1)  floating-gate
悬浮栅
1.
A dynamic HSPICE behavioral macromodel for the floating-gate ISFET was founded based on the site-binding model.
通过对ISFET敏感机理的理论分析,根据表面基模型,建立了悬浮栅结构ISFET器件的HSPICE动态行为模型,对ISFET器件的动态特性进行仿真得到时间响应曲线,并探讨了薄膜等效电阻、薄膜等效电容、互连线寄生电容和寄生电阻等因素与动态特性中延迟时间和迟滞等不理想因素的关系,为ISFET/REFET差分结构集成传感器芯片设计提供理论指导。
2)  floating gate
悬浮栅极
1.
Inserting the Si-dot-layer into the insulator membrane, we formed a special MOS unit with a floating gate.
用减压气相淀积法(LPCVD),在二氧化硅以及石英基板上自组织形成了高密度的(10~(11)cm~(-2))纳米尺寸的半球状硅单晶粒(硅量子点),并进一步利用自组织生成的硅量子形成具有悬浮栅极的MOS单元,验证了硅量子点的量子效应。
3)  hybrid suspended gate FET
复合悬浮栅场效应管
4)  suspension
悬浮
1.
Mechanism of Cylindrical Profiled Materials' Suspension in the Horizontal Transportation Pipe;
水平输送管道内圆柱状型料的悬浮机理
2.
Experimental Study on the Suspension of Floating Solids in an Agitated Tank;
自浮固体的固液悬浮问题实验研究
3.
Preliminary Test on the Suspension and Thickening of Citrus Nectar;
桔带肉果汁的悬浮增稠试验
5)  suspending
悬浮
1.
Research on Numerical Simulation of Suspending Boundary Plane in Airstream Distribution;
气流组织中悬浮边界面的数值仿真技术的研究
2.
Theoretic Analysis and Experimental Investigation on Production of Drip and Drip Suspending Freezing;
水滴生成及其悬浮冻结的理论分析与实验研究
3.
The experiment not only shows that the particles whose length,width and height are about 3-5mm,can be hardened below 10℃ by freezing or filling with CO2,but also concludes that artificial temperature difference can make the surface layer of the particles form quickly a coat of suspending and thickening agent which increa.
本文从工艺技术着手,研制出了不同以往的、悬浮性持久、口感清爽的粒粒菠萝饮料。
6)  suspended
悬浮
1.
Research on the Synthesis of Nanodiamond by Laser Irradiation on Graphite Particles Suspended in Water;
激光轰击水中悬浮石墨颗粒合成纳米金刚石的研究
2.
By using electrodynamics method,research has been into shape change and volume change of particles suspended in ER fluids by electric field and relative rate of change for the volume and shape is calculated,electrodilatancy effect is explained.
运用电动力学方法 ,研究了电流变液中悬浮颗粒在外电场作用下其体积和形状的变化 ,并计算了其体积和形状的相对变化率 ,解释了电涨效应 。
参考词条
补充资料:20%克-井悬浮剂
分子式:
分子量:
CAS号:

密度:1.18~1.20
性状:浅褐色易流动悬浮液体。
溶解情况:可与水任意混合。
用途:一种杀菌剂混合剂。具有增效、兼治和延缓病菌对克瘟灵产生抗性等特点,防治水稻稻瘟病有特效,并能兼治水稻纹枯病、稻屈病等病害。
制备或来源:将克瘟灵、井冈霉素、助剂、水投入砂磨锅中,进行混合、粗碎,然后转入砂磨机中细碎而制得。含克瘟灵15%,井冈霉素5%。
备注:不燃不爆。悬浮率大于90%,pH值5~6,在正常条件下贮存稳定期为2年。对人畜毒性低,使用较安全。


说明:补充资料仅用于学习参考,请勿用于其它任何用途。