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Power-Efficient Spin-Torque Nano-Oscillator-Based Wireless Communication With CMOS High-Gain Low-Noise Transmitter and Receiver

机译:具有CMOS高增益低噪声发射器和接收器的基于功率的自旋扭矩基于纳米振荡器的无线通信

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摘要

A low-power spin-torque nano-oscillator (STNO)-based wireless communication is demonstrated with a 180 nm CMOS transmitter and receiver. The ON-OFF keying (OOK) modulation is employed to overcome the inherent drawbacks of the STNO, such as low output power and spectral purity, despite its advantages of a wide frequency tuning range and nano-scale dimensions. As the magnetic-tunnel-junction (MJT) STNO with an MgO barrier has a maximum oscillation power as small as -75 dBm at 3.39 GHz, a 68 dB high-gain amplification throughout the transmitter and receiver is needed for a 1 m wireless communication. A 36 dB high-gain amplifier with a 3.9 dB low noise figure is implemented for the OOK transmitter together with an external modulator. The receiver is composed of a 3.5 dB low-noise amplifier (LNA) with a high gain of 27 dB, gain-boosted envelope detector, and baseband amplifier. The transmitter and receiver amplifiers are implemented with a highly isolated ground between each stage in order to prevent oscillations even at the high gain. The communication system with the STNO achieves an 11.8 Mb/s wireless data transmission over 1 m, with a power consumption of 41.4 mW. The implemented transmitter and receiver occupy 2.34 and 4.08 mm(2), including all of the pads, respectively. The proposed system achieves the highest data rate with the lowest power consumption compared to those of the previous state-of-the-art STNO-based wireless communication systems.
机译:演示了一种具有180 nm CMOS发射器和接收器的基于低功率自旋扭矩纳米振荡器(STNO)的无线通信。尽管开/关键控(OOK)调制具有宽频率调谐范围和纳米级尺寸的优点,但仍可克服STNO的固有缺点,例如输出功率低和频谱纯度低。由于具有MgO势垒的磁隧道结(MJT)STNO在3.39 GHz时的最大振荡功率小至-75 dBm,因此对于1 m无线通信,整个发射器和接收器都需要68 dB的高增益放大。 OOK发射机与外部调制器一起使用了具有3.9 dB低噪声系数的36 dB高增益放大器。接收器由一个3.5 dB低噪声放大器(LNA),一个27 dB高增益,增益增强包络检波器和基带放大器组成。发射器和接收器放大器在每个级之间都实现了高度隔离的接地,以便即使在高增益下也能防止振荡。使用STNO的通信系统可在1 m上实现11.8 Mb / s的无线数据传输,功耗为41.4 mW。已实现的发射器和接收器分别占据了所有焊盘的2.34和4.08 mm(2)。与先前的基于STNO的最新无线通信系统相比,所提出的系统以最低的功耗实现了最高的数据速率。

著录项

  • 来源
    《IEEE Transactions on Magnetics》 |2019年第5期|1-10|共10页
  • 作者单位

    Korea Adv Inst Sci & Technol, Sch Elect Engn, Daejeon 34141, South Korea;

    Korea Adv Inst Sci & Technol, Sch Elect Engn, Daejeon 34141, South Korea;

    Korea Adv Inst Sci & Technol, Sch Elect Engn, Daejeon 34141, South Korea;

    Korea Inst Sci & Technol, Ctr Spintron, Seoul 02792, South Korea|KIST Sch, Dept Nanomat Sci & Engn, Div Nanotechnol & Informat Technol, Seoul, South Korea|Univ Sci & Technol, Seoul 02792, South Korea;

    Korea Inst Sci & Technol, Ctr Spintron, Seoul 02792, South Korea|KIST Sch, Dept Nanomat Sci & Engn, Div Nanotechnol & Informat Technol, Seoul, South Korea|Univ Sci & Technol, Seoul 02792, South Korea;

    Korea Basic Sci Inst, Spin Engn Phys, Daejeon 34133, South Korea;

    Korea Adv Inst Sci & Technol, Sch Elect Engn, Daejeon 34141, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CMOS; high-gain; low-noise amplifier (LNA); spin-torque nano-oscillator; wireless communication;

    机译:CMOS;高增益;低噪声放大器(LNA);旋转扭矩纳米振荡器;无线通信;

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