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其他书籍 Describe diference car junction.
Describe diference car junction.
matlab例程 基于Matlab对约瑟夫森结(Josephson Junction)RCSJ模型的交直流I-V特性及非线性混沌现象进行数值模拟。通过计算机数值模拟得到该模型的非线性微分方程数值解
基于Matlab对约瑟夫森结(Josephson Junction)RCSJ模型的交直流I-V特性及非线性混沌现象进行数值模拟。通过计算机数值模拟得到该模型的非线性微分方程数值解,研究了RCSJ模型中各参量对约瑟夫森结的影响,进而简要分析其I-V特性和非线性混沌现象的产生机理,绘制出约瑟夫森结的交直流I-V特性曲线、非线性微分方程的相图及 ...
文件格式 摘要:本文基于Matlab对约瑟夫森结(Josephson Junction)RCSJ模型的交直流I-V特性及非线性混沌现象进行数值模拟。通过计算机数值模拟得到该模型的非线性微分方程数值解
摘要:本文基于Matlab对约瑟夫森结(Josephson Junction)RCSJ模型的交直流I-V特性及非线性混沌现象进行数值模拟。通过计算机数值模拟得到该模型的非线性微分方程数值解,研究了RCSJ模型中各参量对约瑟夫森结的影响,进而简要分析其I-V特性和非线性混沌现象的产生机理,绘制出约瑟夫森结的交直流I-V特性曲线、非线性微分方 ...
模拟电子 COOLMOS_原理结构
看到不少网友对COOLMOS感兴趣,把自己收集整理的资料、个人理解发出来,与大家共享。个人理解不一定完全正确,仅供参考。COOLMOS(super junction)原理,与普通VDMOS的差异如下:
对于常规VDMOS器件结构,大家都知道Rdson与BV这一对矛盾关系,要想提高BV,都是从减小EPI参杂浓度着手,但是外延层又是正向电流流通的通道,E ...
模拟电子 IC封装热计算研究
Many thermal metrics exist for integrated circuit (IC) packages ranging from θja to Ψjt.Often, these thermal metrics are misapplied by customers who try to use them to estimate junction temperatures in their systems.
传感与控制 多远程二极管温度传感器 (Design Considerat
多远程二极管温度传感器-Design Considerations for pc thermal management
Multiple RDTS (remote diode temperature sensing) provides the most accurate method of sensing an IC’s junction temperature. It overcomes thermal gradient and placement issues encountered when trying to place external sensors. PC ...
技术书籍 场效应管产品指南
The super-junction structure, which has P-type pillar layers as shown left,
realizes high withstand voltage and ON-resistance lower than the conventional
theoretical limit of silicon.
Java编程 These Matlab files are a convenient interface for the Java library containing the implementation of
These Matlab files are a convenient interface for the Java library
containing the implementation of thin junction tree filters (TJTF).
电路图 AZ1117H
The AZ1117 is a series of low dropout three-terminal regulators with a dropout of 1.15V at 1A output current.
The AZ1117 series provides current limiting and thermal shutdown. Its circuit includes a trimmed bandgap reference to assure output voltage accuracy to be within 1% for 1.5V, 1.8V, 2.5V, 2.8 ...