SlideShare una empresa de Scribd logo
1 de 12
Descargar para leer sin conexión
LED Fundamentals

Internal Thermal
Resistance of LEDs


09-07-2011
Thermal Resistance (Rth )

                                                                                        (T1  T2 )
 The thermal resistance (Rth) is defined as                                       Rth 
                                                                                            
                                                                                            Q
  where:

                           Difference between the inner temperature of the heat
    T1  T2             source (semiconductor chip) and an external constant
                           reference temperature.
                             f       t      t

               
               Q          Dissipated power


  For an LED

   The temperature of the inner heat source refers to the temperature of the active semiconductor
    zone in which the photons are generated. This is designated as the junction temperature (TJ).

   The appropriate selection of the external temperature reference point depends on the type of
    housing and the respective rate of heat dissipation. This reference point is the "solder point
    temperature" (TS).
LED Fundamentals | Internal Thermal Resistance | Page 2
Two Definitions of Thermal Resistance (Rth JS)
For LEDs t e t e a resistance from ju ct o to so de po t ( thJS) can be de ed in t o ways
 o     s the thermal es sta ce o junction solder point (R        ca     defined two ays

        Electrical thermal resistance                                  Real thermal resistance

                    Electrical Rth JS                                         Real Rth JS

                                         T                                               T
                     RJX el                                         RJX  real 
                                         Pel                                           Pel  Popt
                                                             
                                                             Q  Pel  Popt
        
        Q  Pel  VF  I F
              l                                              Q  Pel  1   LED 
                                                             
        where :
                                                             where :
        Pel  Supplied electrical power
        VF  Forward voltage
                                                             Pel  Supplied electrical power
        I F  Forward current                                Popt  Supplied optical power
                                                              LED  Optical efficiency of the LED
                                                            The OSRAM datasheets lists value of the
                                                            real thermal resistance (Rth JS) in K/W

LED Fundamentals | Internal Thermal Resistance | Page 3
Internal Thermal Resistance Rth JS
    Heat Conduction and Heat Path of LED Packages
                                              g

                               TOPLED Family                           DRAGON Family
                                                                            LED




       Conductive heat transfer through leads to          Heat spreading within the internal heat
        PCB                                                 spreader
       Thermal active and thermal inactive leads          Conductive heat transfer through heat
        and solder pads
                    p                                       spreader to PCB
       The chip is mounted on the thermal active          The heat spreader has electrical potential
        lead. The bond wire goes to the thermal
        inactive lead


LED Fundamentals | Internal Thermal Resistance | Page 4
Internal Thermal Resistance Rth JS (contd…)
    Heat Conduction and Heat Path of LED Packages
                                              g

                                                          OSLON SSL Family




                                            The chip is mounted on a thermal pad
                                            The thermal pad is electrically isolated by the
                                                           g
                                             ceramic housing
                                            Conductive heat transfer takes place though
                                             the ceramic housing and all the three pads.



LED Fundamentals | Internal Thermal Resistance | Page 5
Thermal Resistances (Rth JS ) of OSRAM LEDs

                                           150
                     sistance Rth [KW-1]




                                           125
                                hJS




                                                  120 K/W


                                           100


                                            75
      Real Thermal Res




                                            50                   40 K/W       36 K/W


                                            25
                                                                                            7 K/W      6.5 K/W      4.2 K/W

                                                             Advanced Power                                      OSRAM OSTAR-
                                                                                                                         OSTAR
                                                 DURIS E 3                    DURIS E 5   OSLON SSL   DRAGON
                                                              TOPLED Plus                                         Lighting Plus




LED Fundamentals | Internal Thermal Resistance | Page 6
Significance of Thermal Resistance Rth JS

Knowledge of the thermal resistance (Rth JS ) of an LED serves to:
        Determine the junction temperature that arises in the LED under operating conditions.


        Determine the maximum allowable external reference temperature for a given internal
         temperature and power dissipation.


