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51.
分析了共用跨导级的正交下变频混频器的性能,包括电压转换增益、线性度、噪声系数和镜象抑制比,分析表明其在电流开关模式下比传统的Gilbert混频器对具有更好的性能.设计并优化了一个基于共用跨导级结构的用于超高频RFID阅读器的正交下变频混频器.在915MHz频段上,该混频器测得12.5dB的转换增益,10dBm的IIP3 ,58dBm的IIP2和17.6dB的SSB噪声系数.芯片采用0.18μm 1P6M RF CMOS工艺实现,在1.8V的电源电压下仅消耗3mA电流. 相似文献
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根据激光测距机对漫反向目标的测距方程,分析了激光测距机测程与背景噪声之间的关系,并对目前普遍存在的激光测距机测程指标与其实际测程不符的问题进行了深入探讨,最终给出了拟定及测定激光测距机测程的一种新的有效方法。 相似文献
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Robert D. Schmidt Eldon D. Case Jesse Giles III Jennifer E. Ni Timothy P. Hogan 《Journal of Electronic Materials》2012,41(6):1210-1216
Mg2Si is of interest as a thermoelectric (TE) material in part due to its low materials cost, lack of toxic components, and low mass density. However, harvesting of waste heat subjects TE materials to a range of mechanical and thermal stresses. To understand and model the material??s response to such stresses, the mechanical properties of the TE material must be known. The Mg2Si specimens included in this study were powder processed and then sintered via pulsed electrical current sintering. The elastic moduli (Young??s modulus, shear modulus, and Poisson??s ratio) were measured using resonant ultrasound spectroscopy, while the hardness and fracture toughness were examined using Vickers indentation. Also, the Vickers indentation crack lengths were measured as a function of time in room air to determine the susceptibility of Mg2Si to slow crack growth. 相似文献
55.
A New Strategy to Effectively Suppress the Initial Capacity Fading of Iron Oxides by Reacting with LiBH4 下载免费PDF全文
Yun Cao Yaxiong Yang Zhuanghe Ren Ni Jian Mingxia Gao Yongjun Wu Min Zhu Feng Pan Yongfeng Liu Hongge Pan 《Advanced functional materials》2017,27(16)
In this work, a new facile and scalable strategy to effectively suppress the initial capacity fading of iron oxides is demonstrated by reacting with lithium borohydride (LiBH4) to form a B‐containing nanocomposite. Multielement, multiphase B‐containing iron oxide nanocomposites are successfully prepared by ball‐milling Fe2O3 with LiBH4, followed by a thermochemical reaction at 25–350 °C. The resulting products exhibit a remarkably superior electrochemical performance as anode materials for Li‐ion batteries (LIBs), including a high reversible capacity, good rate capability, and long cycling durability. When cycling is conducted at 100 mA g?1, the sample prepared from Fe2O3–0.2LiBH4 delivers an initial discharge capacity of 1387 mAh g?1. After 200 cycles, the reversible capacity remains at 1148 mAh g?1, which is significantly higher than that of pristine Fe2O3 (525 mAh g?1) and Fe3O4 (552 mAh g?1). At 2000 mA g?1, a reversible capacity as high as 660 mAh g?1 is obtained for the B‐containing nanocomposite. The remarkably improved electrochemical lithium storage performance can mainly be attributed to the enhanced surface reactivity, increased Li+ ion diffusivity, stabilized solid‐electrolyte interphase (SEI) film, and depressed particle pulverization and fracture, as measured by a series of compositional, structural, and electrochemical techniques. 相似文献
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针对使用窄脉冲传输数据的超宽带系统,依据修正Hermite函数的正交、无直流分量等特性,提出了一种基于正交UWB脉冲的PSM超宽带系统.仿真结果表明该设计能改善系统性能,降低误码率. 相似文献
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Lu Liu Yao Ni Jiaqi Liu Yihang Wang Chengpeng Jiang Wentao Xu 《Advanced functional materials》2023,33(9):2210119
The autonomic nervous system maintains homeostasis in organisms through complex neural pathways and responds adaptively to changes in the external and internal environment. The fabrication of an artificial autonomic nervous system is reported that replicates combined effects of sympathetic and parasympathetic nerves on cardiac activity and pupillary control, to mimic the regulation of autonomic nervous system to external changes. The artificial autonomic nerve-controlled pupil contraction and relaxation, modulating the rate of heartbeats for normal cardiac rhythm and arrhythmia as reflected by blink rates of a signal indicator. These functions are switched by using a parallel-channeled synaptic transistor with a special n-i-p heterostructure that has a 2D h-BN insulator in the middle to provide barrier against ion injection into the 2D MoS2 bottom n-channel and enable short-term plasticity as induced by acetylcholine, and the electrochemical doping reaction occurred at the P3HT nanowire p-channels on top to enable relatively long-term plasticity as induced by noradrenaline. Low-energy consumption down to femtojoule and an ultrahigh paired-pulse facilitation index up to ≈455% are demonstrated. An artificial neural network based on device characteristics achieves a high recognition accuracy for electrocardiogram patterns. This study extends insights into artificial nerves-inspired biological signal processing and recognition. 相似文献