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A NEW STRUCTURE FOR CURRENT-MODE CONTINUOUS TIME GM-C FILTERS*

机译:电流模式连续时间GM-C滤波器的新结构*

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In this paper a new structure for the MLF (Multi Loop Feedback) Gm-C group of filters is presented, granting the advantages of both current-mode and fully balanced topologies to the conventional structure of the group. The ability of the structure to perform even more transfer functions (Low pass and Band Pass) than other members of the group is proved. Methods of enabling the proposed structure to perform other popular transfer functions are also presented. The favorite feature of systematical generation of the structure facilitates its arrangement for any order. For practical comparison, a Butterworth 4th-order LP filter with a cut-off frequency of 10MHz is designed in three different structures viz; the proposed one, the single-ended current mode, and fully balanced voltage mode. Simulation results show that the PSRR+,PSRR-,CMRR, Noise, THD, DR, consumed power (P) and Figure of Merit (FOM) of the new structure compared to its voltage mode counterpart are improved at least by factors of 36643, 59841, 4.75, 76, 2, 2.45, 1.17 and 509500, respectively. Compared to single ended current-mode type they are improved by factors of 40, 73, not defined, 1.3, 7.8, 150, 0.68 and 1763000, respectively. Although the above mentioned comparison, due to both the similarity of the used technology and the completeness of the results, is the most equitable one for the most definite conclusion, to further widen the extent of the comparison, the proposed structure is also compared with some other works yet assumed as its closet counterparts. This latter comparison also proves the certain superiorities of the proposed structure such that its FOM is from 8500 to 4512740 times larger than those of others. Closer tracking of the input signal at pass-band and more attenuation at stop-band are also achieved by this structure. These results strongly support the theoretical suggestions. Most favorably the much higher PSRR of the new structure makes it an extremely suitable choice for Mix-Mode (System-On- a Chip, SOC/SOI) applications where power supplies (and analog blocks) suffer severely from digital noise.
机译:在本文中,提出了一种新的MLF(多环反馈)Gm-C滤波器组结构,该结构将电流模式和完全平衡拓扑的优点赋予了该组的常规结构。事实证明,该结构能够执行比组中其他成员更多的传递函数(低通和带通)。还介绍了使建议的结构能够执行其他流行的传递函数的方法。系统生成结构的最喜欢的功能是便于按任何顺序排列。为了进行实际比较,在三种不同的结构中设计了一个截止频率为10MHz的Butterworth 4阶LP滤波器。提出了一种单端电流模式和完全平衡电压模式。仿真结果表明,与电压模式对应的新结构相比,新结构的PSRR +,PSRR-,CMRR,噪声,THD,DR,功耗(P)和品质因数(FOM)至少提高了36643、59841倍,4.75、76、2、2.45、1.17和509500。与单端电流模式类型相比,它们分别提高了40倍,73倍(未定义),1.3倍,7.8倍,150倍,0.68倍和1763000倍。尽管由于使用技术的相似性以及结果的完整性,上述比较是最确定结论的最公平的比较,但为进一步扩大比较范围,还对所建议的结构进行了比较。其他作品尚未被视为与壁橱相对应的作品。后面的比较还证明了所提出结构的某些优势,即其FOM比其他结构大8500至4512740倍。通过这种结构,还可以在通带处更紧密地跟踪输入信号,并在阻带处实现更大的衰减。这些结果有力地支持了理论建议。最有利的是,新结构的PSRR高得多,使其非常适合电源(和模拟模块)遭受数字噪声严重影响的混合模式(片上系统,SOC / SOI)应用。

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