        Evaluate
         E l t measures f dissipation of h t i th LED system (th
                        for di i ti    f heat in the     t   (thermal management).
                                                                    l          t)




LED Fundamentals | Internal Thermal Resistance | Page 7
Thermal Measurement
     Estimation of Junction Temperature (TJ)
                               p        (
                                                                                       LCW CP7P
                          80.00
                                                                                       If = 350 mA
                          70.00
   Te m pe ra ture (C )




                          60.00
                          60 00                                                        Vf = 3 2 V
                                                                                            3.2
                          50.00                           Solder Point Temp (C)                                Ts (measured) = 75°C
                                                                                       RthJS = 7K/W
                          40.00                           Ambient temp (C)
                          30.00                                                        ФV(25°C) = 100 lm       Ta (measured) = 20°C
                          20.00
                          10.00
                                                                                      Approximation (White LED): 100 lm ~ 320 mW =
                           0.00
                                                                                      Popt
                               0.00   50.00     100.00        150.00         200.00
                                                                                      Pel = 3 2 x 0 3 0 = 1 12 W
                                                                                            3.2 0.350 1.12
                                              Time (min)                              PD = Pel – Popt
                                                                                          = 1.12 W - 0.320 W = 0.8 W
Calculation : T  T  Rth  P
               J   S     JS  D


                                       = 75°C + 7 x 0.8 W

                                       = 81°C                            Junction Temperature Estimation at Tamb(20°C) = 81°C

LED Fundamentals | Internal Thermal Resistance | Page 8
Thermal Management System

                                         Thermal Resistance of System RthJA

     Internal           External
     Thermal Resistance Thermal Resistance

      RthJS                                               RthSB                    RthBA
        Materials                                         Substrate Technology    Housing
        Package Geometry                                  Solder Pads             Heat Sink
        Thermal Spreader                                  Thermal Vias            Air Velocit
                                                                                         Velocity




LED Fundamentals | Internal Thermal Resistance | Page 9
Disclaimer


      All information contained in this document has been checked with the greatest care.
    OSRAM Opto Semiconductors GmbH can however, not be made liable for any damage
    that occurs in connection with the use of these contents.


      OSRAM Opto Semiconductor GmbH makes no representations and warranties as to a
    possible interference with third parties' intellectual property rights in view of products
    originating from one of OSRAM Opto Semiconductor GmbH's partners, or in view of
    products being a combination of an OSRAM Opto Semiconductor GmbH's product and a
    product of one of OSRAM Opto Semiconductor GmbH's partners. Furthermore OSRAM
                                                        GmbH s partners Furthermore,
    Opto Semiconductors GmbH cannot be made liable for any damage that occurs in
    connection with the use of a product of one of OSRAM Opto Semiconductor GmbH's
    partners, or with the use of a combination of an OSRAM Opto Semiconductor GmbH's
    product and a product of one of OSRAM Opto Semiconductor GmbH's partners.




LED Fundamentals | Internal Thermal Resistance | Page 10
Disclaimer
    This document constitutes neither an offer to sell nor a solicitation to buy or subscribe
    for securities. Any such offer will be made solely on the basis of the Securities
    Prospectus yet to be approved by the German Financial Supervisory Authority
    (BaFin) and published thereafter. The information legally required to be provided to
    investors will be contained only in the S
                                            Securities Prospectus.
    The information contained herein is not for distribution, directly or indirectly, in or
    Into the United States of America (including its territories and possessions of any
    State of the United States of America or the District of Columbia) and must not be
    distributed to U.S. persons (as defined in Regulation S under the U.S. Securities Act
    of 1933, as amended ("Securities Act")) or publications with a general circulation in
    the United States of America. This document is not an offer of securities for sale in the
                          America
    United States of America. The securities have not been and will not be registered under
    the Securities Act and may not be offered or sold in the United States of America
    absent registration or an exemption from registration under the Securities Act. The
              g                     p            g
    Issuer does not intend to register any portion of the offering in the United States of
    America or to conduct a public offering of the securities in the United States of America.
    This document is not an offer of securities for sale in the United Kingdom, Canada,
    Japan or Australia.
LED Fundamentals | Internal Thermal Resistance | Page 11
Thank you for your attention.




LED Fundamentals | Internal Thermal Resistance | Page 12

Más contenido relacionado

La actualidad más candente

CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptx
CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptxCHAPTER 2 Design of Building Electrical Systems (2).pptx.pptx
CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptxLiewChiaPing
 
Electrical Heating 01 - 03
Electrical Heating 01 - 03Electrical Heating 01 - 03
Electrical Heating 01 - 03Vijay Raskar
 
Energy Efficient Intelligent LED Lighting System
Energy Efficient Intelligent  LED Lighting SystemEnergy Efficient Intelligent  LED Lighting System
Energy Efficient Intelligent LED Lighting SystemAnand Parakkat Parambil
 
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERING
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERINGELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERING
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERINGPrasant Kumar
 
