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A micropower gate-bulk driven differential difference amplifier with folded telescopic cascode topology for sensor applications

机译:具有折叠伸缩共源共栅拓扑结构的微功率门极驱动差分差分放大器,适用于传感器应用

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A micropower high-gain, low-noise differential difference amplifier (DDA) is presented in this paper. The new circuit incorporates the gate-bulk driven transistor pairs for input stage transconductance enhancement; the very high gain folded telescopic cascode structure that permits small headroom operation; and the replica tracking bias that sustains the circuit performance against variations of process, supply voltage and temperature. The DDA is designed using Global Foundries 1.8V/3.3V CMOS 0.18µm process and simulated using the BSIM3 models. The simulated results for the DDA shows DC gain of 131.4dB and unity gain bandwidth of 1.097 MHz at a load of 30pF//200kΩ while consuming quiescent current of 10.7µA at a single 1.8V supply. The proposed DDA gives noise reduction of 15.56% with respect to that of the gate-driven counterpart. It gives a noise efficiency factor (NEF) [1] of 6.7 when realizing a bio-potential sensing circuit. The low noise, very high gain, floating inputs, low power and robust features of the proposed DDA are suitable for front-end interface circuit in sensory systems.
机译:本文提出了一种微功耗高增益,低噪声差分差动放大器(DDA)。新电路结合了栅极驱动的晶体管对,以增强输入级跨导。高增益折叠伸缩共源共栅结构,允许较小的净空操作;复制跟踪误差可保持电路性能不受工艺,电源电压和温度变化的影响。 DDA使用Global Foundries的1.8V / 3.3V CMOS 0.18µm工艺进行设计,并使用BSIM3模型进行仿真。 DDA的仿真结果显示,在30pF //200kΩ的负载下,DC增益为131.4dB,单位增益带宽为1.097 MHz,而在单个1.8V电源上消耗的静态电流为10.7µA。相对于栅极驱动的同类产品,拟议的DDA降低了15.56%的噪声。当实现生物电势感测电路时,它的噪声效率因子(NEF)[1]为6.7。提议的DDA的低噪声,非常高的增益,浮动输入,低功耗和强大的功能适用于传感系统中的前端接口电路。

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