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Development of Electronic Tile for Decorating Walls and 3D Surfaces 用于装饰墙壁和三维表面的电子瓷砖的开发
4区 工程技术 Q4 Engineering Pub Date : 2023-02-01 DOI: 10.1587/transele.2022dii0002
Makoto Omodani, Hiroyuki Yaguchi, Fusako Kusunoki
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引用次数: 0
A Quick Startup Low-Power Hybrid Crystal Oscillator for IoT Applications 一种用于物联网应用的快速启动低功耗混合晶体振荡器
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2022ctp0002
M. Miyahara, Zule Xu, Takehito Ishii, N. Kimura
SUMMARY In this paper, we propose a hybrid crystal oscillator which achieves both quick startup and low steady-state power consumption. At startup, a large negative resistance is realized by configuring a Pierce oscillating circuit with a multi-stage inverter amplifier, resulting in high-speed startup. During steady-state oscillation, the oscillator is reconfigured as a class-C complementary Colpitts circuit for low power consumption and low phase noise. Prototype chips were fabricated in 65nm CMOS process technology. With Pierce-type configuration, the measured startup time and startup energy of the oscillator are reduced to 1/11 and 1/5, respectively, compared with the one without Pierce-type configuration. The power consumption during steady oscillation is 30 μW.
在本文中,我们提出了一种混合晶体振荡器,它既能实现快速启动,又能实现低稳态功耗。在启动时,通过配置皮尔斯振荡电路和多级逆变放大器实现大的负电阻,从而实现高速启动。在稳态振荡期间,振荡器被重新配置为低功耗和低相位噪声的c类互补科尔皮茨电路。原型芯片采用65nm CMOS工艺技术制造。采用穿刺式配置后,振荡器的测量启动时间和启动能量分别比未采用穿刺式配置时减少了1/11和1/5。稳定振荡时的功耗为30 μW。
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引用次数: 1
A Capacitance Varying Charge Pump with Exponential Stage-number Dependence and its Implementation by MEMS Technology 指数级数依赖的电容变电荷泵及其MEMS技术实现
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2023ecp5019
Menghan Song, T. Ikehashi
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引用次数: 0
An Extension of Physical Optics Approximation for Dielectric Wedge Diffraction for a TM-Polarized Plane Wave tm偏振平面波介质楔衍射物理光学近似的推广
4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2023ecp5027
Duc Minh NGUYEN, Hiroshi SHIRAI, Se-Yun KIM
In this study, the edge diffraction of a TM-polarized electromagnetic plane wave by two-dimensional dielectric wedges has been analyzed. An asymptotic solution for the radiation field has been derived from equivalent electric and magnetic currents which can be determined by the geometrical optics (GO) rays. This method may be regarded as an extended version of physical optics (PO). The diffracted field has been represented in terms of cotangent functions whose singularity behaviors are closely related to GO shadow boundaries. Numerical calculations are performed to compare the results with those by other reference solutions, such as the hidden rays of diffraction (HRD) and a numerical finite-difference time-domain (FDTD) simulation. Comparisons of the diffraction effect among these results have been made to propose additional lateral waves in the denser media.
本文分析了二维介质楔对tm偏振电磁平面波的边缘衍射。利用几何光学射线确定的等效电流和等效电流,导出了辐射场的渐近解。这种方法可以看作是物理光学(PO)的扩展版本。衍射场用余切函数表示,其奇异性与GO阴影边界密切相关。数值计算的结果与其他参考解的结果进行了比较,如衍射隐射线(HRD)和时域有限差分(FDTD)数值模拟。这些结果之间的衍射效应进行了比较,提出了在密度较大的介质中附加的侧波。
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引用次数: 0
Estimation of Core Size Distribution of Magnetic Nanoparticles using High-<i>T</i><sub>c</sub> SQUID Magnetometer and Particle Swarm Optimizer-based Inversion Technique 利用High-&lt;i&gt;T&lt;/i&gt;&lt;sub&gt;c&lt;/sub&gt;基于SQUID磁强计和粒子群优化器的反演技术
4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2023sep0002
Mohd Mawardi Saari, Mohd Herwan Sulaiman, Toshihiko Kiwa
In this work, the core size estimation technique of magnetic nanoparticles (MNPs) using the static magnetization curve obtained from a high-Tc SQUID magnetometer and a metaheuristic inversion technique based on the Particle Swarm Optimizer (PSO) algorithm is presented. The high-Tc SQUID magnetometer is constructed from a high-Tc SQUID sensor coupled by a flux transformer to sense the modulated magnetization signal from a sample. The magnetization signal is modulated by the lateral vibration of the sample on top of a planar differential detection coil of the flux transformer. A pair of primary and excitation coils are utilized to apply an excitation field parallel to the sensitive axis of the detection coil. Using the high-Tc SQUID magnetometer, the magnetization curve of a commercial MNP sample (Resovist) was measured in a logarithmic scale of the excitation field. The PSO inverse technique is then applied to the magnetization curve to construct the magnetic moment distribution. A multimodal normalized log-normal distribution was used in the minimization of the objective function of the PSO inversion technique, and a modification of the PSO search region is proposed to improve the exploration and exploitation of the PSO particles. As a result, a good agreement on the Resovist magnetic core size was obtained between the proposed technique and the non-negative least square (NNLS) inversion technique. The estimated core sizes of 8.0484 nm and 20.3018 nm agreed well with the values reported in the literature using the commercial low-Tc SQUID magnetometer with the SVD and NNLS inversion techniques. Compared to the NNLS inversion technique, the PSO inversion technique had merits in exploring an optimal core size distribution freely without being regularized by a parameter and facilitating an easy peak position determination owing to the smoothness of the constructed distribution. The combination of the high-Tc SQUID magnetometer and the PSO-based reconstruction technique offers a powerful approach for characterizing the MNP core size distribution, and further improvements can be expected from the recent state-of-the-art optimization algorithm to optimize further the computation time and the best objective function value.
