microwave switch

英 [ˈmaɪkrəweɪv swɪtʃ] 美 [ˈmaɪkrəweɪv swɪtʃ]

网络  微波开关

计算机



双语例句

  1. Available microwave switch configurations include a simple single-pole double throw ( SPDT) switch, multi-position switch, matrix, and cascade.
    可用的微波开关配置包括简单的单刀双掷(SPDT)开关、多位置开关、矩阵和级联开关。
  2. So whether the glass lamp shell or plastic lamps shell can use microwave induction switch in it.
    所以无论是玻璃灯壳或是塑料灯壳内,都可以装微波感应开关。
  3. Considering the systems special requirement, a Phase changed network with switch is designed with power divider and microwave switch.
    根据系统特殊的需要,利用微波开关和功率分配器、功率合成器,设计出了开关和差网络。
  4. A simple microwave oven, door removed, with the door interlock switch bypassed, and held against the bedroom wall of a target in an apartment building or semi-detached house.
    一个简单的微波炉,门被移除了,门锁开关设了旁路,并对准一栋公寓或半独立住宅的目标的卧室。
  5. Auto microwave system High frequency Switch power;
    车用微波系统;高频;开关电源;
  6. This section describes microwave switch types, RF switch card specifications, and RF switch design considerations.
    本节介绍微波开关的类型、RF开关卡技术指标,以及设计RF开关时的注意事项。
  7. In the recent years, many high frequency MEMS switches have been excogitated, such as rotary switch, surface micromachining switch on GaAs substrate, capacitive membrane microwave switch and so on.
    经过多年的发展,许多高频MEMS开关已经开发出来,如旋转传输线式开关、砷化镓衬底上表面微机械开关、电容性膜开关等等。
  8. InGaAs/ AIGaAs PHEMT Monolithic Microwave SPDT Switch for Low-Bias and Low-Consumption Application
    低压低能耗应用的InGaAs/AlGaAsPHEMT单片微波SPDT开关
  9. Reflective Type GaAs Microwave Switch by Optical Control
    反射型GaAs光控微波开关
  10. Theoretical Analysis and Simulation on a Low Voltage Actuated Microwave MEMS Switch
    低激励电压微波MEMS开关的理论分析和仿真
  11. Microwave High-Power PIN Switch and its Application to Variable Polarization Antenna
    微波大功率PIN开关及其在变极化天线中的应用
  12. Furthermore, the degenerate four wave mixing of microwave in cavity are discussed. The conjugate reflecting wave are obtained, and the reflecting microwave controlled by the pumping wave, which can be used to make a new microwave controlling switch.
    进一步,讨论了腔内微波的简并四波混频,得到了相应入射微波信号的反射共轭波,该波受泵浦波的控制,由此可以制成一类微波控开关。
  13. Wideband Microwave MEMS Switch
    宽带微波MEMS开关
  14. Research of Microwave Transmission Properties of Series and Shunt RF MEMS Switch
    串并联RFMEMS开关的微波传输特性仿真研究
  15. This paper presents the modeling and numeric calculations of a radio frequency ( RF)/ microwave MEMS shunt switch.
    本文描述了射频/微波MEMSShunt开关的理论模型和数值结论。
  16. Dynamical Theory of a New Microwave Switch
    一类新型微波开关的动力学理论
  17. The design and fabrication of a wideband microwave MEMS switch is described.
    本文论述了微波MEMS开关的设计和制造工艺。
  18. Secondly, The main theory of LFM synthesizer based frequency synthesis technology has been analyzed in detail, mainly including: DDS technology, PLL technology, Microwave switch and orthogonal modulation technology.
    接着详细介绍了基于频率合成技术的线性调频源的基本理论,主要包括:DDS技术、锁相频率合成技术、正交调制技术、微波开关。
  19. As utilizing principle of torsion spring and leverage, the unique MEMS microwave switch has low actuation voltage, high isolation, low insertion loss and good stability.
    由于利用了膜结构以及扭转臂和杠杆的原理,这种独特的MEMS微波开关激励电压比较低、隔离度较高、插入损耗比较低、稳定性好。
  20. It adopts DDS+ PLL frequency synthesizer scheme to realize low end frequency 2~ 4GHz output, then through segment amplifying multiplying chain realize from 2~ 4GHz expand to 2~ 12GHz, and the output frequency is selected by microwave switch.
    采用DDS+PLL的混合频率合成方案实现低端频率2~4GHz的输出,再通过分段放大倍频链路实现从2~4GHz到2~12GHz的扩频,并由微波开关控制选频输出。
  21. Research on measurement method for the on-off time of high speed microwave switch
    微波高速开关的开关时间测量方法研究
  22. Analysis and Numerical Simulations for High Capacitance Ratio of an RF/ Microwave MEMS Membrane Switch
    高电容比射频/微波MEMS膜开关的理论分析和数值模拟
  23. Because PIN diode has good characteristics that are high breakdown voltage, large controlled power and fast speed of the switch, it applies to the microwave control circuit such as the Microwave Switch, the Phase Shifter, the Amplitude Limiting and the Modulating, etc.
    由于PIN管具有可控功率大、损耗小以及开关速度快等特性,广泛应用于调制器,移相器,限幅器及微波开关等微波控制电路中。
  24. The developed PHEMT SPDT microwave monolithic switch had a good performance of magnitude and phase characteristic in ultra wide band, which was designed with the control device model, the switch topology and the circuit optimization techniques in this paper.
    采用文中获得的控制器件模型、微波开关电路拓扑以及相关电路优化技术所设计的PHEMT单刀双掷单片微波开关,在超宽频带上有着很好的幅度与相位特性。
  25. Based on comprehensive analysis of microwave characteristic and mechanical characteristic of RF MEMS switch, in this paper, optimal structure, fabrication process and relative parameter have been explored. Design and measurement of two kinds of typical RF MEMS switches are completed.
    在全面考虑RFMEMS开关的微波特性与机械特性的基础上,探索最佳的结构、最佳的工艺流程、最佳的工艺参数、研制出两大类共五种RFMEMS开关器件并完成其性能测试。
  26. Comparing with the traditional microwave switch, OCMS has no biasing circuits and electrical controlling signals, so it can not interfere with the performance of microwave systems.
    与传统开关相比,由于其不需要偏置电路和电控制信号的,对微波系统将不会产生不必要的电磁干扰。
  27. Optically controlled microwave switch ( OCMS) in microwave systems has been investigated in this thesis.
    本文针对可应用于微波系统中的光控微波开关进行了研究。
  28. Furthermore, two typical graphene NEMS devices, namely microwave switch and pressure sensor, are studied to investigate the characteristics in practical applications.
    进一步对两种典型的石墨烯NEMS器件,即毫米波开关和压力传感器,研究其在实际应用中的特性。
  29. Then the operational characteristic of PIN, and its application in microwave switch and limiter is represented.
    然后详细介绍PIN管工作特性,以及它在微波开关和限幅器中的工作原理。
  30. Microwave switch control device is the important part of the control circuit.
    开关控制器件是微波控制电路的重要组成部分。