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1)  active full band network
有源全通网络
1.
The oscillation of multi frequency in the multiphase sinusoidal oscillators based on active full band networks is studied.
分析了有源全通网络的多相正弦振荡器的多频率振荡问题 ,得到了不同n值所对应的各振荡频率 。
2)  all-pass active network
全通有源网络
3)  active networks
有源网络
1.
On the basis of the active networks design for microwave amplifier, and in view of mutual influence of input and output impedences of a microwave transistor, an adaptive recursive method for impedence matching is presented in this paper.
该文以微波放大器的有源网络设计为基础,针对微波晶体管输入与输出阻抗相互影响的特点,提出了阻抗匹配的自适应递推设计方法。
2.
A general approach is presented for extending the useful operating frequencies and improving the performance of active networks realized by use operational amplifiers (OA S).
介绍了一种由运放实现的改善有源网络频率性能的通用方法。
4)  Active network
有源网络
1.
It was analyzed how to build the state equations of an active network containing an operational amplifier through the hybrid variable approach, which develops the application range of the hybrid variable approach.
利用混合变量法建立了有源网络的状态方程用该方法建立网络状态方程不必寻找网络的树,且简便易行、系统性强、运算量小,很适用于机辅分析。
2.
The network equations of linear active networks that may contain controlled sources of all types are established, in which nodal voltages and cotrolling currents are adopted as the circuit variables.
以网络的独立节点电压和控制电流为变量建立线性有源网络含各种受控源时的网络方程。
3.
The fault diagnosis problem of active network is studied in this paper with the emphasis upon its solvability and diagnosability.
本文研究有源网络的故障诊断问题,着重研究其可解性与可诊断性。
5)  All pass network
全通网络
6)  all-pass network
全通网络
1.
A applied design of the all-pass network which has fixed relative phaseshift is introduced in this paper .
介绍了一种相对相移固定的全通网络应用设计的原理、方法和步骤,根据作出的相对相移特性图进而获得的设计结果,可以满足工程应用的要求。
2.
Using a single CCⅡ and three passive components,four simplest all-pass networks are proposed in this paper.
本文提出了四种用单块CCⅡ及三个无源元件实现的最简一阶全通网络 ;灵敏度分析表明了网络的增益 (H)和相移 ( φ)对有源参数变化不敏感 ;实验结果证明了本文提出理论的实用价
补充资料:全互穿网络聚合物
分子式:
CAS号:

性质:若构成的IPN的两种聚合物成分都是交联的,网络链间完全相互缠结得到均相IPN,这是一种理想状态的IPN,所以这种IPN可称为完全的互穿聚合物网络,不过一般不特别加“完全”二字,除特殊情况外,实际上制成此种IPN是很困难的。

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