<p>This paper illustrates the practical application of a mixed-mode universal filter (MMUF) circuit employing three current feedback operational amplifiers, two grounded capacitors, and three to five resistors. In other words, the current-mode (CM) filter selection uses three resistors, the transadmittance-mode (TAM) and transimpedance-mode (TIM) filter choices need four resistors, and voltage-mode (VM) one includes five resistors. However, one resistor-matching constraint is required for the all-pass and notch filter responses of the CM, TIM, VM, and TAM filters. Also, two resistor-matching constraints exist for the high-pass filter responses of the CM and TIM filters. 0.13&#xa0;µm IBM CMOS technology parameters and supply voltages of ± 0.75&#xa0;V are used in the SPICE simulations. Numerous experimental investigations corroborate the theory.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Second-Order Mixed-Mode Multi-Input Single-Output Universal Filter Using Three Current Feedback Operational Amplifiers

  • Halil Alpaslan

摘要

This paper illustrates the practical application of a mixed-mode universal filter (MMUF) circuit employing three current feedback operational amplifiers, two grounded capacitors, and three to five resistors. In other words, the current-mode (CM) filter selection uses three resistors, the transadmittance-mode (TAM) and transimpedance-mode (TIM) filter choices need four resistors, and voltage-mode (VM) one includes five resistors. However, one resistor-matching constraint is required for the all-pass and notch filter responses of the CM, TIM, VM, and TAM filters. Also, two resistor-matching constraints exist for the high-pass filter responses of the CM and TIM filters. 0.13 µm IBM CMOS technology parameters and supply voltages of ± 0.75 V are used in the SPICE simulations. Numerous experimental investigations corroborate the theory.