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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II, Express Briefs >Design of highly linear tunable CMOS OTA for continuous-timefilters
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Design of highly linear tunable CMOS OTA for continuous-timefilters

机译:用于连续时间滤波器的高度线性可调CMOS OTA设计

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摘要

An analytical method based on the standard square-law metal-oxide-semiconductor (MOS) modeling for the design of highly linear, fully differential complementary metal-oxide-semiconductor (CMOS) operational transconductance amplifier (OTA) is presented. The proposed circuit implementation combines a cross-coupled quad cell and a source-coupled differential pair, as well as the current mirror technique in the output stage. As a result, improved linearity of the developed OTA over the large tuning range is obtained. SPICE simulations show that for 0.5-μm HP AMOS14TB process (MOSIS) with a 2.5 V power supply, total harmonic distortion (THD) at 2.5Vpp is less than 0.5%. The dynamic range is equal to 76 dB at power consumption 5.7 mW. The alternative OTA structures are also discussed and compared to the basic version; for this circuit THD at 2.5Vpp is less than 0.2%, however, the circuit is much more sensitive to the transistor mismatch. As an example, the OTA is used to design a third-order elliptic lowpass filter in the high-frequency range. The cutoff frequency of the filter is tunable in the range of 4.6-29.6 MHz
机译:提出了一种基于标准平方律金属氧化物半导体(MOS)建模的分析方法,用于设计高度线性,全差分互补金属氧化物半导体(CMOS)运算跨导放大器(OTA)。拟议的电路实现将交叉耦合的四单元和源极耦合的差分对以及输出级的电流镜技术结合在一起。结果,在较大的调谐范围上获得了改进的OTA的线性。 SPICE仿真显示,对于采用2.5 V电源的0.5μmHP AMOS14TB工艺(MOSIS),2.5Vpp时的总谐波失真(THD)小于0.5%。在5.7 mW的功耗下,动态范围等于76 dB。还讨论了其他OTA结构,并将其与基本版本进行了比较。对于该电路,在2.5Vpp时的THD小于0.2%,但是,该电路对晶体管失配更为敏感。例如,OTA用于设计高频范围内的三阶椭圆低通滤波器。滤波器的截止频率在4.6-29.6 MHz范围内可调

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