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A Very Low Power Delta Sigma Modulator Using Optimized Bulk Driven Telescopic OTA for Biomedical Devices

机译:使用针对生物医学设备的优化批量驱动伸缩OTA的超低功耗Delta Sigma调制器

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This paper presented a very low power 2nd order feedforward (FF) delta sigma (ΔΣ) modulator implemented with switched capacitors (SC) integrators. These integrators are based on a telescopic operational transconductance amplifier (OTA) which used the bulk-driven technique, optimized via the particular swarm optimization (PSO) algorithm. The ΔΣ modulator was designed for ultra-low power implantable medical devices such as the ECG measurement tool. The proposed Bulk Driven fully differential telescopic OTA with very low threshold voltages was considered under ±0.5V supply voltage. The bulk-driven OTA was optimized through the PSO algorithm resulting in high performances. In fact, the OTA simulation results showed a DC gain of 64dB, a GBW of 575 kHz, a phase margin (PM) of 80.8 degrees and an input-referred noise of 1.3f.µ/√Hz for a low bias current of 0.075µA. The bulk driven telescopic OTA was implemented using TSMC 0.18µm CMOS technology and it consumed only 0.19µW. The designed FF ΔΣ modulator reached a peak SNR of 53dB and an ENOB of 8.54 bits while the total power consumption was only 0.386µW over a 250Hz signal bandwidth and a 25 kHz sampling frequency (Fs).
机译:本文介绍了一种采用开关电容器(SC)积分器实现的超低功耗二阶前馈(FF)ΔΣ(ΔΣ)调制器。这些积分器基于一个伸缩运算跨导放大器(OTA),该放大器使用体驱动技术,并通过特定的群体优化(PSO)算法进行了优化。 ΔΣ调制器设计用于超低功率可植入医疗设备,例如ECG测量工具。拟议的批量驱动全差动可伸缩OTA具有非常低的阈值电压,被认为在±0.5V电源电压下。通过PSO算法优化了批量驱动的OTA,从而获得了高性能。实际上,OTA仿真结果表明,对于0.075的低偏置电流,DC增益为64dB,GBW为575 kHz,相位裕量(PM)为80.8度,输入参考噪声为1.3f.µ /√Hz。微安。采用台积电(TSMC)0.18µm CMOS技术实现了批量驱动的伸缩式OTA,其功耗仅为0.19µW。设计的FFΔΣ调制器达到了53dB的峰值SNR和8.54位的ENOB,而在250Hz的信号带宽和25kHz的采样频率(Fs)上,总功耗仅为0.386µW。

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