尽管传统的单端正激变换器有诸多优点,如电路结构简单、元件数量少、输出纹波小等,但是也有其缺点。
But, despite its merits, the traditional single-ended forward converter has some shortcomings, such as simple circuit, low parts count, low output ripple, etc, it also has some shortcomings.
设计了一个双输入单输出的模糊控制器电路。
A circuit of two input single output fuzzy logic controller is presented in this paper.
介绍了一种新型单道,将超大规模可编程集成电路FPGA和一种新的方法相结合,对脉冲幅度甄别的输出信号直接进行处理。
A novel SPHA comprised by FPGA and a signal processing method that can avoid the error output of traditional SPHA is introduced in this paper.
分别对单输出和多输出情况进行了分析,最后得到一个考虑相关的近似功耗估算公式,将熵与电路功耗结合起来能够比较精确地估算电路功耗。
A power estimation formula with correlation of outputs concerned is deduced. The formula sets up the relationship between entropy and power dissipation, and gives an accurate estimation of power.
变送器触发源电路保证产生的脉冲串具有改善的波形,单稳态电路实现输出波形的稳定。
Pulse train produced by clock circuit of the transducer has improved waveform and output waveform is stable implemented by mono-stability circuit.
因此,研究具有多输入单输出特性的传感器的电路仿真模型建模方法具有实际意义和应用价值。
Therefore, the study on a circuit simulation modeling method of sensors with multiple-input and single-output characteristics has practical significance and application value.
给出了基本改进型和两级耦合后的信号产生电路仿真结果,并对这种混沌雷达信号源和单级考必兹混沌电路的输出信号频谱进行了比较。
The results of circuit simulation are given, and we compare the spectrum of output signal of the coupled circuit with that of modified Colpitts circuit.
单触发脉冲产生电路在放大单元的输出电平改变的时刻输出脉冲信号。
A single trigger pulse generating circuit outputs a pulse signal when an output level of an amplifying unit is changed.
本文提出了一种新结构的相关双取样读出电路,该电路不仅结构简单,同时具有功耗低、噪声小、单端输出等优点。
In the paper a new structure of the readout circuit CDS structure was presented, the circuit is not only simple in structure, but also low power consumption, low noise and single-ended output.
本文提出了一种新结构的相关双取样读出电路,该电路不仅结构简单,同时具有功耗低、噪声小、单端输出等优点。
In the paper a new structure of the readout circuit CDS structure was presented, the circuit is not only simple in structure, but also low power consumption, low noise and single-ended output.
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