micro chip
- 网络微芯片;微型芯片;微型晶片;微晶片;微片
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The Development of Micro Chip Electrophoresis Analyser
微芯片电泳仪的研制
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Discernment technology-from micro chip to DNA
识别技术&从微型芯片到DNA
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Micro chip lab is considered as the most advanced technology in 21st century for its excellent merits .
芯片实验室技术以其卓越的优点被公认为是21世纪最为重要的前沿技术之一。
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The paper presents a high speed position orientation system based on the PTS ( Peripheral Transaction Serve ) function of traditional micro chip ( 196MX ) for asynchronous AC motor .
提出了一种基于PTS、采用传统单片机(196MX)的异步交流电动机在高速下精密位置定位系统。
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Methods The precise roller pump , micro chip unit ( MCU ) system , proportional integral differential ( PID ) algorithm and therma sensor ( < 0.5 mm diameter ) were adopted in this instrument .
方法采用精密蠕动泵、单片机控制(MCU)系统、比例积分微分(PID)算法和自制的小于0.5mm直径的温度传感器。
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Biologic compatibility , voltage-current characteristic and responsibility-spectrum characteristic were tested . Results show that the micro chip can generate enough stimulating current with the incident light in the safety range of human eyes , which can meet the demands of animal implantation tests .
对制作的芯片进行了生物相容性、伏安特性、响应度以及光谱特性的测量,结果表明,芯片在眼睛安全用光的范围内可以产生足够强度的刺激电流,满足动物植入实验的要求。
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Precise temperature control of a micro PCR chip
微型聚合酶反应芯片的精确温度控制
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High Heat Flux Phase-change Cooling for Micro Electronic Chip
微电子芯片高热流密度相变冷却技术
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The application of micro fluidic chip electrophoresis in separating clinical urine proteins
微流控芯片电泳在尿蛋白分离中的应用
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Application of Multidimensional Separation Mode in Micro Fluidic Chip
多维电色谱分离模式在微流控芯片中的应用
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Fiber Evanescent Wave Absorption Detection on Micro Biochemical Chip
生化芯片上的光纤消逝波吸收光度检测
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Study on Key Technologies of Micro Fluidic Chip Integrated with Micro Valveless Pump
集成微泵式微流控芯片关键技术的研究
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Micro Computer-Single Chip Computer STD Bus Hierarchically Industrial Control System
微型机&单片机STD总线分级工业控制系统
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Design of Dual PZT Actuators Based Micro Dispensing Chip
基于PZT厚膜驱动的微喷芯片的设计
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Optical detection on micro biochemical chip
微生化芯片内光探测的研究
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The research of multidimensional separation mode applied in micro fluidic chip and its application in life science is summarized .
综述了多维分离模式在微流控芯片中的应用以及多维芯片在生命科学中的应用。
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The paper put forward a micro fluidic chip based on arrayed - electrode integrated with detection electrode , and its control and detection system .
提出一种集成了检测电极的基于线性阵列电极的微流体芯片,及以此芯片为基础所构建的控制检测系统。
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Objective : Micro fluidic chip electrophoresis was used for verifying test of separating clinical urine proteins and was evaluated in clinic .
目的:将微流控芯片电泳用于临床尿蛋白分离的验证试验,评价其在临床上的应用价值。
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In the past decades , micro PCR chip is one of the hotspots in the development of micro systems for the biological and clinical applications .
在微系统朝着生物领域进军的过程中,微PCR芯片始终是研究的热点之一。
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Research on the fabrication of low voltage micro electrophoresis chip has been done . The technology design , layout design and fabrication experiments have been finished . The results of the experimental are discussed .
针对低电压电泳芯片分离电极阵列的研制难点进行了一定的探索,完成了电泳芯片的工艺设计、版图设计和工艺实验,研制出了电泳芯片原理性实验样品。
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The digitized video image is stored to a MCS-51 / micro - chip computer . The real time detection upon the moving parts ( e. g.toothpicks ) based on digital image processing .
利用摄像手段将运动中小尺寸工件(如牙签)的图象数字化,并存储到MCS-51单片机中,在数字图象处理技术的基础上对小尺寸工件进行实时检测。
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This design using ARM micro processing chip , sampling circuit , TFT display screens , etc constitute a double power supply switch system , the realization of common , the automatic backup power supply switch .
本设计利用ARM微处理芯片、采样电路、TFT显示屏等构成双电源自动切换系统,实现对常用、备用电源的自动切换。
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Single chip microcomputers are a kind of micro & chip computers rising at home and abroad in late years . They come out first with small volume , strong control function , simple hardware structure and low price .
单片计算机是国内外近年兴起的一种微片式计算机,它以体积小,控制功能强,系统硬件结构简单,价格低廉而崭露头角。
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Fabrication and application of multilayer SU-8 based micro dispensing array chip
基于多层SU-8结构的微喷阵列芯片的制作与应用研究
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Realization of a Rapid Micro Oscillating PCR Chip
一种可以实现快速检测的微振荡型PCR芯片
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A multi-system lumped heat capacity analysis has been adopted to simulate the thermal cycling of the micro chamber PCR chip .
本文采用多体系集总热容法分析了微腔型PCR芯片的热循环过程,研究了芯片的温度变化规律,并提出了芯片功耗的预测方法。
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Based on polyelectrolyte layer by layer self-assembly , a polyelectrolyte modified micro / nanofluidic chip with charge selectivity was fabricated in situ .
基于聚电解质层层自组装技术,原位构建了电荷选择性微流控芯片。
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Low Drop Out ( LDO ) regulator is a micro system on chip , it includes converter , sampling web , reference , differential amplifier , current limit and thermal protect circuits .
LDO是一个微型的片上系统,他包括调整管、采样网络、精密基准源、差分放大器、过流保护、过温保护等电路。
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Numerical simulation and lumped heat capacity analysis were carried out to study the thermal performances of the micro chamber PCR chip and micro continuous-flow PCR chip . Effects of the chip geometries , materials and boundary conditions on the thermal cyclings of the PCR chips were investigated .
采用数值模拟和集总热容法研究了现有的微腔型PCR芯片和微流控型PCR芯片的热循环过程,分析了芯片几何形状、材料、换热条件等因素对芯片热循环性能的影响;
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Thermal bonding technology for PMMA based micro flow through PCR chip
激光制备PMMA基PCR微流控芯片的热压键合研究