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相关概念视频

Electromagnetic Fields01:30

Electromagnetic Fields

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Electric fields generated by static charges, often referred to as electrostatic fields, are characteristically different from electric fields created by time-varying magnetic fields. While the former is a conservative field, implying that no net work is done on a test charge if it goes around in a complete loop in the field, the latter is, by definition, not a conservative field; net work is done, and it is proportional to the rate of change of magnetic flux.
However, the observation of...
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Generating Electromagnetic Radiations01:10

Generating Electromagnetic Radiations

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The German physicist Heinrich Hertz (1857–1894) was the first to generate and detect certain types of electromagnetic waves in the laboratory. Starting in 1887, he performed a series of experiments that confirmed the existence of electromagnetic waves and verified that they travel at the speed of light. Hertz used an alternating-current RLC (resistor-inductor-capacitor) circuit that resonated at a known frequency and connected it to a loop of wire. High voltages induced across the gap in...
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Mechanism of heat transfer01:19

Mechanism of heat transfer

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Understanding heat transfer mechanisms is essential for understanding how our bodies maintain balance in different environmental conditions. When the environment is thermoneutral, the body is in a state of balance, neither using nor releasing energy to maintain its core temperature. However, when the environment is not thermoneutral, the body employs four heat transfer mechanisms to maintain homeostasis: conduction, convection, evaporation, and radiation. These mechanisms facilitate heat...
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Dual Nature of Electromagnetic (EM) Radiation01:10

Dual Nature of Electromagnetic (EM) Radiation

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Electromagnetic (EM) radiation consists of electric and magnetic field components oscillating in planes perpendicular to each other and mutually perpendicular to radiation propagation through space. EM radiation can be classified as a wave, characterized by the properties of waves such as wavelength (denoted as λ) and frequency (represented by ν).
Wavelength is the distance between two consecutive peaks (the highest point) or troughs (the lowest point) in the wave. Frequency is the...
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Mechanisms of Heat Transfer II01:20

Mechanisms of Heat Transfer II

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In convection, thermal energy is carried by the large-scale flow of matter. Ocean currents and large-scale atmospheric circulation, which result from the buoyancy of warm air and water, transfer hot air from the tropics toward the poles and cold air from the poles toward the tropics. The Earth’s rotation interacts with those flows, causing the observed eastward flow of air in the temperate zones. Convection dominates heat transfer by air, and the amount of available space for the airflow...
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Electromagnetic Waves01:30

Electromagnetic Waves

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James Clerk Maxwell formulated a single theory combining all the electric and magnetic effects scientists knew during that time, calling the phenomena his theory predicted “Electromagnetic waves”. He brought together all the work that had been done by brilliant physicists such as Oersted, Coulomb, Gauss, and Faraday and added his own insights to develop the overarching theory of electromagnetism. Maxwell’s equations, combined with the Lorentz force law, encompass all the laws...
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Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
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Simulation, Fabrication and Characterization of THz Metamaterial Absorbers

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在芯片上设置的通向电磁热斗.

Yichao Liu1, Hanchuan Chen1, Gang Zhao1

  • 1Key Lab of Advanced Transducers and Intelligent Control System, Ministry of Education and Shanxi Province, College of Electronic Information and Optical Engineering, Taiyuan University of Technology, Taiyuan 030024, China.

iScience
|July 12, 2024
PubMed
概括

这项研究引入了一个通向的芯片上斗,同时屏蔽电磁波和热流. 这项创新可以保护敏感的芯片上元件免受电磁干扰和热问题,而不会破坏外部电场.

科学领域:

  • 物理 物理学 物理
  • 材料科学 材料科学 材料科学
  • 电气工程 电气工程

背景情况:

  • 芯片上系统需要保护敏感元件免受电磁波和热流的影响.
  • 同时覆盖电磁场和热场对于高效的通信和热管理至关重要.

研究的目的:

  • 提出一个全方位的芯片电磁热斗.
  • 保护敏感的芯片组件免受电磁和热干扰.

主要方法:

  • 通过光学表面转换设计了一个通向的电磁遮蔽模块,使用一个有洞的金属板,通过光学表面转换提供亚波长孔径.
  • 通过解决拉普拉斯方程,开发了一种通向的热遮蔽模块,具有两层环形工程结构.
  • 整合了两个遮蔽模块,以实现同时的电磁和热遮蔽.

主要成果:

  • 在任何冲击角度实现电磁波和热流的同时遮蔽.
  • 组合的斗有效地屏蔽内部敏感元件,而不会扰乱外部电场.
  • 在芯片应用中展示了一种全方位的电磁热斗.

结论:

  • 拟议的遮为保护芯片上的敏感元件提供了一种新的解决方案.
关键词:
设备 设备 设备物理 物理学 物理热设计 热设计

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  • 这项技术在全向电磁兼容性/屏蔽和多向热管理方面具有潜在的应用.
  • 为复杂的芯片系统提供了更高的性能和可靠性.