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Design of folded cascode opamp using Potential Distribution Method

机译:利用电位分布法设计折叠共源共栅运放

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In this work, design of CMOS opamps using Potential Distribution Method (PDM) is discussed. PDM is a newly proposed device sizing technique for analog circuits based on voltage distribution at different nodes. This technique is free from complex mathematical expressions governing the devices and the circuit. Instead of relying on analytical design approach, PDM directly utilizes the simulator as a device sizing tool to meet the target specifications. This is achieved by first designing the circuit with moderate performance by logically or uniformly allocating node voltages and then modifying these node potentials to meet the target specifications. PDM is also technology independent and can be applied to both, long and short channel devices. A fully differential folded cascode opamp is then designed using PDM. Dependency of response of the opamp on different node voltages is discussed. It is shown how PDM can be employed to fine tune the opamp's response to meet the specifications and the simulation results are presented.
机译:在这项工作中,讨论了使用电位分布法(PDM)的CMOS运算放大器的设计。 PDM是一种新提出的基于不同节点电压分布的模拟电路器件尺寸调整技术。该技术不受控制器件和电路的复杂数学表达式的影响。 PDM不再依赖分析设计方法,而是直接将模拟器用作设备选型工具来满足目标规格。这是通过首先通过逻辑或均匀分配节点电压来设计具有中等性能的电路,然后修改这些节点电势以满足目标规格来实现的。 PDM也是独立于技术的,可以同时应用于长通道和短通道设备。然后使用PDM设计全差分折叠共源共栅放大器。讨论了运算放大器响应对不同节点电压的依赖性。演示了如何使用PDM来微调运算放大器的响应以满足规格要求,并给出了仿真结果。

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