High power microwave vulnerability estimation model of integrated circuit 集成电路高功率微波易损性预测评估模型
High Performance GaAs Microwave Monolithic Integrated Circuit Negative Resistance Voltage-Controlled Active Bandpass Filter 高性能GaAs微波单片集成电路负阻压控带通有源滤波器
Microstrip hairpin resonator filters have found wide applications in microwave planar circuits and microwave integrated circuit ( MIC) due to the virtues such as compact structure, low cost, easy fabrication, and easily integrated. 微带发夹型谐振器滤波器具有尺寸小、成本低、易于集成等优点,在微波平面电路的设计中有着良好的应用前景。
The microwave limiter modules have been designed and fabricated with hybrid integrated circuit in a small size, it has been fabricated with two PIN diode chips and a single detector diode chip. 采用微波混合集成电路设计方法,用二只并联PIN二极管芯片和一只检波二极管芯片,在很小的腔体内制作了微波限幅器模块。
The band-pass filter using half-wavelength parallel coupled microstrip lines has been widely used in microwave integrated circuit for its compact structure and its center frequency of second pass-band being triple of principal pass-band. 半波长平行耦合微带线带通滤波器由于其结构紧凑,第二通带的中心频率3倍于主通带中心频率,因而在微波集成电路中获得广泛应用。
The excitation of NRD guide is a key-problem to the planar/ non-planar microwave hybrid integrated circuit. NRD波导的激励是平面/非平面微波混合集成电路的一个关键问题。
Microwave Integrated Circuit Technology& Retrospect and Prospect 微波集成电路技术&回顾与展望
An interactive CAD layout program for fast realization of the unilanar MMIC ( monolithic microwave integrated circuit) mask is presented in this paper. 本文介绍了一种快速实现单面单片微机微波集成电路(MMIC)布图的计算机辅助设计系统。
A Low Noise Darlington SiGe Microwave Monolithic Integrated Circuit 一种低噪声SiGe微波单片放大电路
A microwave integrated circuit design of wideband varactor tuned bulk effect oscillator 一种微波集成宽带变容管调谐体效应振荡器的设计
A low noise microwave monolithic integrated circuit ( MMIC) using Darlington configuration SiGe hetero-junction bipolar transistors ( HBT's) is presented. 介绍了一种利用SiGe技术制作的低噪声SiGe微波单片放大电路(MMIC)。
An Effective Optimization Method for Microwave Integrated Circuit Design 一种有效的微波集成电路设计优化方法
A compact Ka-band monolithic microwave integrated circuit ( MMIC) voltage controlled oscillator ( VCO) with wide tuning range and high output power, which is based on GaAs PHEMT process, is presented. 设计并流片制作了基于GaAsPHEMT工艺的Ka波段微波单片集成压控振荡器(MMICVCO).该VCO具有紧凑、宽电调谐带宽及高输出功率的特点。
In this paper a new topology of microwave active inductor with relatively higher Q value realised by GaAs MMIC ( Microwave Monolithic Integrated Circuit) is proposed. Its principle circuit is composed of three MESFETS and one capacitor. 本文介绍了一种由砷化镓单片集成电路工艺实现的Q值相对较高的微波有源电感的新型结构,其电路原理图由三个微波场效应晶体管和一个电容组成。
A monolithic microwave integrated circuit ( MMIC) is a microwave circuit in which the active and passive components are fabricated on the same semiconductor substrate. 单片微波集成电路(MMIC)是将有源元件和无源元件都集成在同一个半导体衬底上的微波电路;
A New Technology of Microwave Integrated Circuit with Low Cost and Low Loss Metal System FeCrAl Cu Cu Au 低成本低损耗微波集成电路新工艺&FeCrAl-Cu-Cu-Au金属系统
The Measurement of S parameter of a Microwave Monolithic Integrated Circuit by ps Photoconductive Sampling Technique 用ps光电导采样技术测量微波单片集成电路的S参数
