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1)  ridge waveguide
脊波导
1.
Ridge waveguide in output circuit of klystron;
脊波导在速调管输出组件中的应用
2.
Study on effects of device deformations on the transmission characteristics of trapezoidal-ridge waveguides;
器件变形对倒梯形脊波导传输特性影响的研究
3.
Study of transmission characters of two kinds of new double-ridge waveguide;
两种新型双脊波导传输特性的研究
2)  ridged waveguide
脊波导
1.
Ridged Waveguide Eigenvalues Analysis With FEM;
脊波导特征值的有限元分析
2.
This paper describes the application of finite element method for obtaining the cutoff wavelength,field pattern and bandwidth in ridged waveguide of ridge on the short side,gives the specific equation of related parameter to the subject.
提出用有限元方法分析位于窄边的脊波导主模的截止波长和场结构图以及单模带宽特性,推导出用有限元法计算相关参数的计算公式。
3.
As an application,representative computational examples,including dielectric-rod-loaded rectangular and double-ridged waveguides,are given to validate the theory,and to demonstrate the degree of its efficiency.
实例计算了空心矩形波导的截止频率,并与理论值进行比较;计算了填充部分介质时矩形波导和双脊波导的截止频率,获得了三脊波导的归一化截止频率谱图,给出填充不同介质时各主模式的截止频率。
3)  ridge-waveguide
脊波导
1.
This work focuses on the problem of the serious dislocation and thermal expansion coefficientmismatch in GaAs substrate laser materials, and concludes overseas technology of bonding, then AlGaAs SQWridge-waveguide lasers were fabricated.
针对于普通外延生长GaAs衬底激光器材料中存在的位错严重、热胀系数不匹配等问题,总结了国外键合工艺,将其应用于发光波长为850nm的AlGaAs脊波导量子阱激光器的制造,并提出了键合过程中各项关键步骤应注意的问题和解决方法。
2.
This kind of ridge-waveguide to microstrip line adapter is s.
介绍了转换接头在微波中的重要应用,在分析波导到微带过渡结构的基础上,选用了多节阶梯阻抗变换器的结构形式,用1/4波长契比雪夫阻抗匹配的方法设计了脊波导到微带过渡结构,计算出各个阻抗变换枝节的物理尺寸,并用高频仿真软件HFSS进行了仿真分析,经过多次调试,最终结果在6。
4)  Ridged waveguide
脊形波导
1.
Further computation indicates that the ferrite slabs loaded ridged waveguide has broadband frequency properties and the grooved waveguide has greater differential phase shift.
进一步计算结果表明含铁氧体片的脊形波导具有宽频带特性 ,含铁氧体片的槽形波导具有较大相位移 。
5)  rib structure waveguides
脊背波导
6)  ridge waveguide
脊形波导
1.
To achieve high optical power as well as low vertical divergence angle,a new kind of optim ized large opti- cal cavity (L OC) structure is applied to a ridge waveguide 980 nm In Ga As/ Ga As/ Al Ga As m ulti- quantum well laser.
通过采用经过优化的新型大光腔结构 ,脊形波导 980 nm单模 In Ga As/Ga As/Al Ga As多量子阱半导体激光器在保持大功率光输出的同时获得了较小的垂直发散角 。
2.
It is found that optimization of the structure parameters of ridge waveguide (RWG) can decrease the threshold current of RWG laser diode.
通过优化脊形波导的结构参数可以降低脊形波导激光器的阈值电流 ,提出了实现亚微米脊宽 ,从而降低阈值电流的方法。
3.
5 μm InGaAsP integrated device was fabricated by using the ridge waveguide.
在研究倾斜氧化物锥条形集成超辐射光源的基础上 ,增加了脊形波导结构 ,制得了新型的 1 5 μm倾斜结构的InGaAsP/InP集成超辐射光源。
补充资料:波导通信(见毫米波通信)


波导通信(见毫米波通信)
wave guide communication

  bodao tongxin波导通信(wave guide communieation)见毫米波通信。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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