超高速集成电路

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  • beyond very high speed integration
超高速集成电路超高速集成电路
  1. 超高速集成电路互连线的分布电容矩阵&测度不变方程法(MEI)解

    Capacitance Matrix of Interconnects in Very High Speed Integrated Circuits & MEI Solution

  2. 研究利用超高速集成电路硬件描述语言(VHDL)设计某导弹数字控制器中硬件控制器的方法。

    A method of hardware control for a missile controller system designed by VHDL is studied .

  3. 基于全电荷格林函数的MEI方法在超高速集成电路互连线参数提取中的应用

    MEI Method Solution Based on Total Charge Green 's Function for Multiconductor Interconnects Modeling in Very Higg Speed Integrated Circuits

  4. VHDL(超高速集成电路硬件描述语言)在电子设计领域中已得到了广泛用。

    VHDL ( Very High Speed Integrated Circuit Hardware Description Language ) is widely applied in electronic design fields today .

  5. 控制器采用VHDL(超高速集成电路硬件描述语言)语言在RTL(寄存器传输级)级设计,并在单片CPLD(复杂可编程逻辑器件)上实现。

    The controller is designed with hardware description language VHDL at RTL level , and implemented with single CPLD .

  6. 本文介绍了应用超高速集成电路硬件描述语言(VHDL)设计离心机控制系统的方法,并用一片可编程逻辑器件来实现该系统。

    This paper introduces a method to design a centrifugal machine control system with VHDL and a programmable logic to realize the system .

  7. 同时课题完成了数据保护系统的数据加密模块的设计,通过超高速集成电路硬件描述语言(VHDL)进行仿真实现,并通过C语言进行仿真验证。

    At the same time this paper completes the design of data encryption module of data protection system , and simulates it through VHDL , and verifies it through C language .

  8. 引入流水线技术,采用可编程门阵列(FPGA),基于超高速集成电路硬件描述语言(VHDL)来实现数据的加解密。

    Introduce production line technology , employ Field-Programmable Gate Array ( FPGA ) and use Very-High-Speed Integrated Circuit Hardware Description Language ( VHDL ) to realize data encryption and deciphering . 3 .

  9. 综述了近年来以HBT、MESFET及HEMT为基本单元的GaAs超高速集成电路的发展情况,并对其市场的应用作一介绍。

    This paper describes the recent development of GaAs very high speed IC , the basic unit are MESFET , HBT and HEMT , also introduces the market of it .

  10. 介绍了超高速集成电路硬件描述语言(VHDL)的发展历程,并且论述了利用VHDL。在复杂可编程逻辑器件(CPLD)上进行系统芯片(SOC)设计的方法。

    Introduces the development of very high speed integrated circuit hardware description language ( VHDL ), and presents the design mathod of system on chip on the basis of VHDL and complex programmable logic device ( CPLD ) .

  11. 概述了GaAs超高速集成电路的现状与发展趋势,介绍了门阵列、A/D(D/A)转换器、MUX/DEMUX以及异质结器件的发展和应用前景。

    This paper describes the present status and future trend of GaAs VHSIC and introduces the application prospects for gate array , A / D ( D / A ) converter , MUX / DE MUX and heterojunction devices .

  12. 超高速集成电路用高纯硼粉的研制

    Preparation Study of High Purity Boron Powder for Ultrahigh Speed Integrated Circuit

  13. 光纤通信系统超高速集成电路设计

    IC Design for ultra highspeed optical fiber transmission systems

  14. 砷化镓超高速集成电路布线设计&基于门阵的宏元胞方式

    The Routing of GaAs VHSIC Macrocell Based Gate Array

  15. 多晶硅发射极超高速集成电路工艺

    Super High Speed Polysilicon Emitter Integrated Circuit Technology

  16. 蚁群算法在集成电路布线问题中的应用砷化镓超高速集成电路布线设计&基于门阵的宏元胞方式

    Application on the Ant Colony Algorithm Used for Physical Design of Integrated Circuits ; The Routing of GaAs VHSIC Macrocell Based Gate Array

  17. 通过实例介绍了现代数字系统设计的主流方式&VHDL(超高速集成电路硬件描述语言)设计技术的功能及其设计数字系统的过程。

    This article combines the living example and has introduced the function and the process of the main digital design method-VHDL ( VHSIC Hardware Description Language ) for digital system designers .

  18. 在数字系统中,状态机的设计对系统的可靠性、稳定性具有决定性的作用,因此,基于超高速集成电路硬件的有限状态机的设计和优化是完成数字系统设计的重要环节。

    In digital system , design of finite state machine has important impact on stability and reliability of the digital system . Design and optimization of finite state machine based on VHDL is an important part for finishing design of digital system .

  19. GaAs与Si超高速数字集成电路的性能比较

    Digital VHSIC Performance Comparison Between GaAs and Si

  20. 超高速GaAs集成电路封装材料、工艺和结构的研究

    Research on Packaging Materials , Processes and Structures for Ultrahigh-Speed GaAs ICs

  21. 该系统可完成微波、毫米波集成电路CAD及砷化镓超高速数字集成电路CAD。

    The CAD system can be used to design GaAs microwave and millimeterwave integrated circuits and GaAs very high speed digital integrated circuits .

  22. 本文介绍了GaAs与Si超高速数字集成电路(数字VHSIC)目前的进展情况。从材料特性、器件结构及高速集成电路的应用等方面对GaAs与Si数字VHSIC的性能进行了初步比较。

    In this paper , the current R & D of GaAs and Si digital VHSIC are viewed and their performances are compared in terms of material characteristics , device structure and logic circuit applications .

  23. 超高速双极集成电路设计研究

    A Study on the Design of Very High Speed Bipolar IC ′ s

  24. 全定制超高速数字集成电路的正向设计

    The Top-Down Design of Very High-Speed Digital ASICs

  25. 超高速数字集成电路

    Super high speed digital integrated circuit

  26. GaAs超高速模拟开关集成电路

    GaAs Ultra-High Speed Analog Switching IC

  27. 本文首次报导了GaAs超高速模拟开关集成电路的设计、制备及主要结果。

    The design , fabrication and performance of a GaAs ultra-high speed analog switching IC are first reported in this paper .

  28. 光纤传输系统用超高速时钟恢复集成电路研究

    Research on Ultra High Speed Clock Recovery IC for Optical-Fiber Transmission System

  29. 超高速电流反馈集成运放电路与特性

    Characteristics of Ultra High Speed Current Feedback Operational Amplifier

  30. 研究了金刚石膜/氧化铝陶瓷复合材料作为超高速、大功率集成电路封装基板材料的可行性。

    The feasibility of diamond film coated alumina ceramics used as the packaging substrate of integrated circuits with ultra high speed and high power was studied .