12 research outputs found

    Design and Analysis of Operational Amplifiers for High-Resolution Pipelined ADC

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    运算放大器电路被广泛应用于采样保持电路和乘法型数模转换器(Multiplying-DAC,MDAC)中,是流水线式模数转换器(PipelinedADC)的核心模块之一,它的性能直接影响了流水线式模数转换器的各项关键性能指标。因此,设计实现高增益、宽带宽、低功耗的运算放大器对高转换速度、高分辨率、低功耗的流水线ADC的设计具有重要意义。为了实现高增益和输出摆幅,我们采用两级运算放大器架构,第一级采用套筒式共源共栅运算放大器,并利用增益自举技术(Gainboostingtechnique)来进一步提高增益,第二级采用MOS管负载的共源极运算放大器,来获得较大摆幅,为了获得更好的幅频特性,频率补偿采...Operational amplifier is the kernel module of MDAC in pipelined ADC, while the nonideal characteristics of the operational amplifier may have a strong impact on the function of MDAC, and whose functions determine the precision and speed of pipelined ADC. To realize higher gain and wide output swing, two-stage operational amplifiers is achieved in this paper, whose first stage is fulfilled by gain ...学位:工程硕士院系专业:信息科学与技术学院_集成电路学号:2312011115301

    一种增益自举运算放大器的分析与优化设计

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    基于开关电容的流水线ADC设计中,运算放大器的建立时间和精度是关键指标。而增益自举运算放大器的建立时间分析比较复杂。本文通过理论推导和模型简化的方法分析其主运放和辅助运放的单位增益带宽及相位裕度对建立时间的影响。提出了一种P型与N型传输函数相同的辅助运放电路,并以此设计了一个高速、低功耗的自举运算放大器

    陕北不同沟道土地盐碱化现状及影响因素

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    沟道土地是陕北黄土丘陵沟壑区重要的土地资源。然而,当前对黄土高原沟道土地的盐碱化问题关注不够,对盐碱化的现状、发生机制和防治措施也缺乏深入系统的认识,知识储备不能满足生产实际的需要。本文以陕北黄土丘陵沟壑区自然和人为形成的沟道土地为研究对象,分别是延安顾屯新造耕地(治沟造地)、延川马家湾淤地坝土地和子洲黄土洼天然古聚湫土地,在这些流域内沿沟道采集土壤样品,测定土壤的电导率(EC)、pH值、含水量及粒度,分析土壤盐碱化的现状和影响因子。结果表明:马家湾淤地坝土地盐碱化最为严重,流域中游至上游均出现不同程度的盐碱化;顾屯新造地上游出现盐碱化,盐碱化程度较马家湾轻,而黄土洼古聚湫全流域未出现盐碱化。地下水位较浅是沟道土地发生盐碱化的主要影响因素,因此陕北沟道土地盐碱化防治应着力控制地下水位,建设良好的排水系统,加强排水

    聚羟基脂肪酸酯(PHAs)基止血材料研究进展

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    在意外事故、自然灾害及军事冲突中,人体会受到严重外部创伤,出现大量的不可控出血,极易导致伤员的缺血性休克甚至死亡。因此,伤口的快速止血是提高伤者存活率的关键,快速止血一般需要借助止血材料实现。聚羟基脂肪酸酯(PHAs)是一种天然高分子化合物,具有良好的生物相容性、生物可降解性、可改性等特性,其降解产物还具有促进活体细胞增殖和分化的作用,可加速伤口愈合,是一种极具潜力的止血材料,受到生物医学研发人员的广泛关注。但在应用过程中,PHAs基材料在韧性、抗菌和凝血能力方面仍然存在缺陷。因此,若想开发基于PHAs的止血材料,必须对其韧性、抗菌能力及凝血性能进行改善。本文综述了近年来PHAs基材料在韧性、抗菌能力以及凝血性能等方面的研究进展,可为PHAs基止血材料的研究开发提供参考。PHAs基止血材料具有较高的经济价值,相关研究对严重创伤的救护和新型生物材料的应用推广具有重要意义。During accidents, natural disasters and war, the body of human may suffer serious physical trauma, which will lead uncontrollable massive blood loss. This may further result in ischemic shock and death in the injured. Therefore, fast hemostasis of wound is the key to improve the survival rate of the injured. Fast hemostasis is generally based on using hemostatic materials. Polyhydroxyalkanoates (PHAs), a natural polymer compound, has good biocompatibility, biodegradability and modifying properties. The degradation products of PHAs can also promote the proliferation and differentiation of cells, which can further facilitate healing of wound. Hence PHAs is a good matter of developing hemostatic materials and has attracted extensive attention from biomedical materials researchers. However, PHAs-based materials still have some shortcomings, such as poor toughness, low antibacterial and coagulation performance. Before developing PHAs-based hemostatic materials, the toughness, antibacterial capacity and coagulation performance need to be improved. This review summarizes the research progress of PHAs-based hemostatic materials in recent years, which may provide effective methods and instructions for researching and developing the PHAs-based hemostatic materials. The successful development of PHAs-based hemostatic materials with great socioeconomic value will have significance for emergency of military and sustainable development of mankind. © 2023 Cailiao Daobaoshe/ Materials Review. All rights reserved

    太阳与内日球立体探测卫星计划科学目标建议

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    面向认知太阳风暴和保障航天安全的国家战略需求,中国近年来提出太阳与内日球立体探测卫星计划,拟适时部署环黄道面的拉格朗日点L3-L4-L5定点卫星星座和脱离黄道面的太阳极轨对偶卫星。通过该卫星计划的初步科学论证分析,建议将其科学目标凝练为太阳磁场、太阳风暴、太阳风,将其应用目标定位于日地空间天气预报,建议配置成像类、粒子类、波场类的综合科学载荷。此外,利用日地空间的三维磁流体数值模拟和计算机图形学的艺术可视化,形象地表达环黄道面卫星“对日凝视”和太阳极轨卫星“鸟瞰全景”的探测概念。中国太阳与内日球立体探测卫星计划将揭示太阳磁场的起源规律及其爆发机理、日地耦合系统的空间天气变化机理,并能够为日地空间天气三维数值建模提供观测数据驱动的初边值条件,必将极大推动空间天气的立体监测、前沿研究、精准预报的一体化进程

    Measurement of integrated luminosity of data collected at 3.773 GeV by BESIII from 2021 to 2024*

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