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An OTA gain enhancement technique for low power biomedical applications

机译:低功耗生物医学应用的OTA增益增强技术

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摘要

The performance requirement of an operational trans-conductance amplifier (OTA) for the high gain and low power neural recording frontend has been addressed in this paper. A novel split differential pair technique is proposed to improve the gain of the OTA without any additional bias current requirements. The design demonstrates a significant performance enhancement when compared to existing techniques, such as gain-boosting and recycling. A qualitative and quantitative treatment is presented to explore the impact of the split ratio on the performance parameters of gain, bandwidth, and linearity. A prototype implemented in TSMC 65 nm CMOS technology achieved 68 dB open loop-gain (13 dB higher than the conventional circuit) and a 17 kHz 3-dB bandwidth. A linearity of - 62 dB has been achieved with 7 mV pk-pk signal at the input. The circuit operates from a 1 V supply and draws 0.6 uA static current. The prototype occupies 3300 um(2) silicon area.
机译:本文已经解决了高增益和低功耗神经记录前端的操作传导放大器(OTA)的性能要求。 提出了一种新的分离差分对技术,以改善OTA的增益,而无需任何额外的偏置电流要求。 与现有技术相比,该设计演示了显着的性能增强,例如增益升高和回收。 提出了一种定性和定量的处理,以探讨分流比对增益,带宽和线性性能参数的影响。 在TSMC 65nm CMOS技术中实现的原型实现了68 dB开环增益(高于传统电路的13dB)和17kHz 3-DB带宽。 输入的线性度为-62dB,在输入处具有7个MV PK-PK信号。 电路从1 V供电操作,绘制0.6 UA静态电流。 原型占用3300 um(2)硅区域。

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