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A Broadband Millimeter-Wave Waveguide Window: A Low-Cost Design for Environmental Protection

机译:宽带毫米波波导窗口:环保的低成本设计

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In this paper, a full W-band waveguide window for the protection of components from the environment is presented. The window is based on rectangular dielectric block placed inside the rectangular waveguide. Electrical design steps for broadband performance are presented, and a simple cost effective mechanical process flow is employed for the fabrication of windows. Four different dielectric windows are evaluated, and they exhibited less than 0.3-dB insertion loss and better than 20-dB return loss: two windows over full W-band, whereas other two over 3-GHz bandwidth. Temperature testing is carried out for 4 h at -40 °C and +70 °C, and the humidity level is set at 95% at +70 °C. Minimum insertion loss variation of ±0.5 dB over the temperature range is observed. To check the compatibility of the windows with millimeter-wave components, a W-band switch is tested with the windows at its input and output ports. The experimental results show that the windows have low-loss characteristics and are free from ghost modes.
机译:在本文中,提出了用于保护组件免受环境影响的完整的W波段波导窗口。该窗口基于放置在矩形波导内的矩形电介质块。提出了实现宽带性能的电气设计步骤,并采用了简单经济高效的机械工艺流程来制造窗户。对四个不同的介电窗进行了评估,它们的插入损耗小于0.3dB,回波损耗小于20dB:在整个W波段上两个窗口,而在3GHz带宽上两个窗口。温度测试在-40°C和+70°C下进行4小时,湿度水平在+70°C下设置为95%。观察到在整个温度范围内的最小插入损耗变化为±0.5 dB。为了检查窗口与毫米波组件的兼容性,测试了W波段开关,并在其输入和输出端口处安装了窗口。实验结果表明,该窗具有低损耗特性,并且没有重影模式。

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