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A NOVEL CCII-BASED TUNABLE INDUCTANCE AND HIGH FREQUENCY CURRENT-MODE BAND PASS FILTER APPLICATION

机译:基于新型CCII的可调电感和高频电流模式带通滤波器应用

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In this paper, we introduce an implementation of a CCII-based grounded inductance operating in class AB. In order to get tunable characteristics of the design, a translinear CCII configuration is used as a basic block for its high level of controllability. A frequency characterization of the translinear CCII is done. In order to optimize its static and dynamic characteristics, an algorithmic driven methodology is developed ending to the optimal transistor geometries. The optimized CCII has a current bandwidth of 1.28 GHz and a voltage bandwidth of 5.48 GHz. It is applied in the simulated inductance design. We first consider the conventional topology of the grounded inductance based on the generalized impedance converter principle. Making use of the controllable series parasitic resistance at port X in translinear CCII, we design tunable characteristics of the inductance. The effect of current conveyor's nonidealities has been taken into account. A compensation strategy has been presented. It is based on the insertion of a high active CCII-based negative resistance and a very low passive resistance. The compensation strategy does not affect the inductance tuning process. Simulation results show that the proposed inductance can be tuned in the range [0.025 μH; 15.4 μH]. The simulated inductance has been applied in a fully integrated tunable high frequency band pass filter to illustrate the versatility of the circuit. The filter is electrically tunable by controlling the conveyor's bias current.
机译:在本文中,我们介绍了一种以AB类工作的基于CCII的接地电感的实现。为了获得设计的可调特性,跨线性CCII配置被用作其高可控性的基本模块。对跨线性CCII进行了频率表征。为了优化其静态和动态特性,开发了一种算法驱动的方法,该方法以最佳的晶体管几何形状为终点。优化的CCII的电流带宽为1.28 GHz,电压带宽为5.48 GHz。它被应用在模拟电感设计中。我们首先考虑基于广义阻抗转换器原理的接地电感的常规拓扑。利用跨线性CCII中端口X处的可控串联寄生电阻,我们设计了电感的可调特性。已经考虑了当前传送带的非理想性的影响。已经提出了一种补偿策略。它基于插入基于CCII的高有源负电阻和非常低的无源电阻。补偿策略不影响电感调谐过程。仿真结果表明,所建议的电感可以在[0.025μH; 15.4μH]。模拟电感已应用于完全集成的可调高频带通滤波器中,以说明电路的多功能性。该滤波器可通过控制传送带的偏置电流进行电调谐。

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