The GaN HEMT as a microwave device for hybrid microwave integrated circuit ( MIC) and microwave monolithic integrated circuit ( MMIC) benefits from both RF output power and de-vices figure of merit, such as hybrid MIC packaged and high-power broadband MMIC. 提出将GaNHEMT作为微波器件用于混合微波集成电路(MIC)和微波单片集成电路(MMIC),在射频输出功率、器件优值等方面,均具有明显优点,并列举了成功的例子。
Reactive ion beam etching technique has been effectively used to study and fabricate large-scale and ultra large scale integrated circuit, acoustic surface wave device, magnetic bubble device microwave device, integrated optical circuit, superconducting device, shimmer optical pattern etc. 反应离子束刻蚀技术已有效地用于研究和制造大规模和超大规模集成电路,声表面波器件,磁泡存储器,微波器件,集成光路,超导器件,闪烁光栅等。
Because of limited output power from Microwave Monolithic Integrated Circuit ( MMIC) solid-state device at microwave and millimeter wave frequencies, power combining techniques are commonly used to deliver larger output power levels. 由于在微波毫米波频段微波单片集成电路固态器件的输出功率有限,广泛使用功率合成技术以获得更大的输出功率。
Especially at millimeter-wave frequencies, power available from each monolithic microwave integrated circuit ( MMIC) is limited, and subsequent power combining is required to achieve the desired output power. 特别是在毫米波频段,鉴于单个单片集成电路可能提供的功率有限,要提高系统的输出功率就需要采用功率合成技术。为此,功率合成技术就成为实现毫米波高功率发射系统的有效途径。
This paper mainly introduces the design of Monolithic Microwave Integrated Circuit ( MMIC) wideband amplifier. The principles and the design of the circuits are given. 论文对微波单片集成电路(MMIC)宽带放大器的设计进行研究,给出了MMIC宽带放大器设计的原理和方法。
This dissertation overall views the history, the state of arts and the future trend of monolithic microwave integrated circuit ( MMIC). The process and equivalent circuit of MMIC passive components including resistors, capacitors and inductors are introduced. 本文介绍了微波单片集成电路(MMIC)的历史、发展概况和今后的趋势,叙述了微波单片集成电路中无源器件的工艺,分别分析电阻、电容和电感的等效电路。
Gallium Nitride High Electron Mobility Transistor ( GaN HEMT) models are basics of the GaN Microwave Monolithic Integrated Circuit ( MMIC) CAD. 氮化镓高电子迁移率晶体管(GaNHEMT)模型是GaN微波单片集成电路(MMIC)CAD的基础。
Along with the matures of GaAs technology based on monolithic microwave integrated circuit ( MMIC), therefore the development of phase shifter is in direction of small size, light weight and high reliability. 随着以GaAs工艺为基础的单片微波集成电路(MMIC)技术的成熟,移相器广泛的采用MMIC技术,也因此正向尺寸小、重量轻、可靠性高的方向发展。
With developing of microwave integrated circuits, the technology of plane circuit reaches the limit. 随着微波集成电路的不断发展,普通的平面电路工艺已达到其极限。
Microwave hybrid integrated circuit as advantages such as small volume, higher reliability, excellent performance stability and so on. It is widely used in military, navigation, mobile communication. 微波混合集成电路具有体积小、可靠性高、电性能稳定等优点,广泛应用于军事、导航、移动通信等领域。
With the development of digital signal processing device and microwave monolithic integrated circuit ( MMIC) technology makes it impossible to using digital multi-beam phased array technique in LEO satellite mobile communication system. 随着数字信号处理器件和微波单片集成电路(MMIC)技术的发展,数字多波束相控阵天线技术应用于LEO卫星移动通信系统已成为可能。
RFID technology is a complex application technology, which is a multidisciplinary integration of emerging technology. It not only covers the microwave technology and the electromagnetic theory, but also covers communication principle and semiconductor integrated circuit technology. RFID技术是一个复杂的应用技术,它不仅涵盖了微波技术与电磁学理论,而且还涉及通信原理及半导体集成电路技术,是一项多学科融合的新兴应用技术。