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MULTI-BIT CONTINUOUS-TIME FRONT-END SIGMA-DELTA ADC USING CHOPPER STABILIZATION

机译:使用斩波稳定的多位连续时间前端SIGMA-DELTA ADC

摘要

A multi-bit continuous-time sigma-delta analog-to-digital converter (ADC) has an input stage which receives an analog input signal current. A multi-bit feedback current digital-to-analog converter (IDAC) generates a multi-level feedback current depending on a feedback signal. An integrator integrates a sum of the generated current and input signal current on a continuous-time basis. The IDAC has a first output branch including a first biasing current source and a second output branch including a second biasing current source. The biasing current sources supply a bias current to a respective branch of the IDAC to bias the input stage in a mid-scale condition. The biasing current sources are connected to the branches via chopping switches which connect the biasing current sources to the branches in a first configuration and a second, reversed, configuration. The integrator amplifier can also be chopper-stabilized, although preferably only the first stage is chopper-stabilized.
机译:多位连续时间sigma-delta模数转换器(ADC)的输入级接收模拟输入信号电流。多位反馈电流数模转换器(IDAC)根据反馈信号生成多级反馈电流。积分器在连续时间内对所产生的电流与输入信号电流之和进行积分。 IDAC具有包括第一偏置电流源的第一输出分支和包括第二偏置电流源的第二输出分支。偏置电流源向IDAC的各个分支提供偏置电流,以在中等规模条件下偏置输入级。偏置电流源通过斩波开关连接到支路,斩波开关以第一配置和第二反向配置将偏置电流源连接到支路。积分放大器也可以是斩波稳定的,尽管最好只有第一级是斩波稳定的。

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