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Thermal resistance

  • Application Note AN-1057

    Application Note AN-1057

  • How Air Velocity Affects the Thermal Performance of Heat Sinks: a Comparison of Straight Fin, Pin Fin and Maxiflowtm Architectures

    How Air Velocity Affects the Thermal Performance of Heat Sinks: a Comparison of Straight Fin, Pin Fin and Maxiflowtm Architectures

  • Guide for the Use of the International System of Units (SI)

    Guide for the Use of the International System of Units (SI)

  • Is the Thermal Resistance Coefficient of High-Power Leds Constant? Lalith Jayasinghe, Tianming Dong, and Nadarajah Narendran

    Is the Thermal Resistance Coefficient of High-Power Leds Constant? Lalith Jayasinghe, Tianming Dong, and Nadarajah Narendran

  • Thermal-Electrical Analogy: Thermal Network

    Thermal-Electrical Analogy: Thermal Network

  • Arxiv:1311.4868V1 [Cond-Mat.Mes-Hall] 19 Nov 2013

    Arxiv:1311.4868V1 [Cond-Mat.Mes-Hall] 19 Nov 2013

  • Some Thermal Resistance Values

    Some Thermal Resistance Values

  • Lifetime Modelling Issues of Power Light Emitting Diodes

    Lifetime Modelling Issues of Power Light Emitting Diodes

  • Thermal Resistance Measurements

    Thermal Resistance Measurements

  • How to Calculate “R” Values

    How to Calculate “R” Values

  • The Bridge Between the Device and System of Thermoelectric Power

    The Bridge Between the Device and System of Thermoelectric Power

  • Recommended Practice for the Use of Metric (SI) Units in Building Design and Construction NATIONAL BUREAU of STANDARDS

    Recommended Practice for the Use of Metric (SI) Units in Building Design and Construction NATIONAL BUREAU of STANDARDS

  • Light Emitting Diodes Reliability Review ⇑ Moon-Hwan Chang A, Diganta Das A, P.V

    Light Emitting Diodes Reliability Review ⇑ Moon-Hwan Chang A, Diganta Das A, P.V

  • Fundamentals of Heat Transfer in Thermal Interface Gap Filler Materials

    Fundamentals of Heat Transfer in Thermal Interface Gap Filler Materials

  • AN-2020 Thermal Design by Insight, Not Hindsight

    AN-2020 Thermal Design by Insight, Not Hindsight

  • Q =ΔT/ Rth Where: Q = Heat Flux ΔT = Temperature Difference / Gradient Rth = Thermal Resistance Or Coefficient of Thermal Resistivity

    Q =ΔT/ Rth Where: Q = Heat Flux ΔT = Temperature Difference / Gradient Rth = Thermal Resistance Or Coefficient of Thermal Resistivity

  • Understanding Thermal Resistance

    Understanding Thermal Resistance

  • Thermal Management

    Thermal Management

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  • Determination of Thermal Contact Resistance Between Metals Using a Pulse Technique
  • Frequently Asked Questions for Thermal Resistance
  • MT-093: Thermal Design Basics
  • Insulation Values
  • Irreversibility and Action of the Heat Conduction Process
  • Themal Management of Solid State Relays Basic Considerations Power
  • Light-Emitting Diodes Second Edition
  • ON Semiconductor Is
  • The SI Metric Systeld of Units and SPE METRIC STANDARD
  • How to Properly Evaluate Junction Temperature with Thermal Metrics
  • Characterization of Contact and Bulk Thermal Resistance of Laminations for Electric Machines J
  • Thermal Resistance Comic
  • Thermal and Electrical Resistance of Metal Contacts
  • Forced Air Convection and Heating Sinking for Power Supplies
  • How to Measure Thermal Resistance of LED Emitters and LED Arrays
  • The Calculation of Thermal Resistance for Forced Air Cooling
  • Experimental Proof of the Reciprocal Relation Between Spin Peltier and Spin Seebeck Effects in a Bulk YIG/Pt Bilayer
  • LED Thermal Management Thermal Characterization Effect of Thermal Environment Powerpsoc Controller


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