IEICE Transactions on Electronics
Online ISSN : 1745-1353
Print ISSN : 0916-8524
E106.C 巻, 2 号
選択された号の論文の7件中1~7を表示しています
Special Section on Electronic Displays
Regular Section
  • Yang XIAO, Zhongyuan ZHOU, Changping TANG, Jinjing REN, Mingjie SHENG, ...
    原稿種別: PAPER
    専門分野: Electromagnetic Theory
    2023 年 E106.C 巻 2 号 p. 41-49
    発行日: 2023/02/01
    公開日: 2023/02/01
    [早期公開] 公開日: 2022/07/27
    ジャーナル 認証あり

    This paper first introduces the structure of a shipboard equipment control cabinet and the preliminary design of electromagnetic shielding, then introduces the principle of low-frequency magnetic field shielding, and uses silicon steel sheet to shield the low-frequency magnetic field of shipboard equipment control equipment. Based on ANSYS Maxwell simulation software, the low-frequency magnetic field radiation emission of the equipment's conducted harmonic peak frequency point is simulated. Finally, according to MIL-STD-461G test standard, the low-frequency magnetic field radiation emission test is carried out, which meets the limit requirements of the standard. The low-frequency magnetic field shielding technology has practical value. The low-frequency magnetic field radiation emission simulation based on ANSYS Maxwell proposed in this paper is a useful attempt for the quantitative simulation of radiation emission.

  • Katsumi KAWAI, Naoki SHINOHARA, Tomohiko MITANI
    原稿種別: PAPER
    専門分野: Microwaves, Millimeter-Waves
    2023 年 E106.C 巻 2 号 p. 50-58
    発行日: 2023/02/01
    公開日: 2023/02/01
    [早期公開] 公開日: 2022/08/16
    ジャーナル 認証あり

    This study proposes a new structure of a single-shunt rectifier circuit that can reduce circuit loss and improve efficiency over the conventional structure. The proposed structure can provide impedance matching to the measurement system (or receiving antenna) without the use of conventional matching circuits, such as stubs and tapers. The proposed structure can simultaneously perform full-wave rectification and impedance matching by placing a feeding point on the output filter's λ/4 transmission line. We use circuit simulation to compare the RF-DC conversion efficiency and circuit loss of the conventional and proposed structures. The simulation results show that the proposed structure has lower circuit loss and higher RF-DC conversion efficiency than the conventional structure. We fabricate the proposed rectifier circuit using a GaAs Schottky barrier diode. The simulation and measurement results show that the single-shunt rectifier circuit's proposed structure is capable of rectification and impedance matching. The fabricated rectifier circuit's RF-DC conversion efficiency reaches a maximum of 91.0%. This RF-DC conversion efficiency is a world record for 920-MHz band rectifier circuits.

  • Mamoru UGAJIN, Yuya KAKEI, Nobuyuki ITOH
    原稿種別: PAPER
    専門分野: Electronic Circuits
    2023 年 E106.C 巻 2 号 p. 59-66
    発行日: 2023/02/01
    公開日: 2023/02/01
    [早期公開] 公開日: 2022/08/03
    ジャーナル フリー

    Quadrature voltage-controlled oscillators (VCOs) with current-weight-average and voltage-weight-average phase-adjusting architectures are studied. The phase adjusting equalizes the oscillation frequency to the LC-resonant frequency. The merits of the equalization are explained by using Leeson's phase noise equation and the impulse sensitivity function (ISF). Quadrature VCOs with the phase-adjusting architectures are fabricated using 180-nm TSMC CMOS and show low-phase-noise performances compared to a conventional differential VCO. The ISF analysis and small-signal analysis also show that the drawbacks of the current-weight-average phase-adjusting and voltage-weight-average phase-adjusting architectures are current-source noise effect and large additional capacitance, respectively. A voltage-average-adjusting circuit with a source follower at its input alleviates the capacitance increase.

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