首页> 外文会议>IFIP WG 5.5/SOCOLNET Doctoral conference on computing, electrical and industrial systems >Stability Improvements in a Rail-to-Rail Input/Output, Constant G_m Operational Amplifier, at 0.4 V Operation, Using the Low-Voltage DTMOS Technique
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Stability Improvements in a Rail-to-Rail Input/Output, Constant G_m Operational Amplifier, at 0.4 V Operation, Using the Low-Voltage DTMOS Technique

机译:采用低压DTMOS技术,在0.4 V工作电压下,轨至轨输入/输出,恒定G_m运算放大器的稳定性得到了改善

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The use of the dynamic threshold MOS (DTMOS) technique is evaluated in a two-stage rail-to-rail Input/Output, constant G_m amplifier. The proper choice of specific transistors in which the technique should be used is presented, as well as the resulting improvements, mainly regarding stability of the circuit at low voltage operation. The DTMOS technique is used in the NMOS transistors of the folded-cascode input stage, allowing the circuit to be stable at V_(DD) = 0.4 V, with equivalent gain and gain-and-bandwidth product (GBW) values achieved with the same V_(DD) value, for the initial circuit operating at 0.8 V. The implemented changes allow the circuit to be stable at low voltage operations without requiring any increase in the cascoded-Miller compensation capacitors, saving circuit area and, consequently, cost.
机译:动态阈值MOS(DTMOS)技术的使用在两级轨至轨输入/输出,恒定G_m放大器中进行了评估。提出了应在其中使用该技术的特定晶体管的正确选择,以及由此产生的改进,主要是关于低电压操作下电路的稳定性。 DTMOS技术用于折叠共源共栅输入级的NMOS晶体管中,使电路在V_(DD)= 0.4 V时稳定,并具有相同的增益和增益与带宽乘积(GBW)值V_(DD)值,用于初始电路在0.8 V的工作电压。实施的更改使电路在低压操作下保持稳定,而无需增加级联的米勒补偿电容器,从而节省了电路面积,并因此节省了成本。

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