20/2022

  • Added flux bin BS bin
  • Updated Soldering Profile