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A Frequency Tunable High Sensitivity H-Field Probe Using Varactor Diodes and Parasitic Inductance

机译:使用变容二极管和寄生电感的频率可调高灵敏度H场探头

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摘要

A frequency-tunable resonant magnetic field probe is designed for near-field scanning applications for the radio frequency interference studies. Tunable resonance is achieved by using a varactor diode providing the required capacitance and the parasitic inductance of a magnetic loop (i.e., a parallel circuit). An equivalent circuit model for the probe is described, analyzed, and used for designing the probe for achieving maximum sensitivity. The resonance frequency of the designed probe is tunable in the frequency range of 900–2260 MHz that covers multiple radio bands, such as the GSM900, UMTS, and GPS bands. The sensitivity of the probe at the resonance frequency is about 7–9 dB higher than that of an equivalently sized broadband magnetic field probe throughout the tunable frequency range. The measured frequency response and sensitivity over a microstrip trace using the fabricated probe shows good agreement with the simulated results of the equivalent circuit model and the full-wave simulation model.
机译:可调频谐振磁场探头设计用于射频干扰研究的近场扫描应用。通过使用变容二极管实现可调谐的谐振,该变容二极管提供所需的电容和磁环路(即并联电路)的寄生电感。描述,分析探针的等效电路模型,并将其用于设计探针以实现最大灵敏度。设计探头的谐振频率在900-2260 MHz的频率范围内可调,该频率范围覆盖多个无线电频段,例如GSM900,UMTS和GPS频段。在整个可调频率范围内,探头在谐振频率下的灵敏度比同等大小的宽带磁场探头的灵敏度高约7–9 dB。使用制造的探头在微带走线上测得的频率响应和灵敏度与等效电路模型和全波仿真模型的仿真结果显示出良好的一致性。

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