Passive Components Blog
No Result
View All Result
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Bourns Increases Maximum Inductance Values of Semi-Shielded Power Inductors

    YAGEO Unveils Next Gen BMS Isolation Transformers

    Littelfuse Compact Tactile Switch Offers Low-Noise Switching and Dust Protection

    Murata Announces Mass Manufacturing of World’s First 0402 47µF MLCC

    Bourns Releases SMD Chip High-Power Metal Strip Current Sense Resistors in 2010 Case

    Würth Elektronik Releases High-Frequency Connectors for Antenna Cables

    Murata Releases First High-Frequency XBAR Filter for Next-Gen Networks

    Vishay NTC Immersion Thermistor Delivers Fast Response in Liquid Cooled Automotive Systems

    Wk 27 Electronics Supply Chain Digest

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Accelerating Full Bridge LLC Resonant Converter Design with Frenetic AI

    Understanding Switched Capacitor Converters

    Coupled Inductors Circuit Model and Examples of its Applications

    Inductor Resonances and its Impact to EMI

    Highly Reliable Flex Rigid PCBs, Würth Elektronik Webinar

    Causes of Oscillations in Flyback Converters

    How to design a 60W Flyback Transformer

    Modeling and Simulation of Leakage Inductance

    Power Inductor Considerations for AI High Power Computing – Vishay Video

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • Suppliers
    • Who is Who
  • Events
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Bourns Increases Maximum Inductance Values of Semi-Shielded Power Inductors

    YAGEO Unveils Next Gen BMS Isolation Transformers

    Littelfuse Compact Tactile Switch Offers Low-Noise Switching and Dust Protection

    Murata Announces Mass Manufacturing of World’s First 0402 47µF MLCC

    Bourns Releases SMD Chip High-Power Metal Strip Current Sense Resistors in 2010 Case

    Würth Elektronik Releases High-Frequency Connectors for Antenna Cables

    Murata Releases First High-Frequency XBAR Filter for Next-Gen Networks

    Vishay NTC Immersion Thermistor Delivers Fast Response in Liquid Cooled Automotive Systems

    Wk 27 Electronics Supply Chain Digest

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Accelerating Full Bridge LLC Resonant Converter Design with Frenetic AI

    Understanding Switched Capacitor Converters

    Coupled Inductors Circuit Model and Examples of its Applications

    Inductor Resonances and its Impact to EMI

    Highly Reliable Flex Rigid PCBs, Würth Elektronik Webinar

    Causes of Oscillations in Flyback Converters

    How to design a 60W Flyback Transformer

    Modeling and Simulation of Leakage Inductance

    Power Inductor Considerations for AI High Power Computing – Vishay Video

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • Suppliers
    • Who is Who
  • Events
No Result
View All Result
Passive Components Blog
No Result
View All Result

Compressible Graphene Foam Moderate Heat in Electronics

23.5.2022
Reading Time: 3 mins read
A A

Purdue University engineers have developed a “thermal switch” made up of compressible graphene foam, that dynamically adjusts to temperatures both inside and outside of electronic devices to maintain consistent thermal management.

“As electronic devices get smaller and more powerful, managing heat becomes a more crucial issue,” said Xiulin Ruan, professor of mechanical engineering, who studies nanoscale heat transfer and sustainable energy. “Most devices use passive thermal management, such as conduction and convection, to move excess heat. But this system isn’t tunable or adjustable, and doesn’t help at all in cold conditions.”

RelatedPosts

Bourns Increases Maximum Inductance Values of Semi-Shielded Power Inductors

YAGEO Unveils Next Gen BMS Isolation Transformers

Littelfuse Compact Tactile Switch Offers Low-Noise Switching and Dust Protection

Other researchers have proposed various forms of thermal switches, which turn “on” to move heat away or turn “off” to keep the heat inside. But because these systems are either 100% on or 100% off, they lack the ability to variably adjust to changing temperatures, both inside and outside the device.

The solution came from postdoctoral researcher Tingting Du and master’s students Zixin Xiong and Luis Delgado, co-advised by Ruan and Amy Marconnet, associate professor of mechanical engineering, who studies the thermal properties of lithium ion batteries and other devices. They have developed a continuously tunable thermal switch based on compressible graphene composite foam.

Their work has been published in Nature Communications.

