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Synthesis of High Gain Operational Transconductance Amplifiers for Closed-Loop Operation Using a Generalized Controller-Based Compensation Method

机译:基于广义控制器的补偿方法合成用于闭环操作的高增益运算跨导放大器

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This paper presents a systematic procedure that can be used to create operational transconductance amplifiers (OTAs) for closed-loop operation using multiple low-gain stages to realize extremely high DC gain. Such devices are necessary to realize analog functions with demanding absolute accuracy requirements, e.g., high-resolution ADCs and DACs. The principle is based on the cascade of undamped integrators to realize large DC gains and a state-space derived controller to stabilize its operation in a closed-loop configuration. A programmable OTA fabricated in the IBM 130 nm CMOS process is used as a test vehicle to prove the design principle through its 2 to 5th-order realization. Measured data reveals DC gains ranging from 50 to 150 dB with a 3-dB bandwidth of 10 kHz and a unity gain frequency of 10 MHz. While this paper demonstrates the design principles using CMOS integrated circuits, the principle is general and can be applied to any type of circuit technology in integrated or discrete implementation. Moreover, the methods are easily automated as the principles are based on closed-form formulae as opposed to iterative numerical search techniques.
机译:本文提出了一种系统程序,可用于创建闭环操作的运算跨导放大器(OTA),该放大器使用多个低增益级来实现极高的DC增益。这样的设备对于实现具有绝对绝对精度要求的模拟功能是必需的,例如高分辨率ADC和DAC。该原理基于无阻尼积分器的级联以实现大的DC增益,以及基于状态空间的控制器来稳定其在闭环配置下的运行。使用IBM 130 nm CMOS工艺制造的可编程OTA作为测试工具,以通过其2至5阶实现来证明设计原理。测得的数据显示DC增益范围为50至150 dB,3 dB带宽为10 kHz,单位增益频率为10 MHz。尽管本文演示了使用CMOS集成电路的设计原理,但该原理是通用的,可以应用于集成或离散实现中的任何类型的电路技术。此外,由于原理是基于封闭形式的公式而不是迭代数字搜索技术,因此该方法易于自动化。

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