Superconductivity by varun yashoda dabhade ppt
Superconductivity by varun yashoda dabhade pptSuperconductivity by varun yashoda dabhade ppt
Superconductivity by varun yashoda dabhade pptVarunn Dabhade
 
Electrical supply & distribution
Electrical supply & distributionElectrical supply & distribution
Electrical supply & distributionYingHongKang
 
Illumination basic and schemes
Illumination basic and schemesIllumination basic and schemes
Illumination basic and schemesGAURAV. H .TANDON
 
electric heating and welding.pptx
electric heating and welding.pptxelectric heating and welding.pptx
electric heating and welding.pptxLordofVel
 
Types of LED & Application
Types of LED & ApplicationTypes of LED & Application
Types of LED & ApplicationLED Outfitters
 
Different Types of Lamps and Luminaries
Different Types  of Lamps and  LuminariesDifferent Types  of Lamps and  Luminaries
Different Types of Lamps and LuminariesSourabhKumar590059
 
Design considerations of electrical installations
Design considerations of electrical installationsDesign considerations of electrical installations
Design considerations of electrical installationsvishalgohel12195
 
Solar cells fabrication and surface processing
Solar cells fabrication and surface processingSolar cells fabrication and surface processing
Solar cells fabrication and surface processingChandan
 

La actualidad más candente (20)

Led failure mechanisms
Led failure mechanismsLed failure mechanisms
Led failure mechanisms
 
CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptx
CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptxCHAPTER 2 Design of Building Electrical Systems (2).pptx.pptx
CHAPTER 2 Design of Building Electrical Systems (2).pptx.pptx
 
Electrical Heating 01 - 03
Electrical Heating 01 - 03Electrical Heating 01 - 03
Electrical Heating 01 - 03
 
Basic Electrical Theory.ppt
Basic Electrical Theory.pptBasic Electrical Theory.ppt
Basic Electrical Theory.ppt
 
4 fuses
4 fuses4 fuses
4 fuses
 
Fluorescent lamps
Fluorescent lampsFluorescent lamps
Fluorescent lamps
 
Energy Efficient Intelligent LED Lighting System
Energy Efficient Intelligent  LED Lighting SystemEnergy Efficient Intelligent  LED Lighting System
Energy Efficient Intelligent LED Lighting System
 
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERING
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERINGELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERING
ELECTROMECHANICAL BREAKDOWN|BREAKDOWN IN SOLIDS|HIGH VOLTAGE ENGINEERING
 
Superconductivity by varun yashoda dabhade ppt
Superconductivity by varun yashoda dabhade pptSuperconductivity by varun yashoda dabhade ppt
Superconductivity by varun yashoda dabhade ppt
 
Electrical supply & distribution
Electrical supply & distributionElectrical supply & distribution
Electrical supply & distribution
 
Thyristor
ThyristorThyristor
Thyristor
 
Illumination basic and schemes
Illumination basic and schemesIllumination basic and schemes
Illumination basic and schemes
 
Electrical materials
Electrical materialsElectrical materials
Electrical materials
 
electric light sources
electric light sourceselectric light sources
electric light sources
 
electric heating and welding.pptx
electric heating and welding.pptxelectric heating and welding.pptx
electric heating and welding.pptx
 
Types of LED & Application
Types of LED & ApplicationTypes of LED & Application
Types of LED & Application
 
Different Types of Lamps and Luminaries
Different Types  of Lamps and  LuminariesDifferent Types  of Lamps and  Luminaries
Different Types of Lamps and Luminaries
 
Design considerations of electrical installations
Design considerations of electrical installationsDesign considerations of electrical installations
Design considerations of electrical installations
 
Solar cells fabrication and surface processing
Solar cells fabrication and surface processingSolar cells fabrication and surface processing
Solar cells fabrication and surface processing
 
LT XLPE Cable & HT ABC Redesign
LT XLPE Cable & HT ABC RedesignLT XLPE Cable & HT ABC Redesign
LT XLPE Cable & HT ABC Redesign
 

Similar a Internal Thermal Resistance of LEDs: LED Fundamentals

Similar a Internal Thermal Resistance of LEDs: LED Fundamentals (20)

LEDs System Introduction: LED Fundamentals
LEDs System Introduction: LED FundamentalsLEDs System Introduction: LED Fundamentals
LEDs System Introduction: LED Fundamentals
 
Ece 371 jb lecture 3
Ece 371 jb lecture 3Ece 371 jb lecture 3
Ece 371 jb lecture 3
 
