Tag Archives: Heat Sink

Fig. 1. Structure and dimension of (a) microchannel heat sink and (b) micro-pin-fin heat sink

Comparison of Micro-Pin-Fin and Microchannel Heat Sinks Considering Thermal-Hydraulic Performance and Manufacturability

This article introduces the paper “Comparison of Micro-Pin-Fin and Microchannel Heat Sinks Considering Thermal-Hydraulic Performance and Manufacturability” presented at the IEEE TRANSACTIONS ON COMPONENTS AND PACKAGING TECHNOLOGY 1. Overview: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 2. Research Background: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References:

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Figure 3 A 3D schematic of the computational domain

An Experimental and Computational Study on the Thermal Performance of Phase Change

This article introduces the paper “An Experimental and Computational Study on the Thermal Performance of Phase Change Material Heatsink Assemblies” presented at the ASME and Applied Thermal Engineering 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8.

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Advanced Thermal Management for High-Power ICs-Optimizing Heatsink and Airflow Design

Advanced Thermal Management for High-Power ICs: Optimizing Heatsink and Airflow Design

This article introduces the paper “Advanced Thermal Management for High-Power ICs: Optimizing Heatsink and Airflow Design” presented at the Applied Sciences (MDPI) 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This material was

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Fig. 4. Rounded corners and reinforcement ribs on the lower part (left) and the upper part (right).

RESEARCH ON THE DESIGN FOR PROTECTING THE ARDUINO-MEGA MICROCONTROLLER USED AT AQUATIC EXPLORATION

This article introduces the paper “RESEARCH ON THE DESIGN FOR PROTECTING THE ARDUINO-MEGA MICROCONTROLLER USED AT AQUATIC EXPLORATION” presented at the ACTA TECHNICA NAPOCENSIS 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This

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Fig. 1. Fog lights attached to the vehicle

Thermal Flow Analysis for Development of LED Fog Lamp for Vehicle

This article introduces the paper “Thermal Flow Analysis for Development of LED Fog Lamp for Vehicle”. 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This material was summarized based on the above paper,

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Figure 5 Reflector models

OPTIMAL PLATE-FIN DESIGN FOR IMPROVING HEAT DISSIPATION PERFORMANCE OF AUTOMOBILE LAMP REFLECTORS

This article introduces the paper “OPTIMAL PLATE-FIN DESIGN FOR IMPROVING HEAT DISSIPATION PERFORMANCE OF AUTOMOBILE LAMP REFLECTORS”. 1. Overview: 2. Research Background: Automobile headlamp reflectors experience high temperatures due to heat generated by the lamp and their sealed structure. These high temperatures reduce light output and shorten lamp lifespan, potentially causing thermal shock deformation in

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Figure 1. Overview of the LED Headlamp

LED Headlamp Development for Mass Production

This article introduces the paper “LED Headlamp Development for Mass Production”. 1. Overview: 2. Research Background: 3. Research Objectives and Research Questions: 4. Research Methodology 5. Key Research Findings: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This material is a summary based on the above paper, and unauthorized use for

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Fig. 9 A model proto-typed for experiment

Effect of Heat Sink Structure on Cooling Performance of LED Bulb

This article introduces the paper “Effect of Heat Sink Structure on Cooling Performance of LED Bulb”. 1. Overview: 2. Research Background: LEDs are increasingly used due to their long lifespan and high efficiency. However, LEDs are point heat sources, leading to localized temperature increases in the surrounding polymer molding material, peripheral devices, and the LED

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Fig. 14. Heat pipe heat sink for low beam LED package cooling

Cooling of LED headlamp in automotive by heat pipes

This article introduces the paper “Cooling of LED headlamp in automotive by heat pipes”. 1. Overview: 2. Research Background: 3. Research Objectives and Research Questions: 4. Research Methodology: 5. Key Research Findings: 6. Conclusion and Discussion: 8. References: [1] US Department of Energy, Energy Efficiency of LEDs, PNNL-SA-94206, March 2013, Available: http://energy.gov/eere/ssl/downloads/energy-efficiency-leds.[2] OSRAM GmBH, Viewed:

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Figure 3. Thermocouple mounting positions in the heatsink and headlamp reflector

AUTOMOTIVE HEADLAMP HIGH POWER LED COOLING SYSTEM AND ITS EFFECT ON JUNCTION TEMPERATURE AND LIGHT INTENSITY

This article introduces the paper “AUTOMOTIVE HEADLAMP HIGH POWER LED COOLING SYSTEM AND ITS EFFECT ON JUNCTION TEMPERATURE AND LIGHT INTENSITY”. 1. Overview: 2. Background: Automotive headlamps are crucial for nighttime safety and vehicle aesthetics. Historically, halogen and xenon bulbs were prevalent, but halogen bulbs are inefficient, generating significant heat, while xenon bulbs have slower

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