Analysis and fabrication of a small-scale radio-frequency balun for magnetic resonance imaging amplifier

Анализ и изготовление компактного радиочастотного балансного трансформатора для усилителя магнитно-резонансной визуализации
Yingliang Li, Shouhua Luo, Chunyi Liu, Ye Yuanyuan
2022-11-01

even-odd equivalent circuit modellumped surface-mount capacitorsmagnetic resonance imaging (MRI)positive anti-symmetric couplingsmall-scale radio-frequency balun
In this study, the authors report the design and fabrication of a small mixed-integrated balun for magnetic resonance imaging (MRI). The device was designed by using the positive anti-symmetric coupling method, which applies the lump surface-mount technology capacitors as well as mirror-symmetric coupling strips that were etched on the top and bottom layers of a printed circuit board. The capacitors reduced the length of the coupling strips and compensated for imbalances in the phase and gain due to errors in the fabrication process. The structure and equivalent even-odd circuit model of the device was modeled and examined using commercial software to optimize the design parameters. Following this, the device was fabricated and its performance was assessed through measurements using a network analyzer. The results showed that imbalances in the gain and phase were lower than 0.1 dB and 1°, respectively, and the insertion loss and the input voltage standing-wave ratio (VSWR) were lower than 0.4 dB and -25 dB, respectively. More importantly, the device was small, with dimensions of 50 × 60 × 1.5 mm. This makes it suitable for MRI applications involving highly integrated miniaturized systems. The proposed device was integrated into a 3.0 T radio-frequency power amplifier (RFPA) and reduced the dimensions of its power modules by 20% compared with the traditional balun. Finally, the RFPA module was used in an 3.0T MRI system for imaging experiments, and the results showed that the balun can help obtain high-quality scanning images.
1
A small mixed-integrated RF balun for MRI was designed using positive anti-symmetric coupling with lump SMD capacitors and mirror-symmetric PCB coupling strips.
2
Device dimensions are 50 × 60 × 1.5 mm, enabling 20% reduction in RFPA power-module size versus a traditional balun.
3
Integration of the balun into a 3.0 T RF power amplifier produced high-quality 3.0T MRI images in imaging experiments.
4
Measured imbalances in gain and phase were below 0.1 dB and 1°, respectively; insertion loss <0.4 dB; input VSWR < -25 dB.
5
SMD capacitors shortened coupling-strip length and compensated phase and gain imbalances from fabrication errors.
6
Simulation using an even-odd circuit model guided parameter optimization prior to fabrication.

Small mixed-integrated radio-frequency balun for magnetic resonance imaging (MRI)

Design, fabrication, and performance (gain/phase balance, insertion loss, VSWR, size, and integration impact) of the balun when applied in a 3.0 T RF power amplifier and MRI imaging system

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2022-11-01
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Yingliang Li
Shouhua Luo
Chunyi Liu
Ye Yuanyuan
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