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轨到轨输入放大器的使用场合以及需要注意的问题
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作者 xiyao zhang 《今日电子》 2017年第1期43-44,共2页
多年前我刚刚开始读研究生时做过一个项目,要在薄膜沉积系统的监测电路中使用运算放大器(op-amp)实现一个单位增益缓冲器。插入新模块后,我发现靠近正电源信号都发生了截波(clipping)。实验室的同事说道:“哎,要是用了轨到轨运算... 多年前我刚刚开始读研究生时做过一个项目,要在薄膜沉积系统的监测电路中使用运算放大器(op-amp)实现一个单位增益缓冲器。插入新模块后,我发现靠近正电源信号都发生了截波(clipping)。实验室的同事说道:“哎,要是用了轨到轨运算放大器就不会有这个问题了。”这是我第一次意识到需要使用一种特殊的运算放大器来避免输入信号过大而导致的截波现象。近年来, 展开更多
关键词 运算放大器 输入信号 轨到轨 使用场合 单位增益 监测电路 沉积系统 电源信号
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Bio-inspired multifunctional metallic glass
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作者 Yaxu He Yun Peng +5 位作者 Zhou Li Jiang Ma xiyao zhang Kesong Liu Weihua Wang Lei Jiang 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第3期271-276,共6页
As a novel class of metallic materials, bulk metallic glasses(BMGs) have attracted a great deal of attention owing to their technological promise for practical engineering applications. In nature, biological materials... As a novel class of metallic materials, bulk metallic glasses(BMGs) have attracted a great deal of attention owing to their technological promise for practical engineering applications. In nature, biological materials exhibit inherent multifunctional integration, which provides some inspiration for scientists and engineers to construct multifunctional artificial materials. In this contribution, inspired by superhydrophobic self-cleaning lotus leaves, multifunctional bulk metallic glasses(BMG) materials have been fabricated through the thermoplastic forming-based process followed by the SiO_2/soot deposition. To mimic the microscale papillae of the lotus leaf, the BMG micropillar with a hemispherical top was first fabricated using micro-patterned silicon templates based on thermoplastic forming. The deposited randomly distributed SiO_2/soot nanostructures covered on BMG micropillars are similar to the branch-like nanostructures on papillae of the lotus leaf. Micro-nanoscale hierarchical structures endow BMG replica with superhydrophobicity, a low adhesion towards water, and self-cleaning, similar to the natural lotus leaf. Furthermore, on the basis of the observation of the morphology of BMG replica in the Si mould, the formation mechanism of BMG replica was proposed in this work. The BMG materials with multifunction integration would extend their practical engineering applications and we expect this method could be widely adopted for the fabrication of other multifunctional BMG surfaces. 展开更多
关键词 多功能一体化 大块金属玻璃 仿生 金属材料 超疏水性 BMG 纳米结构 热塑性成形
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