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Filtering Balanced-to-Single-Ended Power Dividers With Wide Range and High Level of Common-Mode Suppression

机译:滤波平衡至单端功分器,具有宽范围和高共模抑制水平

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摘要

A new design approach for developing balanced-to-single-ended (BTSE) power dividers (PDs) to achieve high-level and wide range of common-mode (CM) suppression and minimum mode-conversion level is presented. The suppression of CM signals and mode conversion is realized by a microstrip-to-slotline transition, which is due to the orthogonality between the electric field of the microstrip line and slotline. Filtering responses are included in the differential-mode transmission performance, and multiple transmission zeros are generated by loading shunted coupled-line stubs. A multimode slotline resonator is used to provide multiple resonances in the passband, and these resonances can be easily controlled so that the operating bandwidth can be varied in a large frequency range. Based on this design approach, several BTSE PDs with different bandwidths are simulated in the EM environment. Prototypes are fabricated and tested to verify the design. The experimental results reveal that 200 fractional bandwidth of CM suppression is obtained. The CM suppression and mode-conversion levels are below -35 dB at all frequencies, which is extremely desired in differential circuits and systems.
机译:提出了一种新的设计方法,用于开发平衡至单端(BTSE)功率分配器(PD),以实现高电平和宽范围的共模(CM)抑制和最小模转换电平。CM信号的抑制和模式转换是通过微带线到槽线的转换来实现的,这是由于微带线和槽线之间的电场之间的正交性。滤波响应包含在差模传输性能中,并且通过加载分流耦合线短截线产生多个传输零点。多模槽线谐振器用于在通带内提供多个谐振,这些谐振可以很容易地控制,从而可以在较大的频率范围内改变工作带宽。基于该设计方法,在EM环境中仿真了多个不同带宽的BTSE PD。对原型进行制造和测试以验证设计。实验结果表明,CM抑制获得了200%的分数带宽。CM抑制和模式转换电平在所有频率下均低于-35 dB,这在差分电路和系统中是非常需要的。

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