SinkPAD Technology
SinkPAD TechnologySinkPAD Technology
SinkPAD Technology
 
Basics of Heat Transfer: LED Fundamentals
Basics of Heat Transfer: LED FundamentalsBasics of Heat Transfer: LED Fundamentals
Basics of Heat Transfer: LED Fundamentals
 
Electrical Characteristics of LEDs: LED Fundamentals
Electrical Characteristics of LEDs: LED FundamentalsElectrical Characteristics of LEDs: LED Fundamentals
Electrical Characteristics of LEDs: LED Fundamentals
 
Overview of Temperature Measurement.ppt
Overview of Temperature Measurement.pptOverview of Temperature Measurement.ppt
Overview of Temperature Measurement.ppt
 
2 op-amp concepts
2 op-amp concepts2 op-amp concepts
2 op-amp concepts
 
FALLSEM2021-22_EEE3004_ETH_VL2021220100816_2021-08-03_Reference-Material-I.pdf
FALLSEM2021-22_EEE3004_ETH_VL2021220100816_2021-08-03_Reference-Material-I.pdfFALLSEM2021-22_EEE3004_ETH_VL2021220100816_2021-08-03_Reference-Material-I.pdf
FALLSEM2021-22_EEE3004_ETH_VL2021220100816_2021-08-03_Reference-Material-I.pdf
 
Tech thermoelectric
Tech thermoelectricTech thermoelectric
Tech thermoelectric
 
LM380 Audio Power Amplifier
LM380 Audio Power AmplifierLM380 Audio Power Amplifier
LM380 Audio Power Amplifier
 
ILS FLP WG 13x2 30W
ILS FLP WG 13x2 30WILS FLP WG 13x2 30W
ILS FLP WG 13x2 30W
 
Electric properties
Electric propertiesElectric properties
Electric properties
 
Temperature Transducer
Temperature TransducerTemperature Transducer
Temperature Transducer
 
www.eclipselightinginc.com
www.eclipselightinginc.comwww.eclipselightinginc.com
www.eclipselightinginc.com
 
www.eclipselightinginc.com
www.eclipselightinginc.comwww.eclipselightinginc.com
www.eclipselightinginc.com
 
Electronics
ElectronicsElectronics
Electronics
 
Datasheet
DatasheetDatasheet
Datasheet
 
basic-analog-electronics
basic-analog-electronicsbasic-analog-electronics
basic-analog-electronics
 
SCR
SCRSCR
SCR
 
Lecture 18
Lecture 18Lecture 18
Lecture 18
 

Más de LED Light Site by OSRAM Opto Semiconductors

How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...
How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...
How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...LED Light Site by OSRAM Opto Semiconductors
 

Más de LED Light Site by OSRAM Opto Semiconductors (12)

Mesopic Vision - LED Fundamental Series by OSRAM Opto Semiconductors
Mesopic Vision - LED Fundamental Series by OSRAM Opto Semiconductors Mesopic Vision - LED Fundamental Series by OSRAM Opto Semiconductors
Mesopic Vision - LED Fundamental Series by OSRAM Opto Semiconductors
 
How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...
How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...
How to Read a Datasheet Part 1 of 2: Typical/Maximum Characteristics & Binnin...
 
Optical and Lighting Software: LED Fundamentals
Optical and Lighting Software: LED FundamentalsOptical and Lighting Software: LED Fundamentals
Optical and Lighting Software: LED Fundamentals
 
Driving LEDs -AC-DC Power Supplies: LED Fundamentals
Driving LEDs -AC-DC Power Supplies: LED FundamentalsDriving LEDs -AC-DC Power Supplies: LED Fundamentals
Driving LEDs -AC-DC Power Supplies: LED Fundamentals
 
Primary and Secondary Optics: LED Fundamentals
Primary and Secondary Optics: LED Fundamentals Primary and Secondary Optics: LED Fundamentals
Primary and Secondary Optics: LED Fundamentals
 
External Thermal Resistance - Substrates: LED Fundamentals
External Thermal Resistance - Substrates: LED FundamentalsExternal Thermal Resistance - Substrates: LED Fundamentals
External Thermal Resistance - Substrates: LED Fundamentals
 
Driving LEDs - Switch Mode Drivers: LED Fundamentals
Driving LEDs - Switch Mode Drivers: LED FundamentalsDriving LEDs - Switch Mode Drivers: LED Fundamentals
Driving LEDs - Switch Mode Drivers: LED Fundamentals
 
Colorimetry: LED Fundamentals
Colorimetry: LED FundamentalsColorimetry: LED Fundamentals
Colorimetry: LED Fundamentals
 
