• 技术应用微电子器件生产

    This technology can be adopted in the manufacture of microelectronic devices.

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  • 阴极真空微电子器件核心部件之一

    Cathode is one of the core components of vacuum microelectronic devices.

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  • 引线连接微电子器件制造过程中的重要环节之一。

    Chip interconnection is an important part in the microelectronics parts manufacture process.

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  • 因此微电子器件温度特性研究有着重要实际意义。

    So it is valuable to research the high temperature characteristic of microelectronics devices.

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  • 介绍新型微电子器件晶体管自旋阀晶体管工作原理。

    The principle of the new microelectronic devices, spin transistor and spin valve transistor is reviewed.

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  • 本文介绍真空微电子器件发射金属阵列阴极制备工艺技术

    This paper describes a fabrication technology of metal tip field emission arrays (FEA) for the vacuum microelectronic devices.

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  • 展望透明导电聚苯胺薄膜光电器件微电子器件领域应用前景。

    The application prospect of the transparent and conducting polyaniline films in optoelectronic and microelectronic devices is forecasted.

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  • 研究低电压静电放电(esd)微电子器件造成潜在性失效

    It shows that the problem of latent failure exists for MOS circuit after the ESD stresses imposed on it.

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  • 研究低电压静电放电(esd)微电子器件造成事件相关潜在性失效

    It shows that the problem of latent failure exists for MOS circuit after the ESD stresses imposed on it.

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  • 发明属于微电子器件技术领域具体形成超薄可控金属硅化物的方法。

    The invention belongs to the technical field of microelectronic devices, in particular to a method for forming ultrathin controllable metal silicide.

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  • 半导体物理学凝聚态物理学一个重要分支,也是现代微电子器件工艺学的理论核心

    Semiconductor physics is recognized as one of the major areas of condensed matter physics and the core of modern micro-electronics device technology.

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  • 发明属于微电子器件加工方法,特别是涉及一种对电荷超敏感库仑计及其制备方法。

    The invention relates to a charge-super sensitive Coulomb meter and its preparation method that belongs to microelectronic device and micro-processing method.

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  • 发明属于微电子器件技术领域具体公开了一种不对称型源漏效应晶体管及其制备方法

    The invention belongs to the technical field of a microelectronic device, and more particularly discloses an asymmetrical source-drain field effect transistor and a preparation method thereof.

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  • 发射阴极作为各种真空微电子器件核心,性能好坏将直接决定着场发射器件总体性能

    The whole performance of device depends on the capability of field emitting cold cathodes which act as the kernel of all kinds of vacuum micro-electronics device.

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  • 真空微电子器件相对半导体器件来说,有着更高工作频率输出功率,正常工作温度范围相对较大

    Compared with semiconductor devices, vacuum microelectronic devices can work with higher frequency and larger power at a wider range of temperature.

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  • 氢化薄膜由于红外成像传感器太阳能电池薄膜晶体管微电子器件中有着广泛应用前景而备受关注

    Hydrogenated silicon film attracts extensively attention due to its application on many kinds of microelectronic devices, such as infrared imaging system, solar cell and thin film transistor.

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  • 目前承担微电子专业方向主干课程:固态电子微电子器件原理集成电路设计微电子工艺课程。

    It has key courses of microelectronics: solid-state electronic theory, microelectronic devices and principles, integrated circuit design, micro-electronics processing, etc.

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  • 本文介绍利用半导体材料制作真空微电子器件的核心部件,场致发射硅阴极,的工艺研究及实验结果

    A process for the fabrication of Si cone cathode for the build up of vacuum microelectronic devices is proposed and its experimental results are given.

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  • 致发射理论为基础真空微电子器件具有功耗电流密度大频率高等诸多优点倍受人们关注

    Vacuum micro-electronics devices, which are based on field emission theory, are more and more widely applied, because of their low power consumption, high current density and high frequency.

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  • 动力学不稳定性模型推广有限几何形状加热面,解释微电子器件尺寸对池内沸腾换热临界热流形成机理影响

    The hydrodynamic instability model is spread for finite geometries in order to explain effects of size of microelectronic devices on the mechanism of formation of pool boiling critical heat fluxes.

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  • 通过序进应力加速寿命试验研究提出一种快速评价微电子器件失效激活方法建立了计算失效激活能理论模型

    Basing on the study of progressive stress accelerated life test, a rapid evaluation method for electronic device's activation energy is proposed, and the theory model is constructed.

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  • 量子点中电子空穴强的量子限制作用使其表现出一些新颖物理性能从而微电子和光电子器件方面有着重要应用价值

    Due to strong confinement effects of electrons and holes, QDs exhibit novel physical properties leading to important applications in microelectronics and optoelectronics.

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  • 量子点中电子空穴强的量子限制作用使其表现出一些新颖物理性能从而微电子和光电子器件方面有着重要应用价值

    Due to strong confinement effects of electrons and holes, QDs exhibit novel physical properties leading to important applications in microelectronics and optoelectronics.

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