讨论了用扇形波导作为旋转模式滤波器的基本原理。
The basic principle of a rotating mode filter with fan-shaped waveguide is presented.
基于MOCCCII的双二阶电流模式滤波器的设计。
The design of current mode biquard filters based on MOCCCII.
本文提出了利用CMOSOTA综合连续时间电流模式滤波器的方法。
A methodology to synthesise continous-time current-mode filters using CMOS OTAs is presented.
提出了由电压模式有源RC滤波器导出基于第三代电流传输器的电流模式滤波器的方法。
This article describes a new method of changing the variable of state active RC filter to current-mode filter base on the third-generation current conveyor.
本文提出了两种基于MOCCII(多端输出的第二代电流传输器)的多输入多输出的电流模式滤波器。
Two kinds of current-mode filters with multiple inputs and multiple outputs based on MOCCII (second generation current conveyor with multiple-terminal outputs) are presented.
本文分析了SOI脊波导的单模条件,结合SOI波导模型提出了内嵌圆式正八边形谐振腔的回音壁模式滤波器。
The single-mode conditions of the SOI-based rib waveguide is first analyzed, and applied to the whispering gallery modes embedded circular octagonal resonator filter.
以AOA电流模式多路输出积分器和AOA电流模多路输出比例电路为基础,设计了多功能二阶电流模式滤波器。
Based on a current-mode integrator and proportion circuit multiple outputs by AOA, multifunctional second-order current-mode filter was proposed.
最后本文详细介绍了高阶电流模式滤波器的系统方法,阐述了等效电路替代法和多环反馈法,给出了设计的具体步骤。
In the last section, as the design methods of high-order current-mode integrated filters, the equivalent circuits and the multi-loop feedbacks are systematically expounded.
在建立了MOS场效应管小信号模型的基础上,采用信号流图的方法设计了一个三输入一输出的二阶通用有源电流模式滤波器。
By signal flow graph, a new universal active current mode second-order filter was designed basis on establishing MOS transistor small-signal model. The filter is of three-input and one-output.
基于MOCCII和MCCCII的电流模式滤波器具有动态范围大、线性度好、高速、低耗、结构简单等特点成为众多电流模式滤波器中最具发展潜力的一种滤波器。
Current filters based on MOCCII and MCCCII may become the most potential because they have large dynamic range, good linearity, high speed, low power, simple structures.
基于MOCCII和MCCCII的电流模式滤波器具有动态范围大、线性度好、高速、低耗、结构简单等特点成为众多电流模式滤波器中最具发展潜力的一种滤波器。
Current filters based on MOCCII and MCCCII may become the most potential because they have large dynamic range, good linearity, high speed, low power, simple structures.
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