本文提出了一种基于高tc SQUID磁力计静态磁化曲线的磁性纳米颗粒(MNPs)核心尺寸估计技术和基于粒子群优化(PSO)算法的元启发式反演技术。高tc SQUID磁强计由高tc SQUID传感器与磁通互感器耦合构成,用于检测样品的调制磁化信号。磁化信号通过磁通互感器平面差动检测线圈顶部试样的横向振动来调制。利用一对初级线圈和励磁线圈来施加平行于检测线圈敏感轴的励磁场。利用高tc SQUID磁力计,测量了商用MNP样品(Resovist)在对数尺度上的磁化曲线。然后将粒子群反演技术应用于磁化曲线,构造磁矩分布。采用多模态归一化对数正态分布对粒子群反演技术的目标函数进行最小化,并对粒子群搜索区域进行了改进,以提高粒子群粒子的探测和开发效率。结果表明,该方法与非负最小二乘(NNLS)反演技术在Resovist磁芯尺寸上有较好的一致性。估计的磁芯尺寸为8.0484 nm和20.3018 nm,与文献中使用商用低tc SQUID磁力计与SVD和NNLS反演技术报道的值吻合良好。与NNLS反演技术相比,PSO反演技术具有无需参数正则化即可自由探索最优岩心尺寸分布的优点,并且由于构造分布的平稳性,易于确定峰值位置。高tc SQUID磁强计与pso重构技术的结合为表征MNP磁芯尺寸分布提供了强有力的方法,并且可以期待最新的优化算法进一步改进,以进一步优化计算时间和最佳目标函数值。
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引用次数: 0
A Brief History of Nyquist Analog-to-Digital Converters 奈奎斯特模数转换器简史
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2022cti0002
A. Matsuzawa
SUMMARY This paper reviews and discusses a brief history of Nyquist ADCs. Bipolar flash ADCs for early development stage of HDTV and digital oscilloscopes, a Bi-CMOS two-step flash ADC using resistive interpolation for home HDTV receivers, a CMOS two-step flash ADC us-ing capacitive interpolation for handy camcorders, pipelined ADCs using CMOS operational amplifiers, CMOS flash ADCs using dynamic comparator and digital o ff set compensation, SAR ADCs using low noise dynamic comparators and MOM capacitors, and hybrid ADCs are reviewed.
本文回顾和讨论了奈奎斯特adc的简史。本文综述了用于高清电视和数字示波器早期开发的双极快闪ADC、用于家庭高清电视接收机的双CMOS两步快闪ADC、用于便携式摄像机的电容式快闪ADC、使用CMOS运算放大器的流水线式ADC、使用动态比较器和数字失调补偿的CMOS快闪ADC、使用低噪声动态比较器和MOM电容的SAR ADC以及混合ADC。
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引用次数: 0
A New SIDGS-Based Tunable BPF Design Method with Controllable Bandwidth 一种基于sidgs的可控带宽可调BPF设计新方法
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2022ecp5062
Weiyu Zhou, K. Wada
SUMMARY This paper provides a new method to implement substrate integrated defected ground structure ( SIDGS)-based bandpass filter(BPF) with adjustable frequency and controllable bandwidth. Compared with previous literature, this method implements a new SIDGS-like resonator capable of tunable frequency in the same plane as the slotted line using a varactor diode, increasing the design flexibility. In addition, the method solves the problem that the tunable BPF constituted by the SIDGS resonator cannot control the bandwidth by introducing a T-shaped non-resonant unit. The theoretical design method and the structural design are shown. Moreover, the configured structure is fabricated and measured to show the validity of the design method in this paper.
