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首页> 外文期刊>Advanced Packaging, IEEE Transactions on >High-Q Circular LTCC Resonator Using Zigzagged Via Posts and a $lambda/4$ Short Stub for Millimeter-Wave System-on-Package Applications
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High-Q Circular LTCC Resonator Using Zigzagged Via Posts and a $lambda/4$ Short Stub for Millimeter-Wave System-on-Package Applications

机译:高品质圆形LTCC谐振器,采用Z字形通孔和$ lambda / 4 $短桩,用于毫米波封装系统

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摘要

This paper presents two high-Q circular resonators utilizing low temperature co-fired ceramic (LTCC) multilayer circuits for millimeter-wave system-on-package applications. A resonator including zigzagged dual-row via posts for tightly confining electromagnetic energy as a metallic boundary wall will be presented. Another resonator containing the zigzagged dual-row via posts and a $lambda$/4 short stub on a feeding via post in the circular resonator is used for transmitting energy in the resonator to output load without losses. Simple theories for obtaining high-Q factors using zigzagged dual-row via posts and the feeding technique with the $lambda$ /4 short stub are derived. A total of four layers are used to construct the resonator with a height of 300 $mu$ m (three layers); an additional layer is used for the probe excitation and signal feeding line. The signal feeding line is employed to connect a negative resistance generator monolithic microwave integrated circuit ((-)R MMIC) that consists of conductor backed coplanar waveguide (CBCPW), which is implemented on a layer. A CPW-type double bond wire connects the resonator and (-)R MMIC. The measurement results show that the first and second resonant modes are ${rm TM}_{010}$ at 29.75 GHz and ${rm TE}_{010}$ at 46.75 GHz, respectively. Although the unloaded Q value of the conventional resonator is 204, the proposed resonator with zigzagged dual-row via posts achieved an unloaded Q value of 249, which is a 22.-n-n1% improvement. Further, the new resonator with the $lambda$/4 short stub and zigzagged dual-row via posts yielded an unloaded Q of 296, an improvement of 45.1% for the first resonant mode. In order to verify the resonator performances, the oscillator integrating the proposed resonator is evaluated. The measured output power and phase noise of the oscillator is 18.8 dBm at 27 GHz and ${-}104.67$ dBc/Hz at 1 MHz offset, respectively. It can be implemented easily without requiring additional processes or any degradation of performance and therefore is suitable to implement in high integrated systems for millimeter-wave applications.
机译:本文介绍了两种利用毫米波系统级封装应用的低温共烧陶瓷(LTCC)多层电路的高Q圆形谐振器。将提出一种谐振器,该谐振器包括锯齿状双行通孔柱,用于将电磁能严格限制为金属边界壁。在圆形谐振器中,另一个装有锯齿形双行通孔柱和馈电通孔柱上的λ/ 4短截线的谐振器用于在谐振器中传输能量以输出负载而无损耗。推导了使用锯齿形双排通孔柱获得高Q因子的简单理论,以及带有$ lambda $ / 4短截线的进给技术。总共使用四层来构造高度为300μm(三层)的谐振器。探针激励和信号馈送线使用附加层。信号馈送线用于连接负电阻发生器单片微波集成电路((-)R MMIC),该电路由导体支撑的共面波导(CBCPW)组成,该导体实现在一层上。 CPW型双键合线连接谐振器和(-)R MMIC。测量结果表明,第一和第二谐振模式在29.75 GHz时分别为$ {rm TM} _ {010} $和在46.75 GHz时为$ {rm TE} _ {010} $。尽管常规谐振器的空载Q值为204,但提出的带有锯齿形双行通孔的谐振器实现了249的空载Q值,提高了22.-n-n1%。此外,具有$ lambda $ / 4短截线和锯齿状双行过孔的新型谐振器的空载Q值为296,对于第一谐振模式,其提高了45.1%。为了验证谐振器的性能,对集成了建议谐振器的振荡器进行了评估。振荡器的测量输出功率和相位噪声在27 GHz时为18.8 dBm,在1 MHz失调时为$ {-} 104.67 $ dBc / Hz。它可以轻松实现,而无需其他过程或任何性能下降,因此适合在毫米波应用的高集成度系统中实现。

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