Driving LEDs - Resistors and Linear Drivers: LED Fundamentals
Driving LEDs - Resistors and Linear Drivers: LED FundamentalsDriving LEDs - Resistors and Linear Drivers: LED Fundamentals
Driving LEDs - Resistors and Linear Drivers: LED Fundamentals
 
Radiometry and Photometry: LED Fundamentals
Radiometry and Photometry: LED FundamentalsRadiometry and Photometry: LED Fundamentals
Radiometry and Photometry: LED Fundamentals
 
Optical Principles: LED Fundamentals
Optical Principles: LED FundamentalsOptical Principles: LED Fundamentals
Optical Principles: LED Fundamentals
 
LEDs Basics: LED Fundamentals
LEDs Basics: LED FundamentalsLEDs Basics: LED Fundamentals
LEDs Basics: LED Fundamentals
 

Último

Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embeddingZilliz
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupFlorian Wilhelm
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubKalema Edgar
 
Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machinePadma Pradeep
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxNavinnSomaal
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticscarlostorres15106
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Mark Simos
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenHervé Boutemy
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationRidwan Fadjar
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):comworks
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationSafe Software
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024Lorenzo Miniero
 
Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Manik S Magar
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brandgvaughan
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek SchlawackFwdays
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostZilliz
 
My INSURER PTE LTD - Insurtech Innovation Award 2024
My INSURER PTE LTD - Insurtech Innovation Award 2024My INSURER PTE LTD - Insurtech Innovation Award 2024
My INSURER PTE LTD - Insurtech Innovation Award 2024The Digital Insurer
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationSlibray Presentation
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Patryk Bandurski
 

Último (20)

Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embedding
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project Setup
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding Club
 
Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machine
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptx
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache Maven
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 Presentation
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024
 
Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brand
 
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptxE-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
 
My INSURER PTE LTD - Insurtech Innovation Award 2024
My INSURER PTE LTD - Insurtech Innovation Award 2024My INSURER PTE LTD - Insurtech Innovation Award 2024
My INSURER PTE LTD - Insurtech Innovation Award 2024
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck Presentation
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
 