本文提出了一种频率可调、带宽可控的基于衬底集成缺陷接地结构(SIDGS)的带通滤波器(BPF)的实现方法。与以往文献相比,该方法利用变容二极管实现了一种新的类sigs谐振器,其频率可在与槽线相同的平面上调谐,增加了设计的灵活性。此外,该方法通过引入t型非谐振单元,解决了由SIDGS谐振腔构成的可调谐BPF无法控制带宽的问题。给出了理论设计方法和结构设计。并对配置结构进行了制作和实测,验证了设计方法的有效性。
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引用次数: 0
A Compact Fully-Differential Distributed Amplifier With Coupled Inductors in 0.18-μm CMOS Technology 基于0.18 μm CMOS技术的全差分分布式电感耦合放大器
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2023mmp0006
K. Kawahara, Y. Umeda, K. Takano, S. Hara
SUMMARY This paper presents a compact fully-differential distributed amplifier using a coupled inductor. Differential distributed amplifiers are widely required in optical communication systems. Most of the distributed amplifiers reported in the past are single-ended or pseudo-differential to-pologies. In addition, the differential distributed amplifiers require many inductors, which increases the silicon cost. In this study, we use differentially coupled inductors to reduce the chip area to less than half and eliminate the difficulties in layout design. The challenge in using coupled inductors is the capacitive parasitic coupling that degrades the flatness of frequency response. To address this challenge, the odd-mode image parameters of a differential artificial transmission line are derived using a simple loss-less model. Based on the analytical results, we optimize the dimensions of the inductor with the gradient descent algorithm to achieve accurate impedance matching and phase matching. The amplifier was fabricated in 0.18-μm CMOS technology. The core area of the amplifier is 0.27 mm 2 , which is 57% smaller than the previous work. Besides, we demonstrated a small group delay variation of ±2.7 ps thanks to the optimization. the amplifier successfully performed 30-Gbps NRZ and PAM4 transmissions with superior jitter performance. The proposed technique will promote the high-density integration of differential traveling wave devices.
本文提出了一种采用耦合电感的紧凑全差分分布式放大器。差分分布式放大器在光通信系统中有着广泛的应用。过去报道的大多数分布式放大器都是单端或伪差分放大器。此外,差分分布式放大器需要许多电感,这增加了硅的成本。在这项研究中,我们使用差分耦合电感将芯片面积缩小到一半以下,并消除了布局设计的困难。使用耦合电感的挑战在于电容寄生耦合会降低频率响应的平坦度。为了解决这一问题,采用简单的无损模型推导了差分人工传输线的奇模图像参数。在分析结果的基础上,采用梯度下降算法对电感的尺寸进行优化,以实现精确的阻抗匹配和相位匹配。该放大器采用0.18 μm CMOS工艺制作。放大器的核心面积为0.27 mm2,比以前的工作缩小了57%。此外,由于优化,我们证明了±2.7 ps的小群体延迟变化。放大器成功地进行了30 gbps的NRZ和PAM4传输,具有优越的抖动性能。该技术将促进差动行波器件的高密度集成。
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引用次数: 0
Design of a Capacitive Coupler for Underwater Wireless Power Transfer Focused on the Landing Direction of a Drone 一种聚焦无人机着陆方向的水下无线输电电容耦合器设计
4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2023ecp5023
Yasumasa NAKA, Masaya TAMURA
This paper presents the design of a capacitive coupler for underwater wireless power transfer focused on the landing direction of a drone. The main design feature is the relative position of power feeding/receiving points on the coupler electrodes, which depends on the landing direction of the drone. First, the maximum power transfer efficiencies of coupled lines with different feeding positions are derived in a uniform dielectric environment, such as that realized underwater. As a result, these are formulated by the coupling coefficient of the capacitive coupler, the unloaded qualify factor of dielectrics, and hyperbolic functions with complex propagation constants. The hyperbolic functions vary depending on the relative positions and whether these are identical or opposite couplers, and the efficiencies of each coupler depend on the type of water, such as seawater and tap water. The design method was demonstrated and achieved the highest efficiencies of 95.2%, 91.5%, and 85.3% in tap water at transfer distances of 20, 50, and 100 mm, respectively.
针对无人机的着陆方向,设计了一种用于水下无线电力传输的电容耦合器。主要的设计特点是功率馈送/接收点在耦合器电极上的相对位置,这取决于无人机的着陆方向。首先,推导了在均匀介质环境下不同馈电位置耦合线的最大功率传输效率,例如在水下实现的传输效率。因此,这些都是由电容耦合器的耦合系数、介质的空载合格系数和具有复传播常数的双曲函数来表示的。双曲函数的变化取决于相对位置,以及这些耦合器是相同的还是相反的,每个耦合器的效率取决于水的类型,如海水和自来水。实验结果表明,该设计方法在自来水传输距离为20、50和100 mm时的效率最高,分别为95.2%、91.5%和85.3%。
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引用次数: 0
Nonvolatile Storage Cells Using FiCC for IoT Processors with Intermittent Operations 使用FiCC的非易失性存储单元用于间歇操作的物联网处理器
IF 0.5 4区 工程技术 Q4 Engineering Pub Date : 2023-01-01 DOI: 10.1587/transele.2022ctp0001
Yuki Abe, Kazutoshi Kobayashi, Jun Shiomi, Hiroyuki Ochi
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引用次数: 0
期刊
IEICE Transactions on Electronics
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