Jaikla Winai, Buakhong Unchittha, Siripongdee Surapong, Khateb Fabian, Sotner Roman, Silapan Phamorn, Suwanjan Peerawut, Chaichana Amornchai
Department of Engineering Education, School of Industrial Education and Technology, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.
Department of Microelectronics, Brno University of Technology, Technická 10, 601 90 Brno, Czech Republic.
Sensors (Basel). 2021 Nov 6;21(21):7376. doi: 10.3390/s21217376.
This paper presents the design of a voltage-mode three-input single-output multifunction first-order filter employing commercially available LT1228 IC for easy verification of the proposed circuit by laboratory measurements. The proposed filter is very simple, consisting of a single LT1228 as an active device with two resistors and one capacitor. The output voltage node is low impedance, resulting in an easy cascade-ability with other voltage-mode configurations. The proposed filter provides four filter responses: low-pass filter (LP), high-pass filter (HP), inverting all-pass filter (AP-), and non-inverting all-pass filter (AP+) in the same circuit configuration. The selection of output filter responses can be conducted without additional inverting or double gains, which is easy to be controlled by the digital method. The control of pole frequency and phase response can be conducted electronically through the bias current (). The matching condition during tuning the phase response with constant voltage gain is not required. Moreover, the pass-band voltage gain of the LP and HP functions can be controlled by adjusting the value of resistors without affecting the pole frequency and phase response. Additionally, the phase responses of the AP filters can be selected as both lagging or leading phase responses. The parasitic effects on the filtering performances were also analyzed and studied. The performances of the proposed filter were simulated and experimented with a ±5 V voltage supply. For the AP+ experimental result, the leading phase response for 1 kHz to 1 MHz frequency changed from 180 to 0 degrees. For the AP- experimental result, the lagging phase response for 1 kHz to 1 MHz frequency changed from 0 to -180 degrees. The design of the quadrature oscillator based on the proposed first-order filter is also included as an application example.
本文介绍了一种电压模式三输入单输出多功能一阶滤波器的设计,该滤波器采用市售的LT1228集成电路,便于通过实验室测量对所提出的电路进行验证。所提出的滤波器非常简单,由一个LT1228作为有源器件以及两个电阻和一个电容组成。输出电压节点为低阻抗,从而易于与其他电压模式配置进行级联。所提出的滤波器在相同的电路配置中提供四种滤波器响应:低通滤波器(LP)、高通滤波器(HP)、反相全通滤波器(AP-)和同相全通滤波器(AP+)。输出滤波器响应的选择无需额外的反相或双倍增益,易于通过数字方法进行控制。极点频率和相位响应的控制可以通过偏置电流()以电子方式进行。在以恒定电压增益调整相位响应期间不需要匹配条件。此外,LP和HP功能的通带电压增益可以通过调整电阻值来控制,而不会影响极点频率和相位响应。此外,AP滤波器的相位响应可以选择为滞后或超前相位响应。还对滤波性能的寄生效应进行了分析和研究。所提出的滤波器的性能在±5V电源下进行了仿真和实验。对于AP+实验结果,1kHz至1MHz频率的超前相位响应从180度变为0度。对于AP-实验结果,1kHz至1MHz频率的滞后相位响应从0度变为-180度。基于所提出的一阶滤波器的正交振荡器设计也作为一个应用示例包含在内。