Microelectronic Devices Yang Pdf Download

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2023-02-0200:00:19






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in this work, we report on our recent research into the design and fabrication of a novel dielectric material for use in a microelectronic circuit. the reason for the development of this material is that it has a high dielectric constant and can be used to produce a high-quality and stable capacitance for use in a microelectronic circuit. the dielectric material is designed to be a high-k layer, which is a layer with a high dielectric constant (greater than 10). in addition, the dielectric material is designed to have a low leakage current. the structure of the designed dielectric material consists of a low-k layer and a high-k layer.the vision of future electronics is not only to build smaller, faster, and more energy efficient devices, but also to utilize the abundance of renewable energy sources for powering electronic devices. the quantity of energy harvested from the sun is far greater than the power requirements of modern electronic devices. however, electronic devices typically convert solar energy to electricity using silicon-based semiconductors, which are not very efficient. on the other hand, the mechanical properties of piezoelectric materials are superior to those of semiconductors. for this reason, a variety of flexible solar cell technologies based on piezoelectric materials have been developed, each of which has advantages and disadvantages. in this article, we review the various flexible solar cell technologies and summarize the current status of piezoelectric-based solar cell devices, with a focus on a silicon-free approach.the next generation of microelectronic devices may be passive, rather than active, devices that perform their intended function without an energy-consuming electronic control unit. these passive devices may operate by exploiting inherent physical phenomena and chemical reactions, such as piezoelectricity, magnetism, and biocatalysis, without consuming power. as such, the passive devices may be more robust than active devices and may more easily survive the impact of mechanical wear and tear. additionally, the passive devices may be embedded in the human body to enhance the functionality of the human body or assist in the human body’s movements, thereby helping to enhance the quality of life.


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