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A power efficient programmable gain boosting current mirror for biomedical electronics

机译:用于生物医学电子产品的功率高效的可编程增益增强电流镜

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In this paper, a power efficient gain boosting current mirror with fast stand-by recovery (4.5μs) and a maximum gain of 80dB is proposed in a 0.35μm CMOS process with 3V power supply. The gain is achieved from the aspect ratios in transistors and deployed closed loop amplifier. In active mode, it can deliver upto 1mA from 0.1μA input current with approximately 1.2μA in biasing circuits. It consumes only 0.8μW during stand-by mode. A digital calibration circuit is employed to overcome device mismatch and process variation. This generates accurate output currents within a range of ±8%, whereas without calibration, the variation of ±33% at output currents is observed. This technique can be used in biomedical devices, which seek high power efficiency.
机译:在本文中,在具有3V电源的0.35μmCMOS过程中提出了具有快速备用恢复(4.5μs)的功率有效增益升压电流镜和80dB的最大增益。通过晶体管中的纵横比和部署的闭环放大器实现增益。在活动模式下,它可以从0.1μA输入电流提供高达1mA,在偏置电路中大约为1.2μA。它在待机模式下仅消耗0.8μW。采用数字校准电路来克服设备失配和工艺变化。这在±8%范围内产生精确的输出电流,而无需校准,则观察到输出电流的±33%的变化。该技术可用于生物医学设备,用于寻求高功率效率。

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