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晶体管    
相关语句
  transistor
    OPTIMUM METHOD OF THE DESIGN OF MICROWAVE TRANSISTOR OSCILLATOR
    微波晶体管振荡器设计的最优化方法
短句来源
    Fuxin Transistor Limited Corporation's Marketing Strategy Study
    阜新晶体管有限责任公司市场营销战略研究
短句来源
    This paper starting from the present course of FuXin Transistor Limited Corporation,development trend,and environment that Company live in.
    本文从阜新晶体管有限公司目前的实际情况、发展趋势和公司所处的环境出发。
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  transistor
This is our first report on the high performance 1 mm AlGaN/GaN high electron mobility transistor (HEMT) which was developed using home-made AlGaN/GaN epitaxy structures based on SiC substrate.
      
The design and fabrication on gate type resonant tunneling transistor
      
In light of fabricating resonant tunneling diode (RTD), in this paper a GaAs-based resonant tunneling transistor with gate structure (GRTT) has been designed and fabricated successfully.
      
The electrokinetic behavior of silicon plates covered with an oxide film is compared to the electrode behavior of a similar board of an ion-selective field-effect transistor.
      
The meter consists of a semiconductor magnetic-field sensitive double-collector transistor (magnetotransistor) with ferromagnetic concentrators of the magnetic field, differential amplifier, and digital voltmeter.
      
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  transistors
Progresses in organic field-effect transistors and molecular electronics
      
In the past years, organic semiconductors have been extensively investigated as electronic materials for organic field-effect transistors (OFETs).
      
In this review, we briefly summarize the current status of organic field-effect transistors including materials design, device physics, molecular electronics and the applications of carbon nanotubes in molecular electronics.
      
The pulse shaper triggering the light-emitting diode is based on avalanche transistors.
      
Effect of Hot Carriers and Ionizing Radiation on the Spectrum of Interface States in MOS Transistors
      
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  the transistor
The output of this thermistor bridge is connected to the transistor gate through a circuit specifying the operating frequency.
      
Physical processes occurring upon turning-on of the transistor in a converter stage with a saturable-core choke, placed in the clamping diode's circuit, are analyzed.
      
The period of the diode's charge removal and the energy lost in the transistor in various turn-on modes are determined.
      
It is based on the numerical solution to Poisson's equation and makes it possible to calculate a potential distribution and currentvoltage characteristics (CVCs) of the transistor in dependence of its design, process, and electrophysical parameters.
      
A periodic decrease in the electron temperature in the low-resistivity regions of the channel is thought of to improve the mobility and effective transit speed of electrons in the transistor channel.
      
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  a transistor
A High-Voltage Reverse Switch-on Dynistor Switch with a Transistor Control Circuit
      
A Transistor-Based Modulator for a Microwave Magnetron
      
An analysis showed that correct evaluation of the density of surface states and the gate insulator charging by method of subthreshold current-voltage characteristics requires taking into account the planar inhomogeneity of a transistor.
      
The characteristics of a transistor oscillator of a set of frequencies stabilized with a frequency-tuned multifrequency resonator based on higher-order bulk acoustic modes are investigated.
      
A thermal conductivity detector is reported, which is not - as is usual - operated with a hot wire or thermistor, but with a transistor.
      
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  其他


Since the invention of transistor,electronic technology has developed rapidly. Consequently, mankind has entered the information era. Semiconductor integrated circuit (IC) is the core of the microelectronic technology which forms the foundation of the medern inforrnation technology. Since silicon crystal is the non-fungible functional material of IC and electrical and electronic technology. Therefore the information era is also called silicon era.In the pest thirty years, China semiconductor silicon material...

Since the invention of transistor,electronic technology has developed rapidly. Consequently, mankind has entered the information era. Semiconductor integrated circuit (IC) is the core of the microelectronic technology which forms the foundation of the medern inforrnation technology. Since silicon crystal is the non-fungible functional material of IC and electrical and electronic technology. Therefore the information era is also called silicon era.In the pest thirty years, China semiconductor silicon material industry has produced some thousand of tons of silicon crystals,made great contribution to the development of the national electronic industry. Now China silicon industry is facing a rare opportunity for development. We should fully understand the strategic significance of the industry,and establish a brand-new system of China semiconductor material industry facing the 21st century. So we can lay a solid foundation for the development of domestic electronic industry.

自从发明晶体管以来,电子技术迅猛发展,人类已经进入了信息时代。微电子技术是现代信息技术的基石,半导体集成电路是微电子技术的核心。硅单晶是集成电路和电力电子技术的基础,是不可替代的功能材料。因此,人们常称当今的时代是硅的时代。我国的半导体硅材料工业已经走过30多年的历程,给国家提供了上千吨的硅单晶材料,为发展我国电子工业做出了重大贡献。当前,我国硅材料工业面临着大发展的机遇。我们应充分认识硅工业的重要战略意义,建立起面向21世纪崭新的中国半导体硅材料工业体系,为发展立足于本国的电子工业奠定坚实的基础。

Producing higher_performance displays at low cost is a constant chanllenge for LCD manufactures, LTPs technology has drawn the attention of many display manufactures, because it has several potential advantages to produce higher_performance displays. From the discussion of the liquid crystal maket, we can see the promise of LTPs technology. We also examine the cost of LTPs vs amorphous silicon.

低成本高性能显示器是一项长期的技术挑战。由于低温多晶硅技术有很多优点,可制造高性能的薄膜晶体管,从而能得到高清晰度高亮度和低功耗的显示器。本文通过对液晶显示器市场的分析,展望低温多晶硅技术的应用前景。同时对低温多晶硅与非晶硅作了成本对比。

The accuracy of Moore's law has hold true as if by magic over the past 35 years. As chip's density is being larger and lager maintaining the exponential growth rate predicted by Moore is becoming increasingly difficult. How far will Moore`s law go By a brief analysis of manufacturing technologies and modern architectures we believe that Moore's law will continue to be valid for about 15 years 3 or 4 microchip generations.

摩尔定律神奇地灵验了三十多年,随着芯片上晶体管数量的增长,芯片密度越来越大,要维持摩尔预示的指数增长率将越来越难。摩尔定律究竟还能走多远?通过对芯片制造技术和现代的微处理器系统结构的分析,我们认为,摩尔定律的有效性还能保持15年左右(3~4代微芯片)。

 
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