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Millimeter-Wave Limiter Based on GaN MMIC Technology

  • Xiaolin Hao
  • , Guodong Gu
  • , Hongyu Guo
  • , Xubo Song
  • , Lisen Zhang
  • , Jianjun Gao
  • , Feifei Liu
  • , Jian Dai
  • , Yuanjie Lv
  • , Cui Yu
  • , Ao Zhang*
  • , Zhihong Feng*
  • *Corresponding author for this work
  • Hebei Semiconductor Research Institute
  • Nantong University

Research output: Contribution to journalArticlepeer-review

Abstract

In this work, the high-power millimeter-wave limiter based on a gallium nitride (GaN) quasi-vertical structure Schottky barrier diode (SBD) is proposed and validated in the range of 30–36 GHz. The high-doping concentration and thin thickness of the n-layer GaN can effectively reduce the on-resistance of GaN SBD, thereby reducing the insertion loss of limiters. The limiter utilizes GaN MMIC technology to enhance the consistency of multistage circuit manufacturing. In addition, the limiter adopts a three-stage structure design and combines with the power division structure to optimize the power handling capability of the first-stage limiter, further improving the overall system output power capacity. The insertion loss of the limiter is less than 2 dB within the frequency range of 30–36 GHz. This limiter can withstand a pulse input power of 20 W without burning out. The limiter based on GaN SBD exhibits advantages in high frequency and high power.

Original languageEnglish
JournalIEEE Microwave and Wireless Technology Letters
DOIs
StateAccepted/In press - 2026

Keywords

  • Gallium nitride (GaN)
  • Schottky barrier diode (SBD)
  • limiter
  • millimeter wave

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