Internal Thermal Resistance of LEDs: LED Fundamentals

  • 2. Thermal Resistance (Rth ) (T1  T2 ) The thermal resistance (Rth) is defined as Rth   Q where: Difference between the inner temperature of the heat T1  T2   source (semiconductor chip) and an external constant reference temperature. f t t  Q Dissipated power For an LED  The temperature of the inner heat source refers to the temperature of the active semiconductor zone in which the photons are generated. This is designated as the junction temperature (TJ).  The appropriate selection of the external temperature reference point depends on the type of housing and the respective rate of heat dissipation. This reference point is the "solder point temperature" (TS). LED Fundamentals | Internal Thermal Resistance | Page 2
  • 3. Two Definitions of Thermal Resistance (Rth JS) For LEDs t e t e a resistance from ju ct o to so de po t ( thJS) can be de ed in t o ways o s the thermal es sta ce o junction solder point (R ca defined two ays Electrical thermal resistance Real thermal resistance Electrical Rth JS Real Rth JS T T RJX el  RJX  real  Pel Pel  Popt  Q  Pel  Popt  Q  Pel  VF  I F l Q  Pel  1   LED   where : where : Pel  Supplied electrical power VF  Forward voltage Pel  Supplied electrical power I F  Forward current Popt  Supplied optical power  LED  Optical efficiency of the LED The OSRAM datasheets lists value of the real thermal resistance (Rth JS) in K/W LED Fundamentals | Internal Thermal Resistance | Page 3
  • 4. Internal Thermal Resistance Rth JS Heat Conduction and Heat Path of LED Packages g TOPLED Family DRAGON Family LED  Conductive heat transfer through leads to  Heat spreading within the internal heat PCB spreader  Thermal active and thermal inactive leads  Conductive heat transfer through heat and solder pads p spreader to PCB  The chip is mounted on the thermal active  The heat spreader has electrical potential lead. The bond wire goes to the thermal inactive lead LED Fundamentals | Internal Thermal Resistance | Page 4
  • 5. Internal Thermal Resistance Rth JS (contd…) Heat Conduction and Heat Path of LED Packages g OSLON SSL Family  The chip is mounted on a thermal pad  The thermal pad is electrically isolated by the g ceramic housing  Conductive heat transfer takes place though the ceramic housing and all the three pads. LED Fundamentals | Internal Thermal Resistance | Page 5
  • 6. Thermal Resistances (Rth JS ) of OSRAM LEDs 150 sistance Rth [KW-1] 125 hJS 120 K/W 100 75 Real Thermal Res 50 40 K/W 36 K/W 25 7 K/W 6.5 K/W 4.2 K/W Advanced Power OSRAM OSTAR- OSTAR DURIS E 3 DURIS E 5 OSLON SSL DRAGON TOPLED Plus Lighting Plus LED Fundamentals | Internal Thermal Resistance | Page 6
  • 7. Significance of Thermal Resistance Rth JS Knowledge of the thermal resistance (Rth JS ) of an LED serves to:  Determine the junction temperature that arises in the LED under operating conditions.  Determine the maximum allowable external reference temperature for a given internal temperature and power dissipation.  Evaluate E l t measures f dissipation of h t i th LED system (th for di i ti f heat in the t (thermal management). l t) LED Fundamentals | Internal Thermal Resistance | Page 7
  • 8. Thermal Measurement Estimation of Junction Temperature (TJ) p ( LCW CP7P 80.00 If = 350 mA 70.00 Te m pe ra ture (C ) 60.00 60 00 Vf = 3 2 V 3.2 50.00 Solder Point Temp (C) Ts (measured) = 75°C RthJS = 7K/W 40.00 Ambient temp (C) 30.00 ФV(25°C) = 100 lm Ta (measured) = 20°C 20.00 10.00 Approximation (White LED): 100 lm ~ 320 mW = 0.00 Popt 0.00 50.00 100.00 150.00 200.00 Pel = 3 2 x 0 3 0 = 1 12 W 3.2 0.350 1.12 Time (min) PD = Pel – Popt = 1.12 W - 0.320 W = 0.8 W Calculation : T  T  Rth  P J S JS D = 75°C + 7 x 0.8 W = 81°C Junction Temperature Estimation at Tamb(20°C) = 81°C LED Fundamentals | Internal Thermal Resistance | Page 8
  • 9. Thermal Management System Thermal Resistance of System RthJA Internal External Thermal Resistance Thermal Resistance RthJS RthSB RthBA  Materials  Substrate Technology  Housing  Package Geometry  Solder Pads  Heat Sink  Thermal Spreader  Thermal Vias  Air Velocit Velocity LED Fundamentals | Internal Thermal Resistance | Page 9
  • 10. Disclaimer All information contained in this document has been checked with the greatest care. OSRAM Opto Semiconductors GmbH can however, not be made liable for any damage that occurs in connection with the use of these contents. OSRAM Opto Semiconductor GmbH makes no representations and warranties as to a possible interference with third parties' intellectual property rights in view of products originating from one of OSRAM Opto Semiconductor GmbH's partners, or in view of products being a combination of an OSRAM Opto Semiconductor GmbH's product and a product of one of OSRAM Opto Semiconductor GmbH's partners. Furthermore OSRAM GmbH s partners Furthermore, Opto Semiconductors GmbH cannot be made liable for any damage that occurs in connection with the use of a product of one of OSRAM Opto Semiconductor GmbH's partners, or with the use of a combination of an OSRAM Opto Semiconductor GmbH's product and a product of one of OSRAM Opto Semiconductor GmbH's partners. LED Fundamentals | Internal Thermal Resistance | Page 10
  • 11. Disclaimer This document constitutes neither an offer to sell nor a solicitation to buy or subscribe for securities. Any such offer will be made solely on the basis of the Securities Prospectus yet to be approved by the German Financial Supervisory Authority (BaFin) and published thereafter. The information legally required to be provided to investors will be contained only in the S Securities Prospectus. The information contained herein is not for distribution, directly or indirectly, in or Into the United States of America (including its territories and possessions of any State of the United States of America or the District of Columbia) and must not be distributed to U.S. persons (as defined in Regulation S under the U.S. Securities Act of 1933, as amended ("Securities Act")) or publications with a general circulation in the United States of America. This document is not an offer of securities for sale in the America United States of America. The securities have not been and will not be registered under the Securities Act and may not be offered or sold in the United States of America absent registration or an exemption from registration under the Securities Act. The g p g Issuer does not intend to register any portion of the offering in the United States of America or to conduct a public offering of the securities in the United States of America. This document is not an offer of securities for sale in the United Kingdom, Canada, Japan or Australia. LED Fundamentals | Internal Thermal Resistance | Page 11
  • 12. Thank you for your attention. LED Fundamentals | Internal Thermal Resistance | Page 12