Abstract

This paper presents a novel miniaturization 90° phase shifter using parallel coupled inductors and capacitors. The size reduction is achieved by replacing the quarter-wavelength transmission lines in a conventional fixed 90 degrees phase shifter with the resonator circuit. The resonator circuit, formed by the parallel coupled inductors and capacitor, provides a 90° phase shift at 45 MHz. In this way, the circuit size can be largely reduced without sacrificing the operation bandwidth and power handling. The inductors structure used in the phase shifter carries high power, which consists of two full coupled rectangle metal coils. The proposed miniature fixed phase shifter is then applied to the design of a directional coupler centered at 45 MHz. The measured results show a bandwidth of 40–50 MHz for better than 35 dB return loss with a phase shift of ~ 90°, a deviation within ~ 2°, and power handling of 63 dBm (2 kW). Notably, the proposed fixed phase shifter occupies an area of 58.5 mm $\times30.5$ mm $\times33$ mm, which is only about $0.009\,\,\lambda _{\mathbf {0}}\times 0.0045\,\,\lambda _{\mathbf {0}}\times 0.005\,\,\lambda _{\mathbf {0}}$ at 45 MHz.

Highlights

  • PHASE shifters are widely used in microwave circuits and system, and are of great commercial and military interest [1]–[3]

  • The design in this study focuses on miniaturization and high-power handling application with frequency from 40 MHz to 50 MHz, which is applied for VHF band directional coupler, high power handling switch and ultra-short-wave radar system

  • This paper studies the application of this type phase shifter in directional coupler, which can reduce the size of the device, have a large power handling and a good performance

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Summary

Introduction

PHASE shifters are widely used in microwave circuits and system, and are of great commercial and military interest [1]–[3]. The design of modified phase shifter circuits requires broader bandwidth, high return loss, and low phase-shift deviation, which proposed in [7], and [9]–[17]. In [9]–[12], the phase shifters are a cascade of the coupled sections. These configurations provide a wide bandwidth performance greater than 100%. The insertion loss and the size of phase shifter increase with an increasing number of the cascade sections

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