Graphene foam is a commercially available product, built from nanoscopic particles of carbon deposited in a specific pattern, with small voids of air in between. When the foam is uncompressed, it acts as an insulator, with the air pockets keeping the heat in place. But when the foam is physically compressed, the air escapes, and more heat is conducted out through the foam. Depending on how much the foam is compressed, the amount of heat transfer can be precisely dialed in.

Graphene foam; credit: Purdue University

The Purdue researchers measured the thermal conductance of the foam at Purdue’s Birck Nanotechnology Center. They sandwiched a 1.2-millimeter-thick sample of graphene foam in between a heater and heat sink, and placed the system under an infrared microscope to measure the temperature and heat flow. When fully compressing the foam to a thickness of 0.2 millimeters, the thermal conductance went up by a factor of 8. “It functions like a resistor in an electrical circuit,” said Marconnet. “Instead of varying the amount of current flow, it varies the amount of heat it allows to pass.”

They also conducted an experiment in a chamber at Purdue’s Flex Lab that can create specific environmental conditions, and achieved similar results with ambient temperatures from 0° C (32° F) to 30°C (86° F). They placed the graphene foam atop a heat source to simulate an electronic device, and used thermocouples to measure the temperature. “This is important, because the thermal switch adjusts to temperatures both inside and outside the device,” said Ruan. “When the ambient is very hot, our thermal switch can transfer heat out to cool the batteries down, and when the ambient is too cold, our thermal switch can turn off heat transfer to keep the batteries warm.”

While the experiment is just a proof-of-concept, this form of dynamic thermal management has potential applications beyond just cell phones. It could potentially be used in larger electronics, electric car batteries, space vehicles, and even biomedical devices. “Our goal is to use thermal switches to keep all of these devices functioning effectively in varying environments, and improve their overall energy efficiency,” said Ruan.

Related

Source: Purdue University

Recent Posts

H2-Assisted Thermal Treatment of Electrode Materials Increases Supercapacitors Energy Density

13.5.2025
14

Researchers Present Hybrid Supercapacitor Zn-Ion Microcapacitors

12.5.2025
54

Murata and NIMS Built New Database of Dielectric Material Properties

5.5.2025
111

3D Printing of Passive Components from Manufacturer Perspective

26.4.2025
54

Hybrid Electrochemical Electrolytic Capacitor Provides High Frequency and High Capacitance Performance

25.4.2025
77

Supercapacitor Separator with High Ionic Conductivity Enables Line-Filter Applications at High Power

21.3.2025
57

Interlacing Strain Engineering Boost Energy Density of MLCCs

12.2.2025
87

Researchers Developed BaTiO3 based MLCC Material with High Energy Density at High Temperature Range

21.1.2025
112
A film a few atoms thick of non-crystalline niobium phosphide conducts better through the surface to make the material, as a whole, a better conductor. | Il-Kwon Oh / Asir Khan

Researchers Developed High Conductive Nanowires

20.1.2025
60

CNF-MIM Capacitors Benefits vs Deep Trench Capacitors

9.1.2025
145

Upcoming Events

Jul 16
16:00 - 17:00 CEST

Design a 2kW PSFB converter before your cold drink gets warm

Jul 23
13:00 - 14:00 CEST

PCB design for a Smartwatch

Jul 29
16:00 - 17:00 CEST

Impact of Elevated Voltage and Temperature on Molded Power Inductors in DC/DC converters

View Calendar

Popular Posts

  • Buck Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Boost Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Flyback Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • What is a Dielectric Constant and DF of Plastic Materials?

    4 shares
    Share 4 Tweet 0
  • LLC Resonant Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Ripple Current and its Effects on the Performance of Capacitors

    3 shares
    Share 3 Tweet 0
  • How to Design an Inductor

    0 shares
    Share 0 Tweet 0
  • Dual Active Bridge (DAB) Topology Explained

    0 shares
    Share 0 Tweet 0
  • Why Low ESR Matters in Capacitor Design

    0 shares
    Share 0 Tweet 0
  • SEPIC Converter Design and Calculation

    0 shares
    Share 0 Tweet 0

Newsletter Subscription

 

Passive Components Blog

© EPCI - Leading Passive Components Educational and Information Site

  • Home
  • Privacy Policy
  • EPCI Membership & Advertisement
  • About

No Result
View All Result
  • Home
  • Knowledge Blog
  • Premium Suppliers

© EPCI - Leading Passive Components Educational and Information Site

This website uses cookies. By continuing to use this website you are giving consent to cookies being used. Visit our Privacy and Cookie Policy.
Go to mobile version