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A Method for Applying a Ku-band Device to the S-band

机译:一种将KU波段装置应用于S波段的方法

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摘要

Most devices recently used in communications satellite Low Noise Amplifiers (LNA) have been designed and manufactured for use at 12 GHz (Noise Figure [NFJ 0.2 at 12 GHz) the frequency of broadcasting satellites (BS). Designed for use with the Ku-band, the internal wiring of the components is too thin for the S-band, and presents the prospect of large input impedance values. Generally, if we manufacture 2 GHz LNA for testing, NF will degrade at least 1 dB to NF = 1.2 (in the old notation method of NE 2.2 dB). In this paper, we will report on an improved method for a wearable terminal with a low part count. With our methods, the LNA and the patch antenna, which we manufactured for the test, exhibited a confirmed improvement of 0.6 dB as a relative value, compared to power matching due to the S-parameter (including the stub circuit).
机译:最近用于通信卫星低噪声放大器(LNA)的大多数设备已经设计和制造用于12 GHz(噪声图[NFJ 0.2,12 GHz)广播卫星(BS)的频率。设计用于与KU波段一起使用,该组件的内部接线对于S波段太薄,并且呈现了大输入阻抗值的前景。通常,如果我们制造2 GHz LNA进行测试,NF将降低至少1 dB至NF = 1.2(以NE 2.2 dB的旧符号方法)降低。在本文中,我们将报告具有低零件数的可穿戴终端的改进方法。利用我们的方法,与由于S参数(包括短路电路)的电力匹配相比,我们为测试制造的用于测试的方法和贴片天线作为相对值的确认提高。

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