The development a fully-balanced current-tunable first-order low-pass filter with Caprio technique

Samran Lertkonsarn, W. Sa-ngiamvibool
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引用次数: 4

Abstract

This paper presents the development and design of a fully-balanced current-tunable first-order low-pass filter with Caprio technique, which could include the design and implementation of a first-order low-pass filter circuits. The filter consists of six bipolar junction transistor (BJT) and a single capacitor. The filter construction uses a bipolar junction transistor (BJT) as the main device and a single capacitor. A fully-balanced current-tunable first-order low-pass filter with Caprio technique developed. The architecture of the circuit is quite simple and proportional, symmetrical with signs of difference. Circuits developed into integrated circuits act like basic circuits for frequency filter circuits, current modes with Caprio techniques, obtained by improving the first-order low-pass filter for signal differences with incoming impedances. Adjusting the parameters of the circuit with the caprio technique achieves the optimal parameter value for correcting the total harmonic distortion value. The results of testing the operation of the circuit, a fully-balanced current-tunable first-order low-pass filter with Caprio technique developed and designed using the PSpice program. The simulation results showed good results in line with predicted theoretical analysis. The sensitivity of the device to the center frequency (ω0) response is low and independent of variables, the angular frequency is linear with wide current adjustment throughout the sweeping range of a wide frequency range, with a wide range of over tree orders of magnitude. Therefore, fully-balanced current-tunable first-order low-pass filter developed is very suitable to apply various applications regarding low frequency signal filtration, for example in biomedical systems, for example.
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利用Caprio技术开发了一种全平衡电流可调一阶低通滤波器
本文介绍了一种基于Caprio技术的全平衡电流可调谐一阶低通滤波器的开发与设计,包括一阶低通滤波器电路的设计与实现。该滤波器由六个双极结晶体管(BJT)和一个电容组成。该滤波器结构采用双极结晶体管(BJT)作为主器件和单个电容器。开发了一种全平衡电流可调一阶低通滤波器。电路的结构是相当简单和比例,对称与差异的迹象。发展为集成电路的电路就像频率滤波电路的基本电路一样,电流模式采用Caprio技术,通过改进一阶低通滤波器来处理信号与输入阻抗的差异。利用caprio技术对电路参数进行调整,得到校正总谐波失真值的最优参数值。测试电路的运行结果,使用PSpice程序开发和设计了一个完全平衡电流可调谐的一阶低通滤波器。仿真结果与理论分析的预测结果一致。该器件对中心频率(ω0)响应的灵敏度低且与变量无关,角频率呈线性,在宽频率范围内的整个扫频范围内具有宽电流调节,范围超过3个数量级。因此,开发的全平衡电流可调谐一阶低通滤波器非常适合用于低频信号滤波的各种应用,例如在生物医学系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
EUREKA: Physics and Engineering
EUREKA: Physics and Engineering Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
78
审稿时长
12 weeks
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